Showing posts with label engines. Show all posts
Showing posts with label engines. Show all posts

Monday, August 6, 2007

New Nissan X-Trail with diesel engine for Japan

Nissan X-Trail diesel engine for Japan
PRESS RELEASES:
NISSAN TO INTRODUCE CLEAN DIESEL ENGINE IN JAPAN
- X-TRAIL diesel to debut in 2008 -

TOKYO (August 6, 2007)--Nissan Motor Co., Ltd. today announced plans to launch a new clean diesel engine for use in the X-TRAIL sport-utility-vehicle, to be introduced in Japan in the fall of 2008. Based on the M9R engine co-developed with Alliance-partner Renault, the Nissan version will adopt original clean diesel technologies (high-performance catalysts and advanced engine management technologies). This clean diesel engine is being developed to lower exhaust gas emissions to levels comparable to those of new emission standards in Japan. Further details on performance and specifications will be revealed closer to introduction.

Introducing its first clean diesel engine in Japan is another action planned under the Nissan Green Program 2010, the company's mid-term environmental action plan focused on CO2 emissions reduction. Nissan is committed to bringing the right technology to the right market at the right time with the right value to the customer. Major research and development programs include fuel cell cars, hybrid cars, biofuel-based cars, electric vehicles, improvement in gasoline engines and clean diesels.

###

NISSAN DEVELOPS ADVANCED SULEV-STANDARD CLEAN DIESEL

TOKYO (August 6, 2007)--Nissan Motor Co., Ltd. today announced that a new clean diesel technology using high-performance catalysts shows great promise and may be able to meet the State of California's standard for super-ultra-low emission vehicles (SULEVs), equivalent to the Tier2Bin2 emissions requirements. Nissan plans to do further research and development of the clean diesel technology for commercial application in its future products.

Three components work together in Nissan's new technology to reduce diesel emissions: modulated-kinetic (MK) combustion*¹, high-performance catalysts, and advanced engine control systems*².

Nissan's unique Hydrocarbon-Oxides of Nitrogen (HC-NOx) trap catalyst technology comprise a breakthrough construction which incorporates a HC-trap layer in the NOx-trap catalyst. The HC-trap layer serves to trap the HC which is oxidized to generate hydrogen (H2) and carbon monoxide (CO), which in turn react with the NOx gases trapped by the NOx-trap layer to produce nitrogen (N2) and carbon dioxide (CO2) gases, in addition to water vapor (H2O) as end products. The chemical reactions effectively reduce HC and NOx resulting in cleaner tail-pipe emissions.

The company had previously announced clean diesel technology that met the U.S. Tier2Bin5 emissions standards. With this new HC-NOx trap catalyst technology, Nissan believes it will be able to achieve cleaner diesel emissions in future vehicles that will meet the stringent SULEV-standards set by the state of California. In order to meet the SULEV-standards, hydrocarbons in vehicle emissions must be exhaust reduced by about 90% and NOx levels must be reduced by 70%*³ versus Tier2Bin5 standards.

Under the Nissan Green Program 2010, Nissan has announced plans to expand clean diesels to surpass current emission standards. Looking ahead, stricter regulations will be imposed in major markets including Japan, US, and Europe within the next few years.
Source: Nissan

Thursday, May 10, 2007

International Engine of the Year Awards

PRESS RELEASE:
Twin-turbo triumph at "Engine Oscars"
3-litre engine from 335i sees International Engine of the Year Award title stay in BMW's hands for a record third year in a row
BMW takes a total of seven International Engine of the Year Award trophies in 2007
Porsche finally wins an International Engine of the Year Awards trophy
• Evergreen Toyota Prius 1.5-litre hybrid engine still the top eco-friendly option says jury
BMW's 3-litre twin turbo has today been crowned International Engine of the Year 2007 at the ninth annual International Engine of the Year Awards, which were presented at Engine Expo in Stuttgart, Germany.
BMW won additional International Engine of the Year Awards for its 2.5-litre inline six and 5-litre V10, but the Munich manufacturer was most delighted with the success of the 3-litre twin turbo, which also dominated the Best New Engine of 2007 category. Peter Langen, BMW's director of powertrain, commented: "This is a tremendous achievement and important recognition of the lengths our engineers have gone to in order to ensure the success of our turbocharged petrol engines. We are proud to once again be honoured as the manufacturer of the International Engine of the Year."
Elsewhere in the prestigious Awards, which are independently judged by 62 motoring journalists from 30 countries, Volkswagen's 1.4-litre turbocharged and supercharged TSI unit triumphed for a second year in the 1-litre to 1.4-litre class, with its larger sibling, the 2-litre turbo developed by Audi and housed in the Golf GTi and Audi A3, topping the 1.8-litre to 2-litre category. Toyota meanwhile saw its 1.5-litre hybrid that powers the Prius named Best Fuel Economy engine and its 1-litre 3-cylinder from the Aygo and Yaris take the honours in the Sub 1-litre category.
Some of the loudest cheers were for Porsche, who finally won an International Engine of the Year Award trophy. Its 3.6-litre turbo engine in the 911 Turbo was voted the best 3-litre to 4-litre engine in production today.

International Engine of the Year Awards 2007: Winners
Best New Engine of 2007
BMW 3-litre Twin-Turbo (335i) Best Fuel Economy
Toyota 1.5-litre Hybrid Synergy Drive (Prius)
Best Performance Engine BMW 5-litre V10 (M5, M6)
Sub 1-litre
Toyota 1-litre (Aygo, Yaris, Peugeot 107, Citroën C1)
1-litre to 1.4-litreVolkswagen 1.4-litre TSI Twincharger (Golf, Touran, Jetta)
1.4-litre to 1.8-litreBMW-PSA 1.6-litre Turbo (MINI, Peugeot 207)
1.8-litre to 2-litreVolkswagen 2-litre Turbo (Golf, Audi A3, A6, SEAT Leon, Skoda Octavia)
2-litre to 2.5-litre BMW 2.5-litre (325, 525, X3, Z4)
2.5-litre to 3-litreBMW 3-litre Twin-Turbo (335i)
3-litre to 4-litrePorsche 3.6-litre Turbo (911) Above 4-litre
BMW 5-litre V10 (M5, M6)
And...
International Engine of the Year 2007
BMW 3-litre Twin-Turbo (335i)
Source: Newspress.co.uk

Tuesday, May 8, 2007

2008 Volvo S80 T6 Turbo AWD

2008 Volvo S80 T6 Turbo AWD2008 Volvo S80 T6 Turbo AWD2008 Volvo S80 T6 Turbo AWDPRESS RELEASE:
New driveline in the Volvo S80: T6 turbo with AWD
The acclaimed all-new Volvo S80 will soon be available with a new six-cylinder, 285 bhp T6 performance engine with All Wheel Drive
"The T6 engine adds an extra dimension to the S80 engine range," says Hans Wikman, Vice President Vehicle Line Large Cars at Volvo Cars. "The engine has been programmed to provide the highest possible performance with the lowest possible fuel consumption and exhaust emissions."
The T6 petrol engine is based on the compact 3.2-liter in-line aluminum engine that has been part of the S80 engine range since its 2006 introduction. The turbo version has a displacement of 3.0 liters, producing 285 bhp and no less than 295 lb/ft of torque. Maximum torque is on tap from just 1,500 rpm and remains available all the way up the rev range, resulting in remarkably quick acceleration and smooth drivability.
The somewhat smaller cylinder displacement of the turbo version, owing to the slightly narrower cylinder bore and shorter stroke, is compensated by the turbocharger which in this engine takes in exhaust gases in two stages, with the inflow divided into two lots of three cylinders each, a system known as twin-scroll technology. Twin-scroll technology permits use of a more compact and uncomplicated turbocharger and provides extremely swift response, fully on a par with that from twin turbochargers.

All Wheel Drive with Instant Traction
The T6 model in the Volvo S80 is equipped with Volvo's All Wheel Drive. Using an electronically controlled hydraulic clutch, the AWD system distributes drive between the front and rear wheels to ensure the best possible road grip in all situations. The system features Instant Traction, which shifts drive at lightning speed from the front to the rear wheels when starting on a slippery or loose surface.
source: Volvo

Tuesday, March 27, 2007

Bosch stop-start sistem featured on latest BMW 1 Series

BMW 1 SeriesPRESS RELEASE:
Bosch stop-start technology featured on latest BMW 1 Series
* Stop-start systems reduce fuel consumption and CO2 emissions
The Bosch Smart Electronic stop-start system, a technology that cuts the engine in traffic jams or at traffic lights, is now available on the latest BMW 1 Series petrol and diesel engine models. "This technology reduces fuel consumption significantly, especially in city centre driving," said Dr Volkmar Denner, member of the Bosch board of management. "This, and other systems supplied by Bosch, will help to reduce CO2 emissions further in the future." The technology has gone into production at BMW from this month on the 1 Series. Bosch supplies the key components for this system, including a starter that has been developed specifically for this application.
With increasing fuel prices and an urgent demand for the reduction of CO2 emissions, there is an ongoing requirement for innovative solutions to tackle these issues. The Bosch system provides a cost-effective way of conserving resources, as well as helping to protect the environment, by switching the engine off when the vehicle is stationary and automatically starting it again when the driver depresses the clutch pedal, prior to moving off.
The ECE 15 measuring cycle, the urban component of the New European Driving Cycle (NEDC), calls for twelve 15 second stops over a distance of seven kilometres. During such a journey, the Bosch system reduces fuel consumption and CO2 emissions by as much as eight per cent, depending on the vehicle. If the stops last longer, the actual savings on CO2 emissions and fuel can be significantly higher.
The Bosch stop-start technology required the development of a specially designed starter motor, the Smart Starter Motor. The company already produces the battery sensor required to detect the battery's current state of charge and to communicate this information via the energy management system. "Bosch has drawn on its combined competence in drive trains, energy management and starter technology to develop this system and its control function," said Denner.
Incorporating the Bosch stop-start technology requires no other change to the vehicle's drive train or the engine. The system delivers an excellent cost-benefit ratio making it a very attractive system compared with alternative solutions. The number of engine starts the system has to make, in other words its service life, has been increased significantly for this application. In addition, the starter's improved-performance electric motor, low noise and stronger pinion-engaging mechanism ensure that the engine starts reliably, quickly and quietly. Despite the increased number of functions, the starter is compact and can be integrated into the vehicle just as easily and conveniently as other starter motors.

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BMW's new turbo diesel: 4 cylinders, 400Nm

Saturday, March 24, 2007

BMW's new turbo diesel: 4 cylinders, 400Nm

BMWs new turbo diesel 4 cylinders, 400NmBMWs new turbo diesel 4 cylinders, 400Nm
BMWs new turbo diesel 4 cylinders, 400Nm BMW has designed a new 2.0L turbodiesel engine that puts out an impressive 204hp and 400Nm of torque. Additional benefits over the 177hp outgoing motor is a wider power band, improved fuel economy and a lighter aluminum engine block. BMW made use of a variable twin turbo system, utilizing a small low inertia turbo that spools up almost instantly off idle combined with a larger unit at high rpm loads.
The end result is a smooth torque curve with 200Nm of twist coming from just 1200rpm and the 400Nm peak not far off at only 2000rpm. This should provide plenty of urge around town without the engine even having to break a sweat. BMW is yet to release fuel consumption figures, but it claims the new engine is more economic than the previous 2.0L diesel, which used just 4.9L/100km.
The engine makes do with latest diesel technology including high pressure Piezo injection with fuel squirted in rounds of three and at 2000bar pressure. Thanks to the particulate filters, the new unit releases just 129g of carbon-dioxide emissions per 100km. The motor has also been designed to sit further back in the engine bay, which not only improves handling and balance, but also makes the vehicle safer for pedestrians in the event of a collision.
motorauthority.com


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Thursday, March 22, 2007

2008 BMW M3 4.0L V8

2008 BMW M3 4.0L V82008 BMW M3 4.0L V8PRESS RELEASE
The new V8 Power Unit for the BMW M3.
• First eight-cylinder for the BMW M3 sports car.
Supreme performance ensured by 309 kW/420 hp from 4.0 litres.
• Maximum torque of 400 Newton-metres (295 lb-ft) at 3, 900 rpm, 85 per cent of maximum torque over a speed range of 6,500 rpm.
• Unique thrust and muscle ensured by consistent implementation of the M high-speed engine concept, maximum engine speed 8,300 rpm.
• Consistent lightweight construction of engine and ancillary units, new V8 power unit one of the lightest eight-cylinders in the world, lighter than the straight-six power unit in the former model.
Variable camshaft control, low-pressure double-VANOS for an optimum charge cycle, system offering full power and performance even with normal engine oil pressure.
• Eight individual throttle butterflies for spontaneous engine response.
• Consistent and reliable oil supply with longitudinal and lateral acceleration up to 1.4 g ensured by two oil pumps and wet sump oil lubrication optimised for supreme dynamic behaviour.
Exhaust system optimising cylinder charge, optimised for weight and function by means of internal high-pressure remoulding, exhaust emissions fulfil EU4 and LEV 2 standards.
• Upgraded MSS60 engine control unit for optimum coordination of all engine functions with the various control systems in the car.
Ion flow technology recognising and distinguishing engine knocking phenomena as well as misfiring and miscombustion by measurement of ion flow in the combustion chambers.
Brake Energy Regeneration with intelligent alternator control.

More in Every Respect:
The new V8 Power Unit for the BMW M3.
Its name alone spells out the epitome of ultimate driving pleasure: the BMW M3. And now the new version of BMW M GmbH's most successful high-performance sports car bears out this claim once again, at the same time providing a thrilling answer to the question asked by so many sports car fans around the world whether a further improvement is still possible at all. And the answer is yes – for the new BMW M3 offers more in every respect. This applies not only – but particularly – to the power unit: After 15 years and two model generations, the trendsetting six-cylinder has now found its successor. The new BMW M3 is entering the market with an eight-cylinder power unit – more cylinders, larger capacity, more power, higher engine speed. And it is fair to say from the start that this will also mean an even more thrilling experience on the road.
The benchmark the new power unit was required to exceed could hardly have been greater: BMW's 3.2-litre straight-six has gained fame and admiration the world over, receiving a long list of awards and prizes. Acknowledged several times as the "Engine of the Year" and developing a supreme 252 kW/343 hp in its last version, this power unit made the BMW M3 not only the ultimate performer in the segment of high-performance sports cars, but also a genuine best seller.
The fact still remains, however, that everything has its time. And now the time has come for the six-cylinder to bow out and leave the stage. The time has come for the advent of the new V8 in the new BMW M3.
The specifications of this new high-performance power unit alone clearly confirm the enormous progress this engine has to offer. Engine displacement is 3,999 cc, maximum output is 309 kW/420 hp. Peak torque of 400 Newton-metres or 295 lb-ft is just as impressive as the top engine speed of 8,300 rpm. So clearly, the new BMW M3 is striking out for the top right from the start through its thrilling performance.

Ideal dimensions for performance at its best.
Displacing 500 cc per cylinder, the new V8 power unit meets the ideal concept of the most demanding engine designers right from the start through its engine dimensions alone. And the other design criteria – all the way from the engine's dimensions and filling capacities through the number of components to the weight of the engine – likewise represent the very best achievable today.
Over and above these qualities, the new eight-cylinder offers all the typical M-tuned features of BMW's regular production cars such as double-VANOS, individual throttle butterflies, and high-performance engine electronics. At the same time the number of cylinders, the M high-speed engine concept, and the low weight of the engine clearly prove that the responsible engineers, in creating this power unit, were inspired and guided by the eight-cylinder featured in the BMW Sauber F1. For the new engine has many features in common with the latest power unit highlighted by BMW in Formula 1, with various technological concepts and principles, production processes and materials carried over from the Formula 1 engine to the drivetrain of the new BMW M3.
In terms of specific output, the new V8 significantly exceeds the benchmark of 100 hp per litre acknowledged as a convincing sign of sporting power and performance. But even so, power is not everything. Rather, the dynamic driving experience provided by a car depends to a great extent on its acceleration and handling, resulting, not least, from the weight of the car and the actual thrust of the engine. The thrust or traction acting on the drive wheels, in turn, results from engine torque and the overall transmission ratio.
The M high-speed engine concept allows optimum transmission and final drive ratios further enhancing the impressive thrust and power of the engine. Indeed, BMW M's engineers have found a new dimension in developing the engine of the new BMW M3, with the eight-cylinder achieving maximum engine speed of 8,300 rpm.
The second factor crucial to thrust and performance on the road, engine torque, amounts to a mighty 400 Newton-metres or 295 lb-ft at 3, 900 rpm on the new V8 power unit. And about 85 per cent of the engine's maximum torque is available throughout the enormous engine speed range of 6,500 rpm, with 340 Newton-metres or 251 lb-ft available from just 2,000 rpm.

High engine speed, low weight.
Mass (which, ultimately, means weight) is bad for acceleration – it makes any physical body seeking to accelerate slower and more sluggish. Precisely this is why BMW's new V8, weighing a mere 202 kg or 445 lb, is a genuine lightweight, saving some 15 kg or 33 lb versus the six-cylinder power unit in the previous model. In other words, the new engine easily sets off the weight of two extra cylinders. And a further point is that the high-speed engine concept allows a light drivetrain and very short transmission ratios.
Even so, the limits to physics inevitably approach step-by-step with increasing engine power: At 8,300 rpm, each of the eight pistons is moving at a speed of 20 metres or almost 66 feet per second, obviously exposing all materials to enormous loads. Precisely this is why BMW M's designers and engineers have focused on the minimisation of masses on the new eight-cylinder.

Engine block straight from BMW's Formula 1 foundry.
The engine block of the new eight-cylinder comes straight from BMW's light-alloy foundry in Landshut near Munich, where BMW also builds the engine blocks for the Company's Formula 1 racing cars. The cylinder crankcase, in turn, is made of a special aluminium silicon alloy, conventional cylinder liners being replaced by hard silicon crystals. The iron-coated pistons, finally, run directly in the uncoated, honed cylinder bore.
High engine speeds, compression forces and temperatures cause extreme loads acting on the crankcase. Hence, the crankcase is compact in its dimensions and comes in torsionally resistant bedplate design ensuring very precise crankshaft bearing and running conditions. The relatively short, forged crankshaft is likewise very stiff in terms of its flexural and torsional qualities, but weighs only 20 kg or 44 lb.

Double-VANOS with low-pressure operation.
With its extremely short control times, variable double-VANOS camshaft management perfects the cylinder charge cycle, reducing charge losses and improving engine output torque and response, as well as fuel economy and emission management.
Developed especially for the new eight-cylinder, the M double-VANOS now featured on the new engine requires no more than normal engine oil pressure in order to operate at maximum speed. As a function of load and engine speed, this sophisticated unit consistently sets the optimum valve angle synchronised to the ignition timing and injection volume.
Consistent and reliable oil supply even under extremely dynamic driving conditions. Two volume-flow controlled pendulum slide cell pumps supply the eight-cylinder efficiently with lubricant, consistently delivering exactly the right amount for the engine. Wet sump lubrication optimised for engine dynamics, in turn, ensures appropriate lubrication also in extreme braking manoeuvres.
The entire system features two oil sumps – a small one in front of the front axle subframe and a larger sump further back. A separate reflow pump, in turn, extracts oil from the front oil sump and pumps it to the sump at the rear.

Eight individual throttle butterflies with electronic control.
Individual throttle butterflies for each cylinder, a technology commonly used in motorsport, are the ideal solution to give the engine an immediate, direct response at all times. The new power unit in the BMW M3 therefore comes with eight individual throttle butterflies, four on each row of cylinders operated by separate actuators. This high-tech throttle butterfly management is fully electronic and extremely fast, giving the engine a smooth and sensitive response at low engine speeds and an immediate reaction to the driver's commands whenever he wishes to use the full power of the engine.

Flow-optimised air intake.
To ensure an immediate response and superior dynamics of the engine at all times, the throttle butterflies in the intake manifolds are positioned very close to the intake valves. The specific length and diameter of the intake funnels also benefit the oscillating pipe charge principle. To minimise weight, finally, both the intake funnels and air collector are made of a light composite material with a 30 per cent share of glass-fibre.

Innovative exhaust system.
Through its design and configuration, the exhaust system for the new V8 power unit optimises the cylinder charge cycle, ensuring an optimum surge of power and torque at all times. And again, this component has been designed and built from the start for consistent lightweight qualities. The exhaust manifolds are made in an internal high-pressure remoulding process, the desired contours of the stainless-steel pipes being shaped from inside under pressure of up to 800 bar. The result is extremely thin walls measuring just 0.65–1.00 millimetres (0.0256–0.0394´´ ) in thickness, optimising flow conditions with minimum resistance, light weight, and optimum response of the catalytic converters. Exhaust emissions are cleaned by no less than four catalysts and the engine naturally complies both with the European EU4 standard and the US LEV 2 requirements.Even better performance than before: the engine control unit.
The engine control unit featured on the V8 has also been upgraded to an even higher standard than before, ensuring optimum coordination of all engine functions. Taking more than 50 input signals, for example, the control unit determines the optimum ignition timing individually for each cylinder and operating stroke, the ideal flow conditions, exactly the right amount of fuel injection, and the optimum injection timing. At the same time the system calculates and sets exactly the right camshaft angles (angle spread), as well as the respective position of the eight individual throttle butterflies.
And last but not least, the control unit enhances and masterminds specific BMW M functions such as the clutch, transmission, steering, and brakes. Yet a further function of the engine control unit is to perform a wide range of on-board diagnostic functions with various diagnostic routines for servicing at the workshop as well as other functions and the efficient management of peripheral units and systems.

An outstanding highlight in engine management: ion flow technology.
A particular highlight in engine management is ion flow technology detecting any knocking in the engine as well as the risk of misfiring or miscombustion. Contrary to conventional processes and technologies, this function is now performed directly where it counts, that is right there in the combustion chamber itself. To provide this highly efficient control, each cylinder is monitored and controlled via the spark plug to determine any knocking tendency. At the same time the system checks the ignition for smooth and correct operation, and recognises any misfiring.
The spark plug therefore serves as an actuator for the ignition and as a sensor observing the combustion process, distinguishing in this way between miscombustion and misfiring. And through this double function performed by the spark plug, diagnostic requirements in maintaining and servicing the engine are also facilitated.

Greater efficiency and dynamics provided by Brake Energy Regeneration.
To further enhance the efficiency of the new V8 power unit, Brake Energy Regeneration ensures intelligent engine current management concentrating the generation of electric power for the on-board network on the overrun phases and the application of the brakes. This serves to charge the car's battery without tapping on engine power and, accordingly on the energy contained in the fuel burnt. As long as the engine is running under power, on the other hand, accelerating and pulling the car, the alternator generally remains disconnected. Apart from particularly efficient generation of electric current, this also helps to provide more drive power when accelerating, making the car even more dynamic and agile on the road.
2008 BMW M3 4.0L V8

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Wednesday, January 31, 2007

Audi Q7 V12 TDI Revised

The World’s Most Powerful Diesel Passenger Car
Audi Q7

Audi has stood at the forefront of diesel technology for the last three decades. The Ingolstadt brand now presents a further world first – the first V12 diesel engine in a passenger car. The new Audi Q7 V12 TDI is powered by a twelve-cylinder diesel engine containing a wealth of pioneering technology. With an outstanding 500 PS and 1,000 Nm of torque, the six-litre engine of the high-performance SUV provides the driving performance of a sports car. Sprinting from 0 to 100 km/h in just 5.5 seconds and achieving an electronically governed top speed of 250 km/h, the Audi Q7 V12 TDI is catapulted into the echelons of top-class sports cars. New horizons have been set in the diesel market thanks to this outstanding power. None of our competitors can offer a comparable engine. The big performance SUV from Audi accelerates with impressive ease. Superior power reserves in any situation are provided by the world’s first 2,000 bar Bosch Common Rail system. The ultra-modern piezo-injection system offers impressive acoustics at the highest levels of driving comfort.

Exceptional comfort
The new six-speed tiptronic gearbox, which features extensive reinforcements, shifts quickly and comfortably. It transfers the enormous power to the quattro permanent four-wheel drive system. The new Audi Q7 V12 TDI has an average fuel consumption of just 11.9 litres per 100 kilometres. All diesel engines from Audi are highly dynamic thanks to their high performance and high torque characteristics. Audi has often proved its sporty character in series production, most recently through the six and eight-cylinder 3.0 TDI and 4.2 TDI engines. Audi also rewrote the record books earlier this year on the racetrack. Following its debut in Sebring, Florida, the premium R10 prototype sports car won every long-distance race it entered. These included the Le Mans 24 Hours road race, probably the most difficult race in the world for both man and machine. The V12 race engine in the R10 squeezed 650 bhp from its 5.5-litre engine capacity, reaching a top speed of 330 km/h. The power and endurance of the R10 was an immediate hit with fans and experts alike. However, what completely surprised them was the sound of the engine: unlike most racing engines, the powerful Audi diesel engine runs whisper-quiet. Transferring race car technology into series production is an Audi tradition. The FSI engine in the predecessor to the R10, the R8, notched up five victories in Le Mans with its petrol direct injection. Audi has already transferred FSI performance to the production line. The most recent examples of this are the high-revving V8 in the RS 4 and the V10 FSI in the S6 and S8.

Pioneering technical performance
The new series-production V12 TDI, assembled in our plant in Gyцr, Hungary, reaches a still outstanding level of “only” 500 bhp. When designing the engine, it was kept in mind that the six-litre engine would be a derivative of the current family of Audi V-engines, which up to now were limited to six, eight and ten cylinders. The basic findings from the race car were of course transferred to the series-production engine. The V12 TDI aggregate has a cylinder clearance of 90 mm, which is standard for engines of this type. Nonetheless, the engine has a cylinder angle of 60° instead of 90°, leading to an elimination of inertia in this type of V12 design. Driving comfort is thus ensured in every situation. The total engine capacity of 5,934 cm3 is derived from a bore measurement of 83 mm and a stroke of 91.4 mm, exactly the same as that of the 3.0 TDI. The large diesel engine is extremely compact. Measuring 684 mm in length, it is only 166 mm longer than the V8 TDI. These dimensions are the primary requirement for integrating the V12 into the Audi Q7. The crankcase of the V12 TDI is constructed from cast-iron with vermicular graphite. This high-tech material, known as GJV-450, has already been used in the V6 and V8 models. Produced in a patented casting procedure, GJV-450 is around 40 % more rigid and 100 % more fatigue-resistant than grey cast iron. This allowed the developers to reduce the wall thickness. The weight potential compared to conventional grey cast iron is around 15 %. The crankshaft, forged from a chrome and molybdenum steel alloy, is held by an extremely rigid main bearing bracket made from cast iron reinforced by nodular graphite. The forged piston rods are cracked, whilst the forged pistons are made from aluminium. Both cylinder heads are composed of three main elements. The lower section is made from a highly durable and light aluminium alloy where the intake and escape channels are integrated. The upper section guides the flow of engine oil, whilst both camshafts are stored within a reinforcing ladder frame. The valves are actuated using low-friction roller cam followers with a compression ratio of 16:1. The engine characteristic swirl variations of combustion air were taken from the V6 and V8 TDI engines. The optimum swirl with respect to emissions and simultaneous high performance can therefore be set.

Ultra-modern injection technology
Like most Audi V-engines, the maintenance-free chain drive is located on the back of the engine in a space-saving arrangement. A new layout is used in the new V12 TDI. The chain wheel of the crankshaft locks into the gearwheel. From here two simplex chains drive the camshaft. Two further chains drive the oil pump and both high-pressure pumps in the common rail injection system. Both new double stamped high-pressure pumps are part of the new common rail injection system developed by the specialists at Bosch. Both pumps amass up to 2,000 bar of pressure in the rails; only 1,600 bar was usually achieved up to now. The piezo injectors, with their eight-hole jets, have also been radically updated.An optimal spray is created in the combustion chamber through the high pressure. This in turn allows the ignition process to take place quicker and more homogenously, leading to a much better sound. The efficient combustion also improves performance whilst reducing emissions and fuel consumption. The current generation of inline injectors use the piezo effect. When an electric current is created, piezo crystals expand in milliseconds. This expansion is then directly transported (inline) by the V12 TDI injectors – containing over one hundred piezo plates – to the injection nozzle needles without the use of mechanisms in between. The number of injection processes per power stroke can be widely varied using piezo technology, in the case of the V12 TDI up to five injections. In addition to the main injection, pre and post-injections are possible. Pre-injections reduce the acoustic hardness of the combustion procedure. Post-injections serve to increase the temperature of the emissions, helping regeneration of both standard-fit particulate filters. Both turbochargers can be found on the exterior of the V-engine, each supplied with a cylinder bank. Thanks to its adjustable guide vane geometry, the complete gas emission stream is always fed through the turbines. The chargers respond even at low levels of revolution and reach high levels of efficiency. Both turbochargers amass a charge pressure of up to 2.6 bar and are a key aspect of the exceptional torque levels of 1,000 Nm that are supplied to the V12 TDI constantly between 1,750 and 3,000 rpm. With its 368 kW (500 bhp), the diesel reaches a specific performance of 62 kW (84.3 bhp) per litre of engine capacity. Two large charge air coolers reduce the temperature of the compressed air. The V12 comes with a double-flow exhaust system with two particulate filters. The suction unit is built in a similar way – each cylinder bank contains an air filter behind which an air mass meter is stored. Two control units manage what happens within the engine according to the master-slave concept. The Audi Q7 V12 TDI will conform to the Euro 5 emissions class which will come into force in 2010 and demand a reduction of nitrogen oxide emissions. Aside from the precise analysis of the fuel injection system through the common rail system, the Audi engineers have focused especially on exhaust gas recirculation. At partial load, up to 50 % of emissions are recirculated through the air intake in order to reduce nitrogen oxide emissions. The large-dimension recirculation system is stored in the upper section of the V cylinder and includes a water cooler which reduces emission temperature significantly.

The design
The Audi Q7 V12 TDI is impressive not only with regard to technology but also in terms of appearance. The most striking visual changes to the Audi Q7 are the underbody panels at the front and rear. The chrome-plated single-frame radiator grille evokes the tradition of the Audi S6 and S8. These two cars, with their V10 FSI engines, are the top sports models in their class. The V12 TDI features a powerful braking system which is every bit its equal.

Audi Q7 Audi Q7
Audi Q7
Audi Q7
Audi Q7

Audi AG

Wednesday, January 24, 2007

Anteros XTM Roadster


ANTEROS XTM is a limited production 2-seat convertible sports car featuring 400 to 600 horsepower, a carbon fiber composite body with a fine leather & wood interior, and state-of-the-art technology throughout.

ANTEROS takes its name from the ancient god of Passion. It is a passionate expression of Automotive Fine Art. Anteros Founders, John Rothman, and son, David Rothman, commissioned a team of talented designers and fabricators to create a brutally elegant car that seamlessly blends both contemporary and classic sports car DNA into a stunning artistic sculptural statement. Anteros uses the base engineering of the C6 platform as a foundation to create this 550 horsepower rolling sculpture in carbon fiber and luxury leather.

'We had a fantastic reaction to the Anteros at the Monterey Classic Car Show, exotic car dealers around the United States are anxiously waiting production slots', said Mr. David Rothman, President of Anteros Marketing. With pricing between $125,000 and $135,000, the ANTEROS XTM will be manufactured on a semi-custom build-to-order basis.

Anteros Marketing, a California based coachbuilder, also has under development the ANTEROS XTS Targa featuring a removable hardtop. Their future plans are to release the ANTEROS XTR Hardtop based on the ZO6 platform that will feature horsepower of 505 to 655 HP.


Manufacturing

The Anteros is manufactured at San Diego-based HST Inc., an industry leader in the fabrication of high tech composites and carbon fibers.

HST Inc. is known throughout the composites industries for manufacturing highly specialized aerospace and sports equipment to extreme tolerances for clients around the world. In the past several years, HST, Inc. has developed a reputation as a premier manufacturer of specialty automobiles in North America. Currently HST manufactures the original Shelby authorized Cobra and Shelby Series I & II.

HST Inc. heralds a new era of automobile manufacture involving the adaptation and application of materials, techniques, and production standards employed in the composites and aerospace industries. Their goal is to utilize materials, tolerances, and craftsmanship consistent with these industries and apply them to the automotive manufacture in an attempt to make lightweight, durable, performance driven automobiles.






Wednesday, January 17, 2007

Bugatti EB110 the one of the greatest modern SUPERCARS

Bugatti EB110Introduction of the EB110 SS model at Geneva.

Bugatti EB110The factory as new, before the assembly line was setup!

Bugatti EB110EB 110 Blocks waiting for full build up.

Bugatti EB110One of the many army of machine tooling stages.

Bugatti EB110The ever beautiful EB110 & Bugatti's equally stunning Press Mgr. in the background.

Bugatti EB110It's a tuff job..but someone has to hang out and preserve history.

Bugatti EB110Engine Assembly Shop, a very open enviorment.

Bugatti EB110EB assemblyline.

Bugatti EB110Ah, the foundational Bugatti concept 3.5 liters, then add 4 turbos.

Bugatti EB110Beauty & Power blended into dynamic combination.

Bugatti EB110Bugatti was hoping to deliver 4 cars per week.

Bugatti EB110Early EB 110's final QC check prior to delivery.

Bugatti EB110My 1st drive of EB110 "mule car", blistering the Autostrada.

Bugatti EB110The Silver EB110 was a magnet.

Bugatti EB110Nothing on the EB110 was ever over looked.

Bugatti EB110An Army of muilt-task tooling just installed.

Bugatti EB110All hand built , without any concern for time.

Bugatti EB110Italian craftsmanship with no concern of time or cost.

Bugatti EB110 Hand Porting, hand labor and a delicate task.

Five pre-production prototypes with aluminum chassis were built, followed by eight with composite chassis. Following these, it is believed that only 95 GT and 31 SS production models were constructed.
In 1992, a lighter and more powerful model with 600 PS (592 hp/441 kW) at 8000 rpm, the EB110 SS (either Sport Stradale or SuperSport) was introduced. This car was capable of 219 mph (352 km/h) and 0-100 km/h (62 mph) in 3.2 seconds.
At a price of more than US$350,000 for the SS model, the car wasn't going to be anything but exclusive. Early in 1994 Formula One driver Michael Schumacher purchased a banana-yellow EB 110 Super Sport, giving the company a great deal of publicity. Derek Hill, son of American Formula 1 Champion Phil Hill, was one of the three drivers on a team that competed with an EB 110 in the United States at the 1996 24 Hours of Daytona.
Hard times hit the company in 1995 and, as result of chairman Artioli's over ambitious purchase of Lotus in addition to the company's quest to develop the EB112 a four door car, the company was bankrupt. Dauer Racing GmbH of Nuremberg, Germany, bought the semi-finished EB 110 cars in the assembly plant plus the parts inventory through the bankruptcy trustee. The remaining chassis and a version of the engine were later developed by B Engineering into their Edonis sports car.

Wednesday, January 10, 2007

Unique designs of russian mini car OKA

Bigfoot, stretch car, landrover, double-decker,fire-engine even a bathyscaphe and many other designs made from just one small car!

The original Lada Oka
















Oka (also known as Lada Oka and VAZ 1111) is a city car designed in Russia in 1983 by AvtoVAZ featuring a 750cc SOHC 2-cylinder engine. The name comes from the Oka river in Russia upon which Serpukhov is situated.


okatuning.com.ru