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

Ford Kuga Concept

| Saturday, November 24, 2007




FRANKFURT PREVIEW FOR NEW FORD KUGA CROSSOVER

COLOGNE, Germany, September 5, 2007 – Ford is releasing the first details of its new Kuga crossover at the 2007 Frankfurt Motor Show, where the car will be previewed ahead of production early in 2008. The Kuga will be previewed alongside the new Ford Verve Concept small car and other exciting new products yet to be revealed on the show's first press day, September 11th.

The All-New Ford Kuga in Brief

  • Stylish Ford Kuga crossover will be previewed at Frankfurt Motor Show in near production form ahead of sales launch in early 2008
  • Inspired by the iosis X Concept that was revealed at the 2006 Paris Motor Show
  • Kuga is the latest showcase for Ford's 'kinetic design'
  • Impressive on-road driving dynamics with substantial off-road ability
  • Model range features 'intelligent' 4WD and FWD systems
  • Powered by Ford's acclaimed 2.0-litre 136 PS Duratorq TDCi diesel engine
  • Benefits from strong Ford Focus lineage
  • First crossover designed and developed in-house by Ford of Europe
  • To be produced at Ford's Saarlouis plant in Germany

Ford of Europe's product portfolio is expanding again – and in another new direction. The new Ford Kuga is an exciting 4WD crossover that combines style with technology and promises impressive on-road dynamics coupled with substantial off-road ability.

The new Ford Kuga will go on sale throughout Europe during the first half of 2008. "When we unveiled the stunning iosis X Concept car at the 2006 Paris Motor Show I promised that in less than two years we would enter this segment with an all-new vehicle developed and built in-house," said John Fleming, President and CEO, Ford of Europe.

"In delivering that promise, the commitment we also gave in Paris two years ago to add new and exciting niche vehicles to a newly energised Ford of Europe portfolio was also kept," Fleming added.

"Kuga offers a rare blend of a wagon and SUV features together with coupé-like sporting qualities," said Stephen Odell, Vice President for Marketing, Sales and Service, Ford of Europe.

"A major element of our strategy to return the Ford of Europe business to sustained profitability is the introduction of exciting new products – like Kuga – that attract new customers to the brand," explained Odell. "The S-MAX proved to us that there is demand for vehicles which offer the customer universal usability for work, leisure and family roles and where "driving pleasure" is also very important."

Unmistakably a Ford
One of the challenges of the Kuga development team was to give the vehicle Ford's acknowledged driving quality while at the same time delivering substantial off-road ability.

For this reason, the Ford Kuga will be available with an intelligent four-wheel-drive system which contributes positively to normal road use and helps give the vehicle an almost sporty dynamic ability. The fact that the Kuga will also be available as a front-wheel-drive only version simply emphasises the crossover concept of the vehicle.
Kuga's powertrain will feature Ford's established and highly fuel efficient 2.0-litre, 136 PS Duratorq TDCi common-rail diesel engine mated to a Durashift 6-speed manual transmission. Further details of the Kuga powertrain will be released closer to launch in early 2008.

Kuga Design - Standing Out
"Our kinetic design form language is very flexible and is giving an exciting look to all our new vehicles," said Martin Smith, Executive Design Director, Ford of Europe. "The iosis X Concept demonstrated how kinetic design could be adapted to the C-sized crossover segment of the market. All the expressive design elements of iosis X are clearly visible in the production vehicle. The new Ford Kuga is a dramatic addition to the Ford portfolio which develops our brand significantly."

Kuga closely follows the proportions and basic dynamic forms of the iosis X. This relationship is enhanced by the paint finish in the same unique 'Ice White' body colour and the bold wheel arches are filled with the same alloy wheels, as seen on iosis X which will be available to customers as a 19-inch option. Strength and athleticism in the design are key attributes of Ford's 'kinetic design' philosophy. Kuga demonstrates this through its dynamic lines, full surfaces and muscular presence. This athletic form language is highlighted with the bold kinetic graphics such as the trapezoidal front grills, rising belt-line and kick-up of the rear window graphic and the dramatic swept back headlamp shapes.

For the production Ford Kuga the coupé-like roof profile of the iosis X Concept has been adjusted to a slightly higher silhouette offering comfortable accommodation for five people.

The luggage compartment is accessed via a split tailgate and this, together with the divided rear lights, ensures the maximum full load width is available for loading and unloading.

Finally, the rear end design of Kuga also incorporates the graphic elements of 'kinetic design' such as the high mounted tail lamps, facetted rear glass and sculptured rear bumper. The rear bumper neatly integrates the tailpipes into the contours of the diffuser.

Kuga Interior – Space and Comfort
The interior of the new Ford Kuga has a spacious feel – and not just because of the large panoramic glass roof fitted to the preview model and available as an option in production.

The clean, ergonomic design of the instrument panel and centre stack converge into a voluminous centre console for maximum accessible storage. These interior components contribute to a comfortable surrounding for the driver and front seat passenger. The high seat and shoulder line position of the doors offers the opportunity for maximum glazed areas to give a light and airy environment for passengers and provides the driver a commanding view of their surroundings.

The materials chosen for Kuga's interior also demonstrate the close links to the iosis X Concept. In Kuga we see once again technical materials, fine leathers and striking orange piping. The Ebony interior is set off by a centre console and details in the door which also feature the piano-white finish from iosis X. All these elements together show how Ford intends to enable Kuga customers in the future to personalise their vehicle.

A hint of the technology coming in Kuga is seen in the new Blaupunkt navigation system which incorporates a 7" colour display to also show images from a rear view camera incorporated into the tailgate. This new feature, to aid reversing manoeuvres, will find its way to the production version of the Kuga.

"We're very excited about Kuga, and believe that its blend of great looks, compact exterior dimensions, superb on-road driving quality, spacious and high quality interior and good off-road ability will allow it to stand out from the crowd," said Fleming. "We can't wait to see it on and off road early next year"



Related entries:

Production Ford Kuga Spied
Geneva: 2008 Ford Kuga
Ford Kuga UK Pricing Announced



Logan Renault eco2 Concept Revealed

| Friday, November 23, 2007



Last May saw Renault launch the Renault eco appellation, a hallmark which underpins the firm's pledge to produce a range of vehicles that are both ecological and affordable. Today, Renault takes the wraps off Logan Renault eco2 Concept, the experimental car it will use to contest the forthcoming Michelin-organised Challenge Bibendum in Shanghai, China. In addition to epitomizing the economical motor car, Logan Renault eco2 Concept is ecological, too, and complies with all three of the criteria relating to production, use and recycling required to warrant the Renault eco2 label. And with a CO2 score of just 97g/km, Logan Renault eco2 is particularly efficient on the emissions front.

The Renault eco appellation is an eloquent illustration of Renault's commitment to the production of a range of vehicles that are both ecological and affordable; in other words, vehicles that offer measurable results throughout their lifecycle and which make advanced technologies available to the vast majority of motorists.

To qualify for the Renault eco appellation, vehicles must comply with three criteria:

  • they must be produced in an ISO 14001-certified factory,
  • they must emit less than 140g of CO2/km, or else run on biofuel,
  • they must be 95% end-of-life reusable, while at least five per cent of the plastics they contain must be sourced from recycling.

Today, 40% of the versions that make up the Renault range have already been awarded Renault eco status.

To participate in this year's Michelin-organised Challenge Bibendum (November 14-17), which takes place in Shanghai, China, Renault will be represented by the new Logan Renault eco Concept. In addition to this experimental vehicle's outstanding economical credentials, Logan Renault eco Concept is also ecological and complies with all three of the criteria required to qualify for the Renault eco label. To begin with, Logan Renault eco Concept was made in the Romanian factory of Pitesti which received ISO 14001 certification in 2005. Meanwhile, 8.3 per cent of the plastics it contains come from recycling and 95 per cent of its mass is reusable. Last but not least, a special effort has gone into achieving a level of CO2 emissions performance that takes it under the 100g/km threshold.

Logan Renault eco Concept is powered by a B30-compatible 1.5 dCi engine (63kW/85hp) and benefits from a long list of technical solutions and optimisations that all stand out as avenues of development for future Renault vehicles.

These solutions cover the following areas:

  • Powertrain: modified pistons and injection system for enhanced combustion, detail work on tolerances and lubrication to minimise friction, new gearbox ratios.
  • Aerodynamics: the combination of a VORTEX generator (a small, drag-reducing, roof-mounted feature), a flexible splitter under the front bumper, wheel fairings and a rear lip spoiler have enabled the Cd to be cut from the 0.36 of a standard Logan to 0.29.
  • Running gear: Logan Renault eco Concept is equipped with low rolling resistance Michelin Pure tyres (185/65 R15). The camber and toe settings, as well as the braking system, have also been optimised as part of the across-the-board bid to combat friction.

The work accomplished on these three fronts enables Logan Renault eco Concept to boast record low CO2 emissions of just 97g/km (NEDC combined cycle), equivalent to fuel consumption of 3.8 litres/100km.

The dashboard of Logan Renault eco Concept is also equipped with a gearshift indicator which permits the driver to make an active contribution to the optimization of fuel consumption and reduce CO2 emissions. By taking full advantage of this feature's benefits, it is possible to take Logan Renault eco Concept's CO2 emissions performance below its homologated score of 97g/km.

Logan Renault eco Concept reaffirms Renault's determination to demonstrate that ecology and affordability are perfectly compatible and asserts its conviction that the most effective environmentally-friendly techniques are those that are readily accessible to the vast majority of motorists.

Lotus Hot Wheels Concept: First Pictures

| Wednesday, November 21, 2007










As seen at SEMA

A few weeks back Hot wheels celebrated their 40th anniversary at the SEMA show in Sin City with a range of new scaled concept cars from several manufacturers. Lotus was asked as one of those manufacturers and they have finally come through with some high resolution images of their amazing 1:5 scaled concept. In the spring of 2008 a 1:64 model will be featured in the Hot Wheels line-up for all Lotus fans to own.

The Lotus Hot Wheels Concept comes from the same designers who are currently working on the new Lotus Project Eagle, which is scheduled to make its show debut as a concept at the 2008 London Motor Show in July and go into production later in the year.

Steven Crijns, Design Manager at Lotus Design and creator of this concept design explained; “Hot Wheels cars are barely 75mm long, so specific attention went to create a bold shape that would work well at this scale. The car needed to be recognisable as a Lotus without having to turn it over to look at the badge underneath, so I took elements from the Elise and Exige such as the headlight design, the Lotus ‘mouth’, the pronounced wheel arches and trademark bonnet graphics.”

Russell Carr, Head of Lotus Design said; “This was a dream job for the design team because, for many of us, when we were children, it was Hot Wheels that first ignited our passion for cars and design. The design offered unique challenges because it has to work as a toy and we therefore had to remember how specific views, features and tactile qualities of toy cars fascinated us as children.”

Dodge Zeo Hybrid Concept to Star at Detroit

| Tuesday, November 20, 2007



Dodge are to debut a sport wagon hybrid concept dubbed the 'Zeo' as part of Chrysler's 'clean-running' and 'excitingly-styled' concept vehicle trio set for Detroit in January. Starring alongside equally-green Chrysler and Jeep concept cars, the Zeo is a four-door four-seater 'wagon' - but in two-plus-two coupe guise.

Familiarity extends only to the Dodge grille and flared arches, with its albeit sport-designated 'wagon' label only adding to confusion. Described as a four-passenger four-door with a 2+2 arrangement, suicide rear doors perhaps similar to the gullwing doors of automotive past are a likely feature judging by these official sketches.

Advanced technology is used for ecological effect. A range of 250 miles is provided by the car's presumably plug-in lithium-ion battery pack, which powers the 250 kW electric motor. Acceleration is estimated to allow a 0-60 mph time of less than six seconds.

More information will follow prior to the concept car's Detroit Show debut in January so stay tuned. In the meantime, keep up to date with all things eco-friendly in our green category.



Related entries:

Chrysler ecoVoyager Hybrid Concept to Debut at Detroit Show
Jeep to Storm Detroit with Renegade Hybrid Concept


Jeep to Storm Detroit with Renegade Hybrid Concept

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Starring alongside what become the rather more conservative Chrysler and Dodge concept vehicles next to Jeep's Renegade Hybrid Vehicle at January's Detroit Auto Show is a concept car designed from the outset to turn around heads as much as global warming. This is a compact, sports concept employing weight-saving strategies and an array of drivetrain technologies to produce an eco-Jeep worthy of its nameplate.

Packing the combination of a lithium-ion battery pack, electric motors and a Bluetec diesel engine, the Jeep Renegade is a concept whose strength lies in numbers: namely the 110 mpg fuel consumption figure that Chrysler expects it to return. Four-wheel-drive capability is assisted through dual electric motors with an 85 kW total output which are each dedicated to an axle.

To aid achieving such impressive fuel economy, an aluminium frame reduces weight, while stylish but lightweight features such as a cut-down windshield, roll bar, openings in the door panels and a hose-out interior too aid both function and form.

Stay tuned for more information to follow shortly ahead of the concept's debut at Detroit early next year. Until then, stay in the know for all things eco-friendly on our green category page.


Related entries:

Chrysler ecoVoyager Hybrid Concept to Debut at Detroit Show
Dodge Zeo Hybrid Concept to Star at Detroit


Chrysler ecoVoyager Hybrid Concept

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As part of Chrysler's three-strong concept car offensive at the Detroit Auto Show next year will be this new ecoVoyager hybrid vehicle, touted much like its Jeep and Dodge show stand companions to fuse the economical and ecological advantages of an advanced 'clean-running drivetrain' and the appeal of a vehicle styled to excite.

Seating four in comfort, the ecoVoyager is powered by a new technology which has the environment at its heart. A hydrogen fuel cell generates electricity for the battery pack and 200 kW electric motor, which according to Chrysler will exclusively drive the vehicle for in excess of 300 miles. Powertrain components are stored underfloor. However, performance will not be sluggish, a 0-60 mph time of less than 8 seconds being expected.

Although longer than the present Voyager by some two inches, the single-box designed concept vehicle is both narrower and lower in height, which transfers to more swept and sporty styling cues. Among them is the return of Chrysler's central spine, a crease which spans from the rather subdued front to the dynamic rear end, where it effectively dictates the hatch and light cluster arrangement.



Related entries:

Jeep to Storm Detroit with Renegade Hybrid Concept
Dodge Zeo Hybrid Concept to Star at Detroit
Chrysler ecoVoyager Concept Debut at Detroit



Mitsubishi Concept-ZT

| Thursday, November 15, 2007






Characteristics

  • By combining a high-powered, fuel-efficient, 2.2-liter clean diesel engine and Twin Clutch SST, and using significant quantities of Green Plastic in the interior, a high level of running and environmental performance is achieved.

  • In addition to advanced active safety technology, Concept-ZT achieves a high level of passive safety. Features include pre-crash safety; a lane-drift warning system; driving assistance technology, including new all-around multi-monitors and a parking assistance system; and crashworthiness safety technology including a pop-up hood.

  • Moreover, equipped with the S-AWC system combining front E-LSD (Electric control - Limited Slip Differential), ABS and ASC, based on Mitsubishi Motors' 4WD electronic control system, the MITSUBISHI Concept-ZT is a premium sedan that possesses dramatically improved driving, environmental and safety performance.

Design
The basic exterior form, simple and flowing with a low centre of gravity, yields a sense of stability and sportiness fitting Mitsubishi Motors' premier sedan This base is combined with a powerful shoulder line, substantial side panels and projecting fenders. Sculptured headlights, grill and aluminium wheels proclaim quality and status created out of "Japanese" sensitivity — a sophisticated and adult sensibility.

In the interior, the goal was a level of "hospitality" that would resonate with all the senses of the occupants. Combinations of designs with clear contrasts — simple forms with overall continuity gently embrace passengers and precise, hard functional parts — express the melding of quality, comfort and the pleasure of driving. Meters and monitors are of clear materials, futuristically stacked, with the beauty of industrial art.

Minute quantities of a new reflective material add elegance to the body colour. In combination with decorative parts, including wheels and grill, a radiant presence is realized with a sense of quality and refinement, like jewelled layers of precious metals. Interior colours are a combination of grained black wood, metal and leather, making maximum use of materials expressing boldness, sophistication and grace.

Powertrain/S-AWC
The concept's powerplant is a newly developed 2.2-liter 4-cylinder DOHC, 16-valve with VD (Variable Diffuser)/VG (Variable Geometry) clean turbodiesel engine with common-rail direct fuel injection (piezoelectric injector) that delivers a maximum output of 140 kW and maximum torque of 400 Nm.

The power unit is mated to Mitsubishi's new Twin Clutch SST, which delivers superior power transmission efficiency in a powertrain that realizes smooth, responsive, effortless power and acceleration, whether on the highway or in urban areas, together with good fuel economy. The S-AWC system combines front E-LSD (Electric control - Limited Slip Differential), ABS and ASC with the 4WD electronic control system also used in Outlander and Delica D:5. This optimally controls driving force, traction and braking at all four wheels, and provides stable driving on various road surfaces under various conditions, realizing a pleasurable and safe driving experience.

Body Structure
As in the i MiEV SPORT, the aluminium space frame structure combines aluminium extrusion and aluminium die casting, not only realizing a body of great strength and rigidity, but contributing to weight reduction and crashworthiness. In addition, for the outer panels of hoods, fenders, doors and trunk lids, shock-resistant, recyclable resin is used, as seen on the front fender of the Delica D:5.


Safety Technology/Driving Assistance Technology

Pre-crash Safety System: Using millimetre-length radar waves, the system detects cars far ahead as well as obstacles in the adjacent lane. When it determines that objects near the car are too close and there is danger of a collision, it warns the driver to take action. If the system determines that the possibility of a collision is nevertheless quite high, it pretensions seat belts and activates crash-restraint seat cushions to increase passenger restraint, and initiates emergency braking to reduce the impact of an imminent collision.

Lane-Drift Warning System: The system consists of a front camera, steering angle sensor, speed sensor, yaw rate sensor and ECU. The front camera recognizes lane markings (white lines, etc.), and the system, based on information from the other sensors, calculates the possibility of the vehicle drifting out of its lane, warns the driver, and adds steering torque in the direction such that the car stays within the lane.
Pop-Up Hood: If the car should hit a pedestrian, the hood pops up before the person's head strikes the hood, acting as a buffer and minimizing injury to the head.

New All-Around Multi-Monitors: In addition to a nose-view camera and a rear-view camera, cameras with extremely wide-angle lenses are positioned at the left and right sides. Optical distortions of the images from the four cameras are corrected, and the information is converted into a display of the situation all around the car as seen from the top — thus enabling clear confirmation by the driver. The nose camera is also part of the proximity-detection function for approaching objects.

Parking Assistance System: A distance sensor, embedded in the bumper, assesses the space available for parking. If parking is possible, the system will automatically manoeuvre the wheels (steering) while all the driver must do is control braking.


Specifications


Overall length
4,950 [mm]
Overall width 1,820 [mm]
Overall height 1,440 [mm]
Wheelbase 2,815 [mm]
Track (F/R) 1,555/1,555 [mm]
Seating capacity 4
Engine Clean diesel engine
Max. output 140kW
Max. torque 400 Nm
Transmission Twin Clutch SST
Tires 255/35R20

VW Premieres Space Up! Concept

| Wednesday, November 14, 2007


The space up! is a small space wonder. On just 3.68 meters length and 1.63 meters width, it offers the space of a considerably larger vehicle. The clever space concept of the space up! is to a great extent attributable to its engine layout: The environmentally-friendly gasoline, diesel and electric powertrains of the future up! family are always located in the rear – just like on the Beetle and the Bulli (Microbus) of the past.

A brief comparison: The space up! is exactly 23 centimeters longer than the up! shown at the IAA in Frankfurt; accordingly, its wheelbase is also larger (2.56 meter). At 1.54 meter, the van exhibits a height gain of four centimeters.

In contrast to the two-door up!, the space up! has four doors. And in actuality there are even six. That is because the van concept car does not have a classic tailgate, but instead a two-part rear door. Hidden behind this door are 220 to 1,005 liters of cargo space, four seat positions that are multivariable in design, and an exceptionally innovative cockpit concept. Numerous functions are controlled via a touch­screen with 3D graphics and proximity sensors.

Exterior design

Volkswagen is introducing the space up! as the second model variant of the “New Small Family”. The up! concept car presented at the IAA in Germany and the space up! now being shown in Japan are unified by a common design philosophy. The cars are characterized by a simple, clear language of forms. The designers consciously omitted any superfluous gimmicks. Like the up!, the space up! is characterized by a completely new harmony between technical layout, on the one hand, and emotional design on the other.

Front end: Distinguishing the front end of the “New Small Family” are the headlamps that take an inward diagonal line, between them the horizontally integrated air inlets (minimized aperture optimizes aerodynamics), the VW logo arranged on the front hood (as the only exterior detail kept in chrome) and the smooth-surfaced bumper with a lower segment. An important new aspect when it comes to the headlamp design of the space up!. Here they extend far into the fender, and this also affects the side profile.

Side profile: On its sides, the concept car – like the “Bulli” in earlier days – exhibits a long extended window section and a clearly distinctive, powerful C-pillar whose form is typical of Volkswagen. The A-pillar is positioned far forward. The space between the A and C pillars is spanned by the line of butterfly doors with opposing hinges. Both the front and rear doors are opened by door handles at the height of the B pillars. Since they open in opposition, in the style of the legendary Samba bus, and extend across nearly the entire space between the wheel housings – i.e. the entire sill length – all four seating positions are exceptionally convenient to access. A key concept here is wheel housings: Hidden under them are the self-confident and large 18-inch wheels with size 165/50 tires. Distinctive in this area are the short front and rear overhangs. The front overhang, from the axle hub to the outer skin of the bumper measures just 53 centimeters; in the rear it is 59 centimeters. The result: Crisp proportions.

Rear end: Also unmistakable are the design features of the rear end. Take the example of the rear door: It fills out practically the entire car area above the bumper. Similar to the smaller up!, the door – split 1/3 to 2/3 here – consists of a transparent material. Integrated beneath it are the taillights. Fully opened, the door offers a cargo width of 101 centimeters. The bumper itself was designed to match its counterpart at the front end.

Thanks to the wide track width of 1.42 meters the outer edges of the wheels are in line with the wheel housings. The effect is that the entire vehicle width of 1.63 meters seems to consist of axles plus tires and wheels. Meanwhile, the only details that boldly jump outside of the vehicle width are the round-shaped outside mirrors, like the ones on the up!

Interior design

The space up! is a full-fledged four-seater. In the rear, a bench seat is implemented with two integrated child seats. To convert them from adult to child seats, the seating surfaces are simply folded over, and two shoulder supports are folded out on each side. Finished. But not only will children travel comfortably in a production version of the concept car. The reason: The cushions of the four seats – for driver, front and rear passengers – consist of an airflow foam that automatically adapts to individual anatomies. In addition, the seating position is pleasantly high, making it extremely comfortable.

With the exception of the driver’s seat, all seats can also be folded and removed. If the seats are “only” folded, this creates a level cargo area with a capacity of up to 1,005 liters. With four people on board, cargo capacity up to window level height is still 220 liters. Since the low-profile engine of the space up! is located in the rear, objects with a maximum length of 2.8 meters can be stowed in a pass-through to the front cargo space. Remember: The concept van is just 3.68 meters long and thereby 15 centimeters shorter than the Fox, which is the most compact Volkswagen today.

Intuitive interface

Since the car’s cockpit was conceived as a module to be applied across all models of the “New Small Family”, the cockpit unit was copied from the up! concept car presented in Frankfurt, with slight modifications. It is a cockpit with a great future. In detail, the space up! has two central displays: In the cockpit, an 8-inch monitor displays information such as vehicle speed, fuel level and range as well as momentary CO2 emissions. In the middle of the instruments a 7-inch monitor shows how future human-machine interfaces might look and operate. Here all conceivable functions are controlled via a touchscreen that – using proximity sensors – reacts to gestures as well, i.e. specific hand movements.


Menuing was retooled and reorganized so that people without computer science educations would be able to operate the system. The developers intentionally separated “display” and “control” levels from one another. Always shown on the screen is a control bar with standard functions such as climate control or audio volume control. Developers packaged functions of other higher-order systems – navigation, telephone, radio, Internet, images, films, etc. – on a display level that has been referred to internally as the “main menu carousel” – a type of virtual carousel. It consists of the icons of different system functions (telephone, navigation, etc.). When the user touches the “main menu carousel” it can be rotated by touchscreen. Visually, this control is just as spectacular as it is intuitive. When the desired function appears on the main menu carousel – such as the telephone – the user just needs to move his or her hand to the display to switch to the telephone menu thanks to proximity sensor technology. It was true on the up! and it also applies to the space up!: The new type of user control is fun, easy to understand in any cultural environment and very safe. That is precisely what is typical of Volkswagen. Toward the end of this decade, the first Volkswagen customers might be able to enjoy this new generation of intuitive controls aboard the New Small Family. The development of production models has already begun…’

Volkswagen Up! Concept Revealed

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There are cars that endure for all times. They are icons of their type, masterpieces of craftsmanship and technology; they put ideas into motion, make progress tangible and sometimes quite simply make everyday life better, more practical and enjoyable. Many of these cars carry the VW logo. “Bug, Beetle, New Beetle”, “T1, Bulli, Samba bus, California”, “Golf, GTI”. Now Volkswagen is presenting – as a world premiere at the International Motor Show (IAA) in Frankfurt – a concept car that once again has the right stuff needed to move more than just one generation. It is a small, pure and high-spirited Volkswagen that pays tribute to its environment. The overall concept is marked by an innovative, clear, intuitive functionality. The name of the concept car: up! – a positive name that is a synonym for departure, activity, dynamics and the future. “For Volkswagen”, says Dr. Ulrich Hackenberg, Board Member with Responsibility for Technical

Development, “the response of IAA visitors will be a decisive test to determine whether the concept has the same kind of potential
possessed by the Beetle at one time or by the Golf today.”

Concept

The up! is a city specialist, a car for four persons and all languages, for the job, the university, the drive to the beach and the excursion outside the city gates. A small car that shows a lot of size, because it offers more space than any other car of similar length (3.45 meters) and width (1.63 meters). Its engine – conceivable here are all facets of technology that can be sensibly applied – will run in the rear. And that changes everything: Space, mood and design.Walter de Silva, Chief Designer of the Volkswagen group, sums it up like this: “The up! is not a car whose form will become obsolete within a very brief period of time. It shines in its cleverness and yet is made with loving care. And so the up! is a clear and strong statement for future Volkswagen design.” Furthermore, the team of designers and engineers has envisioned the up! concept car as the first member of an entire model line; other facets are entirely conceivable.

Ralf-Gerhard Willner, Director of Concept Development, has final responsibility for the technical layout of the up! He and Walter de Silva had already achieved a new balance in the mutual interaction between form and function at Volkswagen before the start of the project. “Absolute harmony of the basic technological concept and the emotional aspects of the design”, note Willner and de Silva in unison, “can only be achieved in a hard clash of ideas between engineers and designers. That is the only way to produce icons.” That is precisely why the up! is not your run-of-the-mill, small, tightly packed car, but instead is a clever, innovative whole. Its form is pure. It just had to look like this, no other look would do. There is nothing superf luous, and its functionality – and so also its design – speak for themselves. Simultaneously – and this is typical of Volkswagen – uncompromisingly attention was given to refining every line and every surface until we had created a friendly and masterful car.

Exterior design

The fact that the engine of the up! runs in the rear has a decisive inf luence on its exterior design. That is because the up! has no classic radiator grille. It forges links to the Beetle. This fact alone gives it a great deal of independence. Dominant design characteristics are the headlamps that take an inward and diagonal line, between them the horizontally arranged air vents, the VW logo (as one of the few details kept in chrome), the tailgate that extends far forward and the smooth bumper with a circumferential black stripe as a detail of the “happy face” that is typical of Volkswagen.

In many areas, technology and design have melded into a vehicle architecture that is not only appealing, but is also very utilitarian. The rear end of the up! is a good example of this. The tailgate was produced using a transparent material. Under this gate developers also integrated the high layout of the taillights.

Another feature that is technically and visually new is the location of the VW logo in the tailgate; it is also located behind glass and
illuminates when the light is on. The rear bumper was designed to match the “happy face” in front.

The powerful appearance of the up!, despite all of its compactness, is emphasized by a very wide track width (1.42 meters) relative to vehicle width. The wheels are flush with the sporty outboard wheel arches and side skirts. The radial design of the wheels and surfaces extending right up to the edge of the rim make the 18-inch wheels appear significantly larger than they actually are.

The wheels that are arranged far outboard in the bumper areas reduce body overhangs to a minimum. All of these features are part of an unmistakable side profile with a very long roof arch as well as clear and large surfaces. Giving shape to its style here are the large doors and the lateral window surfaces, which incline sharply upward at the height of the rear wheel arch and thereby
help to form the very independent C-pillar design.

Interior design

Mounting the engine in the rear opened up entirely new interior concepts. Relative to its exterior size, the space offering is exceptionally forward-thinking. The same is true of its variability: Except for the driver’s seat, all other seats can be folded and removed. Since they are designed as light shells, they can be quickly stowed in one of the cargo areas – besides the front trunk there is also one in the rear – to free up space. Afterwards, the entire passenger compartment length can be utilized as a storage area for especially bulky objects.

To achieve the high level of seating comfort that is usual at Volkswagen, besides their ergonomic design, in the case of the up! this level of comfort is also attained by a simple yet very effective trick: Similar to a self-inf lating air mattress, air can be sucked out of the seat surfaces via a valve. This means that the seats can be adjusted 1:1 to the body anatomies of the occupants who have just taken a seat.

Intuitive controls

On its up! concept car, Volkswagen is presenting some completely new solutions when it comes to operator controls. Klaus Bischoff, Chief Designer for the Volkswagen Brand, comments on this: “Another reason the up! is so fascinating is because everything, every detail, was thought out anew. In the interior we have a touchscreen with new proximity sensor technology for controlling the navigation, radio, trip computer and climate control systems. It is operated absolutely intuitively. As a result, the most complicated functions can be controlled like child’s play.”

Opel Flextreme Concept

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  • Plug-in Electric Vehicle Features 55 Km of Emissions-Free Range
  • E-Flex architecture with diesel engine extends driving range
  • Dynamic, sporty, compact electro-monocab concept car
  • FlexDoors® and FlexLoad®: New for doors, tailgate and luggage solutions – and an extra mobility option

Opel’s Flextreme concept car, which makes its premiere at the International Motor Show (IAA) in Frankfurt (September 13 – 23, 2007), boasts the body of a dynamic monocab, as well as the com-pletely new environmentally friendly E-Flex electric propulsion concept and a host of innovative de-tails. Flextreme is part of GM’s ongoing commitment to develop vehicles that reduce CO2 emis-sions and the automobile’s dependency on petroleum. In contrast to conventional vehicles and hy-brids, GM’s E-Flex system uses an electric motor, powered by a lithium-ion battery, to propel the Opel Flextreme concept for up to
55 km of electric-drive-only range. A 1.3 turbo-diesel onboard engine generates additional electricity to replenish the battery and extend the vehicle’s driving range fully charged, the Flextreme’s 55-km all-electric driving range is enough for most daily commuters in Europe to travel without using any diesel fuel or emitting any CO2.

The Flextreme takes the new design language debuted in the GTC Coupé at the Geneva Motor Show several steps further. With the rear-hinged back doors (FlexDoor®) that enable comfortable access to the interior, a large transparent roof and two tailgate doors that open from the side and swing upwards (FlexLoad®), the concept car embodies Opel’s tradition of particularly flexible and practical body concepts with attractive designs. This also includes the FlexLoad’s additional under-floor luggage compartment the latest in a series of innovative Opel solutions such as the Zafira’s seating system (Flex7)

and the integrated rear carrier system FlexFix found in the Corsa and Antara. And the big surprise is the integration of two high-tech electric personal transporters, ingeniously packaged below the cargo floor. They can be used in areas that cars cannot enter, thereby adding an extra mobility op-tion. The electric scooters provide up to a 38 km (23 miles) of clean mobility.

For the IAA, FlexLoad® carries special cargo in tune with the Flextreme’s electric propulsion: elec-trically-powered Segway® Personal Transporters (PTs). These high-tech transportation devices (1) have been modified for their mobile garage. With a twist of the handlebar-mounted release, the handlebar telescopically retracts and rotates downwards for easy loading into the Flexload® com-partment. Once docked, the batteries of the Segways can be charged along with the Flextreme’s batteries.


Propulsion: Low-emission mobility with E-Flex technology

The Flextreme’s drivetrain is a good indication of what low-emission mobility could look like in the mid-term. It is based on General Motors’ electric vehicle architecture E-Flex and is always electri-cally powered. The energy source is a lithium-ion battery, and additional energy comes from a 1.3-liter CDTI engine as needed. This engine is not connected to the wheels; it is only on board to charge the batteries when they are empty and no plug-in facility is available, thereby extending the operating range. The concept car’s diesel engine features latest technology that helps to further re-duce exhaust and noise emissions. The cylinders’ pressure-based closed loop technology is used to control the combustion process. Based on the current European test cycle for plug-in vehicles, the Flextreme is expected to emit less than 40 g of C02 per km.(according to European test procedure ECE R101 for range extender vehicles).

Plug-in – full capacity after three hours of charging at 220 volts

The E-Flex strategy is based on combining various drivetrain systems in the same vehicle architec-ture, depending on what energy source is readily available in the driver’s area. The concept has al-ready been presented in two further versions: at the Detroit Motor Show in January 2007, it debuted with a 1.0-liter, three-cylinder turbo gasoline engine designed for operation with gasoline or E85 (a mixture of 85 percent ethanol and 15 percent gasoline). And at the Shanghai Motor Show in April 2007, GM presented the electric concept car with hydrogen fuel cell propulsion.


Exterior design: Dynamic design language in compact monocab form

The Flextreme body’s key characteristics highlight the new elements of Opel design language: more sculpted surfacing molding, clear style elements such as narrow,
boomerang-shaped lights and sloping swage line in the side graphics. The 4796 mm long Flextreme was also designed following the motto of technological efficiency: vehicle weight and aerodynamics are optimized by using advanced materials and simulation technology. The result is a wide range of innovative solutions.

The bottom edge of the windshield has been pulled far forward, so the hood with its characteristic crease is very short. The integrated power socket in the cowl panel allows the car to be charged at any mains supply.

A look at the front of the car quickly reveals that the front grill and rims are covered by lightweight transparent trim, which is made from polycarbonate to improve aerodynamics while maintaining vis-ual aesthetics. The same is true for the special light alloy wheels. Their look remains unchanged, yet disruptive air turbulence is avoided.

Like the wheel design, the large boomerang-like curved front light units are visually deceptive. The designers continue a theme which began with the GTC Concept that debuted at the Geneva Motor Show, and take it to a new level. The vertically oriented front lights slice up the front end in an un-usual manner. The boomerang shaped high tech LED headlamp unit houses lightweight crossbeam, fog lamps and air intake for brake cooling which are particularly small in comparison to current trends. The optical illusion continues with the tail lights: at first glance, the concept car appears to have none. The curved rear lights are completely integrated into the tailgates and hidden beneath glass.

Just like all the other windows and a large part of the roof, the windshield is made of especially light polycarbonate. The Flextreme’s panoramic windshield provides a light and spacious interior ambi-ence and stretches over most of the roof, which is reinforced by a spine-like composite structure that extends all the way to the rear floor.


Doors: Unconventional and practical

In keeping with the vehicle’s extraordinary features, access to the FlexLoad® luggage compartment is through two butterfly rear tailgate doors that individually swing open upwards along the central axis of the vehicle. The advantage is that the Flextreme’s trunk is accessible from the side when parked tightly against a wall or another vehicle.

Another key Flextreme innovation is the trademarked FlexDoors® driver and passenger doors: while the front doors open in the conventional manner, the rear doors are rear-hinged. And as there is no center roof pillar (B-pillar), opening both doors on one side creates a large opening for easy entry. The large side opening makes it much easier for parents to secure children in seats in the rear than is the case with conventional doors.


Interior: Futuristic and top technology

Honeycomb structures, which are characterized by low weight and high rigidity, are used exten-sively in the Flextreme’s interior. This functional, geometric structure can be found in the instrument panel’s lower portion, cabin floor, cargo floor and above the center tunnel where the lithium-ion bat-teries are located.

Innovative lightweight construction is used for the seats which are anchored to the car’s floor by a mono track rather than the usual two, creating more foot space in the rear. The seats have a light and elegant look thanks to refined upholstery, with some parts in fabric/mesh and corners made of especially soft material. The steering wheel hub also houses a high-tech feature: a full-size driver airbag that is packaged with a special vacuum technique that reduces its overall volume to the minimum.

Set directly under the windshield, the large panoramic display (size: 1.20 m x 0.10 m) in the interior is especially eye-catching. The display fields are configurable. They can show a complete all-around view of the car’s surroundings, for example, as instead of exterior mirrors the Flextreme has two side cameras, one front-facing and one rear-view camera. Alternatively the displays can also show information about the car, radio, phone, etc.


One touch is enough

A second display on the center console features touch-screen operation. At the top, the program-mable one-touch buttons are designed like computer shortcuts. They provide easy access to vari-ous intuitive menus, including air conditioning, communi¬cation/infotainment and navigation func-tions. The buttons can be freely programmed and adapted to new infotainment systems. Slightly further down is the Flextreme’s touch screen drive selector gate with three driving positions: D, P and R (drive, park and reverse). The gears can also be comfortably selected via touch screen con-trol.

A clever storage system at the front and back of the center tunnel offer brand-typical flexibility. Front and rear passengers can stow items such as mobile phones, MP3 players, iPods and PDAs in two drawers. The best part: the electrical devices are recharged in the drawers by induction and Bluetooth-capable systems can transmit their data to the onboard info-tainment system.

2018 Mazda 3 at LA Auto Show

| Tuesday, November 13, 2007


From lump of clay to life-size model

Last September Mazda started their search for the 2018 Mazda3 via a Facebook competition called the Mazda Design Challenge. Anyone could enter by submitting a 150-word description of their vision, a sketch was optional.

Mallory 'Car Girl' McMorrow, Industrial Design major at Notre Dame, won by a landslide and Mazda designer Jacques Flynn helped produce an early design sketch, “Jacques took everything I said and sketched, and put my thoughts and feelings on paper,” said McMorrow. In her own words 'I want a car with the body and soul of a sports car, but a car that knows that sometimes I want to bring my friends, my things, or my dog.'

Best part of the competition will be that Mazda designers will make a life-size model of the 2018 Mazda3 live at the LA International Auto Show!

“Now the hard part comes – to see if we can actually build a full concept car on the show stand in ten days and in full-view of show goers.” said Franz von Holzhausen, director of design at Mazda. The final unveiling will take place at 3 PM Nov 24.

It’s neither a commuter vehicle nor boring sedan. It is also not an undersized sports coupe or awkward, disproportionate hatchback. At the moment, the 2018 MAZDA3 is nothing more than a lump of clay on stage at the Mazda booth at the 2007 Greater Los Angeles Auto Show – and the vision of Mallory McMorrow of South Bend, Ind., the winner of the Mazda Design Challenge. By the time the auto show comes to a close, an exciting, life-size model will be unveiled for all eyes to see – and a talented woman will be one step closer to fulfilling her automotive design career dream.

A landslide victory, McMorrow’s entry was voted number one by Facebook members, as part of the first-ever program between Mazda North American Operations (MNAO) and the social networking site. To enter, contestants submitted a 150-word description of their vision of the 2018 MAZDA3 and an optional sketch drawing.

After weeks of voting – first by Mazda designers, then Facebook members – McMorrow was selected as a finalist, at which time she was paired with Mazda designer Jacques Flynn who helped bring her design to life on paper. “Jacques took everything I said and sketched, and put my thoughts and feelings on paper,” said McMorrow. “I was thrilled when I opened up the images of the final renderings. I’m proud to say that the end design was still definitely my car and I can’t wait to see it come to fruition on the show floor.”

Today McMorrow will begin working one-on-one with Franz von Holzhausen, director of design, MNAO, and his team to bring her concept to life, live from the Mazda booth at the Greater Los Angeles Auto Show. A formal press conference will be held at 12:50 p.m. Thursday, Nov. 15, at the Mazda booth.

“The Mazda Design Challenge brought in a flood of cool, unique design ideas. The winning design concept is a fresh new way to look at the design of a vehicle,” said von Holzhausen. “This competition was a tremendous success, and the entire process was really beneficial to my team and me to understand what design means to our target buyers. Now the hard part comes – to see if we can actually build a full concept car on the show stand in ten days and in full-view of show goers.”

Auto show attendees can watch von Holzhausen and his team in action from 12 noon to 8:00 p.m. daily, as they mold, carve and smooth the would-be 2018 MAZDA3. The final clay sculpture of the concept will be unveiled at 3 p.m., Saturday, Nov. 24.

Mallory McMorrow – “Car Girl” by design

An Industrial Design major at the University of Notre Dame, McMorrow, 21, of Whitehouse, NJ, first heard of the Mazda Design Challenge from her professor, Paul Down. Dubbed “the car girl” by her classmates in the Industrial Design department, McMorrow, who discovered her love for cars at a young age, jumped at the chance to enter.

With a background in graphic and industrial design, most of McMorrow’s design experience to date has focused primarily on product design, including automotive cleaning and car products. “All throughout college, I’ve heard nothing but how hard it will be to get into the auto design world, how I should keep my options open, and even how I should ‘think about interiors (because) …women work on interiors,” said McMorrow. “Now, thanks to this contest, I have a completely refreshed feeling about pursuing a career in cars.”

Mallory’s 2018 MAZDA3– In her own words

“A decade from now, I want a car that doesn’t believe in falling into a category. A car that makes sure sedan and hatchback are no longer four letter words. A chassis made to handle every s curve that comes its way. Fast. I want a car with the body and soul of a sports car, but a car that knows that sometimes I want to bring my friends, my things, or my dog. I want a car that has a sunroof that’s actually a sunroof, not a sun-one-quarter roof. I want a car that causes heads to turn – even before the first rev of the engine. I want a car that went from concept to showroom without meeting muted for the masses – unapologetically. I want a MAZDA3 that gets me – the everyday sports car, the 5-door that makes me forget I own a 5-door.”

In addition to McMorrow, finalists in the Mazda Design Challenge included Christopher Chung, Silver Spring, Md.; Preston Gilliam, East Bend, N.C.; Andrew Kinomoto, Bothell, Wash.; and Danny Song, San Mateo, Calif.

Kumho Epoch Concept

| Tuesday, November 6, 2007



Forward thinking tyre manufacturer Kumho is paving the way for the world’s first truly eco-friendly racing car. Inspired by the company’s success in this year’s Le Mans 24 hour race, it decided to employ its unique conceptual abilities to show exactly what an environmentally friendly Le Mans car of the future could look like. The result is the Epoch!

Epoch by name and nature, Kumho’s revolutionary single-seater simply bristles with futuristic technology and green credentials. Its chassis is grown from bamboo, thereby providing an immediate carbon offset, while its lightweight body panels are formed from recycled tyre tread rubber.

Power comes from Maglev (Magnetic Levitation) units integral to the four-wheel hubs. Proven in the railway industry, this advanced electromagnetic technology has the advantage of zero friction as well as maximum torque at zero rpm.

As you’d expect from one of the world’s leading tyre manufacturers, the Epoch also boasts revolutionary tyre technology. Known as EAP (Electro Active Polymer), it allows the tread and even the shape of the tyres to be fundamentally altered simply by passing an electric current through the rubber. This is achieved via the positioning of magnets on the hubs and within the wheel rims. It effectively allows the characteristics of the tyre to be altered at will, to suit different tastes and conditions.

Even the car’s interior benefits from an example of Kumho’s innovative tyre technology, being clad with the type of scented ‘aroma’ rubber already available for the tyres of various luxury saloons and compact SUVs.

Epoch is the work of Kumho’s in-house designer, Rob Dolton. The only qualified vehicle designer employed within the world’s tyre industry, he is retained by Kumho’s European Technical Centre in Birmingham specifically to explore future technologies for road and track vehicles, and the tyres they run on. A graduate of the internationally renowned Automotive Design Department of Coventry University, he worked for Fiat Advanced Design in Turin before joining Kumho in 2005.

Enthusing about his brainchild Rob Dolton said, “While delighted at winning the LMP2 class at Le Mans this year, we accept that environmental pressures will not allow motorsport to carry on in its current form indefinitely. However, rather than viewing it as an increasingly antisocial pastime, we regard it as a perfect platform for developing green technology solutions. Epoch is an example of just how exciting the future could be.”


Citroen C-Cactus Concept

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Citroën is unveiling C-Cactus at the 2007 Frankfurt Motor Show. This ingenious concept is a new take on vehicle design, centered on essential values. The Marque's ambitious aim is to market an ecological hatchback with cheerful, attractive styling, equipped with a hybrid HDi drivetrain and sold at the same price as an entry-level C4.

To square this complex equation, Citroën is exploring new forms of design. It has decided to abandon features that are not essential to comfort and to focus instead on technology, styling and equipment that are positive, ecological and valued by users.

  • Essential, intelligent and ecologically aware

C-Cactus is an ecological car. It includes a significant proportion of recycled or recyclable materials and, like the plant it is named after, it is low on consumption. Weighing just 1,306 kg and featuring a hybrid HDi drivetrain, C-Cactus consumes 3.4 l/100 km for CO2 emissions of 78 g/km.

At the same time, C-Cactus is no more expensive than a mid-range family car. Its low production cost can be attributed to the use of new materials and to a rational design process using a smaller number of parts. The cabin is made up of just over 200 parts, i.e. almost half the number used by a conventional hatchback of identical size.

  • An attractive and modern vehicle

C-Cactus is an essential car, with sharp styling and attractive features. Its curves give it a fun look and strong appeal, while the angles and rounded lines of the bodywork underline its dynamic character.

C-Cactus sets high standards of onboard comfort with a roomy interior that is worthy of a family car. It is 4.2 metres long and 1.8 metres wide with a wide range of equipment including air conditioning with automatic temperature control, a high-quality audio system, a panoramic glass sunroof, cruise control and a speed limiter.

Essential, intelligent and ecologically aware

The economic and ingenious solutions adopted for C-Cactus keep production costs down and make it possible to fit a diesel hybrid drivetrain, all for the price of an entry-level C4. To achieve this result, C-Cactus places the emphasis on equipment that is essential to passenger comfort. At the same time, it explores new design processes in order to show that economy and ecology need not be synonymous with a rough ride.

New Avenues in Design

C-Cactus is the result of an intelligent design process pursuing new objectives. By exploring new forms of expression and new technical solutions, Citroën's engineers cut the number of parts required to build the car.

To achieve this objective, the engineers:

  • simplified a number of parts and mechanisms to the extreme,

  • grouped several functions in a single part,

  • removed all parts that are non-essential to the running of the car or to the comfort and well-being of its occupants.

The dashboard has gone, and its usual functions are now grouped on the central console and the fixed hub of the steering wheel. The central console thus includes the active loudspeakers, gearbox controls and tactile screen giving access to the onboard computer, navigation system and air conditioning controls. The controls for the indicators, lights, wipers, horn and cruise control/speed limiter are on the fixed hub of the steering wheel, as are the tachometer and lights for the indicators, headlamps and warning signals.

Another example of simplification: the part used for the front bumper, which includes the headlamps and chevrons is the same as the part making up the lower part of the tailgate at the rear. This contributes to the assertive design of C-Cactus while bringing economies of scale in production.

This simplicity is also reflected in the design of the front end, which comprises just two parts: a fixed bonnet comprising the front wings, and a flap giving access to the vehicle maintenance functions (oil, windscreen washer, etc.).

Reflecting a similar approach, using the air conditioning makes it virtually unnecessary to open the windows. A simple sliding mechanism is therefore provided, since this is sufficient in normal use. Engineers were thus able to get rid of both the window frames and the opening mechanism.

At the same time, a number of monoblock units are used for C-Cactus to reduce the overall number of parts.

The door panels, for example, are made of two parts, compared with twelve in a conventional hatchback.

The seats also comprise two parts: a highly comfortable, moulded, coloured, integral-skin foam part for the seat, and a solid monoblock frame to hold the foam in place and fix the seat to the floor rails. The ergonomics are excellent and – here again – the number of components is limited.

Advanced ecological features

To achieve real environmental impact, Citroën's objective has always been to market technologies and vehicles that are affordable to the greatest number. The objective with C-Cactus is to go one step further, by bringing out a car whose hybrid HDi drivetrain makes it truly ecological car, but that can be sold at the same price as an entry-level family car.

With its diesel hybrid drivetrain combining a 70 bhp DIN HDi diesel engine with a particulate filter and an electric motor providing additional power of 30 bhp DIN, C Cactus consumes just 3.4l/100 km with CO2 emission levels of 78 g/km over a combined cycle. In urban use, ZEV (Zero Emission Vehicle) mode provides silent, all-electric operation. On journeys involving successive acceleration and deceleration, the hybrid system limits fuel consumption by using both types of energy.

Other points also help to make C-Cactus a car that respects the environment.

The solutions adopted for the design of C-Cactus also contribute to bringing down fuel consumption and CO2 emissions. Using fewer parts makes the vehicle 15% lighter than a C4 Hybride HDi for a total weight of 1,306 kg.

The tyre width has also been kept down (205/45 R21) on C-Cactus, which adds to environmental performance.

Fewer parts also means smaller quantities of raw materials. In additon, a significant part of the materials used are recycled or recyclable. The windscreen and windows, for example, are made of recyclable glass. The tyres are also recyclable, as is the crude steel used for the door panels. This metal is unpainted and unvarnished but has been treated for corrosion.

The protective mats are made of recycled leather, taken from leather cut-offs that cannot be used by conventional tanneries. Many parts are made of cork, a natural material made from the bark of oak trees. The felt used for the door panels and fascia stowage compartments is made from wool. This material uses no chemical additives and is both recyclable and biodegradable.

The top speed of C-Cactus has deliberately been capped at 150 kph. This choice not only contributes to the car's good environmental performance, it also reflects Citroën's efforts to develop a green vehicle illustrating a new approach to the car, in which the motorist is in harmony with his/her surrounding environment.

A modern car with appeal

Based on the bold but rational use of parts and materials, C-Cactus is an essential vehicle reflecting a new vision of the car focused on:

  • a new balance of priorities, and a design that pursues the essential without sacrificing comfort,

  • a design in which ecology and economy are synonymous not with dullness, but with expression and pleasure.

Through this attractive concept with its appealing offbeat styling, Citroën has developed a new take on the economical and ecological car. A vehicle at ease with its original and ingenious design. At the same time, this is a car that brings the occupants all the features essential for their comfort.

Looking for simplicity: intelligent, fun exterior design

C-Cactus has a unique personality: appealing, modern and offbeat, with its simple shapes and mix of round, curving lines. The original styling also reflects ingenious design choices. Throughout the design process, the focus was very much on simplicity. This led to the development of ingenious solutions that contribute to the attractive offbeat design of C-Cactus.

At the front, the headlamps of C-Cactus give the vehicle an appealing air with their rounded and slightly angular forms. They are underlined by two cylindrical air intakes cut out of the bumper, above an air intake grille of modern design which, while contributing to the vehicle's rounded forms, also adds a muscular energetic touch. The raised bonnet and two air intakes also contribute to the dynamic looks of C-Cactus.

The vehicle's rounded forms are reflected in its profile. The dynamic design lines are accentuated by the forward flowing roof line and the asymmetric doors made of crude steel that has been treated for corrosion.

The doors feature an original cut-out since the fixed windows remove a number of the constraints that usually apply to design. Shaped to provide easy access to the interior, they give C-Cactus a curving, sleekly muscled appearance. The use of crude steel treated for corrosion, but without paint or varnish, contributes to savings in production costs while giving a strong, contemporary look.

The high waistline and 21-inch wheels also underline the strong character of C-Cactus.

The wheels were the focus of particular attention. Large-diameter wheels and low-profile tyres have become key styling features in vehicles of strong, contemporary design.

Citroën worked with Michelin on the development of low-profile tyres with a large diameter and limited width. The low ground friction area limits fuel consumption and, at the same time, tyre production costs are kept under control since the manufacturing process requires only a small amount of rubber.

For new and even more original styling, these specially designed tyres feature a green pattern on a white background printed inside a wide groove spanning the entire tread.

The same styling codes can be seen at the rear, where a combination of curves and taut lines illustrate the car's dynamic and appealing personality. The chevrons identify this car as a Citroën. The name "Cactus" appears in relief on the bottom of the tailgate, in a young, smooth, modern printface.

The rear lights, which resemble the headlamps in shape, boast an innovative feature: cut-outs in the interior plastic that let the driver see through. This innovation considerably increases the driver's field of vision and may be particularly useful in manoeuvres, for example.

Fewer features for greater impact: a welcoming, attractive and cleverly designed interior

C-Cactus is also an original and ingenious car on the inside. The design cut-outs, choice of materials, patterns and colours give the cabin a minimalist, attractive and airy look.

The cabin materials reflect innovative choices. Their quality is immediately visible. Looking beyond their appearance, they are also economical and ecological. For example, cork is used for many decorative parts, as well as for the air vents and air conditioning panel. The floor features a pattern in recycled leather. The white lacquer finish of some parts and the visual effects created by the materials used contribute to the original design and perceived quality of the cabin.

Another key idea was to enhance the offbeat styling of C-Cactus by reducing the number of parts and the quantity of materials used for the decor.

Non-essential parts, such as the dashboard, are absent, while some of the parts that are usually hidden have been included in the decor. This is the case, for example, of the steering column, air conditioning ducts and the grid for fore-and-aft adjustment of the front seats. These features add a modern and original touch to the cabin. The refill for the scented air freshener is also visible. It contributes to the attractive appearance of the cabin, while enabling the driver to see how much is left.

The decor has not been put in. It has been created by removing material. This idea of decorating "in a vacuum" is reflected in the patterns present on the door panels and seat frames. The patterns cut-out in the door panels show the apple green felt inserted between panel and metal. The main role of this part is to soundproof the vehicle, but its colour and cut-outs make it an integral part of the décor.

The same flower, plant and butterfly patterns – symbolising the environment, purity and well-being – are also found on several other cabin features. They are cut out, for example, in the white lacquer seat frame. These cut-outs show the coloured foam used for the seat cushions and give it a decorative quality.

Pertinent choices for an easy and enjoyable ride

C-Cactus boasts advanced equipment, optimised on-board space and modular design at an affordable price. Passengers have all the comfort essential to their well-being.

First, the ignition key of C-Cactus is a portable MP3 player with a touch screen. When it is plugged into the fixed hub of the steering wheel, it is recognised by the vehicle which can then be started.

The fixed-hub steering wheel includes a wide variety of functions. In addition to the usual controls, it also includes the speedometer, which is of an unusual design. The figures, placed in relief around the hub, rotate according to speed and are positioned with respect to a fixed point.

A second touch screen on the central console includes a navigation system to guide the driver on the road. It also serves as an onboard computer. This equipment endows C-Cactus with high-tech advanced features while also keeping costs down, since functions are grouped together.

The central console features two powerful high-quality active loudspeakers that provide C-Cactus with an excellent sound system. Their ingenious layout limits both wiring and installation costs.

Generous interior space ensures passenger comfort. C-Cactus boasts the dimensions of a family car (4.2 metres long and 1.8 metres wide) with a generous and modular boot (between 500 and 1,100 litres).

The rear seat, placed on a rail, slides up against the front seats. The floor pan, which is integral with the rear bench, also slides forward to reveal a subfloor. This reveals a virtually flat surface area to load bulky objects.

Another ingenious feature is a clip-on bag on the passenger side. This replaces the glovebox and can be used to carry objects outside the car.

For comfort and styling, C-Cactus features a panoramic glass sunroof that lets the light flood into the cabin.

TECHNICAL CHARACTERISTICS

Dimensions

  • Length: 4,200 mm

  • Width: 1,800 mm

  • Height: 1,490 mm

  • Wheelbase: 2,800 mm

  • Gross vehicle weight (GVW): 1,306 kg (batteries included)

Performance and fuel consumption

  • Top speed: 150 kph

  • Combined consumption: 3.4 l/100 km

  • CO2 emissions: 78 g/km

Diesel hybrid drivetrain

  • 70 bhp HDi diesel engine with a DPFS and 5-speed automatic transmission

  • 30 bhp electric motor installed in the clutch housing

  • ZEV mode

Aerodynamics

  • Cd: 0,35

  • CdA: 0.8 m²

Running gear

  • C4 platform

Main equipment

  • Touch screen navigation system

  • Portable MP3 player with a touch screen playing the role of ignition key

  • Air conditioning with automatic temperature control

  • High-quality audio system

  • Speed limiter and cruise control

  • Electric handbrake




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