Showing posts with label Concept car. Show all posts
Showing posts with label Concept car. Show all posts

Paris Preview: 2010 Renault DeZir concept [Video]


Renault has released details on its upcoming concept vehicle called DeZir. The DeZir is the first major project under new design vice president Laurens van den Acker and according to Renault, it represents the vision of 'simple', 'sensuous' and 'warm.' From where we sit, the shape certainly fulfills the first two elements and the bright red finish is downright hot.

The new DeZir concept features a new front-end design that previews the new front-end identity of the next Renault models: the headlights take the form of backlit prisms, the perforated ’eyelids’ add to this high-tech feel and contribute to DeZir’s specific lighting signature; rear lighting is provided by an illuminated, seemingly floating strip and the Renault logo is highlighted by backlighting through the fins of the grille and consequently appears to hover in the middle of this space.

The car is powered by an 110 kW (150 PS) and 226 Nm (167 lb-ft) of torque producing mid-mounted electric motor fed by a vertically-placed 24 kWh lithium-ion battery behind the bench seat. The car is said to have a range of 160 km (100 miles).

The motor of the rear drive DeZir is mounted in a mid-rear position to optimize weight distribution. The DeZir's vertically mounted 24kWh lithium-ion battery pack is located behind the seat. Renault says the DeZir can shoot from 0 to 62 mph in 5 seconds flat onto a top speed of 112 mph. The 1830-pound car's range is pegged at 100 miles and charge times vary depending on connection.

The public will get its first opportunity to see DeZir at the 2010 Paris Motor Show this fall.


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Press Release

FROM DEZIR TO REALITY

Renault has provided a first glimpse of its latest concept car, DeZir, ahead of this year's Paris Motor Show. DeZir stands out as an illustration of the brand's commitment to more emotional styling.

DeZir's sensuous lines and bright red finish express passion. Powered by an electric motor, DeZir is proof that electric vehicles and a love of cars are by no means incompatible.

The DeZir project is the first to have been led by Laurens van den Acker and marks the start of a sequence of concept cars that will provide an insight into Renault Design's new vision for the future. It also lays the foundations for the styling cues of Renault's forthcoming vehicles.

The public will get its first opportunity to see DeZir at the 2010 Paris Motor Show.

DEZIR: THE FIRST EVIDENCE OF RENAULT DESIGN'S NEW VISION FOR THE FUTURE

Under the leadership of Laurens van den Acker, Renault's Design Department has taken its inspiration from the brand's new signature 'Drive the Change' and explores Renault's styling roots to express the company's powerful human dimension via a new strategy founded on the notion of the 'life cycle'. This vision also builds on the bonds that are gradually forged between the brand and its customers at watershed moments of their lives, such as when they fall inlove, begin to explore the world, start a family, begin work, take time out to play and gain wisdom.

This approach coincides with the introduction of a new Renault design language that takes its inspiration from the three keywords which communicate the brand's vision, namely 'simple', 'sensuous' and 'warm'.

In keeping with this strategy, Renault's concept cars will progressively express this vision, paving the way for a product plan based on a range of rational, user-friendly cars.

To implement this, Renault Design has revised its methodology, and a single team of designers will now be responsible for each new concept car and for the subsequent production model it previews.

FALLING IN LOVE

DeZir is the first project to be led by Laurens van den Acker and exemplifies the brand's new philosophy with regard to design. It also marks the implementation of the strategy based on the notion of a 'life cycle'. The first step involves falling in love, an experience that is perfectly illustrated by DeZir's powerful, sensuous styling and bright red finish; red being the colour associated with passion.

"DeZir is a statement of our new formal design language which conveys notions such as movement, sensuality and emotion through ideal proportions, in much the same way as an object whose forms have been honed by nature. The result is a warm, stimulating design that says 'Renault'," explains Axel Breun, Renault's Director of Concept Car and Show Car Design.

Fluidity was an overriding theme from the initial preliminary sketches, and was expressed by a blend of simple forms and generous volumes. "My early source of inspiration stemmed from the liquid sensation, wave-like movement and contrasts in light associated with certain rippled surfaces," observes Yann Jarsalle, who was in charge of DeZir's exterior styling. "By directly laying out volumes and not just joining together a number of surfaces by lines, I felt more in tune with the world of sculpture than with that of architecture."

The result is a two-seater coupé which is both sculptural in spirit yet perfectly harmonious.

DeZir's shape features prominent wheel arches that accommodate 21-inch wheels, the design of which took its inspiration from the notion of movement.

Meanwhile, the sides feature a combination of flush and recessed forms that play on contrasting light patterns.

Behind the beauty, an electric car

The 'Z' in the name DeZir is a direct reference to Renault's zero-emission Z.E. signature, and several features of its design are suggestive of two qualities readily associated with electric mobility, namely advanced technology and light weight. Indeed, the recessed, linear styling of the front air intake and the entire rear-end convey an impression of lightness in addition to efficiently channelling battery-cooling air from the front to the rear.

To provide rhythm and balance to the overall package, this smooth, fluid skin contrasts with the ripple effect seen on the aluminium side panels, roof and headlight 'eyelids'. The design of these features alludes to the ripples which can form when a breeze blows over water, while the geometric pattern adds an unmistakable high-tech feel. The prevailing bright red colour of the body interacts with the graphical forms of the cross-drilled aluminium side panels which equally exude a sense of light weight and technology.

The geometric forms of the glazed areas also contribute to DeZir's overall design and are reminiscent of a fighter-plane cockpit or certain endurance racing prototypes. The absence of a rear window is overcome by the fitment of two rear-facing cameras which provide the driver with a panoramic view of what is happening behind the car.

The creative thinking behind the design of the front end was aimed at recalling Renault's styling heritage, while at the same time paving the way for the design trends of the brand's forthcoming models.

DeZir's front end features a full-width air-intake which strikes out either side of a large, vertically-positioned Renault logo that proudly displays the car's brand pedigree. Meanwhile, the chrome finish of the lozenge contrasts with the dark aspect of the grille to express the statement still further. The air scoops situated at the outer extremities of the front air intake are a legacy of Renault's formal styling language and form an integral part of the air intake's design, as do the headlights which sit above these scoops.

The front-end design previews the new front-end identity that is poised to become a feature of all Renault models in the future.

The headlights take the form of backlit prisms, which make them a highly graphic feature. The perforated 'eyelids' add to this high-tech feel and contribute to DeZir's specific lighting signature. Rear lighting is provided by an illuminated, seemingly floating strip that extends across the full width of the car. The Renault logo is highlighted by backlighting through the fins of the grille and consequently appears to hover in the middle of this space.

The gull-wing doors are another feature that embody automotive passion and reveal a refined interior, while the fact that the left- and right-hand doors open in opposite directions symbolises a ying and yang-style amorous harmony.

The interior design also suggests lightness. "Love is a sentiment that lifts you; gives you wings," says Stéphane Maïore, who was in charge of DeZir's interior styling. "Inside DeZir, you feel like you're floating on a cloud," adds Stéphanie Petit, Colours and Materials Designer.

The forms are soft and light, while the predominant colour is white, although there are also echoes of the same passionate red used for the exterior. The materials employed for the interior, like the senses they awaken, are precious, with white leather upholstery and trimming for the seats, dashboard and floor, along with a red lacquered finish for the console and accessories.

The one-piece, two-seater front benchseat provides cocoon-like comfort. To emphasise the sensation of shared passion and lightness, it comprises a number of interlocking elements trimmed in white leather, with a quilted pattern on the passenger's side, and a contrasting uniform finish on the driver's side, as if to suggest an inexorable attraction between the two.

The embroidered pattern on the leather is based on a graphical representation of the Renault logo and is an example of refined of couture a la française. This technique also provides an indication of the forthcoming trend for future production models.

The interior styling takes its inspiration from the idea of an amorous encounter and is based on a coming together of opposites:

  • the cockpit-style driver's environment contrasts with the ethereal lightness of the dashboard and the feel of the white leather bench seat
  • the driver's door features a bright red lacquered finish, while the panel of the passenger-side door is trimmed in white leather
  • the dashboard, too, features contrasting finishes, with one part trimmed in white leather and another which exudes a more high-tech feel, with a rippled effect
  • the white benchseat seems to float on a red-hued bed of light which, once again, symbolises passion. This lighting gently pulses to a rhythm that suggests a beating heart

But couples also seek to protect one another, and the forms of the interior are suggestive of this notion of protection:

  • the centre console houses the transmission-mode selection lever
  • the housing of the transmission-mode selection lever reveals luminous petals which indicate the selected mode
  • the steering column is shrouded in a red housing that extends up to the steering wheel hub itself

AN ELECTRIC BEAUTY

DeZir is powered by an electric motor mounted in a mid-rear position to optimise weight distribution over the front and rear wheels. The vertically-mounted 24kWh lithium-ion battery is located behind the benchseat and provides the car with a range of 100 miles.

Batterycooling is ensured not only by the air channelled from the front to the back of the car, but also - and above all - by the flow of air that enters through the lateral scoops concealed behind the aluminium panels on either side of the body.

The basic motor is the same as the unit used for Renault's production electric cars, although an evolution has enabled its power and torque to be uprated to 110kW (150ch) and 226Nm respectively.

Three battery-charging methods can be employed:

  • a standard charge using a conventional household plug (fully charges the battery in eight hours)
  • a fast charge using a 400V three-phase current (charges the battery to 80 per cent of its capacity in 20 minutes)
  • a fast battery exchange thanks to Renault's Quick Drop technology

In order to optimise range and dynamic performance, Renault Design's technical teams have kept DeZir's weight to a minimum: its body is made from Kevlar, while its tubular steel frame is similar to that employed for the Mégane Trophy race car.

DeZir's suspension also shares certain features with that of Mégane Trophy - including a double wishbone arrangement - to deliver a particularly high standard of handling precision.

DeZir's aerodynamics have been carefully honed, too, thanks to full underbody fairing and a rear diffuser. The result of this work is a drag coefficient (Cd) of 0.25, as well as outstanding acceleration, with DeZir capable of accelerating from rest to 62mph in just five seconds.

DeZir's energy efficiency package also includes the recovery of deceleration energy. The technology it employs is based on the same principles as the KERS (Kinetic Energy Recovery System) seen in Formula 1. When the car decelerates, kinetic energy is recovered and stored in the battery. In the case of DeZir, this energy can then be employed by the driver to provide a temporary power boost at the moment he or she chooses, using a button located on the steering wheel.

Driving pleasure is further enhanced by the design of the driver interface. The dashboard visually mirrors the sensations felt at the wheel by means of a graphic display of data received from the accelerometer and speed sensors.

The central touchscreen display incorporates a smart navigation system that synchronises journey information with the driver's diary in order to optimise task management and itineraries. Software incorporated in the dashboard provides drivers with a real-time indication of their energy management ability via a fun interface that uses video-game style graphics.

A DeZir for music

Within the framework of the creation of an audio signature for the brand's upcoming electric vehicles, Renault has been working closely with the highly-regarded IRCAM (Institut de Recherche et Coordination Acoustique/Musique, founded by Pierre Boulez in 1969) to define the sound that best reflects DeZir's personality.

Dimensions - mm

Length 4,225
Width 1,986
Height 1,163
Height – with doors open 2,256
Width – with doors open 2,682
Ground clearance 110
Wheelbase 2,582
Front track 1,600
Rear track 1,705

Technical data

Motor Electric synchronous motor
Maximum power 110kW c/ 150hp
Maximum torque 226Nm
Top speed 112mph
0-62mph 5 seconds
Battery Lithium-ion (24 kW/h)
Range 100 miles
Transmission Rear wheel drive
Drive Electric with active differential
Chassis Tubular steel frame
Tyres 245/35 R 21
Brakes 356mm ventilated discs
Cd 0.25
Kerb weight 830kg

Partners

Body G Studio
Tyres Michelin
Acoustics IRCAM

Audi runs R8 e-Tron prototype at 24 Hours of Le Mans


Audi's been promoting the fact that an "e-tron" would lap Le Mans this week as part of a demonstration of alternative fuel vehicles shown at speed just before the start of the 24 Hours of Le Mans. Joining cars like the Porsche GT3 hybrid and natural gas powered Volkswagen Scirocco that both ran Nurburgring, the Audi e-tron turned out to be an outwardly normal Audi R8 painted in a matte medium grey with bright green decals. 

Its battery sits behind the passenger cabin to optimise its centre of gravity, thus achieving a 42:58 weight distribution. Four motors drive the front and rear axles and maximum power is quoted at 230 kW (308 bhp/ 313 PS), while peak torque is an astounding 4,500Nm (3,319 lb-ft). About 70 percent of power goes to the rear. Audi says the R8-based e-tron will accelerate from 0 - 100km/h in just 4.8 seconds.

A cable and plug allow the Audi R8 E-tron’s energy storage to be powered by your household current of 230 volts/16 amperes. Charging time is about 6-8 hours when the battery has been completely depleted and goes down to about 2.5 hours when high voltage is used.


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Press Release

Audi e-tron at 24 Hours of Le Mans

  • Technology platform opens the 24-hour race
  • Five-time Le Mans winner Frank Biela at the wheel of the Audi e-tron
  • Le Mans vers le futur shows Audi concept for an electric sports car

Audi presents an Audi e-tron technology platform based on the R8 at the most important sports car race of the year. Racing legend
Frank Biela drove the purely electric powered high-performance sports car during the Le Mans vers le futur, a demonstration run for electric vehicles, giving Audi fans at the 24 Hours of Le Mans a peek at the fascinating future sporty electric cars.

Not one, but four motors - two each on the front and rear axles - power the wheels of the Audi e-tron, making the test vehicle a true quattro. With 230 kW (313 hp) and 4,500 Nm (3,319 lb-ft) of torque, the two-seater accelerates from 0 to 100 km/h (62.14 mph) in 4.8 seconds.

The test vehicle wrapped in the skin of an R8 demonstrates that the Audi e-tron belongs in the major leagues of electric sports cars. The package does justice to all of the specific realities of an electric vehicle: The battery is located directly behind the passenger cabin for an optimal center of gravity and axle load distribution.

The requirement specification for the production concept goes far beyond battery technology and the replacement of a combustion engine with an electric drive system. The interaction of all components has a decisive influence on efficiency, range and practicality. With the technology platform shown at Le Mans, Audi is providing an insight into the development work.

Design and package
The caliber of the car is apparent to the fans in Le Mans at first glance: Based on the R8, this Audi e-tron has a wide, powerful road stance. The trapeze of the single-frame grille dominates the front end and is flanked by two large air intakes.

1.90 meters (6.23 ft) wide while only 4.43 meters (14.53 ft) long and 1.25 meters (4.1 ft) tall - those are the proportions of a supercar. The wheelbase of 2.65 meters (8.69 ft) leaves ample room between the axles for people and technology. The sporty proportions offer enough room in front of the rear axle for the battery unit and the power electronics.

The special package of the Audi e-tron technology platform provides a 42:58 weight distribution between the front and rear axles and therefore ensures perfect balance and driving dynamics.

Systematic lightweight construction is a crucial prerequisite for efficiency and range - and this is also the case for electric vehicles. The Audi development engineers therefore draw on a core competence of the company for the e-tron. The body structure is based on Audi Space Frame (ASF) technology.

Driving dynamics
The normal distribution of the tractive power is clearly biased toward the rear axle. Similar to with a mid-engine sports car, roughly 70 percent of the power goes the rear and 30 percent to the front. If an axle slips, this balance can be varied by means of the four centrally controlled electric motors. The electric vehicle from Audi thus enjoys all of the advantages of quattro technology.

Via the four individual motors, which are each connected directly to the respective wheel via a short shaft, the e-tron also controls the lateral dynamics. Similar to the sport differential in conventional quattro vehicles, these motors allow torque vectoring - the targeted acceleration of individual wheels and thus an active distribution of tractive power. This boosts driving dynamics while simultaneously enhancing driving safety. Understeer and oversteer can be corrected by not only targeted activation of the brakes, but also by precise increases in power lasting just a few milliseconds. The concept car remains extremely neutral even under great lateral acceleration and hustles through corners as if on the proverbial rails.

The chassis has triangular double wishbones at the front axle and a trapezoidal-link rear suspension made of forged aluminum components - a geometry that has proven in motorsports to be the optimal prerequisite for high agility, uncompromising precision and precisely defined self-steering behavior. A taut setup was chosen for the springs and shock absorbers, but still offers a high level of comfort.

The direct rack-and-pinion steering gives finely differentiated feedback. Its electromechanical steering boost varies with speed. Fittingly, the technology platform rolls on 19-inch wheels.

Energy supply
The energy storage unit is charged with household current (230 volts/16 amperes) via a cable and a plug. The socket is behind what used to be the fuel cap. With the battery fully discharged, charging time is between six and eight hours. High-voltage (400 volts, 63 amperes) reduces this to around 2.5 hours.

The battery isn't only charged when the car is stationary, but also while driving. They keyword here is recuperation. This form of energy recovery and return to the battery is already available today in a number of Audi production models. During braking, the alternator converts the kinetic energy into electrical energy, which it then feeds into the onboard electrical system.

Interior and control concept
The interior evokes a luxury-grade racing atmosphere. As in the R8, its distinguishing characteristic is the monoposto - a large arc that sweeps around the instruments. Unlike the production R8, however, the Audi e-tron has a graphic display for indicating the driving mode located between two round-dial instruments showing the recuperation and boost level.

Similar to the new A8, the driver of this high-performance sports car can select the various driving modes using a stalk that is based on shift-by-wire technology.



Volvo Concept Truck 2020


Swedish manufacturer Volvo Trucks recently unveiled the Volvo Concept Truck 2020 design concept, The Volvo Concept Truck 2020 displays a long distance vehicle, which can be combined in length, equipped with autopilot. The Volvo Concept Truck 2020 will be able to drive non-stop in nose-to-tail convoys that run at 90 km/h (56 mph) while the cars communicate with each other via a wireless connection.

Moving on to driver’s comfort, the driver’s seat looks more like a modern office chair with a thin ventilated mesh backrest. Behind the driver seat you will find a futon sofa which can be turned into a wide comfortable bed. The luxury experience is further complemented by the customizable lighting that can be changed as per in-cab tasks or resting. The driver may also control the privacy screening and blackout electronically.

Outside, the concept truck features LED headlamps and turn indicators that are integrated into the front of the vehicle. The rear-view mirrors have been replaced by cameras, while images are projected onto the inside of the windscreen.

The Concept Truck 2020 has rear-view cameras that project an image onto the inside of the windscreen and helps the driver to orientate better, LED headlamps and indicators, and collision protection panels on the truck's nose.


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Press Release

TRUCKS OF THE FUTURE; CLOSER TO REALITY THAN YOU THINK

Progress is getting ever faster. In just ten years' time trucks are going to be a lot different to those of today. At least that is according to Rikard Orell, Design Director at Volvo Truck Corporation and one of the brains behind Concept Truck 2020, the Volvo Truck Corporation's bold vision for the future.

Long distance haulage for the future: long combinations, controlled by autopilot, driven non-stop in nose-to-tail convoys on green super-motorways linking the continents.

This is the vision of the future that generated the ideas behind the Volvo Concept Truck 2020 design concept. But will it really look like this in just ten years?

"That is the whole point," says Rikard Orell Design Director at Volvo Trucks. "Progress is getting ever faster. Because of this our vision for the future is not that far away. Much of the technology in the Volvo Concept Truck 2020 is already available; other technology needs to be developed. One needs to dare to stride firmly into the debate, demonstrating what one can and will do. Just tinkering at the edges runs the risk of progress slipping away."

Safer and more efficient commercial transport

As road transport expands it must also become safer and more efficient. Volvo's design concept contains ideas about how that can be achieved. Some of these ideas can be integrated into production today, while others are there to arouse interest and start a discussion.

One of the more startling ideas is to link vehicles together wirelessly into long road-trains that rush across the continents at 90 km/h (56 mph).

"This will be possible when the transport sector's vision of green corridors becomes reality," says Rikard Orell. "Here heavy goods vehicles are separated from other traffic, driving in their own lanes, rather like a railway, but without the rails."

There are many advantages. Road safety increases, transport services require less space and wear and tear on the roads decreases. Fuel consumption and CO2 emissions drop thanks to reduced drag when a truck is in the slipstream of the vehicle in front. In addition the driver can rest behind the wheel while the truck effectively drives itself. If this is counted as idle time, transport times can be cut, deliveries will be made more quickly and drivers can get back to their friends and families earlier.

Spacious and airy driver environment

The driver is at the centre of Volvo's world. It goes without saying that a design concept from Volvo Trucks contains a great many ideas about the development of the driver environment. In the Volvo Concept Truck 2020 the driver's environment is spacious, airy and free of disruption.

"We have replaced the traditional dashboard with a thin film panel on which information is tailored to suit the driver," says Rikard Orell. "The panel is operated like a touchpad, just like an iPhone. We have saved a lot of space that way."

Another space-saving idea is the sleek driver's seat with its thin, ventilated mesh backrest, more like a modern office chair than a traditional driver's seat. Behind the driver is a futon sofa which folds out into a wide, comfortable bed in the evening.

The lighting in the cab is divided into zones customised for the driver's various in-cab tasks, or for resting. Around the driver are large areas of glass providing good visibility out of the vehicle and even into it. This benefits eye contact between the driver and other road users preventing accidents. Privacy screening and blackout in the evening are also controlled electronically.

Aerodynamic collision protection

The design team also aimed for a sleek look for the exterior, reducing the perception of the vehicle's size. The LED headlamps and indicators are integrated into the front of the vehicle. The rear-view mirrors have been replaced by cameras that project their images onto the inside of the windscreen.

The lower section of the front of the vehicle features integrated collision protection projecting forwards about half a metre. This ‘nose' is gentler on oncoming cars in the event of a head-on collision and has also been shown to improve the aerodynamics of the vehicle.

As Rikard Orell points out, "Because the nose is a safety function, our starting point has been that it does not count as part of the maximum permitted vehicle length, just as rear-view mirrors today are outside the maximum permitted width."

Some things you just do not change. The ‘Globetrotter' sign on the roof is still there, but has been redesigned so that it harmonises with the lines of the vehicle and reduces drag. The driver can also change the text on the sign from the instrument panel.

The rear end is the next stage

So work on the external design focuses largely on aerodynamics, but by how much is it really possible to reduce drag on a truck ?

"We have come so far with the front of the vehicle that further changes to the basic shape provide only marginal improvements," says Rikard Orell. "However, a lot will happen when we start work on the design of the rear end of the vehicle. There is a great deal of untapped aerodynamic potential there."


1970s Mercedes C111 show car Damaged During Attempted Theft


A rare 1970s-era Mercedes-Benz C111 was the target for some thieves as the car waited on a transport trailer for a Channel crossing on its way to the Mercedes-Benz World Brooklands. They tried to nick it off a lorry bringing it to England. Of course, they didn't make it as the car the car is a mock-up and has no engine.

According to reports from across The Pond, the truck transporting the vintage concept car from Germany to the UK was hijacked by criminals looking to make off with the C111. The attempt was thwarted, but though now repaired, significant damage was reportedly incurred to one of the showcar's gullwing doors and to the front fender.

The C111 was a concept car by Mercedes-Benz which came in various alternative power train iterations, for which it was intended, throughout the 60s and 70s. Besides being fitted with turbocharged petrol/gasoline engines, Mercedes tried diesel and rotary engine power plants on it too. A C112 version also followed, fitted with a 6.0 liter V12. No version ever made it to production.

via: WCF

1970s Mercedes C111 1970s Mercedes C111 1970s Mercedes C111 1970s Mercedes C111

Volkswagen Golf Blue-E-Motion Concept


Volkswagen has unveiled the Golf blue-e-motion concept car in a ceremonial presentation today for the German Chancellor Dr. Angela Merkel.

The Golf blue-e-motion concept car is powered by an electric motor integrated in the engine compartment in front that delivers a total of 113 HP. The car has an autonomy of 150 kilometers and can hit a top speed of 86 mph, while the sprint from 0 to 60 mph is made in 11.8 seconds. The concept car will be undergoing tests in all conceivable weather conditions next year with the use of 500 test cars.

That electric engine is able to develop a maximum power of 85 kW, that means 115 horsepower, but the maximum torques is bigger, of 270 Nm which is obtained almost instantaneously. The engine is powered by a package of litiu-ion batteries placed centrally under the back seat and in the trunk, like this it’s capacity goes from 350 liters to 237 liters. Power comes from a lithium-ion battery with a capacity of 26.5 kilowatt-hours.


Press Release

Initial Facts: Golf blue-e-motion - Presentation at Foundation Event
for a "National Platform for Electric Mobility"
  • Volkswagen Presents Golf blue-e-motion Concept to German Chancellor
  • Golf powered by zero-emissions electric motor to launch in 2013
  • Golf blue-e-motion with 150 km range will also satisfy driving needs
    of commuters

Wolfsburg / Berlin, 03 May 2010 - Today, German Chancellor Dr. Angela
Merkel will have a close look at a concept of the future Golf blue-e-motion
in Berlin. Volkswagen is forging new links to the era of electric mobility
with this pure electric drive version of the most successful European car
ever produced. In 2013, after the debut of the Up blue-e-motion (a new city
specialist), the Golf blue-e-motion and the technically closely-related
Jetta blue-e-motion will launch on the market. In the same timeframe, the
Lavida blue-e-motion will also launch in China. The stated objective:
Volkswagen wants to use bestsellers such as the Golf to take electric
vehicles out of their niche model status and to become the market leader for
a new type of sustainable mobility by 2018. This strategy coincides with
planning by the German federal government, which would like to see about one
million electric vehicles on the streets by 2020.

Prof. Dr. Martin Winterkorn, Chairman of the Board of Management of
Volkswagen AG: "Future electric cars give us enormous opportunities for
reshaping mobility to be even more sustainable. When it comes to the
environment, however, we must ensure that the energy used to operate these
electric cars is produced from renewable sources. Since automotive
manufacturers do not have any influence on the types of power plants that
are built, the federal government must ensure that eco-friendly energy
sources are utilised. Only then will we experience a genuine transition to a
new era."

In parallel with the electric vehicle offensive, Volkswagen is
accelerating the introduction of new hybrid models as well. The new Touareg
Hybrid is already on the market; in 2012 a hybrid version of the Jetta will
debut, then in 2013 the Golf Hybrid and Passat Hybrid will launch. Just as
methodically, Volkswagen will continue its development work on advanced and
extremely efficient petrol, diesel and natural gas engines (TDI, TSI,
EcoFuel), because it is an indisputable fact that a wide variety of drive
technologies will coexist far into the future. "This makes it all the more
important for the German federal government to proactively support the
introduction of new technologies. With regard to electric mobility, the
current temporary exemption of E-cars from taxes is inadequate," says Prof.
Dr. Winterkorn. The Volkswagen chief continues: "Starting in 2013 - the
launch year for many new electric vehicles - the purchase of cars with
zero-emissions drive systems should be promoted with a sustainability
incentive. France, for example, has already pledged a cash incentive of
several thousand Euros to buyers. We need to send such a signal in Germany
as well. Moreover, and this is no less important, the German federal
government must very quickly make provisions for broad coverage with a
network of recharging stations across the republic, so that the
infrastructure is available at the same time the electric car offensive is
launched. Each new recharging station will also reinforce the public's trust
in the everyday utility of electric vehicles. Both of these components -
state-funded incentives and infrastructure - are crucial and cannot endure
any delay."

Golf blue-e-motion concept car - highly anticipated

The Golf blue-e-motion concept being presented to German Chancellor
Angela Merkel will be powered by an electric motor integrated in the engine
compartment in front, and its power of 85 kW / 115 PS drives the car
silently. Like all electric motors, the motor used in the Golf also outputs
a very high maximum torque (270 Newton-meter) right from a stop. The result:
more fun in zero-emissions driving. The electricity for driving the electric
motor is stored in a lithium-ion battery with a capacity of 26.5
kilowatt-hours.

A driving range of up to 150 kilometres can be realised in the Golf
blue-e-motion; the specific range depends on driving style and factors such
as use of the air conditioning and heating system. This range meets the
needs of most German commuters: According to the German Federal Statistical
Office, 6 of every 10 people in the workforce commute by car - on average
45.8 percent drive less than 10 kilometres (one-way commute), another 28.1
percent between 10 and 25 kilometres and 16.2 percent over 25 kilometres.
The Golf blue-e-motion can also handle the driving ranges typically covered
by many service providers. In short-distance driving, the zero-emissions
Golf offers a sustainable solution to private users as well.

More noticeably than on today's modern petrol or diesel engines, the
maximum range of an electric car is severely reduced when its maximum power
is demanded frequently. However, the Golf blue-e-motion - with its top speed
of 140 km/h - provides ample power reserves so that less energy is consumed
while driving, and it can even coast or "sail". "Sailing" occurs whenever
the driver - adopting an anticipatory style of driving - releases the gas
pedal, or more apropos: the electric pedal. As in the drive system of the
Touareg Hybrid, which is being produced today, the motor is then is
disengaged from the drivetrain so that the car can coast with the least
possible drag. The Golf blue-e-motion even recovers kinetically generated
energy by battery regeneration in this mode of driving.

Adapted to the vehicle's architecture, the concept car's battery unit is
located in the bootspace (useful remaining cargo capacity: 237 litres),
under the rear bench seat and in the centre tunnel (between the front
seats). A separate air cooling system ensures a constant thermal environment
in the battery compartment.

As mentioned, all key primary and secondary drive components were
integrated in the engine compartment at the front of the vehicle. In coming
up with this design, developers applied experience they gained in numerous
design studies. As in the E-Up concept car, an integral form of electric
drive is used in the Golf blue-e-motion. Representing the core of the
integral drive are the electric motor together with a transmission and
differential. Energy management is handled by a high-voltage
pulse-controlled inverter, which - along with the 12 Volt electrical
system's DC/DC converter and charging module - is integrated in the compact
integral drive. The entire unit is relatively light and compact. The
five-door and five-seat Golf blue-e-motion, for example, weighs just 205
kilograms more than a comparable Golf BlueMotion TDI with DSG - despite the
fact that electric car batteries are known to be heavy and weigh 1,545
kilograms on the concept car.

Next year, Volkswagen will be testing the drivetrain and energy storage
modules of the future Golf blue-e-motion with a fleet of 500 test cars -
under all conceivable conditions. Essentially, the countdown to production
launch of the future Golf blue-e-motion has already begun. The future is
almost here, especially in Germany, because this is where one million
electric vehicles will be on the roads starting in 2020 - this goal was
resolved by the German federal government on August 2009 and is established
in the "National Development Plan for Electric Mobility." A long road lies
ahead of us until 2020, especially since battery costs certainly need to be
drastically reduced. However, another certainty is that a large number of
the one million electric vehicles of the year 2020 will wear the VW badge.

Golf blue-e-motion Concept Car – Technical Data
Dimensions
Length 4,199 mm
Width 1,786 mm
Height 1,480 mm
Wheelbase 2,575 mm
Drive System
Drive type Electric motor
Power (max. / continuous) 85 kW / 50 kW
Max. torque 270 Nm
Transmission / Tyres
Transmission EQ 210 (1-gear transmission)
Final drive type Front-wheel drive
Tyre size 205/55 R16
Driving Performance
0-100 km/h 11.8 s
Top speed 140 km/h
CO2 emissions with electricity generated from renewable sources Negligible


2010 Suzuki Concept Kizashi Turbo


Suzuki has premiered the 2010 Kizashi Turbo Concept on the 30th of April.

The concept was born out of the designs of Suzuki tuner Road Race Motorsports working with a pre-production Kizashi GTS. Road Race Motorsports added its own 16G turbocharger, high-flow intercooler, an extreme spray injector, a blow-off valve and a velocity air intake. All that takes the Kizashi up to a competitive 290 bhp (216 kW).

The power will be set to 216kW in a 2.4-litre 4-cylinder engine. The base power for the GTS is only 138kW, therefore the Road Race upgrade is quite hefty in the power department.

Other goodies include the custom fuel management, Road Race’s Sleeper blow-off valve, Velocity air intake and Extreme spray injector as wel as a custom crafted turbo manifold and a 38 mm wastegate supplied by Tial. With all these installed, the car carries now an impressive 290 hp, more than enough we’d say to deliver impressive performances via 19-inch Dunlop tires. Also, for better stability, a new set of Road Race sport springs were installed as well as a rear-mounted spoiler delivered by Delta Tech Engineering
Source: Suzuki


2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo 2010 Concept Kizashi Turbo



Press Release

SUZUKI'S CONCEPT TURBO KIZASHI ‘BLOWS' DOORS OFF MIDSIZE COMPETITION


Blower heightens the excitement with lowered, tuned Kizashi

BREA, Calif. (April 30, 2010) - After an impressive performance preview of Suzuki's 2010 Kizashi at last fall's Specialty Equipment Market Association (SEMA) show in Las Vegas, the heightened fun (on closed course, with professional driver) continues with the debut of Kizashi's concept turbocharged variant. As seen - beginning this month - with racer Tommy Kendall and his Speed Channel program "Test Drive," this newest Kizashi concept morphs the intended definition of Kizashi from the Japanese - "something great is coming" - into "what might be coming next?"

In production form, the all-new Kizashi delivers a premium package and experience without the premium price tag, providing a unique blend of dynamic performance attributes and features more appropriate to the near-luxury sport sedan segment. The performance experts at Road Race Motorsports build on those performance attributes and near-luxury features with a host of mods designed to heighten the excitement factor while lowering the Kizashi's lap times on any closed-course venue.

Road Race Motorsports, one of the chief suppliers of go-fast goods for Suzuki automotive enthusiasts, began the Suzuki turbo project with a pre-production Kizashi GTS. Boost is supplied to the stock heads and block by a 16G turbocharger, while temp is kept in check with Road Race Motorsports' own high flow intercooler. Other adds on the hardware menu include custom fuel management, Road Race's Sleeper blow-off valve, Velocity air intake and Extreme spray injector. The equal length turbo manifold is custom crafted, while the 38mm wastegate is supplied by Tial.

The enhanced power bumps the Kizashi's already impressive engine to 290 hp and is connected to the track pavement via 19-inch Dunlops. Those are kept connected to the course by Road Race's own sport springs, working in combination with Kizashi's ultra-rigid unibody and all-independent suspension. High-speed stability is enhanced with the addition of a rear-mounted spoiler supplied by Delta Tech Engineering. The end result on the track - with either Road Race founder Rob Tallini, Tommy Kendall or the Suzuki enthusiast behind the wheel - is the need for speed suddenly and fully satisfied.

Air dates for the newest edition of Speed Channel's "Test Drive" begin on April 30, 2010. For a complete schedule, visit the Speed Channel website.