Showing posts with label Honda. Show all posts
Showing posts with label Honda. Show all posts

Friday, December 30, 2011

Honda - 2010 Honda 3R-C Concept


Honda 3R-C Concept, a revolutionary three wheeled battery electric vehicle concept, shows what a future minimal urban transport vehicle for one person might look like. The battery electric drivetrain is mounted low in the three wheeled chassis, therefore keeping the centre of gravity low and thus improving stability.

The Honda 3R-C Concept has a clear canopy that covers the driver's seat while it is parked and not in use. When 3R-C vehicle is in motion, the canopy becomes an enveloping wind-shield that provides the pilot, who sits low in the vehicle, with significant protection from the bodywork and doors.

The high sides of the safety shell seat give greater safety to the occupant, reducing the threat from side impacts and improving weather protection. In front of the driver is a lockable boot area, which gives significant secure storage for luggage or other items. The Honda 3R-C Concept's designers created a flexible cover that surrounds the upper torso to reduce exposure to bad weather and improving comfort.
The Honda 3R-C Concept study was created by European designers working at Honda's Research and Design facility in Milan.


Honda - 2010 Honda Accord Crosstour


The Honda Accord Crosstour's styling and body construction evolved from the sophisticated foundation of the Accord Sedan. Architecturally similar to the distinctive shape of the Accord, key differences can be found throughout the entire body. No exterior panels are shared with any other Accord. The most noticeable differences include the overall height of the body from the floor to the roof and the obvious design differences in the rear of the vehicle to accommodate the sloped roofline and the tailgate.
The heightened body dimensions combined with increased ground clearance result in a commanding view of the road and a comfortable hip point for ease of entering and exiting the vehicle. Structural technology includes the Advanced Compatibility Engineering™ (ACE™) body structure, an exclusive body design that enhances occupant protection and crash compatibility in frontal crashes. Extensive application of high-strength steel (46 percent) contributes to high levels of torsional and static rigidity, reduced weight, and enhanced safety potential. Aerodynamic performance is increased through strategic use of under-body covers and strakes.

Exterior Styling Concept
The exterior styling builds on the Accord's familiar character lines and adds a bolder front grille complemented by a durable lower-body appearance, wedge-shaped D-pillars and an aggressive rear stance. The designers sought to build on the Accord's style that is already powerful, bold and sophisticated. Like the Honda Accord Sedan, the Accord Crosstour's design is both sharp and strong, with a powerful-looking stance. Starting at the front, the Honda Accord Crosstour's front fascia is enlarged and raised for dynamic toughness, and incorporates a wider and taller 6-point grille with large, horizontal slats surrounded by sharp and wide projector beam headlights. Well-defined wheel arches convey a strong stance and muscular tension. The fender lines appear broadened, like strongly muscled shoulders, with prominent character lines that sweep along nearly the entire body sides, subtly transitioning from an inverse line to an external line. Besides providing visual distinctiveness, these character lines communicate strength and structural depth. The flowing roofline narrows smoothly into the rear of the vehicle to create an aggressive-looking design, concealing a unique cargo area that can adapt to large objects that exceed the capacity of a normal sedan.

Body Construction
Increased rigidity enables enhanced vehicle dynamics, ride comfort and driving quietness. The Honda Accord Crosstour is constructed of 46 percent high strength steel (340 grade or above) to create a strong, yet lightweight body with high rigidity and enhanced safety. The ACE Body structure further enhances frontal collision compatibility between vehicles with different bumper heights. The Maximum Efficiency Floor (MEF) design is comprised of a network of longitudinal rails, floor cross-members and pillar reinforcements that carry heavy loads to enhance crash safety, handling and packaging efficiency. High tensile strength steel tubular beams inside the door structure provide additional intrusion resistance.
Noise, Vibration and Harshness (NVH) Reduction Features
The Honda Accord Crosstour is designed to drive exceptionally smooth and with reduced noise intrusion into the cabin. To accomplish this, the vehicle approaches NVH reduction from two primary directions - traditional insulation in the floor, doors and firewall; and active systems that work with the engine and audio system to cancel certain types of unwanted engine noise. A triple door-seal system is used to minimize wind and road noise. Strategic use of insulation in the rear fender wells also minimizes road noise.

Aerodynamic Enhancements
Aerodynamic performance is increased through the use of body under covers, a deflector under the front bumper, front strakes, the optimum inclination of the tailgate and an effective rear spoiler.
Ground Clearance
The ground clearance for the majority of the underbody area measures 8.1 inches and contributes to the Honda Accord Crosstour's commanding presence compared to the Accord Sedan. The front strakes represent the lowest point under the vehicle at 6.0 inches (the official ground clearance number for EPA measurement purposes).
Active Control Engine Mounts
The Active Control Engine Mount (ACM) system is used to minimize the effects of engine vibration caused by the VCM system when cylinders are deactivated. During cylinder deactivation, the Powertrain Control Module (PCM) instructs the ACM actuators to move in concert with the engine motions to effectively cancel the vibrations inherent to cylinder deactivation. Inside the cabin, the audio system-based Active Sound Control (ASC) further minimizes any unwanted sound relating to the function of the VCM system. (Please see the Interior section for more information.) Together, these innovations help make the implementation of fuel saving technology transparent and seamless to the driver.

Glass and Visibility
The Honda Accord Crosstour was designed to provide excellent outward visibility, improving the comfort and convenience for all occupants. A large greenhouse creates excellent outward visibility. Deeply tinted privacy glass is used in the rear side doors, wedge-shaped rear quarter windows and rear tailgate.
Tailgate
The Honda Accord Crosstour's front-hinged tailgate design creates a wide opening into the vehicle of 38.5 inches (980mm) and a low lift-in height of 28.4 inches (721 millimeters). The hinge design is configured so that the user does not have to step backwards when the door is opening or shutting. The tailgate includes a large upper window and a smaller lower window for increased rearward visibility at lower sight angles. The lower window allows for objects like a 3.3-foot (1 meter) tall parking lot pole to be spotted at distances as close as 5.3 feet (1.6 meters). Comparatively, some CUV designs that lack a lower rear window require approximately 6.5 feet or more to spot the same 3.3-foot pole. The upper tailgate glass incorporates an intermittent rear wiper and washer nozzle. An electric defogger system is incorporated into the upper and lower glass sections.
The tailgate locks and unlocks with the interior's door locks. To open, an electronic switch under the license plate awning releases the tailgate when the vehicle is unlocked. For ease of closing, a grip handle is located under the tailgate base. The tailgate can be opened in tight parking situations, requiring a minimum of 5.9 inches of space between the leading edge of the tailgate and a potential obstruction like a nearby vehicle or wall. Two gas-filled struts support the open tailgate.
Headlights and Taillights
The Honda Accord Crosstour is equipped with halogen projector-beam headlights for low beam illumination and conventional reflective halogen high beam headlights. Projector-style headlights provide a distinctive and sporty appearance with a bright, focused beam for a superior, even distribution of light compared to conventional reflector lens designs. The standard fog lamps are integrated into the front bumper. The taillights convey a deep three-dimensional appearance with layered inner lines that wrap from the back of the vehicle into the fenders. A clear lens for the backup light punctuates the overall red design. The taillight housings integrate a side reflector and turn signals in addition to the running lamps and the stop lights.

Door Design and Construction
The Honda Accord Crosstour's doors are designed to operate with solid precision with a convenient three-stage detent hinge. Additional premium features include triple seals in the bottom of the door structure to better insulate the cabin from road noise. Triple seals also serve to keep moisture, dirt and road grime away out the kick panel area - a space that can sometimes come into contact with clothing while entering or exiting the vehicle. All door handles are soft to the touch underneath to improve operating comfort.
With the key inserted, the door lock cylinders can raise and lower the windows and open/close the moonroof by turning clockwise for up and counter-clockwise for down. The unlock button on the key fob will lower the power windows and open the moonroof when depressed for three seconds and then continuously held.
An automatic door locking/unlocking system is customizable by driver preference. Automatic locking can be linked to vehicle speed reaching 10 miles per hour (15 km/h), or the gear shift lever shifting from park, or it can be deactivated entirely.
Automatic unlocking, configurable to the driver's door or all doors, can be linked to the ignition switch being turned to the off position, or the gear shift lever being positioned in the park position, or it can be turned off entirely. The factory default for locking is linked to vehicle speed. The factory default for unlocking is linked to the gear shift lever and unlock activation for the driver's door only.
Side Mirror
The vehicle's side mirrors are aerodynamically optimized to prevent wind noise and minimize turbulence. When the driver puts the transmission in reverse on the Honda Accord Crosstour EX-L model, the driver or passenger-side mirror can tilt down (depending on left/right/off mirror switch position) to reveal curbs and ground level obstacles. The Honda Accord Crosstour EX-L model includes mirror position memory linked to the driver's seating profile (activated with the key fob or the controls near the driver's door release). All models feature heated side mirrors as standard equipment.
Moonroof
To tilt or slide the moonroof the driver or front passenger needs only to fully press the ceiling-mounted switch once (instead of pressing and holding it for several seconds). The moonroof fully opens or closes automatically. However if the operator wishes to only partially open or close the moonroof (such as to achieve partial ventilation), a lighter touch yields fully manual control. The moonroof can also tilt to provide ventilation. An auto-reverse feature is built in, helping to ensure that the moonroof will not forcefully close if someone's hand or arm is positioned in the path of the moonroof. If an obstruction is detected, the moonroof mechanism will reopen the moonroof.

Chassis
The 2010 Accord Crosstour leverages the benefits of a premium chassis design for rewarding and sophisticated handling dynamics. A double-wishbone front suspension and multi-link rear suspension allow for both a smooth ride and world-class levels of performance that is equally at home on a curvy road, long stretches of interstate highway or in inclement weather. Ground clearance of 6.0 inches enhances capability in snowy conditions and broadens access to more roads off the beaten path. Standard features include Vehicle Stability Assist™ (VSA™), commonly referred to as Electronic Stability Control; 4-wheel disc brakes; and stabilizer bars front and rear.
Front Subframe
A front "floating" subframe design is used on the Honda Accord Crosstour. A welded-steel subframe secured to the unit body's longitudinal rails supports the Accord's engine, transaxle, transfer case, steering gear and front suspension. The front of the subframe assembly is designed for enhanced stiffness with minimal weight penalties and uses four tuned rubber mounts to isolate the subframe from the main body structure, i.e. it is "floating."
A stiffener located under each subframe attachment fastener helps to further stabilize the assembly, thereby achieving linear handling and braking performance. The subframe includes two Active Control Engine Mounts (ACM) that counteract the inherent vibration created by the Variable Cylinder Management (VCM) system, plus one rubber isolator transmission mount. The "floating" mounts are strategically positioned to counteract noise and vibration while reducing the transmission of engine noise and vibration to the passenger compartment.
Double Wishbone Front Suspension
Widely spaced upper and lower wishbones give precise suspension action, with the coil-over spring and shock absorber units free of the binding caused by the side-loading inherent in some less sophisticated strut-type designs. The Honda Accord Crosstour's front suspension is a modified version of the double-wishbone system used on the Accord Sedan and Coupe. Stabilizer bars, springs and damping rates have been optimized to provide the best combination of ride and handling. The front lower control arms are forged steel and connect to a stamped steel box-section sub frame. The stamped-steel upper control arms connect to a forged-steel knuckle.
Progressive valve nitrogen gas-filled coil-over shock absorbers integrate an internal rebound spring. When cornering, the internal rebound spring allows the shock absorber to exert additional force on the inside wheel's coil spring to help counteract wheel lift in certain situations. This premium shock absorber design helps to improve both ride comfort and responsiveness. Ultimately, tire-to-road adhesion is enhanced.

Rear Subframe
The rear subframe, which supports most of the rear suspension and the rear axle drive unit, is made of high-strength steel for high stiffness and minimal weight. The shape of the rear subframe is equally important - it must accommodate the drivetrain components for the available Real Time 4WD system and the multi-link rear suspension. For excellent ride and handling characteristics, the subframe attaches to the unit body at four widely spaced, rubber-isolated, mounting points. Rear-suspension components, especially the springs and shock absorbers, are as compact as possible to facilitate a wide, flat, load floor and to leave room for both a spare tire and a fuel tank. The rear axle drive unit (if equipped) is mounted to the subframe by means of rubber isolators to block powertrain noise and vibration from the passenger compartment.
Multi-link Rear Suspension
The Honda Accord Crosstour's rear suspension is a compact, multi-link layout for excellent ride and handling, minimum weight and optimum packaging. Wheel travel is a generous 4.3 inches in compression and 3.7-inches in rebound. The three links that position each rear wheel laterally run between the knuckle assembly and the subframe. Progressive valve nitrogen gas-charged shock absorbers attach from a low point on each knuckle to a highly rigid attachment point on the unit body.
The knuckles are an "in-wheel" design to optimize suspension geometry and packaging efficiency. Bushing compliance provides a modest toe-in effect in response to substantial cornering and braking loads to enhance overall stability. The rear knuckles are made from aluminum and help to reduce unsprung weight for quick suspension responsiveness. Optimized high rigidity bearings accommodate the additional forces of the four-wheel-drive system. Coil springs, dampers and a stabilizer bar are tuned for the best combination of ride and handling. Rear subframe mounts and lateral control link bushing rates were adjusted to create a discrete level of lateral force steer at the rear axle.
Power Rack-and-Pinion Steering System
The Honda Accord Crosstour features rack-and-pinion steering with a speed-sensitive, variable power assisted system. For optimum steering feel, the variation in power assist is linear with a smooth transition from low to high boost.
The system uses heat-resistant rubber mount bushings, high-pressure die cast aluminum gear housings, a low friction material rack guide for good on-center feel and a damper valve to reduce steering wheel vibration. The Honda Accord Crosstour provides a turning diameter of 41.7 feet, curb to curb. The rack-and-pinion steering wheel gearing creates a constant ratio of 15.2:1 and requires 2.76 turns lock-to-lock.

4-Wheel Disc Brakes with Anti-lock Braking System (ABS)
Consisting of four-wheel disc brakes and four-channel anti-lock brakes, the Honda Accord Crosstour braking system is tuned for stable and linear braking forces. The Honda Accord Crosstour's ventilated front brake rotors are 11.7 inches in diameter with a thickness of 1.1 inches, while the solid rear rotors are 12.0-inch diameter units with a thickness of 0.4-inches. The rear brakes use a drum-in-disc configuration for the parking brake. Dual-piston cast iron brake calipers are used in front and single-piston cast iron calipers are used in the rear. A single stage vacuum booster consists of one 10.5-inch diameter booster chamber.
For optimum performance with widely varying loads, Electronic Brake Distribution system (EBD) technology monitors braking force and adjusts front-to-rear brake effort to achieve maximum braking performance and stability. At the rear, a select-low braking strategy is used to help maintain directional stability in slippery driving.
In the event one rear wheel verges on lock-up, triggering a pressure modulation at that wheel, brake pressure is also diminished at the adjoining wheel to help preserve the rear axle's lateral stability. The parking brake is set by a hand brake lever in the console.
Wheels and Tires
The Honda Accord Crosstour is offered with two wheel and tire combinations. The Honda Accord Crosstour EX comes with 17x6.5-inch aluminum alloy wheels and 225/65R17 102T all-season tires. The Honda Accord Crosstour EX-L comes with larger 18x7.0-inch aluminum alloy wheels and 225/60R18 100H all-season tires. Wheels feature a five-lug pattern with 55mm offsets. For maximum cargo capacity, a space-efficient compact spare is carried under the rear cargo floor.
Fuel System
The 18.5 gallon fuel tank is molded of high-density polyethylene for low weight, freedom from corrosion and impact resistance. It is positioned ahead of the rear wheels and over the propeller shaft (if equipped) to help guard against collision damage. The shape of the tank is designed to diminish the likelihood of sloshing-fuel noise. The polyethylene filler pipe and fuel lines are lightweight, and resistant to corrosion and fuel vapor losses. A high-efficiency fuel pump is housed inside the fuel tank. The fuel-filter is a lifetime design that never needs replacement. The shape of the fuel tank is modified for vehicles with Real Time 4WD to accommodate the propeller shaft and dual exhaust pipe, yet retains the same capacity as 2WD models.
Interior
The Honda Accord Crosstour is designed to offer a comfortable, high quality and premium environment for up to five passengers along with enhanced cargo functionality that can conveniently accommodate active lifestyles. Compared to the Accord Sedan and Coupe, the Honda Accord Crosstour provides a uniquely higher step-in height and hip-point for ease of entry and exit, which also results in a commanding view of the road.
The cargo area incorporates useful and versatile features that make configuring the vehicle for people or large items a simple operation. Levers near the interior fender wells, conveniently accessible from the tailgate opening, allow for one-touch conversion of the rear seats into the floor for quick access to the 51.3 cubic feet of maximum-possible cargo space. An 8.4-inch deep under-floor hidden removable utility box adds 1.9 cubic feet of storage. The carpeted lid of the cargo box can be reversed to a plastic side for storage of wet or dirty items. Honda Accord Crosstour EX-L models include a cargo privacy cover.

Styling Concept
"Premium and active" represents the dual role functionality of the Honda Accord Crosstour's interior design. Consistent with all Accords, a variety of design techniques were used to enhance the feeling of width and space in the passenger cabin to express premium and accommodating quality. The inset sculpting of the instrument panel along with a wide center console increases the sense of roominess. Intuitively grouped controls for the audio, climate and available navigation system are designed to operate with solidity and precision.
Two interior color combinations are available. The charcoal black interior is intended to convey a stylish and sporty environment and features a monochromatic black instrument panel divided with wood trim-appearance highlights. The ivory interior is intended to create a sophisticated and bright ambiance and features a two-tone instrument panel with a black upper segment and tan lower segment. Wood trim-style accents on both color combinations divide the upper and lower portion of the instrument panel.
Interior Packaging Concept
The Honda Accord Crosstour interior packaging concept is divided into two distinct zones for premium passenger accommodation and versatile cargo capabilities. The passenger zone seeks to provide occupants with sophisticated styling and advanced features similar to all Accord body styles. The cargo zone continues the premium theme with highly visible application of quality materials above the floor line, then adds more rugged versatility beneath the floor.
Instrument Panel
The driver's instrument cluster includes two large analog meters for the speedometer and tachometer, each surrounded by silver trim rings for a premium sporty appearance. The Honda Accord Crosstour meters use blue illuminated pointers for a premium appearance. The 8000-RPM tachometer and 160-mph speedometer are flanked by temperature and fuel gauges. Below the meter array is an LCD display that can show odometer, Trip A or Trip B functions, outside temperature, and maintenance alerts.
The center panel has been carefully designed for maximum visibility and ease of use. A central display is mounted at the top of the center stack for good visibility, and the controls are mounted lower for easier reach. Switches for the audio system, climate controls and navigation system (if equipped) are grouped together in corresponding zones differentiated by function type. The button positions and size are prioritized by frequency of use. Switchgear is flush mounted with high-grade materials for an upscale appearance and feel. For further differentiation, climate control buttons appear light gray and audio controls appear black.
The Honda Accord Crosstour EX and EX-L (non navigation) three-line central display features a digital clock; audio mode indicator; station and broadcast contents information for FM, XM (on EX-L), track and time information for CD and the EX-L's USB-connected media; dual climate control temperature readouts and a digital compass. The Honda Accord Crosstour EX-L with navigation integrates an 8-inch screen in place of the three-line display and an interface dial down low on the center panel within easy reach.
Underneath the center display are two movable climate control vents, the emergency flasher switch and a passenger-airbag off light. Below the vents are the HVAC controls. Audio-system controls are located in a separate row and feature larger switches that are easier to identify at a glance. Honda Accord Crosstour EX and EX-L (non-navigation) models also have an interface dial in this location, flanked by Menu and Cancel switches. The dial is rotated to select among different on-screen items. Pushing the center button selects the highlighted item.

Steering Wheel
The 3-spoke steering wheel on the Honda Accord Crosstour (leather wrapped on EX-L) is intended to create a sporty feeling. Steering-wheel mounted audio and cruise-control buttons include Mode, Volume and Channel, plus Cruise, Cancel, Set/Decelerate and Resume/Accelerate. Honda Accord Crosstour EX-L models add buttons for the Bluetooth® HandsFreeLink® telephone interface. In models equipped with the navigation system, the steering wheel also features buttons for navigation voice control activation. The tilt and telescope range for the steering column, along with seat height adjustment range, enhances comfort for a wide array of driver sizes.
Dual-zone Air Conditioning with Air Filtration System and Humidity Control
The Honda Accord Crosstour is equipped with dual-zone automatic climate control as standard equipment. The primary heating, air conditioning and ventilation (HVAC) controls include individual controls for temperature, fan speed, vent selection (center, floor and defogger vents), rear electric defogger and fresh or re-circulated air. To maximize rear passenger comfort, the Honda Accord Crosstour includes vents in the rear console (identical to the new vents added to Accord Sedan EX and EX-L models for 2010). The airflow is connected to the front center vents. The dual-zone automatic climate controls maintain a user-selected temperature based on the driver's or front passenger's preferred settings for temperature. The dual-zone aspect of the automatic climate control allows the driver and front passenger to select different temperatures.
The automatic climate control on models equipped with the Honda Satellite-Linked Navigation System benefit from GPS-linked, solar-sensing technology that intelligently modifies the temperature setting on the side of the vehicle facing the sun.
Based on its continuously updated vehicle position information, the navigation system determines the position of the sun relative to the driver and passenger and then increases or decreases the temperature accordingly. When in AUTO mode, this information is combined with input from the solar sensor located on top of the instrument panel to automatically adjust the temperature from side to side as needed in order to compensate for asymmetrical solar heating.
To provide greater operating efficiency while maintaining a comfortable interior climate, the Honda Accord Crosstour partially mixes cool cabin air with fresh air in the blower to reduce compressor operation by up to 20 percent (compared to operating exclusively on exterior air).
To prevent the compressor from being excessively operated, the Honda Accord Crosstour's climate control system has a cabin humidity sensing system. This control system provides greater passenger comfort and minimizes the time the air conditioning runs. When set to operate in AUTO mode, a temperature and humidity sensor located in the front of the passenger cabin monitors the interior climate. If the system determines that there is a low probability of window fogging, it maintains a comfortable humidity level. If the system determines that potential window fogging conditions exist, it changes the climate control parameters to help keep the windows clear.

Front Seats
Designed to provide both long term comfort in the center and firm lateral support on the sides, the front seats are identical to those found on the Accord Sedan. The seats include active head restraints that help reduce the likelihood of neck injury in the event of a rear collision. The cloth seating surfaces on the Honda Accord Crosstour EX include 10-way power adjustment (including lumbar support) for the driver and 4-way power front passenger-side seat. The Honda Accord Crosstour EX-L upgrades to leather-trimmed seating surfaces and adds a position memory function for two drivers. The memory function is activated by either the key fob or by the panel located next to the driver's door handle, and it also recalls the preferred side mirror settings.
Center Console
The center console provides 5.3 liters of storage and functions as a wide armrest for the driver and front passenger. A spring system supports the operation of the cover, which doubles as the center armrest. In addition, 19 CDs can fit inside. The armrest slides fore and aft for improved comfort for drivers of different heights.
Located inside the center console is an auxiliary input jack (aux-in) that supports a personal audio player connection to the vehicle's audio system. A 12-Volt DC power point is included inside the console. Plugging a portable audio device into the aux-in jack automatically sets the volume at a preset level; when the device is unplugged, the volume resets to its previous level. The Honda Accord Crosstour EX-L adds a USB Audio Interface in the center console.
60/40 Split Rear Seats with One-touch Fold Down Levers
The rear seats capitalize on the wide stance of the Honda Accord Crosstour and can accommodate up to three passengers. Each rear passenger seating position has a head restraint. The 60/40 split allows for partial or full access to additional cargo space depending passenger or cargo priorities. A folding center armrest is integrated into the seat and includes two beverage holders. In the cargo area, two one-touch release levers are located near the tailgate opening sides for one-handed fold-down operation of the seats into the floor. The seats create a flat surface when folded down and do not require the removal of the head restraints. Two Lower Anchors and Tethers for Children (LATCH) positions are included in the outboard seating positions. Three child seat anchors are provided on the rear seat backs.
Cargo Area
The rear cargo area supports the "active" role of the Honda Accord Crosstour and demonstrates how thoughtful engineering can maximize a limited amount of space. Durable level-loop carpet lines the cargo area to help cushion contents. A polished metal kick plate at the base of the cargo area opening resists scuffing and appears upscale yet durable. In standard configuration with rear seats upright, the cargo area provides 25.7 cubic feet of cargo space above the floor and an additional 1.9 cubic feet of space below the floor. With the rear seats folded forward, the total above-floor cargo volume expands to 51.3 cubic feet. The carpet-covered plastic lids discretely conceal the Hidden Removable Utility Box and the under floor side bins that can be reversed to create an all-weather, wipe-able cargo area. The carpeted side creates a premium look and offers a "soft" option for transporting "premium" items, while the plastic side is ideal for transporting dirty and/or damp items. Two cargo tie-down points are provided on the floor near the middle of the wheel wells and two more are provided on the rear wall of the cargo area. A 12-Volt outlet is located on the driver's side rear wall of the cargo area.

Powertrain
The Honda Accord Crosstour comes standard with a 271 horsepower V-6 engine, a 5-speed automatic transmission and is available with the company's innovative Real Time™ 4WD system. The 3.5-liter, 24-valve SOHC i-VTEC powerplant with Variable Cylinder Management (VCM) that builds on technologies that have been developed and refined on previous Honda vehicles. With its 60-degree V-angle, the Accord's V-6 engine is inherently very smooth and has compact overall dimensions that allow efficient packaging within the vehicle. The automatic transmission includes a new G-force hold control feature along with an RPM rev-matching featuring when downshifting.
Engine Architecture
The Honda Accord Crosstour's engine is an advanced 3.5-liter, SOHC, 24-valve, 60-degree, V-6, aluminum-block-and-head design that is compact, lightweight and powerful. The i-VTEC valvetrain and high efficiency intake manifold optimize cylinder-filling efficiency across a wide range of engine speeds. Low-restriction intake and exhaust systems, a 10.5:1 compression ratio and roller-type rocker arms further aid efficiency and power delivery across a broad RPM range.
The Honda Accord Crosstour's V-6 has a die-cast lightweight aluminum alloy block with cast-in-place iron cylinder liners. Made with a centrifugal spin casting process, the thin-wall liners are high in strength and low in porosity. The block incorporates a deep-skirt design with four bolts per bearing cap for rigid crankshaft support and minimized noise and vibration. Both the block and caps are heat treated for greater strength.
A forged steel crankshaft is used for maximum strength, rigidity and durability with minimum weight. Instead of heavier nuts and bolts, connecting rod caps are secured in place with smaller, high-tensile-strength fasteners that screw directly into the connecting rod. Short-skirt, cast-aluminum, flat-top pistons are notched for valve clearance and fitted with full-floating piston pins.
Like other Honda V-6 powerplants, the Accord Crosstour V-6 cylinder heads are a single-overhead-camshaft design, with the cams driven by the crankshaft via an automatically tensioned toothed belt. Made of low-pressure cast, low-porosity aluminum, each cylinder head incorporates an integrated exhaust manifold to reduce parts count, improve flow and optimize the location of the close-coupled catalyst on each cylinder bank.
The cylinder head employs four-valve combustion chambers, the best approach to optimum performance with excellent fuel efficiency and very low emissions. Valves are clustered near the center of the bore to minimize combustion chamber volume and to provide ample squish area. The 10.5:1 compression ratio helps maximize thermal efficiency, power output and fuel efficiency. One centrally located camshaft per cylinder bank is driven by a fiberglass-reinforced toothed belt. Head gaskets are made of high-strength materials to contain combustion pressures.
Safety
The Honda Accord Crosstour integrates a wide range of sophisticated safety technology that includes the Advanced Compatibility Engineering™ (ACE™) body structure and dual-stage, multiple-threshold driver's and front passenger's airbags (SRS); driver's and front passenger's side airbags with passenger-side Occupant Position Detection System (OPDS); and side curtain airbags with a rollover sensor. The ACE body structure is an exclusive body design that enhances occupant protection and crash compatibility in frontal crashes.

Advanced Safety Technology
Inside, every Honda Accord Crosstour incorporates side-curtain airbags and a driver's front side airbag and a passenger front side airbag with Occupant Position Detection System (OPDS), along with active front head restraints that are designed to help reduce the severity of neck injury in the event of a rear collision. Additional standard safety features include dual-stage, multiple-threshold front airbags, an Anti-lock Brake System (ABS) with brake assist, front seatbelts with automatic tensioners and load limiters, and a pedestrian injury mitigation design in the front of the vehicle. Daytime running lights are also standard equipment.

Honda - 2010 Honda Brio Concept


Honda held the world premiere of a prototype of Honda BRIO, the new small-sized vehicle developed for Asian markets and scheduled to be introduced in Thailand and India in 2011, at the 27th Thailand International Motor Expo starting November 30, 2010.
Honda BRIO Prototype is being developed with Honda's advanced technologies, while further advancing Honda's "man maximum, machine minimum" concept. Being developed as a commuter which is easy-to-use even in urban areas, the Honda BRIO prototype adopts an easy-to-handle compact body (length 3,610mm x width 1,680mm x height 1,475 mm) while ensuring enough cabin space achieved by highly efficient packaging. With this vehicle, Honda thoroughly pursued the creation of an advanced exterior form, which is compact while asserting a strong presence.

For the mass-production model, which will be an entry-level car, for which demand is increasing in newly emerging nations, Honda will develop unique versions for Thailand and India to reflect different customer needs in those markets. Moreover, with this vehicle, Honda will leverage the resources Honda has cultivated through its motorcycle business and utilize local sourcing of parts and materials such as sheet steel.

For the Thai model that is scheduled to be introduced in March 2011, the fuel economy of more than 5 liters/100km will be targeted so that the vehicle will qualify as an eco-car by the Thai government, and a starting price of approximately 400,000 baht will be targeted as well. For the Indian model that is scheduled to be introduced within 2011, local customer needs for a small car will be reflected and local content will be increased to create a model that achieves a good balance between vehicle performance and price.

"Honda would like to expand the joy of mobility to more customers in Thailand, India and other Asian countries through the introduction of a new small vehicle with compact and highly efficient packaging by utilizing our own experiences cultivated by motorcycle business here in Asia," said Takanobu Ito, President and CEO of Honda Motor.

Wednesday, December 28, 2011

Honda - 2010 Honda CR-V


A new-look Honda CR-V will go on sale in January 2010, with a new diesel engine and an eagerly-awaited automatic gearbox for diesel models.
The Honda CR-V has consistently topped the SUV sales tables since launch in 2007, with its ample cabin and large, split-level boot offering useful practicality and its low centre of gravity giving the Honda CR-V 'car-like' handling characteristics.
For 2010, the Honda CR-V's popular looks have been refreshed to incorporate a distinctive new front bumper and grille, a revised rear bumper, and colour coded bumpers on EX grades. There are newly-designed 17-inch (SE) and 18-inch (ES and EX) alloy wheels and upgraded fabrics and plastics inside, giving the Honda CR-V interior an even more premium finish. A new audio console design has also been introduced, while improved sound deadening around the engine and cabin makes the Honda CR-V an even quieter and more relaxing car to drive.
The revised version of the Honda CR-V will continue to be built at Honda of the UK Manufacturing in Swindon, where British workers proudly produce the SUV for over 60 countries.

New i-DTEC and diesel auto transmission
Honda's 2.2-litre i-DTEC diesel engine, which debuted in the latest Honda Accord in 2008, will be available in the new CR-V. The diesel produces 150PS at 4000 rpm (up 10PS) and torque of 350Nm at 2000 rpm (up 10Nm). It can be paired with either manual transmission or the new 5-speed automatic gearbox that has been manufactured in-house by Honda.

Honda - 2010 Honda CR-V US-Version


The Honda CR-V adds to its compact crossover SUV credentials for the 2010 model year with refinements and upgrades to the exterior and interior, new features, better fuel economy, and more power.
Exterior styling enhancements include a freshened front fascia with a new grille and bumper design, a re-sculpted hood, and a new rear bumper shape. A 10-spoke alloy wheel design, standard on Honda CR-V EX and EX-L, replaces the previous 7-spoke alloy wheel design. Interior improvements focus on new features and functionality. Bluetooth® HandsFreeLink® is now included on models equipped with the available Honda Satellite-Linked Navigation System™. Auto on/off headlights have been added to the Honda CR-V EX-L and the front seats have wider center armrests on all models.
Upgrades to the 2.4-liter 4-cylinder engine improve power output to 180 horsepower (hp), a 14 hp increase. City/highway EPA-estimated fuel economy ratings increase to 21/28 miles per gallon (mpg) on 2WD models and 21/27 mpg on models equipped with Real Time™ 4WD - an increase of 1 mpg in both city and highway driving on all models.

"The Honda CR-V provides many of the favorable aspects of a car and an SUV in a stylish, yet highly functional and capable vehicle," said Vicki Poponi, assistant vice president of American Honda Motor Co., Inc. "For 2010, the Honda CR-V represents an even better value with significant upgrades throughout the vehicle."
While compact on the outside with a 103.1-inch wheelbase and a convenient-to-park length of less than 15 feet, the interior provides 103.8 cu-ft. of passenger volume (CR-V LX) for up to five passengers. Add in a cargo volume of 35.7 cu-ft. behind the rear seats and the Honda CR-V creates a total interior volume that, from a space efficiency perspective, exceeds the U.S. EPA's size definition for a large sedan of 120 cu-ft.
A wide range of interior updates for 2010 include modifications to the radio functionality and control layout, the introduction of new seat fabric textures and an upgraded interior door handle design with a rubberized grip handle. Revised trim panel sections for the steering wheel, gear selector, upper glove box and center console (navigation-equipped models only) serve to brighten the overall interior color theme. Models equipped with an ivory interior now feature a more passenger-friendly darker brown carpet instead of light brown.

The AM/FM/CD audio system integrates a dual tone gray/black color scheme with blue backlighting, replacing black. The Honda CR-V EX-L (navigation and non-navigation models) receives a USB Audio Interface for direct access to music files on compatible devices using the vehicle's existing controls.
Consistent with the new audio system backlighting, the background color of the Multi-Information Display (MID) now appears blue (previously black). The MID's digital display functions, which include the odometer, trip computer and vehicle maintenance indicators among other features, for 2010 now include a compass feature on Honda CR-V EX and EX-L (non-navigation) models. On navigation-equipped models, the newly added Bluetooth HandsFreeLink status and related functions are displayed in the MID.
For comfort, the driver's and front passenger's center folding armrests are each wider by 1 inch compared to the previous model. The front row storage zones continue to offer the same functionality with areas designed to accommodate items as large as a handbag between the seats to items as small as a mobile phones and music players on the retractable center tray table. A center console replaces the retractable center tray table on the Honda CR-V EX-L with navigation.

A sliding 60/40 split second row seat with a 40/20/40 folding seatback offers cargo versatility by sliding forward to increase cargo space, folding forward to accommodate long objects, or folding and tumbling forward to create a large, flat cargo area. Maximum possible cargo volume measures 72.9 cu-ft. with approximate floor dimensions of 51 inches long by 39 inches wide (at wheel wells). Storage potential behind the rear seat is enhanced by a dual-deck cargo shelf (CR-V EX and EX-L) that can strategically accommodate items like a folded baby stroller on the lower level and groceries bags on the upper level. The second row seat includes a Lower Anchors and Tethers for CHildren (LATCH) child seat mounting system for all rear seat positions, allowing two outboard child seats to be installed or one center child seat.
Standard safety equipment includes: the Advanced Compatibility Engineering™ (ACE™) body structure; Vehicle Stability Assist™ (VSA®), commonly referred to as electronic stability control; and a pedestrian safety design in the front of the vehicle. Additional standard equipment includes side-curtain airbags with a rollover sensor; front side airbags with a passenger-side Occupant Position Detection System (OPDS); active front seat head restraints; an anti-lock braking system (ABS) with Electronic Brake Distribution (EBD) and Brake Assist; and a Tire Pressure Monitoring System (TPMS).

The Honda CR-V's unit-body construction makes extensive use of high-strength steel (58 percent) to save weight and create a high-rigidity body structure, which significantly contributes to the vehicle's ride quality, fuel efficiency and safety performance.
A dynamic forward cabin blends the Honda CR-V's upscale body lines into a sculpted lower body with a rugged appearance and durable cladding. A two-tier grille and a side profile with an arched window shape and chrome trim accent the Honda CR-V's distinctive and upscale presence.
For 2010, the front fascia's upper grille has a single horizontal chrome-style trim cross bar as opposed to the double slat style cross bar from the previous design. The hood's sheet metal now flows flush into the upper portion of the grille instead of wrapping down and around the grille.

The lower portion of the grille receives a honeycomb design that replaces the previous three-bar horizontal cross design. A chrome-colored trim piece has been added at the junction where the lower grille section intersects the top of the bumper (on EX and EX-L only). The circular port for Honda Genuine Accessory fog lights is encompassed within the re-sculpted front bumper's painted surface area, which extends lower on the vehicle, instead of within the lower black body cladding. Correspondingly, the re-shaped rear bumper's painted surface area now encompasses the red rear reflectors, also previously located within the black cladding.
The suspension is comprised of a front MacPherson strut layout and a rear multi-link suspension. The high-rigidity body and independent suspension offer a comfortable and engaging driving experience for a crossover SUV. State-of-the art noise absorption materials help to reduce engine and road noise for a quieter cabin.
The all-aluminum,16-valve, Dual Overhead Camshaft (DOHC) i-VTEC engine integrates an "intelligent" version of Variable Valve Timing and Lift Electronic Control along with Variable Timing Control (VTC), which are sophisticated Honda valvetrain technologies designed to enhance fuel economy and power output while reducing exhaust emissions. The VTEC portion of the system hydraulically adjusts the intake valves' rocker arms for lift and duration to help optimize engine efficiency for low- and high-RPM ranges. The Variable Timing Control (VTC) aspect of i-VTEC allows for continuously variable phasing of the intake camshaft, which helps improve engine torque, promote a smooth engine idle, and create an internal exhaust gas recirculation effect for reduced smog-forming emissions (NOx).

For 2010, power and efficiency improvements result from the engine's compression ratio increasing to 10:5:1 from 9.7:1, fuel injectors with a finer spray pattern, larger intake valves, spark plugs with extended electrodes, friction-reducing piston rings, higher-precision timing sensor and a higher flow-rate exhaust system.
The Honda CR-V comes standard with an electronically controlled 5-speed automatic transmission that uses an active lockup torque converter. Wide overall ratios help maximize acceleration in gears one through four and optimize fuel economy in its overdrive fifth gear.
Grade Logic Control helps to reduce gear "hunting" on hilly roads. The available Real Time™ 4WD system - ideal for enhanced traction on snow, rain, dirt roads and sandy conditions - sends power to the rear wheels when needed. Real Time 4WD's always-ready and fully automatic dual pump system hydraulically proportions rear wheel torque via multi-plate clutches. The Maintenance Minder system will indicate that the dual-pump fluid should be changed at about 60,000 miles.

The Honda CR-V is available in three model choices, each offered in either front-wheel drive or Real Time 4WD. Standard comfort and convenience features on the Honda CR-V LX include air conditioning with air-filtration system, keyless entry, tilt and telescopic steering column, cruise control, power windows with auto-up/down driver's window, power door and tailgate locks, AM/FM/CD audio system with four speakers, fuel economy meter and 17-inch steel wheels.
The Honda CR-V EX adds a one-touch power moonroof with tilt feature, chrome grille and rear license plate trim, rear privacy glass, security system, steering wheel-mounted audio controls, dual-deck cargo shelf, audio system with 6-disc in-dash CD changer and six speakers, exterior temperature indicator, vanity mirror lights (new), digital compass (new), and 17-inch alloy wheels (new design).

The Honda CR-V EX-L adds leather-trimmed seats and armrests, heated front seats, body-colored side mirrors and door handles, XM® Radio, a USB Audio Interface (new), and auto on/off headlights (new). Available on the Honda CR-V EX-L is the Honda Satellite-Linked Navigation System with Voice Recognition and rearview camera, which also adds premium audio system with 7-speakers including subwoofer and Bluetooth HandsFreeLink, center console storage unit (replaces retractable center tray), and a 6-disc CD changer in the center console (replaces in-dash changer).
Colors for 2010 include Opal Sage Metallic (new), Royal Blue Pearl, Taffeta White, Glacier Blue Metallic, Polished Metal Metallic (new), Alabaster Silver Metallic, Crystal Black Pearl, Tango Red Pearl and Urban Titanium Metallic. Interior color choices, determined by exterior color, include Ivory, Black or Gray.
The Honda CR-V became the best-selling SUV in the United States with calendar-year 2008 results of 197,279, also placing it among the top-ten best-selling vehicles for that year. The Honda CR-V is a global product for Honda and is sold in 160 countries throughout North America, Europe, Asia, South America and Africa. Worldwide, the Honda CR-V is assembled of domestic and globally sourced parts including at the Honda of America Manufacturing, Inc., East Liberty Auto Plant in Ohio.

Technical Specifications
  • Engine: 2.4-liter i-VTEC 4-cylinder
  • Horsepower: 180-hp @ 6,800 rpm
  • Torque: 161 lb-ft. @ 4,400 rpm
  • EPA-estimated Fuel Economy (City/Hwy/Comb)
  • 2WD: 21/28/24 mpg
  • 4WD: 21/27/23 mpg
  • Seating Capacity: 5
  • Passenger Volume: 103.8 cu-ft.
  • Cargo Volume: 34.7 cu-ft.
  • Standard Airbags: Driver's and Front-Passenger's Front Dual-stage, Multiple-Threshold Front Airbags; Front-side airbags with passenger-side Occupant Position Detection System (OPDS); and Side-curtain Airbags with Rollover Sensor.
  • Standard Electronic Stability Control: Vehicle Stability Assist™ (VSA®)
  • Standard Anti-lock Braking System: 4-channel with Brake Assist







Honda - 2010 Honda FCX Clarity

The elegant form of the Honda FCX Clarity sets it apart from everything else on the road and complements the rational, environmental reasons for driving a fuel cell eletric vehicle. The sharp, dark chrome trim that runs from bumper to headlight draws the eyes toward the front wings, creating a powerful, dynamic look and a cool, clean, futuristic feel. The side mirrors add to the Honda FCX Clarity's free-flowing cabin. Mounted on slender arms that blend with the door moulding, they emphasise the elegant lines of the side windows, with the moulding embracing the mirror housing. The exterior door handles have a spare, clean look that accentuates the slender lines of the body. Robust rear wings reinforce the compact cabin for a bold, sculpted look. The rear glass and contoured design of the rear combination lamps emphasise the vehicle's wide, confident stance.

An extra rear window for more visibility control: looks great, enhances visibility, allows for a larger boot
The most distinctive feature of the new one-motion design is found at the rear of the Honda FCX Clarity. To take advantage of the high-deck design and enhance rear visibility, the car is fitted with an extra window with visibility control-a feature carefully designed to protect privacy. The rear of the car is set high to ensure good luggage volume, and windows are positioned in the upper boot lid and in the barrier behind the rear seat to allow the driver to see into the boot.

Visibility control lets occupants see out without passersby seeing in
A special polycarbonate layer is applied to both sides of the window to make transparency dependent on the angle of vision, protecting occupants' privacy. The result is excellent rearward visibility for the driver, with a high level of privacy for the rear-seat passengers.
Free-flowing, aerodynamic design capitalises on the new platform's unique qualities
It is no coincidence that the exterior design's key features-the front and rear wings, the front pillars, the tapered rear cabin-also contribute to outstanding aerodynamic performance. Superb aerodynamics are built into the free-flowing, one-motion form. And because there is no engine-and therefore no low-hanging exhaust system-the car's underbody is flatter, reducing drag.
Lightweight aerodynamic wheels
Ultra-lightweight forged-aluminium 5-spoke wheels have fin-shaped plastic fairings to suppress air turbulence, reducing weight and improving aerodynamics while adding a sporty touch.

A unique new finish highlights the body's complex surfaces and contours
The star garnet colour of the brilliant finish sets the Honda FCX Clarity's one-motion body apart. The extraordinary depth and quality of the coating provides a deep, expressive lustre that changes character depending on the play of light and shadow across its surface. This is a premium vehicle inside and out.
A comfortable, spacious, futuristic environment
Honda designers aimed to take maximum advantage of the space, creating a comfort zone with a futuristic feel. The central tunnel formed by the FC Stack neatly divides the left and right front spaces. The door linings help create an inclusive feel that sets apart the personal space of four independent seats within the spacious cabin. The floating instrument panel gives the cockpit a next-generation feel and provides the driver with new levels of functionality and visibility. The warm earth-tone colours are intended to create a soothing, natural feel.
Personal spaces that submerge occupants in comfort
Four distinct spaces have been created within the luxurious interior. The doors feature bold concave lines that accentuate the sense of roominess and create relaxing, personal spaces.

A floating, layered instrument panel for an advanced feel
Front pillars have been extended forward, while maintaining generous headroom proportions, to create a sense of space. The instrument panel is set off as a unified mass unconnected to the door line, making it appear to levitate. Bright colouring in the padding accentuates the airy, spacious feel.
An advanced cockpit for a futuristic experience
Naturally, because it's a Honda, the FCX Clarity is fun and easy to drive. The new fuel cell multi-functional display in the cockpit, for example, features three-dimensional displays of hydrogen consumption, battery levels, motor output and other key information. The speedometer is positioned directly above the display to minimise eye movement. A compact electronic shifter that leverages the latest in drive-by-wire technology has been moulded into the dial visors. Other design touches enhance the futuristic feel, like the start switch beside the centre console that activates the fuel cell stack.
Fuel cell performance meters
The luminescent three-dimensional meters recessed into the instrument panel display all key driving information. A centrally located ball-shaped H2 meter keeps track of hydrogen consumption. The vehicle's dials work together to provide an effective interface, providing the data output the driver needs.
The H2 ball-shaped hydrogen consumption gauge changes colour and size to reflect hydrogen consumption as driving conditions change. During high consumption, the ball becomes large and amber-coloured. As consumption decreases, it shrinks and turns yellow, then blue. The hydrogen fuel and battery gauges are to the right of the H2 ball-shaped meter. The fuel cell stack output gauge and battery output/charge display are on the outer perimeter.

Luxury from the future
Silver accents and blue acrylic in the inner door handle and audio panel impart a futuristic look. High-quality materials like wood-grain appearance panelling in the doors and luminous black lacquer headrests combine with warm colours for a luxurious, space-age feel.
Honda Bio-Fabric, a new interior fabric made from plant material
To help move away from petroleum-based resins and other synthetic fibres toward plant-based fabrics, Honda created a new premium biofabric for vehicle interiors. Honda Bio-Fabric is a polyester material called poly (trimethylene terephthalate) (PTT), made by fermenting corn. Its texture and durability make it perfect for use in seat coverings, door linings, console trays and arm rests-any part of the vehicle where the occupants will appreciate its premium feel. Poly(lactic acid) (PLA) fibres made from corn and other plant biomass are used in roof linings, floor carpeting and boot linings. In fact, all interior fabric coverings in the Honda FCX Clarity are made of natural, plant-based materials.
Honda Bio-Fabric: outstanding elasticity and feel
The molecular structure of PTT fibre is finely kinked in an accordion-like structure, allowing it to stretch more readily than other fibres and return easily to its original shape, avoiding sagging. It also has a unique, silky feel not found in other coverings. That is why Honda Bio-Fabric is used on all surfaces that come into direct contact with the occupants.

The production process
The 1,3-propanediol, which forms the raw material for PTT fibres, is normally produced by chemosynthesis. In contrast, Honda Bio-Fabric is made from corn, using a bio-tech fermentation method. It is combined with terephthalic acid, a petroleum extract, to create PTT resin, which in turn is spun, made into fibres, dyed and turned into Honda Bio-Fabric.
Reducing CO2 emissions
Based on the product life-cycle from procurement of raw materials to production, Honda Bio-Fabric provides a CO2 reduction of 30% per Honda FCX Clarity automobile, compared to conventional polyester made from petroleum products.
Plant-based resins are carbon neutral even when incinerated-the CO2 released during disposal is balanced by the CO2 absorbed during growth.
Front-row independent temperature controls
To meet the expectations of premium automobile customers, the Honda FCX Clarity is equipped with dual zone climate control to ensure optimal occupant comfort and more efficient use of energy.

Climate-controlled seats
Temperature control devices built right into the seat cushions and seatbacks use fans to draw in air, which a thermo-electric device then cools (by absorbing heat) or warms. The air is then blown through the seats to maintain the desired temperature while maintaining the breathability of the urethane, permeable foam and upholstery layers. Since this process provides heating and cooling in direct contact with the occupants, it is faster and more efficient than air conditioning alone. Individual controls are conveniently located on either side of the centre panel, providing an advanced touch of comfort for the luxury customer.
Ample storage space
The Honda FCX Clarity is designed to meet every storage need. There are drink holders for each occupant and many other easy-to-use storage areas. A boot space, separate under-boot storage well and other innovations add up to storage volume comparable to other mid-size sedans.
Smaller. Higher output. The fuel cell electric vehicle has evolved
Honda fuel cell electric vehicles continue to lead the industry. Recognising that the fuel cell stack is the key to the fuel cell electric vehicle's evolution, Honda has continued to improve performance and packaging. In 2003 Honda unveiled the Honda FC Stack, capable of sub-zero start-up and boasting outstanding production feasibility. Its design, featuring stamped metal separators and an aromatic electrolytic membrane, revolutionised the fuel cell. Next, Honda took up the challenge of structural innovation-creating the V Flow FC Stack with an original cell structure that delivers decreased weight, improved performance and even more compact design. The V Flow FC platform is the next generation in package design. It makes compelling styling and packaging feasible in a fuel cell electric vehicle for the first time. It is the breakthrough in stack technology that gives the Honda FCX Clarity its elegant design.

The new V Flow FC Stack: high output in a lightweight, compact design
The V Flow FC Stack features an entirely new cell structure that achieves a higher output of 100 kW, smaller size and lower weight, with a 50% improvement in output density by volume, and a 67% increase in output density by mass, compared to the 2006 Honda FCX Concept.
Layers of cells producing lots of energy
The Honda V Flow FC Stack uses a proton exchange membrane fuel cell (PEMFC) electrical generation system that directly converts chemical energy produced in hydrogen-oxygen reactions into electrical energy.
The extremely thin proton exchange membrane (electrolytic membrane) is sandwiched between pairs of electrode layers and diffusion layers (the hydrogen and oxygen electrodes) to form a membrane electrode assembly (MEA). The MEA is enclosed between two separators to form a cell-a single electrical generation unit. Several hundred cells are stacked together to form a fuel cell stack. As with batteries, these individual cells are connected in a series to produce a high voltage.
How electricity is generated
  • Hydrogen gas is passed over the hydrogen electrode. Each hydrogen atom is converted into a hydrogen ion in a catalytic reaction with the platinum in the electrode, releasing an electron.
  • Having given up its electron, the hydrogen ion passes through the electrolytic membrane, where it joins with oxygen from the oxygen electrode and an electron arriving via an external circuit.
  • The released electrons create a flow of direct current in the external circuit. The reaction at the oxygen electrode produces water as a by-product.
  • Because the electrolytic membrane must be kept continually damp, it is necessary to humidify the supply of hydrogen and oxygen. The water by-product is recycled for this purpose. Unneeded water and air are released as exhaust.

Electrical power on demand
The main components of the fuel cell electric vehicle's powerplant are the fuel cell stack, which generates electricity from hydrogen, the hydrogen tank, the lithium ion battery, the electric drive motor and the Power Drive Unit (PDU), which governs the flow of electricity. Because the vehicle is propelled by an electric motor, it delivers smooth, powerful acceleration and quiet operation, without the noise and vibration associated with an internal combustion engine. During start-up and acceleration-when a large amount of power is required-the electricity from the fuel cell stack to the drive motor is supplemented with electricity from the lithium ion battery to provide powerful performance. During deceleration, the drive motor works as a generator, converting kinetic energy into electricity, which is stored in the lithium ion battery along with any excess electricity produced by the fuel cells. When the vehicle is stationary, an idle stop system shuts down electrical generation in the fuel cell stack. Electricity from the lithium ion battery ensures continued operation of the air conditioner and other devices. The system optimally controls electrical power, resulting in highly efficient operation.
Another key advance: a vertical gas flow cell structure is combined with wave flow-channel separators for an even more compact, lightweight design
Until now, hydrogen and air flowed horizontally through the cells of Honda fuel cell stacks. The new V Flow FC Stack introduces a cell structure in which hydrogen and air flow vertically, and gravity is used to facilitate more efficient drainage of the water by-product from the electricity generating layer. The result is greater stability in power generation. The new structure also allows for a thinner flow channel and reduction in the stack's size and weight. And Honda's innovative and original wave flow-channel separators provide a more even and efficient supply of hydrogen, air and coolant to the electricity generating layer. The results are higher generating performance, optimal cooling characteristics and major reductions in size and weight. More compact, the new stack has far fewer parts and can fit into a single box. It is also much easier to manufacture.
V Flow cell structure for greater stability in electrical generation and a thinner design
In addition to allowing hydrogen and air to flow vertically, the V Flow design also means that water drainage is assisted by gravity. Water does not collect on the electrical generation layer, ensuring constant power generation. This also allows flow channel depth to be reduced by 17%-a major contributing factor in creating thinner cells and a more compact stack.

Wave flow-channel separators enable a smaller stack design
The fuel cell consists of a membrane electrode assembly (MEA)-an electrolytic membrane sandwiched between the pairs of electrode layers and diffusion layers forming the hydrogen and oxygen electrodes-which are in turn enclosed between separators containing flow channels for hydrogen, air and coolant. The V Flow FC Stack incorporates wave-shaped vertical flow channels for the hydrogen and air, with horizontal coolant flow channels weaving between them. The wave flow channels provide greater flow length per channel than straight channels, while the resulting turbulent flow within the channel promotes improved hydrogen and air distribution. As a result, the hydrogen and air are spread over the entire electrode layer, making more efficient use of the compact electricity generation layer and achieving approximately 10% higher generating performance than with straight flow channels. The horizontal coolant flow also ensures more even cooling over the entire electricity generation layer, allowing for a reduction in the number of cooling layers to half that of previous stacks. The previous stack had one cooling layer for each cell. The new stack needs only one cooling layer per two cells. This results in a 20% reduction in stack length and a 30% weight reduction-a major breakthrough in compact, lightweight stack design.
Improved heat mass allows start-up at -30˚C
Improved water drainage due to the V Flow cell structure facilitates better output immediately after start-up. The reduced coolant volume and single-box design made possible by the wave flow-channel separators results in heat mass 40% lower than previous stacks. As a result, the amount of time required to achieve 50% output after start-up at -20˚C is only one-quarter that of the previous stack. Start-up is now possible at temperatures as low as -30˚C.

Distributing the powerplant redefines the basic configuration of the automobile
The most distinctive feature of the fuel cell electric vehicle-other than the fuel cell itself-is the layout flexibility made possible by the fact that the powerplant and drive train can be distributed throughout the vehicle. In order to take full advantage of this feature, each component in the powerplant must be made extremely compact. To this end, each part of the fuel cell stack-the drive motor and gearbox, the power drive unit, the lithium ion battery and even the hydrogen tank and radiators-have been made as compact and as efficient as possible. This creates maximum freedom to optimise the position of each part to achieve the spacious, full-cabin design unique to this new fuel cell electric vehicle. The end product is the embodiment of Honda's man maximum, machine minimum design philosophy-and the next generation in human-friendly automobiles.
The V Flow FC Stack is located inside the centre tunnel, and the lithium ion battery is placed under the rear seat. The result is a free-flowing, full-cabin design with a long wheelbase that provides the spacious and comfortable seating that customers expect in a luxury car.
  • The drive motor, gearbox and PDU are combined for major space savings in the drive train system. A more compact radiator unit contributes to the short-nose design.
  • Reducing the number of parts in the hydrogen tank and modifying its shape result in a more efficient use of space, creating ample room in the rear seating and trunk areas. Improvements both to the hydrogen tank and the FC stack layout result in a low floor and low overall height-the car's packaging is attractive and functional.
Vertical gas flow, with the cells of the fuel cell stack configured so that hydrogen and air flow from top to bottom
Vertebral layout, with the fuel cell box oriented longitudinally along the centre tunnel
Volume-efficient package and low-floor platform
The technology - a powerplant that is sure to spark a revolution in design, packaging and performance
In addition to making the fuel cell stack, drive motor and other individual components more compact, parts have been consolidated into modular units. The result is an amazingly compact and lightweight design-180 kg lighter and 45% smaller than the previous powerplant.

A significantly more compact, unified fuel cell system
The fuel cell stack is now contained in one box instead of two. This reduces the number of parts required to connect the stacks together and allows the hydrogen supply system, humidifier system and contactors to be combined into a single unit that is 65% smaller than the previous system. This makes it possible to locate the stack in the vehicle's centre tunnel rather than under the floor, achieving a low-floor, low-height body design.
Compact, high-efficiency lithium ion battery requires less space
The vehicle's auxiliary power source, the new lithium ion battery, delivers improved performance and energy recovery in a more lightweight, compact package. The new battery is 40% lighter and 50% smaller than the ultra-capacitor of the 2005 FCX, allowing it to be stowed under the rear seat. This gives the car more passenger space and a bigger trunk.
Three radiators integrated into one
Increased powerplant efficiency, vehicle weight reduction and improved aerodynamics have resulted in a major reduction in heat generation. The cooling air vent for the motor bay has been reconfigured and the cooling capacity of the radiators increased. These improvements made it possible to integrate the fuel cell radiator, the drive train radiator and the air conditioning condenser into a single three-layer unit. The new radiator unit requires 40% less space, contributing to the stylish short-nose design.

Unified coaxial drive motor/gearbox and PDU
An innovative configuration, with drive motor and gearbox oriented coaxially, achieves a 162 mm reduction in length as measured along the drive axis.
This coaxial motor/gearbox is further combined with the Power Drive Unit (PDU) in a unified configuration that saves another 240 mm in height. These innovations make possible the Honda FCX Clarity's stylish, short-nose design.
Integration of functions in hydrogen tank
This creates more space for the rear seats and boot. The shut-off valve, regulator, pressure sensor and other components in the refuelling and supply system were integrated into a single in-tank module, reducing the number of parts by 74%. Tank capacity is greater, installation space efficiency is 24% better, and vehicle range is increased.
A distinctive driving experience created by the high-output electric motor
Along with uncompromising performance, the electric motor- driven Honda FCX Clarity delivers a completely different driving sensation from a conventional vehicle powered by an internal combustion engine. There are no gear changes to interrupt power delivery and the torque characteristics are smooth, making acceleration seamless and robust. This is a key part of its distinctive, premium driving feel. There is none of the vibration that comes from reciprocating pistons. There is no combustion noise-just quiet, clean, vibration free performance.
Start-up and acceleration times are comparable to that of a 2.4-litre internal combustion engine vehicle of similar size.
The Honda FCX Clarity's high-efficiency powerplant and outstanding energy management result in an exceedingly high operating energy efficiency. Furthermore, vehicle weight reduction and superb aerodynamics contribute to an approximate 20% improvement in fuel economy. Hydrogen tank capacity has also been increased, extending vehicle range by 40%.
Higher output, high torque, higher rpms. Quieter operation in a more compact design
The new drive motor configuration was developed to deliver more powerful acceleration and a higher top speed, along with a quieter, more luxurious ride. The new rotor and stator feature a combined reluctance torque, low-loss magnetic circuit and full-range, full-digital vector control to achieve high efficiency and high output over a wide speed range.
The innovative shape and layout of the magnets in the rotor result in high-output, high-torque, high-rpm performance. These innovations deliver a maximum output of 100 kW along with impressive torque and power output density. At the same time, resonance points in the high-frequency range have been eliminated for quieter operation.
New rotor delivers high-output, high-torque, high-rpm performance
A newly designed rotor features an Interior Permanent Magnet (IPM) to lower inductance, improving reluctance torque for high-torque performance. The magnet's high-energy characteristics also contribute to high torque and a more compact design. These innovations result in 50% higher output density and 20% higher torque density. The number of poles has also been reduced and the magnet widened to better withstand stress, allowing the yoke to wrap around the outside of the IPM. A centre rib has been installed for greater rigidity. This more robust construction allows for operation at higher rpm.
New stator contributes to high torque and efficiency
The stator features a low iron-loss electrical steel sheet and higher density windings that decrease resistance and contribute to high torque and higher output.
Number of poles reduced to eliminate resonance points and produce quieter operation
The number of magnetic poles in the rotor has been reduced from 12 to 8, eliminating resonance points within the operating rpm range. The result is outstanding quietness and higher output.
Coaxial gearbox conveys motor output directly for a major improvement in compact design
The motor's rotor shaft features a hollow construction, with the driveshaft passing through its centre in a coaxial configuration. This arrangement, unique to electric vehicles, allows the motor and gearbox to be combined into a single, compact unit, while providing highly efficient transmission of the motor's high-output, high-rpm power to the driveshaft. Innovative bearing design and fewer rotor oil seals result in lower friction for higher transmission efficiency, creating driving performance with a more direct feel.
Shift-By-Wire for simpler and easier operation
The vehicle's fixed gear ratio allows for simple operation: there's an easy-to-use shift control for forward, reverse and park that has a light touch and a short stroke. The compact shift unit features electronic control, allowing the shift lever to be installed on the dashboard. The shifter, start switch and parking switch are all easy to operate. Other operating systems are also laid out in separate zones to improve ergonomics.
Power assist and efficient regeneration with an advanced lithium ion battery
The compact, high-output lithium ion battery assists the fuel cell in powering the vehicle. The advanced battery provides a powerful supplement to the fuel cell stack's output, powering the motor for torquey off-the-line acceleration. In addition to increasing the total energy capacity, the battery efficiently stores energy generated by the intelligent regenerative braking system, capturing 11% more kinetic energy than the ultra-capacitor used in the 2005 FCX. Some 57% of the energy of deceleration is regenerated with the new system.
As a result of increased energy storage capacity and a broader range of regeneration control, it has been possible to implement a system that regulates acceleration and reduces the need for pedal operation in downhill driving. Assessing incline and vehicle speed, the system regulates acceleration when the driver first releases the accelerator pedal, minimising the need for frequent braking. The system simultaneously adjusts the amount of regenerative braking to help maintain constant vehicle speed after brake pedal inputs. The function is similar to engine braking in a conventionally powered vehicle, but more intelligent, smoother and easier to use.
Superior chassis dynamics for greater comfort, safety and driving pleasure
Optimal geometry front and back, including carefully calibrated toe response to the suspension stroke and camber angle, maximise tyre contact with the road during cornering for highly responsive, stable handling. Optimisation of the anti-dive angle and control of vehicle behaviour during deceleration contribute to an even, comfortable ride.
The lowered front suspension adds to the visual impact of the short-nose design. In addition to the implementation of a 5-link double-wishbone rear suspension, forged aluminium lower arms, high-capacity trailing arm bushings and reduced unsprung weight smooth out bumps in the road.
Responsive electric power steering for a 5.4m turning radius and tight cornering
Along with a newly implemented brushless motor with increased output, the front double-wishbone suspension helps facilitate tight cornering and delivers a 5.4m turning radius-a very tight turning radius given the vehicle's long wheelbase. The low inertia of the motor and minimal friction of the suspension when turning contribute to smoother steering. And a tilt-and-telescopic steering wheel provides an optimal steering position for a wide range of drivers.
Vehicle Stability Assist (VSA) integrated with electric power steering (EPS) for enhanced handling
The Honda FCX Clarity features an integrated braking, traction control and electric-controlled steering system that works in concert to help the driver maintain control of the vehicle in emergency manoeuvres and in varying road conditions. Working in conjunction with the vehicle's anti-lock brakes, Traction Control System (TCS) with slideslip control and Vehicle Stability Assist (VSA), the Electric Power Steering (EPS) enhances steering force for even better handling.
  • In controlling understeer, EPS provides supplementary steering force to prevent the steering wheel from being turned too far as motor torque is reduced and braking force is applied to the inner rear wheel by the VSA.
  • In controlling oversteer, the EPS provides steering force to help the driver counter the spin-generating moment as braking is applied to the outer front wheel to stabilise the vehicle.
  • When road conditions under the left and right tyres are different, torque and steering force are supplemented to help the driver maintain stability.
Complementing the linear torque control of the drive motor, TCS provides enhanced grip and control in acceleration
Increased motor torque responsiveness during TCS operation has made a major contribution to suppressing excessive tyre slip. Improvements to the total system deliver even more precise torque transmission and improved grip for confident acceleration even on slippery surfaces, and improved control in acceleration.
Striving to protect vehicle occupants
To enhance occupant protection in a collision, Honda has implemented innovative body technology with a network of frame structures in the front of the vehicle along with additional safety precautions appropriate to a fuel cell electric vehicle. The vehicle is designed to comply with all applicable federal motor vehicle safety standards.
The fuel cell system and hydrogen tank are protected from collisions at every angle.
A body designed for the V Flow platform with the rigidity to withstand collisions from all angles
Taking full advantage of the distributed powerplant layout, we have optimised the body structure. To help protect occupants in the event of frontal collisions, the straight front-side frame, upper frame and lower structural parts are designed to disperse and absorb impact energy. Energy is dispersed through the front pillars and floor. The lower structural members are designed to help prevent misalignment with the impact-absorbing parts of the other vehicle. Along with an energy-absorbing upper frame, they efficiently disperse energy over a wider area. This design is intended to both reduce the impact forces on Honda FCX Clarity occupants as well as on the other vehicle. The enhanced rigidity of the body also increases overall vehicle refinement.
The impact-absorbing front-end design helps enhance pedestrian protection
To help protect pedestrians, we have designed the Honda FCX Clarity's fenders, bonnet hinges, wiper pivots and other components to more efficiently absorb collision impact.

 
Design by Free WordPress Themes | Bloggerized by Lasantha - Premium Blogger Themes | Skull Belt Buckles