Sunday, June 3, 2012

B. Engineering Edonis Super Car by Jean Marc Borel


B. Engineering Edonis Super Car by Jean Marc Borel

The Edonis cannot be described as a beautiful car, but it certainly eye catching. Its angular, complicated lines crash awkwardly together in a chaotic fashion, this trend is evident from almost every angle. The headlights give the impression of tiredness, or even depression.
The Edonis supercar is a creation of B. Engineering, a company run by Jean Marc Borel. The Edonis was intended as a demonstration of the design and prototype abilities of his company. The B. Engineering Edonis is a genuine supercar with a 0-60 time under 4 seconds, and a maximum speed of 225 mph.
B. Engineering Edonis Super Car by Jean Marc Borel

The Edonis
has little to be sad about. Twin turbochargers feed a 3.7 litre V-12 engine to create a whopping 680 bhp at 8,000 rpm. All this power is run through a six-speed manual gearbox.
Using a monocoque built from carbon fiber the Edonis is very strong and light. All the cosmetic exterior body panels are aluminum. To reduce weight further aluminum brake calipers are used.
To save even more space and weight the Edonis rides on Michelin PAX run-flat tires, this means a spare wheel is surplus to requirement.

Spiess TC 522 prototype supercar twin-turbo V8


Spiess TC 522 prototype supercar twin-turbo V8

The Spiess TC 522 was a supercar prototype from 1992. It was created by a Spiess, a German company better known for creating industrial electrical transformers.

The TC 522 was powered by a mid-mounted 5.7 litre, twin-turbo V8. The transmission was handled by a 6 speed manual driving the rear wheels. The Spiess TC 522 had a carbon-fibre composite body. Due to its high price, and a worldwide economic slow down, the TC 522 never left the prototype stage.

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AC Cobra 212 S/C Sports Car 3506 cc V8 Twin Turbo (Lotus) Engine



AC Cobra 212 S/C

The AC Cobra 212 S/C used the ultra low weight of the advanced Formula One carbon fibre body technology pioneered on the AC Cobra MKIV CRS. High performance Avon tyres have been selected to create a special road/race package for the AC Cobra 212 S/C to ensure that the output of the Lotus V8 reaches the road.Powering the AC 212 S/C is a 350 bhp Lotus engineered 3.5 Litre, V8, Twin Turbo engine mated to a 6 speed gearbox all hidden under a carbon fiber body.
John Owen says,"With the AC 212 S/C we've been able to bring together three tremendous assets in the same package".
AC Car Group Limited's Chief Engineer and the man who earlier led the Lotus design team which conceived the V8 unit. "We've got the ultimate sports car looks of the iconic AC Cobra. We've developed the pioneering F1 carbon fibre technology from the CRS. And we've mated all of this to one of the most powerful engines available today - the Lotus V8."
The car develops 350 bhp at 6,500 rpm and 295 lb ft of torque at 4,000 rpm. It drives through a Tremec T56 six-speed manual gearbox and BTR Hydratrak final drive (ratio 3.73:1) to the rear axle. Power steering is standard together with AP Racing dual circuit servo-assisted ventilated discs all round.The specifications of the AC Cobra 212 S/C model reflects the power of the 3.5 litre Lotus engine with twin Garratt turbochargers.
"The AC Cobra 212 S/C is a hugely valuable addition to our line up of models which so proudly display their AC Cobra pedigree", said Mike Hall, AC Car Group Limited's Joint Chairman. "

Cobra MKIV CRS AC Sports Car 4942 cc V8 Engine


AC Cobra MKIV CRS

Cobra MKIV CRS AC
Sports Car 4942 cc V8 Engine.
The AC Cobra CRS will use the same five-speed gearbox as the Superblower, together with a Hydratrak limited slip differential, independent front and rear suspension, rack and pinion steering and disc brakes all round (ventilated at the front).
The AC Cobra MKIV CRS is closely related to the AC Superblower (the CRS shares its chassis and a naturally aspirated version of its power unit). Significant weight savings have been made possible on the AC Cobra MKIV CRS through the use of an advanced specification carbon fiber body.

AC 3000ME a Sports Car Coupe Ford V6 engine


AC 3000ME

AC 3000ME a Sports Car Coupe Ford V6 engine
The AC 3000ME Prototype was powered by a Ford V6 and clothed in a grp body.The AC 3000ME was first introduced at the 1973 Earls Court Motor Show. It wasn't until 1979 that the first production AC 3000ME's were delivered, and the price had almost tripled since its initial showing. The AC 3000Me continued to be manufactured for six years with production moving to Scotland before the company ran into financial trouble in 1985 and the 3000Me was discontinued.The AC 3000ME was a 2 door, 2 seat, coupe with a mid-engine layout, perimeter steel chassis, 4 wheel independent suspension and superb handling


Toyota PM Concept Car a personal transport concept


Toyota PM Concept Car

Toyota PM is highly maneuverable thanks to its castor like wheels capable of rotating through 180 degrees. The front wheels are also notable because of their hub-less design.
The futuristic Toyota PM concept from 2003 is a personal transport concept.
The PM's cockpit opens by touching one of the unusual stalk mounted headlights, this then glows green to announce the impending opening of the glass canopy.
Another interesting feature Toyota has built into the PM is its adjustable ride height and attitude. As the PM's speed increases it lowers to the ground to increase stability and improve aerodynamics.
Inside the PM information regarding vehicle performance and the location of other PM's is relayed to the single occupant by a floating virtual display.
Power for the concept comes from an electric motor.

Thursday, February 10, 2011

2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept

2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept
The latest Volkswagen will unveil the 3rd and latest iteration by its roadster diesel-electric hybrid concept serial, the fresh XL1 Super effective Vehicle (SEV) at these week’s Qatar Motor demo, which runs by January 26 to 29. The latest 2011 Volkswagen XL1 Hybrid Concept are motivated by a diminished 800 cc TDI two-cylinder basic rail diesel engine breaking 48 HP.
Vision becomes reality – Volkswagen’s “Formula XL1”Volkswagen XL1 prototype consumes just 0.9 l/100 km! Wolfsburg / Doha, 25 January 2011 - Future mobility is one of the most stimulating topics of our time. The key question here: Just how much could the energy consumption of cars be reduced if all the stops were pulled out for efficiency? There is now an answer to this question, and Volkswagen is delivering it in the form of the new XL1. Combined fuel consumption: 0.9 l/100 km. No other hybrid car powered by an electric motor / internal combustion engine combination is more fuel efficient.
2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept
Volkswagen will build small run of XL1 plug-in hybrid in two years. “We want to go into series production with this car starting in 2013,” Volkswagen chairman Ferdinand Piech told Automotive News Europe on Tuesday at an event in Doha, Qatar, ahead of the 2011 Qatar auto show where Volkswagen unveiled an XL1 prototype. Pioneering construction techniques, an advanced plug-in hybrid drivetrain and innovative packaging all play a part in allowing the new Volkswagen XL1 Super Efficient Vehicle (SEV) to return 260 mpg on the combined cycle to set a new benchmark for vehicle efficiency.
The most efficient car in the world. The new 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept shows the way forward for extreme economy vehicles and clean technologies. It also demonstrates that such cars can also be fun.  The feeling when driving the XL1 is truly dynamic - not based on pure power, rather on its pure efficiency. Two examples: 1) To travel at a constant speed of 100 km/h, the prototype only needs 6.2 kW/8.4 PS – a fraction of the performance of today’s cars (Golf 1.6 TDI with 77 kW and 7-speed DSG: 13.2 kW/17.9 PS). 2) In electric mode, the XL1 needs less than 0.1 kWh (82 Wh/km) to complete a one kilometre driving course. These are record values.
Powering the 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept is a compact 800 cc TDI two-cylinder common rail diesel engine developing 47 hp. It's linked to an electric motor producing 27 hp, resulting in a total of 74 hp - a modest output yet more than enough when the low kerb weight of 1753 lbs (795 kg) of the vehicle is taken into account. Two-cylinder TDI uses mass production technology: The 0.8 litre TDI (35 kW/48 PS) was derived from the 1.6 litre TDI, which drives such cars as the Golf and Passat. The 0.8 TDI exhibits the same data as the 1.6-litre TDI common rail engine in terms of cylinder spacing (88 mm), cylinder bore (79.5 mm) and stroke (80.5 mm).
2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept
In addition, the Volkswagen XL1 Concept's two-cylinder and the mass produced four cylinder share key internal engine features for reducing emissions. They include special piston recesses for multiple injection and individual orientation of the individual injection jets. The excellent, smooth running properties of the common rail engines were transferred to the two cylinder engine. within addition, a balancer shaft that is driven by the crankshaft turning at the same speed optimises smooth engine running.
When the full power of the hybrid system is engaged, the Volkswagen prototype accelerates from 0 to 100 km/h in just 11.9 seconds; its top speed is 160 km/h (electronically limited). Yet these numbers alone do not tell the whole story: Since the XL1 weighs just 795 kg, the drive system has an easy job of propelling the car. When full power is needed, the electric motor, which can deliver 100 Newton metres of torque from a standstill, works as a booster to support the TDI engine (120 Newton metres torque). Together, the TDI and E-motor deliver a maximum torque of 140 Newton metres in boosting mode.
2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept
Carbon fibre reinforced polymer (CFRP) the ideal material for the body of the new 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept because of its light weight. The 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Conceptweighs only 795 kg. Of this figure, 227 kg represents the entire drive unit, 153 kg the running gear, 80 kg the equipment (including the two bucket seats) and 105 kg the electrical system.
That leaves 230 kg, which is precisely the weight of the body - produced largely of CFRP - including wing doors, front windscreen in thin-glass technology as in motorsport and the highly safe monocoque. A total of 21.3 percent of the new Volkswagen XL1, or 169 kg, consists of CFRP. In addition, Volkswagen uses lightweight metals for 22.5 percent of all parts (179 kg). Only 23.2 percent (184 kg) of the new XL1 is constructed from steel and iron materials. The rest of its weight is distributed among various other polymers (e.g. polycarbonate side windows), metals, natural fibres, process materials and electronics.
2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept
Design for a new era: The VW XL1 is 3,888 mm long, 1,665 mm wide and just 1,156 mm tall. These are extreme dimensions. The Polo has a similar length (3,970 mm) and width (1,682 m), but it is significantly taller (1,462 mm). The height of the new 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept is about the same as that of a Lamborghini Gallardo Spyder (1,184 mm). So, it is easy to visualise just how spectacular such a Volkswagen would appear on the road – as long and wide as a Polo, but with a low profile like a Lamborghini.
The styling of the 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid Concept is borne out of functional requirements - easy access to the interior is granted via a pair of elegant scissor doors that hinge on the A-pillar while the profile of the car has been honed in the wind tunnel, the result being a remarkable coefficient of drag figure of 0.186. The XL1's overall length and width are similar to those of a Volkswagen Polo yet its height is more akin to that of a Lamborghini Gallardo Spyder.
Although the 2011 Volkswagen Sports Cars XL1 (SEV) Roadster Diesel-Electric Hybrid is still very much a concept, its unveiling marks the next step towards the birth of a new class of Super Efficient Vehicles, while the advent of a process such as RTM is a significant milestone.

2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car

2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car
The Marussia Virgin Racing Formula One team has unveiled One of the latest single seater racers. Now, with support from Russia Marussia automotive engines, Cosworth power the Challenger crew in 2011 is presented in the form of VCR-02, with the hope that more competition next season. The car was delivered to the BBC Television Centre in London on Monday, where the team also took the opportunity to outline its vision for 2011 and beyond following last week’s management restructure.
Russia's Marussia Motors acquired a significant stake in U.K.-based Virgin Racing, set to compete in the 2011 season of Formula 1 is the Marussia Virgin Racing MVR02 F1 car. Entirely designed by using CFD (Computational Fluid Dynamics), the 2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car is the first to bear the MVR chassis designation and will get driven by again by Timo Glock (Germany) and Jerome d'Ambrosio (Belgium), who makes his debut in Formula 1.and following the debut of Ferrari, Lotus, Renault, Sauber, Mercedes, Red Bull, Toro Rosso, Williams and McLaren, Force India and example only HRT.
2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car
The team will compete under the Russian flag in the 2011 Formula 1. In accordance with a contract between Marussia Motors and Virgin Racing, the new racing car retains the team colors of red, black and white used last season. First tests of 2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car will be held in Spain's Jerez on February 9. Russia's Nikolai Fomenko, who was named Marussia Virgin Racing's engineering director last week, said the team's budget for this year is secret. "Our moto is to achieve more for less money," said Fomenko, who was introduced at the presentation as the face of the Russian version of popular British TV show, Top Gear.
2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car
Just as it happened with last year's VR-01 contender, the 2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car was built using an unique all-computational fluid dynamics (CFD) approach. The first time the car will get to show its worth on track will be during the upcoming test in Jerez, scheduled for February 10-13. Before the launch of its 2011 spec racer, Marussia Virgin Racing has announced a major management reshuffle of its F1 operations, with certain members of the Marussia Motors company being handed executive and technical roles within the team.
The Cosworth powered Marussia Virgin Racing MVR02 2011 F1 car features a designed influenced by latest regulations, although the nose is not positioned as high as on competitor cars.
2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car
As the team embarks on its second season of Formula One competition, Marussia Virgin Racing Team Principal John Booth, commented:“We had a tough but incredibly rewarding baptism into Formula One last season and I am extremely proud that we proved ourselves to be more than equal to the challenge. We are also very proud to be competing as Marussia Virgin Racing in 2011 and we look forward to rewarding the faith that Marussia demonstrated in the team when it made such a significant investment at the end of last year.
2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car
“2011 is all about moving forward and starting to achieve solid results. We have a very exciting driver line-up in Timo Glock and Jérôme d'Ambrosio. Timo did an exceptional job in difficult circumstances last season and contributed a great deal to the car’s development and that of our racing team. We will certainly benefit from the continuity that Timo brings. He has been working very hard over the winter and is in top physical and mental shape for our second season together. We are also delighted to welcome Jerome in his debut season of Formula One competition. He did an excellent job during his evaluation period towards the end of last season and he demonstrated in testing last week that he clearly has the bit between his teeth. He is a very exciting young talent and we are enjoying seeing his clear potential unfold with each outing in the car.”
“The 2011 Marussia Sports Cars Virgin Racing MVR-02 F1 Car is a clear step forward in every area and a credit to all the hard work that has gone into our car development programme over the past 12 months. We are delighted to be working with our engine supplier Cosworth for a second season of collaboration. Despite the freeze on engine development they have been working hard on reliability and performance optimisation over the winter and we fully expect a continuation of the success they enjoyed in their return to the sport in 2010. The sport has the added challenge of a new tyre supplier in Pirelli but we have made good progress with tailoring our mechanical package to suit the new Pzero tyres in the group tests in Abu Dhabi at the end of 2010 and in Valencia last week."
Commenting on behalf of Marussia, Nikolay Fomenko, President of Marussia Motors and Marussia Virgin Racing’s new Engineering Director, commented: “Last season the Marussia brand featured on the VR-01; this year we are extremely proud that Marussia is not only integrated into the livery but also the name of the car and the team. I’m particularly pleased that we will be operating under a Russian license in 2011, which means that we can look forward to seeing our national flag being raised on the occasion of our first podium finish! In 2011 our objective is to finish every race and regularly compete in Q2. We need to continually make small but significant steps this season to move us up the field. I am excited about the potential in the future to benefit from exchanging ideas on technology between the F1 team and the road car programme.”

Wednesday, February 9, 2011

2011 Nissan Sports Cars 370Z Hybrid

2011 Nissan Sports Cars 370Z Hybrid
2011 Nissan 370Z is a hybrid sports car, with a 3.7 liter engine performance and fuel economy to about 50%. 2011 Nissan Sports Cars 370Z Hybrid is equipped with  interior features a very nice and will soon release in late 2010. For 2011, Nissan is taking a giant leap with the 370Z with the release version of a hybrid for both coupe and convertible stylings.
2011 Nissan Sports Cars 370Z Hybrid
Z is still like a roadster. Puritans can not ignore, but the opening of Z is supported by an equally strong manual 3.7-liter V6 and six-speed gearbox or seven-speed automatic, like a coupe. suspension settings and the same increase in weight only 200 pounds to help roadster retains most of the quick reflexes and acceleration.
But 370Z coupe is not without flaws. V6, while strong, does not feel the sophistication and high-speed machines. This may be the reason, but significantly reduces the implementation races living on the open road, coupe is quite noisy, especially when equipped with larger wheels and tires are optional. In addition, performance cars such as the Z machine records verdien’n refreshing, and some protection against the motorway route will not run heavy throughout the roar.
The 2011 370Z from Nissan has the same 3.7-liter , V6 engine with 332 hp at 7,000 rpm, just like that of the previous model year. Optional manual transmission features six speeds, while the automatic transmission is a 7-speed with a manual shift assist.
2011 Nissan Sports Cars 370Z Hybrid
Falling far short of the fuel efficiency figures for Nissan’s drawing board hybrid model, the 2011 Nissan Sports Cars 370Z Hybrid reports 18 mpg in traffic and 25 mpg on the highway, manual or automatic alike. These high-performance vehicles use high-test fuel as well. The NISMO 370Z delivers an upgrade in power, with 350 hp and 270 pound feet of torque in a 3.7 liter V6.
The 2011 Nissan Sports Cars 370Z Hybrid will not be sacrificing any of the previous power and performance to a new hybrid engine in accordance with the Nissan, but it remains to be seen how they will achieve it by using the same gasoline motor vehicle weight while improving significantly with lithium-ion battery and a second motor.
2011 Nissan Sports Cars 370Z Hybrid
Nissan is offering three models of the 370Z convertible roadster: the standard entry level model, the Touring car, and the 370Z Touring with Sport Package option. The price range extends from $37, 520 to $43,890. The 370Z Coupe series features three model options plus the NISMO 370Z. The price span extends from $30,610 for the base model to $39,990 for the NISMO.
2011 Nissan Sports Cars 370Z Hybrid
The interior of the 2011 Nissan Sports Cars 370Z Hybrid is always wide enough for vehicles in its class, and the addition of a new battery for the car will hopefully not impact important features. Standard features for the Nissan 370Z interior will remain almost identical to those available in models 2010 and includes keyless ignition and entry, climate control, tilt steering wheel, and auto-dimming rearview mirror.
2011 Nissan Sports Cars 370Z Hybrid

Sunday, February 6, 2011

2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class

2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
Speed is great, but a true hypercar can dance with the best of them. Elegant and muscular the Pagani Huayra merges the past, present and future in a timeless interpretation of automotive art. Pagani have officially unveiled their 2012 Huayra. The hypercar is named after Aymara god Huayra Tata, god of wind. Aerodynamics are a big part of the new car which will be displayed publically for the first time at the Geneva Auto Salon 2011. The styling of the car was perfected over the course of 5 years to find each line's beginning and end. During this study, eight scale models were created, as well as two 1:1 models, each an evolution of the previous in a never ending quest to perfect the form and refining the substance.
The new central monocoque on the 2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class is an entirely new design made from carbontitanium. However, with the gull wing doors cutting deep into the roof, much research was focused on achieving the highest levels of rigidity through the application of new advanced composite materials and technologies first tested on the Zonda R.
2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
The never ending quest for weight reduction resulted also into the combination of structural and non-structural or aesthetical elements. An example is the integration of all ventilation air ducts into the monocoque's structure, making the use of additional parts and ducts unnecessary. The result of this attention to detail is a vehicle weighing 1.350 kg making the Pagani Huayra the lightest sportscar in its class.
2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
Mercedes-AMG provides the heart for the 2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class. The 60 degree 12 cylinder turbocharged engine with a displacement of 5980 cm3 has been developed not just to meet the strictest technical and quality requirements, but also to give the car its many faces. The calm and harmony of driving one of the world's most refined GT car is interrupted when the driver calls upon the Pagani Huayra to unleash its 700 horsepower and 1000 Nm of torque. The turbos have been studied to offer immediate response to the slightest throttle input, giving the driver full control over the engine at any rpm and preventing unwanted delays in the delivery of power.
The engine's systems have been designed and tested to stand up to the most adverse conditions of temperature and performance. The 2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class has been subjected to the highs of Death Valley and the lows of the Arctic Circle. The two lateral radiators are positioned in the front to guarantee the best cooling efficiency of the intercoolers placed over the cylinder heads. Dry sump lubrication ensures an optimal oil feed to the engine even when the car is subjected to the most extreme lateral accelerations. It also regulates the oil flow so that only the necessary amount of lubricant is actually pumped into the engine from the external oil tank, reducing the friction caused by an excessive volume of lubricant inside the engine sump. An oil/water heat exchanger reduces warm-up times by heating the engine lubricant during cold start and keeps engine coolant and lubricant levels at steady operational temperatures. Extensive weight saving programs led to ingenious yet simple solutions.
2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
The M158 engine is homologated to meet the strictest environmental regulations, EU5 and LEV2. Despite the increase of power compared to the other Mercedes-AMG V12 engines developed for Pagani, CO2 emissions as well as the fuel consumption have been reduced, to make the Pagani Huayra class leading amongst 12 cylinder sports cars with values that are respective of much smaller vehicles in the market. The two stage fuel supply system features two microprocessor controlled pumps feeding fuel to the engine with the second pump only activated when necessary, thus reducing the energy required to run the fuel pumps and eliminates the waste of excessive fuel being transported and heated in the fuel lines. This efficiency combined with a large 85 liter fuel tank ensure Pagani Huayra's grand touring ability.
The power and prodigious torque generated by Pagani Huayra's V12 are transferred to the wheels through a transverse sequential seven speed gearbox and a dual plate clutch and the complete gearbox weighs only 96 kg. Keeping the weight of the rear overhang as low as possible has been a priority as we aim for a neutral behavior at the limit. A further benefit of this layout is a better behavior of the car during a rear impact. A dual clutch system was evaluated but ultimately not selected as it would have increased the weight by approximately 70kg, thus negating any minor improvement in shift-time. Xtrac already supplied the gearbox for the Zonda R and so it was the natural choice for the development of a new high performance gearbox.
Pirelli say "Power is nothing without control" and to assure complete control for the driver Pirelli has developed the bespoke P Zero tires, specifically for the 2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class. The Pirelli engineers were faced with a demanding task, combining road holding for excitement behind the steering wheel and lower rolling resistance to reduce CO2 emissions and fuel consumption. These P Zero tires are built in a dedicated MIRS™ (Modular Integrated Robotized System) facility, dedicated to the production of ultrahigh performance tires and are at the forefront of what is technically possible, suited to top speeds above 370 kph as well as to lateral forces exceeding 1,5 G.
2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
The aerodynamic concept of the Pagani Huayra is that of a wing. The vehicle can modify the properties of this wing by varying the front ride height, which can be adjusted dynamically, and by adjusting the 4 control flaps on each of the four corners of the car. The goal is to have a neutral vehicle behavior under all conditions and control body roll via aerodynamic means. The behavior of the flaps is managed by a dedicated control unit that is fed information from the ABS and ECU, which pass information about the car's speed, yaw rate, lateral acceleration, steering angle and throttle position.
The system improves aerodynamic efficiency in a variety of driving conditions, where a low drag coefficient is not the determining factor. During braking, for example, the rear flaps and the front suspension are raised to counteract the weight transfer and balance the weight distribution between front and rear axles, allowing a better use of the rear brake force.
Another vital design tenant for the Huayra project was to ensure clean airflow over the body of the car. In addition to the downforce generated by the flaps and body, two high negative pressure areas were designed into the shape of the underbody and the diffuser at the rear, thus enhancing the aerodynamic stability and guaranteeing the 2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class downforce under all circumstances. As soon as the doors are closed the Pagani Huayra transports the occupants to a new dimension; a world that pleases and surprises the senses. Having everything at arm's length is not close enough for a vehicle with the capabilities of the Pagani Huayra.
2012 Pagani Supercars Huayra The Lightest Sports Cars In Its Class
A Pagani is able to present drivers with state of the art solutions while still drawing on the rich history that precedes it. The ever present emphasis is on a living breathing being rather than a digital one. The high definition central touchscreen is the heart of the vehicle infotainment system, controlling audio functions, satellite navigation, secondary vehicle functions and Bluetooth phone. To this date five prototypes have been built which have been conducting road tests for the past 4 years. Currently, over half a million kilometers have been covered by our prototypes and before entering the US market we will have reached one million test kilometers.