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

Audi A3 e-tron Concept, 2013

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The 1.4 TFSI combustion engine is one of the most modern power units of Audi. Inside the engine compartment, looking in the direction of travel, it is positioned a few centimeters further to the right than usual, to create space for the high-voltage components. Its crankcase is made from diecast aluminum, weighing little more than 100 kg (220.46 lb).

The Audi A3 Sport back e-tron from Audi is a latest-generation plug-in-hybrid car. The premium compact vehicle will go on sale from 2014 and is a genuine Audi. It combines sporty power with impressive efficiency and abundant driving enjoyment with unrestricted everyday utility. The A3 Sportback e-tron offers 150 kW (204 hp) of system power and achieves average consumption of only 1.5 liters per 100 km (156.81 US mpg) of gasoline. In the electric mode its operating range is up to 50 kilometers (31.07 miles), with the TFSI engine adding a further 890 km (553.02 miles).

From 0 to 100 km/h (62.14 mph) in 7.6 seconds and a top speed of 222 km/h (137.94 mph) - the Audi A3 Sportback e-tron adds an extra highlight to the sporty character of the compact premium car line. In accordance with the ECE standard for plug-in hybrid vehicles, its average CO2 emissions are a mere 35 grams per km (56.33 g/mile) - equivalent to consumption of 1.5 liters of fuel per 100 km (156.81 US mpg).

The four-cylinder engine is state of the art in every respect - its low frictional losses, its turbocharger, its intercooler and its thermal management. One special feature is the way the exhaust manifold is integrated into the cylinder head. After a cold start, it brings the coolant swiftly up to operating temperature. At high loads the water jacket lowers the temperature of the exhaust gas.

Developing 110 kW (150 hp) and 250 Nm (184.39 lb-ft), the 1.4 TFSI is a powerful unit. It supplies peak torque across the entire speed range from 1,750 through 4,000 rpm, thus harmonizing excellently with the electric motor. The maximum of 330 Nm (243.40 lb-ft) is available virtually from the off, and is maintained constantly across a broad speed range up to about 2,200 rpm. Its maximum output is 75 kW. The system output of the A3 Sportback e-tron is 150 kW (204 hp), and system torque is 350 Nm (258.15 lb-ft). With the combination of electric motor and combustion engine, an overall operating range of up to 940 kilometers (584.09 miles) is possible. And its road performance is unwaveringly sporty: It takes a mere 4.9 seconds to sprint from 0 to 60 km/h (37.28 mph).

The electric motor is a permanently excited synchronous machine. It weighs 34 kilograms (74.96 lb) and is liquid-cooled via a cooling jacket in the stator. The electric motor is located between the engine's dual-mass flywheel and the newly developed separating clutch, the K0 clutch. When the TFSI starts, it is tow-started by the electric motor via the clutch. As soon as the former has achieved the same speed as the electric motor, the clutch is opened. This smooth, highly precise process takes place within half a second.

Together with the K0 separating clutch, the electric motor is integrated into a newly designed six-speed e-S tronic, which transfers the power to the front wheels. Like all Audi dual-clutch transmissions, it consists of two subsidiary transmissions that are served by the two multi-plate clutches K1 and K2. Gears are shifted by switching the clutches. This takes just a few hundredths of a second and happens without any noticeable interruption in propulsive power.

Depending on the level of charge, the voltage ranges between 280 and 390 volts. The battery consists of 96 prismatic cells arranged into eight modules of twelve cells each. Including the electronic components - the battery management controller and the battery junction box - the battery system weighs 125 kilograms (275.58 lb). Its housing is bolted to the vehicle floor at five points, and the lower shell is made from aluminum.

An elaborate liquid cooling system ensures that the battery is kept within a suitable temperature range during operation. Drivers of the Audi A3 e-tron will be able to start electrically in hot summer conditions and at sub-zero winter temperatures alike. Four cooling plates regulate the temperature of the high-voltage battery's eight modules. The cooling system represents a separate low-temperature circuit in the car and runs on a separate cooler housed in the engine compartment. If need be, it can be connected to the air conditioning system and even divided into two subsidiary circuits.

In the event of a crash sufficiently severe to trigger the belt tensioners or airbags, the entire system is disconnected from the power supply. The flat-shaped battery is installed under the rear bench seat - an area where the high-strength and ultra-high-strength steel components of the occupant cell form an especially strong structure. Its housing and interior structure are equally of a very sturdy design.

The 12-volt battery for the low-voltage consumers and the 40-liter (10.57 US gallons) fuel tank are located above the rear axle. Both components barely impinge on the trunk of the A3 Sportback e-tron - in the standard configuration it measures 280 liters (9.89 cubic ft) and 1,120 liters (39.55 cubic ft) with the rear seat backs down.

Audi supplies the A3 Sportback e-tron with a universal charging lead as standard. The customer can interchange the connecting plugs so that the lead can be used both with domestic power sockets and with industrial power sockets, for full charging performance. These connecting plugs are country-specific in design, so that the A3 Sportback e-tron can be recharged anywhere in the world.

For easy use at home, the charging lead can be clipped into a wall-mounted holder. Even this holder has an Audi design, and as well as being a convenient way to store and use the lead, it is lockable. The charging equipment is thus protected against theft even when kept outdoors.

The charging lead supplies the car with alternating current from the grid via the charging connection, which is in the Singleframe grille behind the fold-out four rings. As well as a status LED, the unit includes two pushbuttons allowing the user to choose between timer-controlled charging and immediate charging. In the car, the alternating current fed in by the charger is converted into direct current for the battery.

From an industrial power socket, it takes slightly more than two hours to charge the battery fully. From a normal domestic power socket in Europe, the charging process takes about three hours and 45 minutes. Audi is working intensively on a joint project with a supplier of renewable power, because electric driving only makes ecological sense if such power is available.

Another medium-term project of Audi is automatic charging without physical contacts, referred to as Audi wireless charging. Here the charging process involves an alternating magnetic field between the stationary charging pad on the ground and the mobile charging pad in the car, similar to the principle used by an electric toothbrush.

The power electronics, located in the engine compartment, then convert the stored direct current into three-phase current for the electric motor. It has six high-performance transistors for this task. The power electronics, which include a DC/DC converter for connecting up the vehicle's 12-volt electrical system, are compact and light in weight. They have a total volume of 8 liters (0.28 cubic ft) and weigh 10 kilograms (22.05 lb). Together with the charger, it is incorporated into the same cooling circuit as the traction battery.

There are yet more special components for electric driving. The air conditioning compressor has an electric drive integrated into the high-voltage network. A thermoelectric heating element and a gasoline-powered auxiliary heater round off the interior heating system.

The hybrid management is configured to function in harmony with the electric motor. Up to medium loads the electric motor, now functioning as alternator, largely handles retardation. The energy that it recovers is fed into the traction battery. The wheel brakes only become active if the driver presses the pedal more forcefully.

Braking recuperation is just one of several operating statuses of the Audi A3 Sportback e-tron. The car is almost always started electrically, even at very low temperatures, in extremely hot conditions or when battery charge is very low. The electric motor's high torque enables the sporty compact car to accelerate away powerfully. It goes from 0 to 60 km/h (37.28 mph) in 4.9 seconds - with quiet but forceful propulsion.

In the electric mode the Audi A3 Sportback e-tron can travel at up to 130 km/h (80.78 mph) - it could go faster, but that would not be efficient. When traveling at a constant 100 km/h (62.14 mph), generally only the electric motor is active provided there is sufficient energy in the battery. As soon as the driver steps hard on the accelerator, for instance to overtake, and causes the pedal to go beyond a certain resistance point, it prompts the TFSI to cut in via the K0 separating clutch. In the boost mode the Audi A3 Sportback e-tron accelerates with all of 350 Nm torque (258.15 lb-ft).

When the driver releases the accelerator at high speed, the hybrid management enters the gliding mode. Now both drives are entirely deactivated and are no longer developing braking torque. When stepping off the accelerator at medium and low speeds, the system recovers energy through coasting recuperation; braking recuperation then becomes active when the brake pedal is pressed, except if a full brake application is needed.

The driver has several ways of actively managing the vehicle's response. They can choose from three programs using a button in the driving area and the e-S tronic selector lever. The EV characteristic map gives priority to electric drive, whereas the Audi A3 Sportback e-tron behaves very sportily in the S program. The hybrid hold mode can be selected via a menu in the MMI. This mode preserves the electrical energy stored in the battery for later use. In addition, the driver can specify detailed settings in the Audi drive select control system. Different stages of coasting recuperation are permanently assigned to the individual Audi drive select modes. Within certain ranges, this enables the driver to influence how the battery is charged while on the move.

The Audi A3 Sportback e-tron displays supply precise information about the driveline status. The powermeter in the instrument cluster shows the system's overall output, as well as the status of the driveline and the battery charge. The monitor for the MMI navigation plus shows the energy flows in the hybrid system. In addition, the driver information system displays the operating ranges and consumption figures for electricity and gasoline.

Under the Audi connect umbrella Audi is currently developing an entire portfolio of innovative online services for the A3 Sportback e-tron. Drivers can use these to monitor and manage a wide range of functions via their iOS or android smartphone or via a web portal.

The driver can call up the car's status - such as the battery's momentary charge status, the electric range or its current parked location. They can program charging schemes remotely from their mobile phone or computer. They have the option of starting and stopping charging or setting the charging timer and climate control scheme to reflect when they next plan to drive the car. They can thus specify in detail at what time on what days they want to drive off with the battery fully charged.

The climate control planner, the third aspect, works similarly. The owner of an Audi A3 Sportback e-tron can for instance specify a target temperature for the interior according to a differentiated timetable. Adjusting the climate in advance while still hooked to the power socket is much more efficient than when driving electrically, because it does not then constitute a drain on the car battery and thus optimizes the electric range. In addition, it also adjusts the drive components to the appropriate temperature for the conditions. Finally, the web portal gives the owner the chance to check their trip data, e.g. power consumption, distance driven and speed.
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Aston Martin CC100 Speedster Concept, 2013

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The Aston Martin is celebrating its centenary in world-class style with the debut of the exceptional Aston Martin CC100 Speedster Concept.

Created as a stunning celebration of the great British brand's 100 years of sports car excellence the one-off CC100 looks both to the past and the DBR1 - Aston Martin's greatest sporting triumph on the track - and to the future with its teasing glimpses of potential future design direction.

The 6.0-litre V12-powered concept car made its world debut by completing a lap of the famous Nordschleife at Germany's ADAC Zurich 24 Hours of Nürburgring race. It is lapping the circuit together with the 1000km race-winning 1959 DBR1 with British racing legend Sir Stirling Moss at the wheel. It is the most tangible expression yet of the brand's year-long 2013 centenary celebrations.

Viewed by tens of thousands of lucky spectators in Germany, the radical speedster is being driven today by Aston Martin CEO Dr Ulrich Bez. He said: "CC100 is the epitome of everything that is great about Aston Martin. It represents our fantastic sporting heritage, our exceptional design capability, our superb engineering know-how and, above all, our adventurous spirit!

Designed and constructed in fewer than six months at Aston Martin's global headquarters in Gaydon, working with key supplier Multimatic Inc, under the leadership of Special Projects and Motorsport Director David King, the finished look of the two-seater CC100 is the work of Design Director Marek Reichman working alongside the brand's Chief Exterior Designer Miles Nurnberger.

Measuring almost four and a half metres nose to tail, and more than two metres wide (including mirrors) the Speedster Concept body is a classic example of the almost infinitely flexible nature of Aston Martin's trademark Vertical Horizontal engineering philosophy.

With a body and interior crafted from carbon fibre, tooled and provided by low volume specialists Multimatic, the Aston Martin CC100 utilises the latest generation AM11 naturally aspirated V12 gasoline engine mated to a six-speed hydraulically actuated automated sequential manual transmission. Controlled via steering column-mounted paddle shifts the lightweight 'box delivers truly sporting changes perfectly suited to the Speedster's track-focused nature.

The drivetrain power the Aston Martin CC100 from rest to 62 mph in a little over four seconds, while the top speed is limited to 180 mph.
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Acura NSX Concept, 2013

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At the 2013 NAIAS Acura unveiled a new NSX Concept that showcases the evolution of the next-generation supercar's styling and design, including a first-ever look at one possible direction for the next-generation NSX interior design.

"This further evolution of the Acura NSX Concept design is remarkably true to the original concept styling," said Mike Accavitti, vice president of national marketing operations. "We're making great progress in delivering on the expectations we created a year ago, with advanced technology that will bring new levels of performance and a unique, dynamic experience to the exotic sports car market."

The new Acura NSX Concept is based on the expected underpinnings of the vehicle Acura will bring to market. Still, the new NSX Concept maintains its low and wide stance with the dynamic and alluring proportions that debuted in the original NSX Concept at the 2012 North American International Auto Show - highlighted by clean, modern and simple surfacing, and edgy details that communicate supercar attitude and a high-tech feel.

The new Acura NSX Concept also features a first-ever look at one potential direction for the next-generation Acura NSX interior design. The design concept is founded on a "Human Support Cockpit" theme, a strong expression of Acura's product direction focused on "the synergy between man and machine." The interior package boasts outstanding visibility, an exotic driving position, and an intuitive "Simple Sports Interface" that minimizes interior clutter, allowing the driver to focus on the driving experience.

"Consistent with the spirit of the original NSX, our intention is to support the psychological and emotional aspects of driving a super car at the limit, because we are insistent about delivering on the synergy between man and machine," said Jon Ikeda, chief designer, Acura Design Studio. "Importantly, this will be true of all Acura vehicles moving forward."

With the aim of delivering a new sports car experience that combines next-generation supercar dynamic capabilities with advanced environmental performance, Acura announced a year ago that the Acura NSX will be powered by a mid-mounted, direct-injected V-6 engine mated to Acura's Sport Hybrid SH-AWD® (Super Handling All-Wheel Drive) system.

Acura Sport Hybrid SH-AWD is an all-new, three-motor high-performance hybrid system that combines torque vectoring all-wheel drive with advanced hybrid efficiency through the use of three electric motors - one motor integrated with the V-6 engine and two motors driving the front wheels - along with an all-new dual-clutch transmission (DCT). The system enables instant delivery of negative or positive torque to the front wheels during cornering to achieve a new level of driving performance unparalleled by current AWD systems.

The new NSX is being developed by a global R&D team led by designers and engineers at Honda R&D Americas, Inc. located in Los Angeles, California, and Raymond, Ohio. The new NSX will also be manufactured at a new production facility in central Ohio.
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Acura MDX Concept, 2013

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The 2014 Acura MDX Prototype made its world debut at the 2013 North American International Auto Show, offering a strong indication of the styling and design direction for the third generation of the popular, 7-passenger Acura MDX performance luxury SUV, launching by mid-2013 in both all-wheel-drive and front-wheel-drive layouts.

"Our goal is to advance on MDX's already great dynamic performance while improving fuel economy and luxury comfort," said Mike Accavitti, vice president of national marketing operations. "Building on the great momentum we established in 2012 with the launch this year of our flagship RLX, followed later this year by a terrific new luxury SUV in MDX we are very excited about the direction of the Acura brand. And we are truly looking forward to a great 2013."

The "Aero Sculpture" styling of the 2014 MDX Prototype pursues the direction of a smart, compact and premium appearance with low, wide and sleek proportions; a clean, efficient and uncluttered design; and elegant, premium detailing, including the signature Acura Jewel Eye™ LED headlights. This "aero" image also reflects significant gains in aerodynamic efficiency, up 16 percent compared to the outgoing 2013 MDX, achieved through extensive testing in Honda R&D Americas' new wind-tunnel laboratory in Raymond, Ohio - where the vehicle is being created.

The 2014 MDX Prototype's sculpted exterior and arcing roofline (1.5-inches lower than the outgoing model) encase what will be an even more spacious and versatile cabin compared to the outgoing 2013 MDX. The 2014 MDX Prototype features a longer wheelbase that enhances ride quality, increases second-row legroom, and improves third-row seat access.

In response to strong demand from consumers in warm weather markets Acura also will, for the first time, offer a front-wheel drive version of MDX in addition to the all-wheel drive (SH-AWD) model that has earned MDX a reputation as a leader in dynamic handling and all-weather performance for a luxury SUV.

The 2014 MDX will also feature an all-new, more rigid and lightweight chassis, including new front and rear suspension designs that deliver a more refined, confidence-inspiring, and sporty driving character. An all-new, direct-injected 3.5-liter i-VTEC SOHC V-6 engine with Variable Cylinder Management (VCM) will deliver improved torque and more spirited performance while realizing a significant increase in fuel efficiency to class-leading levels. Special attention was also paid to improving cabin quietness, which is greatly enhanced by the vehicle's all-new chassis and body design and new sound-deadening techniques.

The 2014 MDX also will be equipped with a broad array of advanced safety technologies, including the next generation Advanced Compatibility Engineering™ (ACE™) body structure and the available Forward Collision Warning (FCW) and Lane Departure Warning (LDW) systems, as well as visibility technologies such as the Multi-Angle Rearview Camera and the available Blind Spot Information (BSI), Lane Keeping Assist System (LKAS), and Active Cruise Control (ACC) with Low-Speed Follow. Further, the 2014 MDX is designed to achieve top-level safety ratings, including a 5-star Overall Vehicle Score from the NHTSA and a TOP SAFETY PICK+ rating from the IIHS. All 2013 Acura models other than the outgoing ZDX achieved at least a TOP SAFETY PICK safety rating, while the TL sedan was one of the first two vehicles in the industry to achieve TOP SAFETY Pick+ status.

The new MDX also feature a full array of advanced information technologies, including the next-generation AcuraLink cloud-based connected car system featuring Pandora connectivity, SiriusXM™ radio, SMS text messaging, and cloud-based Aha™ by Harman connectivity that brings thousands of personalized news, information and media feeds into the vehicle via the customer's compatible smartphone and data plan. A premium Acura/ELS® audio system will be available on the new MDX. Next-generation AcuraLink will also be available with a host of fee-based convenience, assistive and security features, such as automated crash notification, remote locking/unlocking, emergency "SOS" call feature, and live-operator concierge services.

With the introduction of the all-new 2014 Acura MDX production will move from Alliston, Ontario, to the company's vehicle and V-6 engine manufacturing facility in Lincoln, Alabama. Using domestic and globally sourced parts, the MDX is built exclusively in North America.
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Citroen DS4 Racing Concept, 2012

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The Citroën has sold more than 180,000 DS line models worldwide since launch. The adventure continues at the 2012 Geneva Motor Show with the reveal of the Citroën DS4 Racing Concept. As with the DS3 Racing, the engineers at Citroën Racing and the styling team have firmly stamped the DS4 with the image of the Brand's racing department.

Making its world debut at the 2012 Geneva Motor Show, the Citroën DS4 Racing Concept features "100% Racing" attributes. The chassis is 35 mm lower than the regular model and track is 55 mm wider at the front and 75 mm wider at the back. The concept car also sports an air diffuser, a front bumper panel, a lower-body belt line and wing extensions. Citroën Racing has tweaked the 1.6-litre turbo engine to develop 256 bhp, or 160 bhp per litre - a record for a series-production car. This spectacular performance comes hand in hand with controlled CO2 emissions of 155 g/km.

Citroën Racing engineers have also redeveloped the running gear with the utmost precision. The concept car is equipped with four-pot, fixed calliper brakes at the front, with special discs widened to 380 mm in diameter, and shod with larger, 19-inch wheels (235/40).

Another stand-out feature of the Citroën DS4 Racing Concept is its matte grey, textured-effect paint - a first in the automotive sector. The grain of the paint catches the light differently and further enhances the body styling, while the colour is sober, modern and robust and ideally suited to a sports car. To refine the exterior aesthetic, the concept car gets a two-tone roof and specially-designed, twotone wheel rims.
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Vestige Car Design Proposal with Sleek Metallic White Body

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vestige-concept-car2

Vestige is the latest car design proposal for the Aston Martin. It is said that this design is used to represent Khepri, the Egyptian God. The unique features of this car will allow it to draw or grab a lot of attention. This car model has a unique combination of sleek metallic white body along with black tinted roof with windows. The car’s unique rims are another highlighted feature. This vehicle has four electric motors and powerful Wankel engine with supercharging abilities.
This great car can house three passengers including the driver. You car will surely generate a new driving experience. The movement of this car is very silent since it uses electric motors. This is a must try car.
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Car Concept with Bio-Electric Hybrid Technology by Paul Howse

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Car Concept with Bio-Electric Hybrid Technology by Paul Howse



















Luxury doesn’t have to mean
expense or extravagance. Moreover, in the fragility of 21st century
consumerism, exclusivity could go much further, where its perceptual value
increases over time and through an experience of the product. Just as classic
watches and historic cars develop a story and history over time, the owner of a
vehicle should feel this experience. A patination of material such as bronze,
that is hand-crafted or develops over time and is unique to each ownership
situation would bring a valid ‘local quality’ that could be argued as being
lost in today’s globalized world.


Technology was also an important
part of the project, in that being at the forefront of technology would allow
an entirely new, exclusive proportion of vehicle. By using bio-electric hybrid
technology in situated low down in the chassis, I was able to celebrate the
lack of an internal combustion engine and create an entirely new proportion of
vehicle. The use of cameras and projections on the interior allows for the
deletion of the traditional windscreen and allows the long, low, sculptural
bonnet to run up over into the roof, uninterrupted. Again, something only
exclusively possible with this car. I also wanted to emphasize the interior
element, to show that it is cradled in the structure, a precious entity much
like a Faberge egg. By suspending the interior in magnetic levitation it
further separates it from the technical elements of the car whilst providing a
truly serene ride quality.


As it is intended to be used only
on special occasions and cosseted, it will be kept in a specifically designed
building from which you can control the atmosphere the car is kept in and thus
control the patination, much like a cigar humidor. The building will be covered
in photo-voltaic solar panels and will be able to store up solar energy to be
used to power the car. If energy levels drop, then it will run off the national
grid, but otherwise it will be solely self-sufficient.


All of these factors should add
up to truly unique, exclusive ownership experience, while a creating a mystique
about the car, the like of which may not have been seen since the art deco
period.




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Attractive Concept Cars

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A concept car can also be known as show cars which demonstrate new futuristic design, technology, improved safety devices, and radical changes which are still under consideration whether to go for mainstream production. Concepts cars have amazing designs you probably see in sci-fi movies. It turns heads instantly if seen out in the road, but rarely seen because it is usually in a showcase display for innovation and amusement. Of course these concepts cars would not be cheap enough for the “Average Joe” income to purchase, but still extraordinary to lay eyes on. Many car manufacture companies have designed their own concept cars. Here are some neat looking concept cars,


BMW 2015 Concept Car


Sintesi Concept Car


 Audi Concept Car


Volkswagen T-6
Volkswagen T-6
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