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Showing posts with label Supercars. Show all posts
Showing posts with label Supercars. Show all posts

Lamborghini Gallardo Balboni Black Color Edition

Lamborghini Gallardo Balboni Black Color Edition 1The Anderson Germany have released a new package for the Lamborghini Gallardo Balboni that ups the power on the RWD model and also offers new styling options. Instead of focusing on the exterior, they moved to the interior and outfitted the car with some technical enhancements.


Lamborghini Gallardo Balboni Black Color Edition 2The new wheels Anderson offers for this car are 8.5×20 and 11.5×20 inches in size, wrapped in high performance tyres measuring 235/30-20 at the front and 305/25-20 at the back. There’s also a new adjustable exhaust system with three-step valve and remote control. The standard engine 10-cylinder 5.2-liter that was due to upgrade from 550 hp to 590 hp. The performance of the Lamborghini Gallardo Balboni Anderson have not yet been published, but I bet it takes less than 3.9 seconds and reach 100 kilometers per hour is probably greater than 320 mph (199 mph) top speed.

Lamborghini Gallardo Balboni Black Color Edition 3Modifications to the exterior consist of tinted tail lamps, the new exhaust system with three-step valve control and the 3-part 20 inch lacquered rims wrapped in performance tires while at the interior the Lamborghini Gallardo Balboni by ANDERSON GERMANY comes with logo-decorated seats and various white carbon fiver inserts.Pricing of the Lamborghini Gallardo Balboni by Anderson Germany is also kept a secret for the moment, as the tuners say it is only available upon request.

Lamborghini Gallardo Balboni Black Color Edition 4ANDERSON GERMANY – Lamborghini Gallardo Balboni Edition

It is always a challenge when you take even the most seemingly perfect car – as the Lamborghini undoubtedly is – and have it undergo a treatment in order to present it to an admiring audience in an even moreperfect condition. For example with a car that is not exactly under-motorised – the Lamborghini Gallardo Balboni Edition. Because the exterior of this fast car can hardly be improved, the team at the company ANDERSON GERMANY – with their headquarters in Düsseldorf –have concentrated more on the interior than on the small visible external “details” and this has given them room to go all out.

Lamborghini Gallardo Balboni Black Color Edition 5Small visible details would include the tint of the tail lamps and the panes. Alone the description of the exclusive three-part rims with specialty lacquering would be enough to fill more pages than we have space for here. To sum up: these are specially lacquered rims, 8.5x20 and 11.5x20 inches in size, soled with high performance tyres measuring 235/30-20 at the front and 305/25-20 at the back. Although they are not immediately visible, this is more than made up for by the audible exhaust system, which can be adjusted with a remote controlled, three-step valve control.

Lamborghini Gallardo Balboni Black Color Edition 6In the completely refined interior the logo-decorated seats and the generously built Carbon in White are an absolute feast for the eyes. It is worth mentioning the increased performance of the engine, from 550 PSto 590 with an even higher maximum torque. The company ANDERSON GERMANY is an elite tuner, which turns luxury cars into truly one of a kind vehicles. The vehicles are of course fine-tunedfor the stars of this world according to their special requests, insideas well as outside. A special pick-up service is offered to do this, regardless of the car’s location. Naturally, the final product is delivered to the same place.

Lamborghini Gallardo Balboni Black Color Edition 7We offer exclusive rims, complete lacquering or film coating, carbon finishing, specially manufactured exhaust systems, increased performance, interior finishing to the finest degree as well as high end multimedia solutions.

Venom GT Hennessey Supercar

Hennessey Performance Engineering today announced that it is introducing the company's first The Venom GT. Penned by British auto designer, Steve Everitt, the Venom GT would incorporate Hennessey's potent Venom 1000 Twin Turbo Viper V10 powerplant into a light weight mid-engine chassis weighing "under 2,700 lbs". Power would be run through a 6-speed transmission or optional sequential gearbox. With a power to weight ratio of just 2.7 lbs per bhp Hennessey estimates that the Venom GT could attain 0 to 100 km/h times in less than 2.5 sec. and a 0-300 km/h time of around 14 seconds.
Venom GT Hennessey Supercar
Venom GT Hennessey Supercar
Venom GT Hennessey Supercar
“This is not the first time that Britain and America have joined forces to produce a weapon of mass propulsion”, said company founder and president, John Hennessey. “Over fifty years ago the American-built P-51 Mustang fighter aircraft was flown into history powered by a British Rolls-Royce Merlin engine. Today the Hennessey Venom GT promises to set a new standard of power to weight ratio in the rarefied air of today's supercar market.”
Venom GT Hennessey Supercar
In the case of the Venom GT, less weight means more performance. The Venom GT will have a production curb weight of less than 2,400 lbs (1,071 kilos) aided by its lightweight carbon fiber bodywork and carbon fiber wheels. Stopping power is delivered via Brembo brakes with 6-piston calipers up front and 4-piston calipers in rear clamping down on 15-inch carbon ceramic rotors.
Venom GT Hennessey Supercar
The Venom GT’s base power plant is the supercharged 6.2 liter LS9 V8 (the same as in the Corvette ZR1) tweaked by Hennessey to 725 bhp. The company will also be offering 1000 bhp and 1200 bhp twin turbo V8 engine variants. The mid-engine V8 will transmit its power to the rear tires via a Ricardo 6-speed gearbox.
Venom GT Hennessey Supercar
Hennessey plans to manage power output by using a programmable traction control system. CFD (computational fluid dynamic) tested bodywork and down force will also help keep the Venom stable at speed. An active aero system with adjustable rear wing will deploy under varying conditions on both the road and racetrack. An adjustable suspension system will allow ride height adjustments according to speed and driving conditions. Finally, power will be put to the ground via massive Michelin PS2 tires.
Venom GT Hennessey Supercar
Hennessey will be building the power plants at its Texas facility. The engines will then be air freighted to the company's assembly facility near Silverstone, England where the Venom GT is built and tested. Venom GT buyer will be offered a 1-day driver orientation and instruction program by a Hennessey factory test driver, at a track in the UK or USA prior to delivery.
Venom GT Hennessey Supercar

Beck LM 800 Supercar twin turbocharged V8


Beck LM 800 Supercar twin turbocharged V8


The Beck LM 800 is built on the principle of lightweight and aerodynamic efficiency. It uses composite materials to to keep the weight down and a form over function styling brief to keep the frontal area and drag coefficient to a minimum.
The LM 800 is a supercar from Beck Engineering & Composites GmbH based in Switzerland. The Beck LM 800 went on show in January 2007 in Vienna.
The construction of the Beck LM 800 is similar to that found in Formula 1 race cars with a carbon, Kevlar and aluminium composite monocoque protecting the driver and passenger, as well as providing a rigid base to attach the engine and transmission mounts and front control arms of the chassis. The LM 800 has an electronically controlled, hydraulic active chassis also influenced by F1 technology, which reacts to telemetry data and helps to keep the car firmly stuck to the road.
The engine is a V8 especially produced by MTM for the Beck LM 800 with a displacement of 4.2 litres and, thanks to two turbochargers, delivers a performance of around 650 HP (variable from 550 - 1000 hp) to the drive shaft. The drive unit is designed in such a way that even acceleration is achieved across the entire range up to a top speed of over 217 mph. The semi-sequential 7-speed gearbox is perfectly coordinated with the Beck LM 800 and reacts instantly to driver input.
The wheels of the Beck LM 800 are specially made and formed from aluminium. An in-built hydraulic jacking system makes tire changes a breeze.

2010 Venom GT Hennessey Supercar Concept

Hennessey Performance Engineering today announced that it is introducing the company's first concept car - The Venom GT. Penned by British auto designer, Steve Everitt, the Venom GT would incorporate Hennessey's potent Venom 1000 Twin Turbo Viper V10 powerplant into a light weight mid-engine chassis weighing "under 2,700 lbs". Power would be run through a 6-speed transmission or optional sequential gearbox. With a power to weight ratio of just 2.7 lbs per bhp Hennessey estimates that the Venom GT could attain 0 to 100 km/h times in less than 2.5 sec. and a 0-300 km/h time of around 14 seconds.
Venom GT Hennessey Supercar
The Hennessey Venom GT weights less than 2,400 lbs (1,071 Kg) and to stop the Venom GT, Hennessey added Brembo brakes with 6-piston calipers up front and 4-piston calipers in rear clamping down on 15-inch carbon ceramic rotors. Hennessey plans on building 10 units of the Venom GT annually and four have already been sold at around $600,000 a pop. That means there are only six units left from the first allocation.
Venom GT Hennessey Supercar
SEALY, TEXAS & SILVERSTONE, ENGLAND, March 29, 2010 - Hennessey Performance is pleased to introduce the first official images of its Venom GT supercar. Based upon the Lotus Elise, the Venom GT combines a high-tech, lightweight British chassis with a powerful American V8.
Venom GT Hennessey Supercar
“This is not the first time that Britain and America have joined forces to produce a weapon of mass propulsion”, said company founder and president, John Hennessey. “Over fifty years ago the American-built P-51 Mustang fighter aircraft was flown into history powered by a British Rolls-Royce Merlin engine. Today the Hennessey Venom GT promises to set a new standard of power to weight ratio in the rarefied air of today's supercar market.”
Venom GT Hennessey Supercar
In the case of the Venom GT, less weight means more performance. The Venom GT will have a production curb weight of less than 2,400 lbs (1,071 kilos) aided by its lightweight carbon fiber bodywork and carbon fiber wheels. Stopping power is delivered via Brembo brakes with 6-piston calipers up front and 4-piston calipers in rear clamping down on 15-inch carbon ceramic rotors.
Venom GT Hennessey Supercar
The Venom GT’s base power plant is the supercharged 6.2 liter LS9 V8 (the same as in the Corvette ZR1) tweaked by Hennessey to 725 bhp. The company will also be offering 1000 bhp and 1200 bhp twin turbo V8 engine variants. The mid-engine V8 will transmit its power to the rear tires via a Ricardo 6-speed gearbox.
Venom GT Hennessey Supercar
Hennessey plans to manage power output by using a programmable traction control system. CFD (computational fluid dynamic) tested bodywork and down force will also help keep the Venom stable at speed. An active aero system with adjustable rear wing will deploy under varying conditions on both the road and racetrack. An adjustable suspension system will allow ride height adjustments according to speed and driving conditions. Finally, power will be put to the ground via massive Michelin PS2 tires.
Venom GT Hennessey Supercar
Hennessey will be building the power plants at its Texas facility. The engines will then be air freighted to the company's assembly facility near Silverstone, England where the Venom GT is built and tested. Venom GT buyer will be offered a 1-day driver orientation and instruction program by a Hennessey factory test driver, at a track in the UK or USA prior to delivery.
Venom GT Hennessey Supercar
Hennessey plans on building 10 units of the Venom GT annually and four have already been sold at around $600,000 a pop. That means there are only six units left from the first allocation. The company plans to establish a network of Venom GT dealers and distributors in the Middle East, Europe, Russia, Australia and Asia.

2010 Super Hatchback Concept Car by Jamie Martin

Details on a possible future eco-friendly model, called SHC (Super Hatchback Concept), were revealed by designer Jamie Martin, a UK based designer whose previous works include the Cobra Venom V8 concept and the London Navigator bus. The SHC was conceived out of a desire to fuse the two very different worlds of hatchbacks and supercars. And in a world where limiting CO2 output is becoming increasingly important, the SHC also has some green tech up its sleeve.
2010 Super Hatchback Concept Car by Jamie Martin 
Designed to compete against the likes of the Honda Civic Type-R and Ford Focus RS, the SHC would be offered with a choice of two different engine/transmission packages.
It has similarities to both a supercar and a 3-door hatchback and boasts of both styling and performance characteristics. The concept car is available in a choice of three next generation powertrains, including an electric / hybrid option. Interestingly, the body is composed of 65% Steel and 35% aluminum used for front wings, bonnet & bumpers. Alternatively, 30% glass reinforced plastic can be used for designated sections. 
2010 Super Hatchback Concept Car by Jamie Martin 
Other features include front and rear window ‘air-streams’, combined with hydrophobic and super-fast screen heating and high-intensity LED/Single-Source fiber-optic illumination used on the headlight wing, lower fog light, and rear lights. Martin describes the car to have a “balanced formula of raw power, racing spirit, practicality and eco engine choices.” He said that this means that you have a supercar-inspired drive to use for weekly shopping.
2010 Super Hatchback Concept Car by Jamie Martin 
The first proposed powertrain of the concept consists of a twin-turbocharged internal combustion engine with direct injection, stop-start technology and regenerative braking. Transmission would be via a 6-Speed Short-Shift manual gearbox or a 7-speed paddleshift auto.
2010 Super Hatchback Concept Car by Jamie Martin 
The second option is a system dubbed the 'Delta Drive Hybrid (DDH)'. This setup consists of a smaller displacement internal combustion engine and a pair of electric motors. Nano-Titanate batteries located in the engine bay, and under the floor would feed power to the high-torque electric motors mounted within the front wheels. 3-performance modes would be available: Economy (low bhp town driving), Normal (medium bhp - motorway driving), and Performance (high bhp - utilising both the petrol engine and electric generator together for ultimate power). The car could also be driven in full electric mode for around 70 miles before the engine was needed to recharge the batteries.
2010 Super Hatchback Concept Car by Jamie Martin 
Further highlights of the SHC include a magnetorheological fluid suspension system with Normal, Sport & Track modes. This system, first used by Ferrari, features dampers with iron filings suspended in fluid. When an electrical current is passed through the fluid it instantaneously changes the damping rate and stiffens up the suspension.
2010 Super Hatchback Concept Car by Jamie Martin 
While the SHC is just an independent concept with no intention of production, it does seem more and more likely that hybrid technology will filter very quickly into performance vehicles - and hot hatches could be one of the first segments to make the switch.

2010 Super Hatchback Concept Car by Jamie Martin

Details on a possible future eco-friendly model, called SHC (Super Hatchback Concept), were revealed by designer Jamie Martin, a UK based designer whose previous works include the Cobra Venom V8 concept and the London Navigator bus. The SHC was conceived out of a desire to fuse the two very different worlds of hatchbacks and supercars. And in a world where limiting CO2 output is becoming increasingly important, the SHC also has some green tech up its sleeve.
2010 Super Hatchback Concept Car by Jamie Martin 
Designed to compete against the likes of the Honda Civic Type-R and Ford Focus RS, the SHC would be offered with a choice of two different engine/transmission packages.
It has similarities to both a supercar and a 3-door hatchback and boasts of both styling and performance characteristics. The concept car is available in a choice of three next generation powertrains, including an electric / hybrid option. Interestingly, the body is composed of 65% Steel and 35% aluminum used for front wings, bonnet & bumpers. Alternatively, 30% glass reinforced plastic can be used for designated sections. 
2010 Super Hatchback Concept Car by Jamie Martin 
Other features include front and rear window ‘air-streams’, combined with hydrophobic and super-fast screen heating and high-intensity LED/Single-Source fiber-optic illumination used on the headlight wing, lower fog light, and rear lights. Martin describes the car to have a “balanced formula of raw power, racing spirit, practicality and eco engine choices.” He said that this means that you have a supercar-inspired drive to use for weekly shopping.
2010 Super Hatchback Concept Car by Jamie Martin 
The first proposed powertrain of the concept consists of a twin-turbocharged internal combustion engine with direct injection, stop-start technology and regenerative braking. Transmission would be via a 6-Speed Short-Shift manual gearbox or a 7-speed paddleshift auto.
2010 Super Hatchback Concept Car by Jamie Martin 
The second option is a system dubbed the 'Delta Drive Hybrid (DDH)'. This setup consists of a smaller displacement internal combustion engine and a pair of electric motors. Nano-Titanate batteries located in the engine bay, and under the floor would feed power to the high-torque electric motors mounted within the front wheels. 3-performance modes would be available: Economy (low bhp town driving), Normal (medium bhp - motorway driving), and Performance (high bhp - utilising both the petrol engine and electric generator together for ultimate power). The car could also be driven in full electric mode for around 70 miles before the engine was needed to recharge the batteries.
2010 Super Hatchback Concept Car by Jamie Martin 
Further highlights of the SHC include a magnetorheological fluid suspension system with Normal, Sport & Track modes. This system, first used by Ferrari, features dampers with iron filings suspended in fluid. When an electrical current is passed through the fluid it instantaneously changes the damping rate and stiffens up the suspension.
2010 Super Hatchback Concept Car by Jamie Martin 
While the SHC is just an independent concept with no intention of production, it does seem more and more likely that hybrid technology will filter very quickly into performance vehicles - and hot hatches could be one of the first segments to make the switch.

Capstone Supercar CMT-380 the high performance hybrid electric microturbine vehicle Debut at LA Auto Show

Capstone Supercar CMT-380

The Capstone CMT-380 was the surprise basement find of the LA Auto Show.The Capstone CMT-380 is essentially a prototype show car designed to highlight the technology and products available from Capstone Turbine Corporation. The concept for the high performance hybrid electric microturbine vehicle was developed by Electronic Arts (EA) Chief Creative Director Richard Hilleman.
Capstone Supercar CMT-380

After working on the car for four years, inventor Richard Hilleman was the man of the hour as he fielded questions about his unusual microturbine-lithium-ion hybrid powertrain fitted to a GTM Supercar kit body. It may still be in the test phase, but Capstone claims that the car can reach a top speed of 150mph, and is able to sprint from zero to 60mph in just 3.9 seconds.
The CMT-380 features an unusual hybrid drivetrain which uses one of Capstone's new C30 (30-kilowatt) microturbine engines to extend the range of the primarily electric powered vehicle. The turbine can be run on either diesel or biodiesel.
Capstone Supercar CMT-380

The CMT-380 features lithium-polymer battery cells that can be charged at home or at a public recharging station. While driving, the CMT-380 can operate on 100 percent battery power in zero emissions mode for a range of up to 80 miles. When the batteries reach a predetermined state of discharge, the Capstone C30 microturbine quietly fires up and recharges the batteries on the fly to extend the driving range up to 500 miles. The diesel fueled C30 microturbine requires less maintenance than traditional combustion engines and produces ultra-low exhaust emissions. Hilleman has owned an electric vehicle – a converted Porsche 550 Spyder – for at 15 years and has constantly upgraded it. The EV used to have just 30 hp with lead acids but now uses lithium ferrous batteries and has 200 hp. The 100-mile range hasn't changed, though, and so he knew it was time to build a hybrid. He decided on Capstone's diesel microturbines as the range extender.
Capstone Supercar CMT-380

He knew he could rely on them – they've been used in buses for years – but there was still the challenge of fitting the unit into a car like this. Hilleman built the CMT-380 just for himself, but Capstone is happy to show it off as a proof of concept vehicle. It would be too pricey to put into mass production (Hilleman estimated he put in about $375,000 hours of work), but it's not impossible that a high-end, expensive, limited production run could be made some day.
Capstone Supercar CMT-380

Right now, Hilleman is really happy with his creation. He especially loves the sound of the vehicle. Three feet to the side of the car, the microturbine puts out about 87 dB, but in the cabin, it's nearly silent. California law might require him to add a muffler, but it's already quiet enough without one. He's got a solution for that problem, should he need it.
The chassis and bodywork of the Capstone CMT-380 are borrowed from the Factory Five GTM kit sports car, and modified to accept the hybrid drivetrain.
Capstone Supercar CMT-380

"Capstone's CMT-380 is just now finishing up the conceptual design and first article testing stage," said Darren Jamison, Capstone President and CEO. "We plan to finalize very soon a limited production plan, in part, based on interest received at the [2009] LA Auto Show. We anticipate customers will be a select group of individuals who appreciate its many innovative high-performance and high-technology driving characteristics, long driving range and ultra-low emissions," added Jamison.

Capstone Supercar CMT-380 the high performance hybrid electric microturbine vehicle Debut at LA Auto Show

Capstone Supercar CMT-380

The Capstone CMT-380 was the surprise basement find of the LA Auto Show.The Capstone CMT-380 is essentially a prototype show car designed to highlight the technology and products available from Capstone Turbine Corporation. The concept for the high performance hybrid electric microturbine vehicle was developed by Electronic Arts (EA) Chief Creative Director Richard Hilleman.
Capstone Supercar CMT-380

After working on the car for four years, inventor Richard Hilleman was the man of the hour as he fielded questions about his unusual microturbine-lithium-ion hybrid powertrain fitted to a GTM Supercar kit body. It may still be in the test phase, but Capstone claims that the car can reach a top speed of 150mph, and is able to sprint from zero to 60mph in just 3.9 seconds.
The CMT-380 features an unusual hybrid drivetrain which uses one of Capstone's new C30 (30-kilowatt) microturbine engines to extend the range of the primarily electric powered vehicle. The turbine can be run on either diesel or biodiesel.
Capstone Supercar CMT-380

The CMT-380 features lithium-polymer battery cells that can be charged at home or at a public recharging station. While driving, the CMT-380 can operate on 100 percent battery power in zero emissions mode for a range of up to 80 miles. When the batteries reach a predetermined state of discharge, the Capstone C30 microturbine quietly fires up and recharges the batteries on the fly to extend the driving range up to 500 miles. The diesel fueled C30 microturbine requires less maintenance than traditional combustion engines and produces ultra-low exhaust emissions. Hilleman has owned an electric vehicle – a converted Porsche 550 Spyder – for at 15 years and has constantly upgraded it. The EV used to have just 30 hp with lead acids but now uses lithium ferrous batteries and has 200 hp. The 100-mile range hasn't changed, though, and so he knew it was time to build a hybrid. He decided on Capstone's diesel microturbines as the range extender.
Capstone Supercar CMT-380

He knew he could rely on them – they've been used in buses for years – but there was still the challenge of fitting the unit into a car like this. Hilleman built the CMT-380 just for himself, but Capstone is happy to show it off as a proof of concept vehicle. It would be too pricey to put into mass production (Hilleman estimated he put in about $375,000 hours of work), but it's not impossible that a high-end, expensive, limited production run could be made some day.
Capstone Supercar CMT-380

Right now, Hilleman is really happy with his creation. He especially loves the sound of the vehicle. Three feet to the side of the car, the microturbine puts out about 87 dB, but in the cabin, it's nearly silent. California law might require him to add a muffler, but it's already quiet enough without one. He's got a solution for that problem, should he need it.
The chassis and bodywork of the Capstone CMT-380 are borrowed from the Factory Five GTM kit sports car, and modified to accept the hybrid drivetrain.
Capstone Supercar CMT-380

"Capstone's CMT-380 is just now finishing up the conceptual design and first article testing stage," said Darren Jamison, Capstone President and CEO. "We plan to finalize very soon a limited production plan, in part, based on interest received at the [2009] LA Auto Show. We anticipate customers will be a select group of individuals who appreciate its many innovative high-performance and high-technology driving characteristics, long driving range and ultra-low emissions," added Jamison.

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