Showing posts with label Lotus. Show all posts
Showing posts with label Lotus. Show all posts

Friday, November 19, 2010

2010 Lotus Sport Cars Elan Concept

2010 Lotus Sport Cars Elan Concept

At Paris Auto Show 2010 Lotus automaker manufacture has display six new models super car sport. One of the six models is the Lotus Elan Concept. 2010 Lotus Elan Concept Cars, a high performance sports car, is the beating heart of the new Lotus line-up and thanks to some clever innovations the Lotus Elan also has everyday usability too.
2010 Lotus Sport Cars Elan Concept
Elan is expected to go to production in summer of 2013 and will be available for purchase in fall of 2013. Like the Evora, the Lotus Elan features 2+2 seating, suggesting that the new Evora may not really have a long life at Lotus. Prices for the production Elan are estimated to start around $118,500 ( £75,000 ).
Lotus Elan Concept Power is provided by a mid-mounted 4.0-liter V6 engine with 450 PS (331 kW / 444 hp) and 465 Nm (343 lb-ft) of toque. It is backed up by a seven-speed DCT transmission, which enables the 1,295 kg (2,855 lb) car to accelerate from 0-100 km/h in 3.5 seconds and hit a top speed of 310 km/h (193 mph). If that fails to attract your attention, perhaps you’ll be interested in the hybrid variant which will have CO2 emissions as low as 199 g/km. With performance specs like that, there's a little double that Elan is supercar.
From a styling perspective, the Elan is built like an athlete with a muscular physique and perfect poise. It’s a thoroughbred, rigid with tension, ambitious and addictive, nothing but best in class will suffice for this car.
It’s not enough to simply provide performance and exceptional looks, innovation is also integral to the Elan’s appeal. In keeping with the rest of the new Lotus range, the Elan features optional hybrid technology with KERS.
2010 Lotus Sport Cars Elan Concept
Dany Bahar, Chief Executive Officer of Group Lotus, said: “If there was ever a car to make you drive the long way home, it’s the Elan. Perfect for both road and track, the Elan not only ticks all the boxes, it creates new ones too.”
“The Elan will convert people to Lotus, I would challenge people not to become addicted to driving it. It will also go a long way towards dispelling the old misconceptions about this class, that in order to have high performance you must sacrifice usability – those days are gone.”
“Once you drive an Elan you won’t look back, it will give you things you didn’t even realise you were missing – that’s the essence of Lotus and the Elan perfectly captures that spirit.”

2010 Lotus Sport Cars Elan Concept

2010 Lotus Sport Cars Elan Concept

2010 Lotus Sport Cars Elan Concept

At Paris Auto Show 2010 Lotus automaker manufacture has display six new models super car sport. One of the six models is the Lotus Elan Concept. 2010 Lotus Elan Concept Cars, a high performance sports car, is the beating heart of the new Lotus line-up and thanks to some clever innovations the Lotus Elan also has everyday usability too.
2010 Lotus Sport Cars Elan Concept
Elan is expected to go to production in summer of 2013 and will be available for purchase in fall of 2013. Like the Evora, the Lotus Elan features 2+2 seating, suggesting that the new Evora may not really have a long life at Lotus. Prices for the production Elan are estimated to start around $118,500 ( £75,000 ).
Lotus Elan Concept Power is provided by a mid-mounted 4.0-liter V6 engine with 450 PS (331 kW / 444 hp) and 465 Nm (343 lb-ft) of toque. It is backed up by a seven-speed DCT transmission, which enables the 1,295 kg (2,855 lb) car to accelerate from 0-100 km/h in 3.5 seconds and hit a top speed of 310 km/h (193 mph). If that fails to attract your attention, perhaps you’ll be interested in the hybrid variant which will have CO2 emissions as low as 199 g/km. With performance specs like that, there's a little double that Elan is supercar.
From a styling perspective, the Elan is built like an athlete with a muscular physique and perfect poise. It’s a thoroughbred, rigid with tension, ambitious and addictive, nothing but best in class will suffice for this car.
It’s not enough to simply provide performance and exceptional looks, innovation is also integral to the Elan’s appeal. In keeping with the rest of the new Lotus range, the Elan features optional hybrid technology with KERS.
2010 Lotus Sport Cars Elan Concept
Dany Bahar, Chief Executive Officer of Group Lotus, said: “If there was ever a car to make you drive the long way home, it’s the Elan. Perfect for both road and track, the Elan not only ticks all the boxes, it creates new ones too.”
“The Elan will convert people to Lotus, I would challenge people not to become addicted to driving it. It will also go a long way towards dispelling the old misconceptions about this class, that in order to have high performance you must sacrifice usability – those days are gone.”
“Once you drive an Elan you won’t look back, it will give you things you didn’t even realise you were missing – that’s the essence of Lotus and the Elan perfectly captures that spirit.”

2010 Lotus Sport Cars Elan Concept

Monday, August 2, 2010

Sport Car: Lotus Sport Exige GT3

Sport Car Lotus Sport Exige GT3Sport Car Lotus Sport Exige GT3 Black Color


The prototype Lotus Sport Exige GT3 race car was unveiled at the annual FIA GT Championship presentation ceremony outside the world famous Casino in Monte Carlo, Monaco 2nd December 2005th The next day (2 December 2005), the first test vehicle was held at high speed Paul Ricard High Tech Test Track in Southern France under FIA supervision, the first phase of the Lotus Sport Exige GT3 becoming eligible for FIA GT3 competition. This latest FIA series, which will begin in 2006, has been racing cars that have the same power and weight, and that has direct lineage to their road going versions.


Lotus Sport Exige GT3 participants developed the Lotus Sport, the performance arm Lotus Cars and is derived from the standard Lotus Exige coupé model. Weighing about 750 kg, it stays true to "performance through light weight" core Lotus philosophy. The car uses a race prepared 1.8 2ZZ-GE VVTL-i engine with a Roots-type supercharger and air-to-air intercooler that uses Lotus T4e Engine Control Unit to produce 285 hp (289 hp) at 7800 rpm. This gives an impressive power to weight ratio of 380 hp / tonne or 2.6 kg / hp.

After a brief shakedown program Lotus test track at Hethel, factory test driver Gavan Kershaw conducted a final set of chassis tires on the wet morning session at Paul Ricard official FIA test. What followed was a trip to slick tires on the track by FIA nominated test driver drying Christophe Bouchut.

Sport Car Lotus Sport Exige GT3 Desig TripSport Car Lotus Sport Exige GT3 Back


Commenting on the encouraging test, Chris Arnold, General Manager of Lotus Sport, explained: "We were delighted to attend the official FIA tests. Since the car was still on the drawing board two months ago, it's a fantastic achievement for the full build-in such a short time. We knew this test would be a first test for the car at the spot, and I am very pleased with the results. Our winter development program began testing the tunnel just before Christmas followed by further work in preparation for the next FIA test in March. "

FIA announced five races of the European Championship for the new GT3 class with rounds in the UK, Germany, Belgium, France and Italy. Various national GT Championships are also considering modifications to its regulations to include GT3 class.

Sport Car Lotus Sport Exige GT3 New carSport Car Lotus Sport Exige GT3 Turing

Monday, June 21, 2010

Special Edition Lotus Elise SC RGB and Exige S RGB [Video]


Lotus is launching two special-edition cars in honor of vehicle engineering director Roger Becker, who retired from Lotus in January. Becker joined Lotus in 1966 and helped develop every new Lotus since, including the Esprit, Elan, and Evora.

The Elise SC RGB (for Roger G. Becker) features ultra-lightweight forged alloy wheels, sport and touring packages, air conditioning, monochrome Lotus badges, an individually numbered plaque, and Roger Becker's signature on B-pillar. It is powered by a 217 hp (220 PS / 162 kW) supercharged 1.8-liter engine, which allows the car to accelerate from 0-60 mph in 4.3 seconds (0-100 km/h in 4.6 seconds).

The Elise SC RGB Special Edition is powered by a supercharged 1.8 liter engine that develops a total of 217 hp and rockets the car from 0 to 60 mph in 4.3 seconds. The Lotus Exige S RGB Special Edition gets a supercharged and intercooled 1.8 liter engine with 257 HP and a sprint time of 4 seconds.

Body colours available for the Lotus Elise SC RGB and the Lotus Exige S RGB are Aspen White, Starlight Black, Solar Yellow and Carbon Grey and each exemplar will also feature a numbered plaque with Roger Becker's signature.

The cars will go on sale in September, the Elise SC RGB will be priced from £38,550 (€43,655) while the Exige S RGB starts at £41,950 (€50,042).


Lotus Exige S RGB Special Edition Lotus Exige S RGB Special Edition


Press Release

Roger Becker, former Director of Vehicle Engineering for Lotus is celebrated with a series of special edition versions of the final run of European specification 1.8 litre Elise and Exige sportscars.

In celebration of his now legendary input over the years, Roger Becker (RGB) who retired in January following 44 years of service, will have a series of Lotus Elise and Lotus Exige sports cars in bespoke RGB Special Edition specification produced and set for release from September 2010.

The Elise SC and Exige S RGB Special Editions will both be specified to a high level with Sports and Touring packs as standard. The Elise SC RGB Special Edition has a supercharged 217 hp (220 ps) 1.8 litre engine which blesses it with a 0-60 mph time of 4.3 seconds (0-100kmh in 4.6 seconds). The Lotus Exige S RGB Special Edition uses the range topping 257 (260 ps) supercharged and intercooled 1.8 litre engine which endows it with a 0-60 mph in around 4 seconds and a phenomenal aerodynamic downforce figure of 92.5 lbs (42 kg) at 100 mph (160 kmh).

Roger Becker said, "I am honoured that Lotus has named these two special editions after me, especially as it allows me to offer the customer my favourite specifications. The past 44 years have been an incredible journey and I'm looking forward to watching Lotus progress in the future, I have no doubt that the company will continue to go from strength to strength."

Both the Elise SC and the Exige S RGB Special Editions are available in four colours, Aspen White, Starlight Black, Solar Yellow & Carbon Grey and each one is identified by a numbered interior plaque, Roger Becker's signature on the side of the bodywork and special monochrome Lotus nose badge.

At the end of 2010, production of the European versions of the Elise R and SC and the Exige S and Cup 260, which use the 1.8 litre 2ZZ VVTL-i engines supplied by Toyota, will finish due to changes in legislation and the introduction of "Euro 5" Type Approval which does not apply to these cars. Production of the Elise R and SC and the Exige S and Cup 260 will, however, continue for all other markets.

Andreas Prillmann, Chief Commercial Officer for Lotus Cars said, "I would like to thank Roger for his dedication to Lotus It's fitting that an exclusive number of the last of the 1.8 litre Elises and Exiges for Europe are dedicated to Roger, who has been instrumental in the development of so many Lotus cars over the years, in particularly the Evora, the Exige and the recent versions of the Elise. Not only has his extensive knowledge and learning been passed on to our team of talented and skilled engineers, but also his passion for the Lotus brand and heritage has helped Lotus grow into the world class organisation that it is today."

The new, super efficient 2011 Model Year Lotus Elise, introduced to the market earlier this year, will continue for all markets where it is sold including Europe.

The Lotus Elise SC RGB Special Edition in more detail:

  • 217 hp (220 ps) supercharged 1.8 litre engine
  • Lotus ultra lightweight forged alloy wheels
  • Sport pack
  • Touring pack
  • Four paint colours - Aspen White, Starlight Black, Solar Yellow & Carbon Grey
  • Roger Becker signature on rear of the car
  • Roger Becker numbered plaque
  • Monochrome Lotus badges
  • Air conditioning
  • Recommended Retail Price:
    • UK: £38,550 (including VAT)
    • Euro Zone: € 43,655 (excluding regional taxes)
    • Switzerland: CHF 71,435 (excluding taxes)

Official European Combined Cycle = 8.5 litres / 100 km (33.2 mpg)
Official European Extra Urban Cycle = 6.4 litres/100 km (44.1 mpg)
Official European Urban Cycle = 11.8 litre/100 km (23.9 mpg)
199 g/km of CO2

The Lotus Exige S RGB Special Edition in more detail:

  • Standard Features
  • 257 hp (260 ps) Supercharged 2ZZ 1.8 engine
  • Lotus ultra lightweight forged alloy wheels
  • Performance pack
  • Sport pack
  • Touring pack
  • Four paint colours - Aspen White, Starlight Black, Solar Yellow & Carbon Grey
  • Roger Becker signature on rear of car
  • Roger Becker numbered plaque
  • Monochrome Lotus badges
  • Structural shear panel which gives increases lateral stiffness to the rear subframe by 30%
  • Air conditioning
  • Recommended Retail Price:
    • UK: £41,950 (including VAT)
    • Euro Zone: € 50,042 (excluding regional taxes)
    • Switzerland: CHF 81,887 (excluding taxes)

Official European Combined Cycle = 8.5 litres / 100 km (33.2 mpg)
Official European Extra Urban Cycle = 6.5 litres/100 km (43.5 mpg)
Official European Urban Cycle = 11.9 litre/100 km (23.7 mpg)
199 g/km of CO2

Press release announcing Roger Becker’s retiremen:

Roger Becker Lotus' Director of Vehicle Engineering is retiring from Group Lotus after a long career of 44 years.

Roger, 64, joined Lotus in 1966, working on the Elan assembly line at Cheshunt, but his natural driving and engineering skills came to the attention of Lotus founder Colin Chapman and Roger was quickly moved to the vehicle development team where he worked directly with Mike Kimberley (former Lotus CEO) on the Lotus Europa Twin Cam - his first Lotus car development project.

During his career at Lotus, Roger has been responsible for the development of every Lotus car, including the legendary Esprit, Excel, Elan, Elise, Exige and the new critically acclaimed Lotus Evora. Roger has helped to maintain the philosophies laid down by Colin Chapman and has ensured that the essence and purity of Lotus is instilled in all new Lotus cars. He also has imparted his chassis engineering knowledge and development skills to many of the world's major automotive manufacturers in support of Lotus' consultancy engineering business.

On his retirement, Roger Becker said, "I have had a dream career at Lotus, with the honour of not only working directly for Colin Chapman but also working with some of the finest people in the motor industry. With the Lotus Evora successfully entering the market with unprecedented global adulation, and at 64 years of age, I feel now is the natural time to retire. The Evora has given me my finest hour at Lotus and I leave knowing it will be the foundation of all our next generation cars. The product engineering team will build on this to develop many more award-winning products and I wish them every success for what promises to be a very exciting future for Lotus cars and the Lotus brand."

Dany Bahar, CEO of Group Lotus plc said, "On behalf of all the staff at Lotus, I would like to thank Roger for his contribution to Lotus over 44 years and we wish him well in his retirement."


Tuesday, June 8, 2010

Lotus Sports Cars Evora Type 124 Endurance Racecar

Proton-owned and British-based sports car maker Lotus has announced the Evora Type 124 Endurance Racecar (pronounced One Twenty Four). Based on the Evora road car, it is powered by a mid-mounted Toyota V6 powerplant. The engine is race-tuned and can output over 400PS, depending on race regulations. The power unit is linked to a 6 speed sequential transmission with steering wheel-mounted paddle shifters. It can weigh less than 1,200 kg, again depending on race regulations, thanks to an aluminium chassis, very strong lightweight forged aluminium wishbones and lightweight composite and carbon fiber panels.
Lotus Sports Cars Evora Type 124 Endurance Racecar
The Lotus Evora Type 124 Endurance Racecar has been developed from the award-winning Evora road car and is built to FIA regulations and safety standards. Based on the standard Evora road car, the Evora Type 124 (pronounced One Twenty-four) will make its 24 hour racing debut at the ADAC Nurburgring 24 hours race. According to Lotus, the Evora was designed for racing from the start and this made it very easy for the team to convert the Evora into a racecar, thanks to the mid-engine layout, stiff bonded aluminium chassis and lightweight forced aluminium wishbones for the suspension.
The Type 124 (pronounced One Twenty Four) Endurance Racecar is the next step in the evolution of the Evora. The car will make its 24 hour racing debut at the ADAC Nürburgring 24 Hours which provides a great test for the Evora’s performance, efficiency and durability under tough and demanding endurance race conditions.
The Evora gets a race-tuned version of the Toyota V6 mated to a 6-speed sequential paddle shift racing gearbox, and it now produces over 400 PS which is well over the 100 PS per liter ratio. I wish they’d listed out more specifications as to the specs of the engine – I dig this kind of stuff. In stock form, the Evora makes 280 horsepower from its 3.5 liter V6 engine, but even for the road car its said that a supercharged version could come later putting out over 400 horses.
At the heart of the Lotus Evora are fundamental racecar elements: mid-engine layout, high-tech and super-stiff extruded and bonded aluminium chassis and very strong lightweight forged aluminium wishbones. All these elements mean that it is a natural evolution from the road going Lotus Evora to a competitive endurance racecar.
From the outset the design team had intentions to take the Evora racing and the chassis was designed with this in mind. Endurance races are the perfect events to showcase the efficiency, handling and durability characteristics that have been fundamental to the concept of the Evora.
The Lotus Evora Type 124 Endurance Racecar has a race-tuned version of the mid-mounted Toyota V6 engine, with power increased to over 400 ps (depending on race regulations). Vehicle mass is expected to be reduced by up to 200 kg, bringing the weight of the racecar to less than 1200 kg (depending on race regulations).
Further changes for the Lotus Evora Type 124 Endurance Racecar include a six speed sequential paddle shift racing gearbox, full FIA specification roll cage, FIA-compliant 120 litre ATL fuel system, FIA fire extinguisher system, competition carbon fibre rear wing, diffuser and front splitter.
The racecar is fitted with AP Racing 6 piston callipers front and rear, with a race-tuned Bosch ABS system, 4-way adjustable dampers and adjustable anti-roll bars. The racecar runs on 18” rims shod with Pirelli racing slicks and the wheels widths have been increased over the roadcar to 9 ½ J on the front and 11 J on the rear.
Loads of goodies are added to the car – AP Racing 6 pot brakes on both front and back, a race-tuned Bosch ABS system, 4-way adjustable dampers, adjustable anti-roll bars, 18 inch wheels (nice and wide 9.5 from and 11 at the rear) with Pirelli slicks, a full FIA rollcage, an FIA 120 liter ATL fuel system, FIA fire extinguisher, yet weight is cut down from the production car to under 1200kg depending on race regulations. This is thanks to the use of carbon fiber extensively in the rear wing, diffuser, font splitter, and body panels.
The aerodynamically efficient Lotus Evora Type 124 Endurance Racecar body design, made from lightweight composite and carbon fibre panels, remains predominantly unchanged from the road car, with the only modifications being to the lower sections of the front and rear clamshells and the side sills.
Luke Bennett, Director of Lotus Cars Limited, said, “Motorsport has been in our blood ever since our founder, Colin Chapman, built the first Lotus back in 1948. We are proud of our motorsport history, which includes victories in Formula One, Le Mans, saloon car, rally car and sportscar racing around the world; more recently, we won the British GT3 Championship in 2006 with the Lotus Exige. The Lotus Evora Type 124 Endurance Racecar is from the same unique stable and we expect it to be a competitive racecar when we enter various endurance races next year.”
Roger Becker, Vehicle Engineering Director for Group Lotus Plc said, “Every Lotus car is designed to be at home on the race track as well as the road, and the Evora is no different. Designed primarily as an everyday road car, the Evora’s lightweight and stiff structure, its aerodynamics and performance means that it is perfectly suited to taming race tracks around the world, and we are looking forward to seeing the new Lotus Evora Type 124 Endurance Racecar line up on the grid for the 2010 season.”
The racecar is expected to compete in a number of endurance races in 2010/ 2011 forming part of a factory-supported race program. The races that are targeted are: The 2010 ADAC Nürburgring 24 Hours (Nürburgring Nordschleife, Germany) in May 2010, Merdeka Millennium 12 Hours (Sepang, Malaysia) in August 2010, BritCar 24 Hours (Silverstone, UK) in October 2010 and the Dubai 24 Hours (Dubai Autodrome, UAE) January 2011.

Monday, May 31, 2010

2010 New Lotus Sports Cars Exige S240

British performance sports car manufacturer Lotus has officially unveiled their 2010 Lotus Exige S240.  While Lotus fans will recognize this as a very subtle update, the grille and rear wing facelift is a step forward for the mark. The exciting new 2010 Lotus Exige S240 enters the United States and Canadian markets in the fall of 2009 with new front styling, a new rear wing and the same rare combination of exceptional performance and high efficiency.
2010 New Lotus Sports Cars Exige S240
The Lotus Exige S240 features a roof integrated air intake scoop feeds air through the air-to-air intercooled and supercharged 1.8 liter Lotus-tuned and Toyota-sourced 2ZZ-GE engine with Intelligent Variable Valve Timing (VVT-i) to provide 240hp at 8,000 rpm and 170 ft.-lbs. of torque at 5,500.
The 2010 Lotus Exige S240 sprints to 60 mph in a blistering 4.1 seconds and the 100 mph barrier sails by in approximately 10 seconds with top speed is 150 mph. The Lotus Exige S240 is equipped with a 6-speed transaxle synchromesh transmission, traction control and launch control. New for 2010, the optional Track Package will include adjustable Ohlins dampers with threaded spring perches and remote oil reservoirs front and rear.
The Lotus Exige is a renowned high performance coupe that has a well earned reputation as the choice for drivers who demand uncompromised performance, both on the road and on the track. The 2010 Exige S240 introduces a few key enhancements to update the appearance and improve aerodynamic performance. A restyled front end and new larger, low drag rear wing, not only reduces drag, but also gives a more muscular stance enhancing the lightweight shrink-wrapped look of the whole car.
Passing along lessons learned on the track with the Exige GT3 racing program, Lotus Sport Cars has contributed another important technology – variable launch control combined with variable traction control. The launch control allows the driver to determine the number of revs they wish to use during a standing start. Having programmed that limit, the driver then holds their foot down fully on the throttle pedal and sidesteps the clutch pedal for a very quick departure from the line. The clutch damper cushions the severity of the clutch to transmission engagement to minimize the stresses to the drivetrain. The launch control also keeps wheel-spin at bay until 6 mph, after which the traction control assumes its duties.
Like all Lotus cars, the functional components of the car are also beautifully designed as Russell Carr, Chief of Lotus Design, explains, "For 2010 we have taken the already visually extreme Exige and given it even more visual drama. The changes we have integrated to the front and rear of the Exige signal an even clearer and purposeful intent. The functional rear wing is race-inspired, the new angular air intakes and full width splitter give a more hard-edged and aggressive look. Overall, the Exige appears more planted and gives the illusion that both the front and rear of the car are wider than they really are, yet without losing its agile and sleek character."
The new 2010 Lotus Exige S240 is scheduled to launch in the US and Canada in the Fall of 2009. This new 2010 Lotus Exige S240 goes on sale this fall with a starting price of $65,690 and will be available in an upgraded track package with added performance benefits. The 2010 Lotus Exige S240 will hit U.S. and Canadian markets this Autumn.

2010 New Lotus Sports Cars Exige S240

British performance sports car manufacturer Lotus has officially unveiled their 2010 Lotus Exige S240.  While Lotus fans will recognize this as a very subtle update, the grille and rear wing facelift is a step forward for the mark. The exciting new 2010 Lotus Exige S240 enters the United States and Canadian markets in the fall of 2009 with new front styling, a new rear wing and the same rare combination of exceptional performance and high efficiency.
2010 New Lotus Sports Cars Exige S240
The Lotus Exige S240 features a roof integrated air intake scoop feeds air through the air-to-air intercooled and supercharged 1.8 liter Lotus-tuned and Toyota-sourced 2ZZ-GE engine with Intelligent Variable Valve Timing (VVT-i) to provide 240hp at 8,000 rpm and 170 ft.-lbs. of torque at 5,500.
The 2010 Lotus Exige S240 sprints to 60 mph in a blistering 4.1 seconds and the 100 mph barrier sails by in approximately 10 seconds with top speed is 150 mph. The Lotus Exige S240 is equipped with a 6-speed transaxle synchromesh transmission, traction control and launch control. New for 2010, the optional Track Package will include adjustable Ohlins dampers with threaded spring perches and remote oil reservoirs front and rear.
The Lotus Exige is a renowned high performance coupe that has a well earned reputation as the choice for drivers who demand uncompromised performance, both on the road and on the track. The 2010 Exige S240 introduces a few key enhancements to update the appearance and improve aerodynamic performance. A restyled front end and new larger, low drag rear wing, not only reduces drag, but also gives a more muscular stance enhancing the lightweight shrink-wrapped look of the whole car.
Passing along lessons learned on the track with the Exige GT3 racing program, Lotus Sport Cars has contributed another important technology – variable launch control combined with variable traction control. The launch control allows the driver to determine the number of revs they wish to use during a standing start. Having programmed that limit, the driver then holds their foot down fully on the throttle pedal and sidesteps the clutch pedal for a very quick departure from the line. The clutch damper cushions the severity of the clutch to transmission engagement to minimize the stresses to the drivetrain. The launch control also keeps wheel-spin at bay until 6 mph, after which the traction control assumes its duties.
Like all Lotus cars, the functional components of the car are also beautifully designed as Russell Carr, Chief of Lotus Design, explains, "For 2010 we have taken the already visually extreme Exige and given it even more visual drama. The changes we have integrated to the front and rear of the Exige signal an even clearer and purposeful intent. The functional rear wing is race-inspired, the new angular air intakes and full width splitter give a more hard-edged and aggressive look. Overall, the Exige appears more planted and gives the illusion that both the front and rear of the car are wider than they really are, yet without losing its agile and sleek character."
The new 2010 Lotus Exige S240 is scheduled to launch in the US and Canada in the Fall of 2009. This new 2010 Lotus Exige S240 goes on sale this fall with a starting price of $65,690 and will be available in an upgraded track package with added performance benefits. The 2010 Lotus Exige S240 will hit U.S. and Canadian markets this Autumn.

Wednesday, April 28, 2010

Lotus Engineering demonstrates the lightweight future of the passenger car


Lotus Engineering conducted two studies to look at the possibility of developing passenger vehicles from 2017. The specialised lightweight sports car maker says its long-time philosophy of weight reduction will benefit potential customers in the areas of fuel consumption and C02 emissions.

company engineers discovered that by improving the aerodynamics by 80 counts, the car netted a six mile per gallon improvement in its highway fuel economy rating (note: a "count" is a thousandth of a point of a Cd number, so reducing a Cd of 0.150 by 50 counts would give you a Cd of 0.100). On the flipside, taking out 400 pounds of stuff only improved the car's highway mpg by one mile a gallon, though that's largely because of the Newtonian "an object in motion tends to stay in motion unless acted upon by an outside force" hubbub.

The interior systems include 50% lighter seats, climate control hardware, navigation electronics and others. There is a high level of component integration for space maximisation and weight minimisation. An example is the audio/ air conditioning/navigation touch screen which also contains the shifter and parking brake functions. Chassis and suspension components are to be downsized, the glazing and width of the windscreen possibly reduced and replaced with an appropriate, lower weight substitute.





Press Release
  • Study by Lotus Engineering concludes that a vehicle mass improvement
    of 38% versus a conventional mainstream vehicle can be achieved at only
    3% cost.
  • Efficient design and lightweight materials significantly reduce CO2
    emissions.

Lotus Engineering has conducted a study to develop a commercially viable
mass reduction strategy for mainstream passenger vehicles. This study,
released by the International Council on Clean Transportation, focused on
the use of lightweight materials and efficient design and demonstrated
substantial mass savings. When compared with a benchmark Toyota Venza
crossover utility vehicle, a 38% reduction in vehicle mass, excluding
powertrain, can be achieved for only a 3% increase in component costs using
engineering techniques and technologies viable for mainstream production
programmes by 2020. The 2020 vehicle architecture utilises a mix of stronger
and lighter weight materials, a high degree of component integration and
advanced joining and assembly methodologies.

Based on U.S. Department of Energy estimates, a total vehicle mass
reduction of 33% including powertrain, as demonstrated on the 2020 passenger
car model, results in a 23% reduction in fuel consumption. This study
highlights how automotive manufacturers can adopt the Lotus philosophy of
performance through light weight.

Dr Robert Hentschel, Director of Lotus Engineering said: "Lighter
vehicles are cleaner and more efficient. That philosophy has always been
core to Lotus' approach to vehicle engineering and is now more relevant than
ever. Lightweight Architectures and Efficient Performance are just two of
our core competencies and we are delighted to have completed this study with
input from the National Highway Traffic Safety Administration and the U.S.
Environmental Protection Agency to provide direction for future CO2
reductions. We believe that this approach will be commonplace in the
industry for the future design of vehicles."

The study investigated scenarios for two distinct vehicle architectures
appropriate for production in 2017 and 2020. The near-term scenario is based
on applying industry leading mass reducing technologies, improved materials
and component integration and would be assembled using existing facilities.
The mass reduction for this nearer term vehicle, excluding powertrain, is
21% with an estimated cost saving of 2%.

A benchmark Toyota Venza was disassembled, analysed and weighed to
develop a bill of materials and understand component masses. In developing
the two low mass concepts, Lotus Engineering employed a total vehicle mass
reduction strategy utilising efficient design, component integration,
materials selection, manufacturing and assembly. All key interior and
exterior dimensions and volumes were retained for both models and the
vehicles were packaged to accommodate key safety and structural dimensional
and quality targets. The new vehicles retain the vision, sight line, comfort
and occupant package of the benchmarked Toyota Venza.

Darren Somerset, Chief Executive Officer of Lotus Engineering
Incorporated, Lotus' North American engineering division which led the
study, said "A highly efficient total vehicle system level architecture was
achieved by developing well integrated sub-systems and components,
innovative use of materials and process and the application of advanced
analytical techniques. Lotus Engineering is at the forefront of the
automotive industry's drive for the reduction in CO2 and other greenhouse
gas emissions and this study showcases Lotus Engineering's expertise and
outlines a clear roadmap to cost effective mass efficient vehicle
technologies."

Mass and Cost Summary


Base
Toyota Venza

excluding powertrain


Lotus Engineering Design


System


Weight


(kg)


2020
Venza


2017
Venza


%
Mass Reduction


%
Cost Factor


%
Mass Reduction


%
Cost Factor


Body


383


42%


135%


15%


98%


Closures/Fenders


143


41%


76%


25%


102%


Bumpers


18.0


11%


103%


11%


103%


Thermal


9.25


0%


100%


0%


100%


Electrical


23.6


36%


96%


29%


95%


Interior


252


39%


96%


27%


97%


Lighting


9.90


0%


100%


0%


100%


Suspension/Chassis


379


43%


95%


26%


100%


Glazing


43.7


0%


100%


0%


100%


Misc.


30.1


24%


99%


24%


99%


Totals


1290


38%


103%


21%


98%


The full report, entitled ‘An Assessment of Mass Reduction Opportunities for
a 2017 - 2020 Model Year Vehicle Program' can be found at the following
link:

http://www.theicct.org/documents/0000/1430/Mass_reduction_final_2010.pdf

ENDS

The 2020 Passenger Car Technical Detail

Body

The body includes the floor and underbody, dash panel assembly, front
structure, body sides and roof assembly. The baseline Toyota Venza
body-in-white contained over 400 parts and the revised 2020 model reduced
that part count to 211. The body-in-white materials used in the baseline
Venza were 100% steel, while the 2020 model used 37% aluminium, 30%
magnesium, 21% composites and 7% high strength steel. This reduces the
structure mass by 42% from 382 kg to 221 kg.

The low mass 2020 body-in-white would be constructed using a low energy
joining process proven on high speed trains; this process is already used on
some low volume automotive applications. This low energy, low heat friction
stir welding process would be used in combination with adhesive bonding, a
technique already proven on Lotus production sports cars. In this instance,
the robotically controlled welding and adhesive bonding process would be
combined with programmable robotic fixturing, a versatile process which can
be used to construct small and large vehicles using the same equipment.

Closures/Fenders

The closures include all hinged exterior elements, for example, the front
and rear doors and the rear liftgate. One alternative approach included
fixing the primary boot section to improve the structure, reduce masses and
limit exposure to high voltage systems. A lightweight access door was
provided for checking and replacing fluids.

The closures on the baseline Toyota Venza were made up of 100% steel. The
low mass Venza closures/fenders would be made up of 33% magnesium, 21%
plastic, 18% steel, 6% aluminium with the other 22% consisting of multiple
materials. The mass savings are 41%, a reduction from 143 kg to 84 kg.

Interior

The interior systems consist of the instrument panel, seats, soft and
hard trim, carpeting, climate control hardware, audio, navigation and
communication electronics, vehicle control elements and restraint systems.
There is a high level of component integration and electronic interfaces
replace mechanical controls on the low mass model. For the 2020 model the
instrument panel is eliminated replaced by driver and passenger side modules
containing all key functional and safety hardware. A low mass trim panel
made from a high quality aerated plastic closes out the two modules. The air
conditioning module is incorporated into the console eliminating the need
for close out trim panels; heated and cooled cupholders are integrated into
the HVA/C module. The audio/HVA/C/Navigation touch screen contains the
shifter and parking brake functions and interfaces with small electric
solenoids. This eliminates conventional steel parking brake and shifter
controls and cables as well as freeing up interior space.

The front seats mount to the structural sill and tunnel structure
eliminating conventional seat mounting brackets (10 kg) and the need to
locally reinforce the floorpan. The composite front seat structure utilises
proven foam technology; the seat mass is reduced by up to 50%. The rear seat
support structure is moulded into the composite floorpan eliminating the
need for a separate steel support structure. The front and rear seats use a
knit to shape fabric that eliminates material scrap and offers customers the
opportunity to order their favourite patterns for their new vehicle. Four
removable carpet modules replace the traditional full floor carpeting; this
reduces mass and allows cost effective upgrading of the carpet quality. The
floorpan is grained in all visible areas. The 2017 production interior mass
was reduced from 250 kg to 182 kg with projected cost savings of 3%. The
2020 production interior mass was 153 kg with projected cost savings of 4%.

Chassis/Suspension

The chassis and suspension system was composed of suspension support
cradles, control links, springs, shock absorbers, bushings, stabilizer bars
and links, steering knuckles, brakes, steering gearbox, bearings, hydraulic
systems, wheels, tires, jack and steering column.

The chassis and suspension components were downsized based on the revised
vehicle curb weight, maintaining the baseline carrying capacity and
incorporating the mass of the hybrid drive system.

The total vehicle curb weight reduction for the 2020 vehicle was 38%,
excluding the powertrain. Based on the gross vehicle weight, which includes
retaining the baseline cargo capacity of 549 kg and utilising a hybrid
powertrain, the chassis and the suspension components were reduced in mass
by 43%, with projected cost savings of 5%.

Front and Rear Bumpers

The materials used on the front and rear bumpers were very similar to the
existing model to maintain the current level of performance. One change was
to replace the front steel beam with an aluminium beam which reduced mass by
11%. The use of a magnesium beam was analysed but at the current time
exceeded the allowable price factor.

Heating, Ventilation and Air Conditioning

The air conditioning system was integrated into a passenger compartment
system and an engine compartment system. This section addressed the under
hood components which included the compressor, condenser and related
plumbing. The under hood components were investigated for technologies and
mass.

The study showed a relatively small mass difference for the underhood air
conditioning components based on both vehicle mass and interior volume.
Because of the highly evolved nature of these components, the requirements
for equivalent air conditioning performance and the lack of a clear
consensus for a future automotive refrigerant, the mass and cost of the
Toyota Venza compressor, condenser and associated plumbing were left
unchanged for both the 2017 and 2020 models.

Glazing

The glazing of the baseline vehicle was classified into two groups: fixed
and moving. The fixed glass is bonded into position using industry standard
adhesives and was classified into two sub groups: wiped and non wiped.

Factors involved in making decisions about glazing materials include the
level of abrasion it is likely to see during the vehicle life, the
legislative requirements for light transmissibility, the legislative
requirements for passenger retention and the contribution it will make to
interior noise abatement.

The specific gravity of glass is 2.6 and the thickness of a windshield is
usually between 4.5 mm and 5 mm, therefore the mass per square metre of 5 mm
glass is approximately 13 kgs. The high mass of glass provides a strong
incentive to reduce the glazed area of the body, reduce the thickness of the
glass and find a suitable substitute that is lighter. Fixed glass on the
side of the vehicle offers the best opportunity for mass reduction.

The mass of the baseline glazing was retained for both the 2017 and 2020
models; this was a conservative approach. It is possible that coated
polycarbonate materials may become mainstream in the 2017 - 2020 timeframe
for fixed applications.

Electrical/Lighting

The estimated mass savings for using thinwall cladding and copper clad
aluminium wiring, as used on the 2017 model was 36% versus the baseline
model. The lighting technologies section reviewed included diodes, xenon and
halogen. The study also reviewed a variety of wireless technologies under
development for non-transportation applications that could be used in this
time period pending successful development for mobile applications.