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Showing posts with label McLaren. Show all posts
Showing posts with label McLaren. Show all posts

Sunday, May 19, 2013

McLaren 12C Can-Am Edition Concept, 2012

 
 
 
 
 
  •  McLaren 12C Can-Am Edition Concept, 2012

McLaren GT, the new race car manufacturing arm of the McLaren Group, is presenting a dramatic track-focused concept at the 2012 Pebble Beach Concours, the McLaren 12C Can-Am Edition. The one-off design study is finished in historic McLaren Orange and satin black, and is the debut appearance of a 12C racing variant outside Europe.

The McLaren 12C Can-Am Edition is finished in striking shade of McLaren Orange, in tribute to cars of Bruce McLaren and Denny Hulme which were extremely successful throughout the 1960s and 1970s. The bold hue is in dramatic contrast to the roof, door and bumper sections, finished in satin black, while carbon fibre also features on the side radiator vanes, wing mirrors and engine cover. The McLaren badges on the front and rear are also finished in carbon fibre. Beneath the surface, the McLaren 12C Can-Am Edition shares the same carbon fibre MonoCell chassis as the 12C road car.

Being purely a concept at this stage, and designed as the 'ultimate track car', the McLaren 12C Can-Am Edition is not subject to the regular racing regulations, despite being based on the 12C GT3 race car. The revised version of the familiar 3.8-litre twin-turbo V8 engine features a unique engine calibration and optimised cooling system, which allows a power output of up to 630hp, making it the most powerful 12C derivative ever shown. The overall dry weight is just 1,200kg (2645.5lbs).

The unique aerodynamics of the McLaren 12C Can-Am Edition, as with the 12C GT3 race car, have been honed by McLaren Racing using Formula 1 technology and simulation to optimise downforce. This unique package offers an increase in downforce of 30 per cent.

The optimised aerodynamic package includes a carbon fibre front splitter, carbon fibre dive planes, and a carbon fibre wing which dominates the rear of the car. The wing is held in place by polished aluminium mounts. An imposing carbon fibre diffuser helps to further maximise the aerodynamic package, fitted beneath the two-tone rear bumper.

The extra power output of the McLaren 12C Can-Am Edition is kept in check with a braking system developed by Akebono. The highly efficient braking system sits behind a set of black satin-finished forged lightweight racing alloy wheels, shod with Pirelli racing slick tyres which complete the exterior revisions.

Inside the cockpit, the McLaren 12C Can-Am Edition is race ready as well. Two black race seats, complete with full six-point harnesses are mounted within the cabin, while a full race-specification rollcage has also been fitted. The steering wheel is carried over from the 12C GT3, with the shape and grip derived from that of Lewis Hamilton's MP4-24 Formula 1 car, while carbon fibre detailing also continues throughout the cabin, across the dashboard and sill panels. An integrated air conditioning system, mandatory now in a growing number of race series, is also present.

Tuesday, March 26, 2013

McLaren MP4-12C, 2013

 
 
  •  McLaren MP4-12C, 2013
The McLaren Automotive, rather than resting on its laurels, has instead announced a package of enhancements that will make the McLaren MP4-12C high performance sports car even more invigorating to drive yet even easier to live with.

Headlining the changes is a 25PS (25hp) power increase. It takes the maximum output of the mid mounted, twin turbocharged V8 engine to 625PS (616hp) to give yet more vivid acceleration at track speeds with no loss in efficiency. Modifications have been made by McLaren's engineers to the 12C's engine and SSG transmission increasing responsiveness. Ease of use, a phrase not often associated with cars of this type, is further improved through a host of detail changes while a wider variety of paint, leather and wheel options give customers yet more scope for personalisation. The McLaren MP4-12C's unique Intake Sound Generator (ISG) system, which controls the amount of engine intake sound heard in the cabin, is now programmable across three levels in all three Powertrain modes allowing the driver to select the amount of aural drama he or she wants to enjoy, whatever the road. But one aspect that hasn't changed is the McLaren MP4-12C's purposeful styling… apart from a subtle revision to the McLaren Speed Marque badge, that is.

This latest iteration of the McLaren MP4-12C, which at launch set a new benchmark among its competitors for power, efficiency and pioneering technology, is available to order now. Customers who have already taken delivery of a 12C are not being neglected, though. Every 12C owner is being offered a package of upgrades, including the extra 25PS (25hp), at no cost, underlining McLaren's commitment to its customers ensuring they enjoy owning their 12C as much as they do driving it.

Antony Sheriff, McLaren Automotive Managing Director said: "Given our racing heritage, it is in our nature to continuously seek out improvements. The team at McLaren Automotive recognizes that our existing and future customers deserve the very best product and service we can offer, and the launch of the enhanced McLaren MP4-12C reaffirms its position as the most powerful luxury sports car among its competitor set.

THE DETAIL: enhanced 12C overview
The suite of upgrades to the McLaren MP4-12C specification from October 2012 includes enhancements to the 12C's engine and transmission, in addition to other functional attributes.

A focus on drivetrain development has given McLaren Automotive's engineers the opportunity to increase the McLaren MP4-12C's 3.8-litre twin turbo V8 output from 600PS (592hp) to 625PS (616hp). The redesigned engine mapping has not altered the remarkable efficiency of the M838T engine, with 12C CO2 emissions remaining at just 279 g/km, and fuel economy recorded on the EU combined cycle at 24.2 mpg (11.7 l/100km).

Modification of the 7-Speed SSG transmission to which the McLaren MP4-12C's high-powered engine is mated has resulted in crisper throttle response and improved clutch control for gear changes that are both faster and smoother.

The McLaren MP4-12C features an innovative Intake Sound Generator (ISG). This system works by controlling engine intake noise within the cabin at differing levels, depending on the Powertrain mode selected for the car. Moving up through Normal, Sport and Track Powertrain modes enhances the aural drama and driving experience of the 12C, with engine noise in the cabin changing when throttle power is applied and revs increase. With the 2013 specification 12C, the driver will be able to select the level of engine noise delivered in each mode through an electronic menu accessible via the instrument cluster.

Improved usability and occupant comfort
A new door entry system is a feature of the new MP4-12C. A small button mounted on each door replaces the 12C's touch sensor system. In line with customer feedback, this modification is intended to simplify the user experience. The ability to unlatch each door using the 12C key fob will be retained.

To improve safety, an enhancement will be made to the headlight activation settings of the McLaren MP4-12C. With the 'AUTO-lights' mode selected, the 12C's headlights will be automatically switched on when rain is detected by the windshield-mounted rain sensor.

The McLaren MP4-12C's Climate Control System will be modified exclusively for 2013 models. In addition to the standard 'AUTO' function of the system; new cars will be supplied with systems inclusive of 'AUTO LO' functionality. This new setting enables the desired cabin temperature to be reached in the quietest way possible, using lower fan speeds.

New options to personalize the ultimate McLaren MP4-12C
McLaren Automotive is committed to innovating through technology and design, and presenting customers with an exciting range of opportunities to specify their ultimate 12C. Along with the power upgrade and technical revisions announced for the 2013 model year McLaren MP4-12C, comes a selection of tempting aesthetic and functional options which may be added to the comprehensive standard 12C specification.

A stunning new high quality paint finish will be added to the options list for the new McLaren MP4-12C. Volcano Yellow joins the 'Elite' set of paint finishes available for the revised model, and promises to be as spectacular as the popular Volcano Orange and Volcano Red finishes selected by many MP4-12C customers since the car was launched in 2011.

A new wheel design and wheel finish available on multiple wheel designs will be offered to future McLaren MP4-12C owners. A new 5-spoke lightweight-forged wheel may be specified for the 12C and is available in multiple finishes. Standard Silver, optional Stealth and eye-catching Diamond Cut finishes are available on this new wheel design, as well as forged wheel designs available to order from the existing range. The Diamond Cut wheel finish is first finished in Graphite Grey, then diamond cut to reveal the forged metal surface. The entire wheel is then finished in a protective coat, which adds a high quality gloss to the appearance.

An exclusive new McLaren MP4-12C interior trim has been developed by McLaren Automotive for 2013 model year 12Cs, which is a higher quality and more naturally textured leather than that in the current MP4-12C options list. If selected, exclusive semi-aniline leather is applied to all major interior surfaces including doors, seats, dash and the centre console. The new interior option includes flat piping around the perimeter of the seat and along the edge of the door card insert. The piping finish will be in Carbon Black unless requested in McLaren Orange, Harissa Red or Stone Grey. Three levels of this new interior trim will be available to order from June 2012:
  •     Full Semi-Aniline Leather: Carbon Black Leather on all surfaces, along with optional colour-matched flat piping
  •     Semi-Aniline Leather with Colour Perforated Inserts: As Full Semi-Aniline, with the addition of colour perforated door inserts, seat inserts and matching piping
  •     Semi-Aniline Leather with Alcantara Inserts: Carbon Black Leather to all major surfaces, with black Alcantara seat inserts and optional Alcantara door inserts, along with optional colour-matched flat piping

Racing Green, which to date has been an option for McLaren MP4-12C buyers, and 'Driver Zone' interior options, will now be reserved for clients of McLaren Special Operations (MSO). Selecting the 'Driver Zone' option will see a customer meet with MSO stylists to create a colour and trim scheme in the area immediately around, and including, the driver's seat. This is specified in contrast to the interior trim specified elsewhere in the cabin.

One Touch Seat Return is an added function of optional heated and electric seats for new cars, and will be available as an update to existing vehicles. With the pull of a lever, the seat will return to its position when the driver last exited the 12C. Easy-Exit - whereby the seat retracts to its most rearward position to allow for unhindered exiting of the 12C - will remain a feature.

Vehicle Lift will be available as an option on 2013 model year vehicles. The system allows the McLaren MP4-12C to be raised front and rear for improved ground clearance. This technology permits the vehicle to be raised by up to 40mm at the front and 25mm at the rear, and may remain in position at up to 37mph (60kph).

In car entertainment is to be enhanced without any charge to customers of new and used MP4-12Cs, through upgrades to the Meridian audio equaliser settings. The Meridian audio equaliser will be offered with Pure, Expanded and Extreme settings, progressively enhancing levels of bass and treble.

From race to road: McLaren Speed Marque
The McLaren badge, which carries the official moniker 'Speed Marque', will be modified and available in two different new finishes. Mounted on the front luggage lid, rear deck, steering wheel and wheel centre caps, the subtly revised Speed Marque may be specified in Rocket Red/Silver as standard, or Stealth/Silver as an option.

McLaren Automotive Sales and Marketing Director Greg Levine said: "The 'Speed Marque' is an important symbol of McLaren's successful heritage in motorsport, and we are very proud that it features prominently on the 12C. The 'Speed Marque' has evolved significantly through the last five decades, from its origin as the 'Speedy Kiwi' on Bruce McLaren's race cars in the 1960's, through to the 1980's and 90's where the McLaren name featured a red chevron symbol alongside it on our Formula 1 cars. Now displayed on the new McLaren MP4-12C, it embodies our core product value of fast, streamlined movement and represents the pedigree of a multiple World Championship-winning Formula 1 team."

Specification revisions a reward for existing 12C owners
Refinements to the McLaren MP4-12C technology package will also be made available to McLaren's valued existing 12C customers (not applicable to vehicles registered in Japan).

To date, McLaren Automotive has appointed 38 world-class retailers in 22 countries across the globe. Each McLaren retailer in the new global retail network is now contacting existing 12C owners to offer each the opportunity to upgrade their current cars to a revised specification. Enhancements to existing 12Cs include the 625PS (616hp) power increase introduced for the new 12C, and will be scheduled for application to cars later this year.

Antony Sheriff said: "A revised performance and technology package for the McLaren MP4-12C highlights our determination and ability to enhance a vehicle that is already a benchmark sports car, and underlines our desire to reward customers that have shown commitment to McLaren. I believe this action will reinforce existing customer relationships and I look forward to building long-term relationships with McLaren customers of the future."

The following package of specification upgrades  offered to every current MP4-12C owner at zero cost to the customer:
  •     M838T engine power increased to 625PS (616hp)
  •     Revised calibration for 7-Speed SSG transmission
  •     Programmable Intake Sound Generator
  •     Headlights linked to rain sensor when in automatic mode
  •     Easy-Exit electric seat function incorporating Seat Return (if specified)
  •     New Meridian audio equaliser settings (if specified)

A groundbreaking sports car inspired by Formula 1

Performance and practical refinements will enhance the McLaren MP4-12C's innovative standard technical specification, in which Formula 1 DNA runs through every component.

With a one-piece moulded carbon fibre 'MonoCell' weighing just 75kg at its heart, the 12C features advanced vehicle dynamics technology including Brake Steer and Proactive Chassis Control. Brake Steer is a technology McLaren introduced to Formula 1 in the 1997/98 MP4-12 race car and defines the McLaren MP4-12C's ability to set incredible lap times, by braking the inside rear wheel of the car through corners so that the 12C may retain the perfect 'racing line' on track. ProActive Chassis Control is a suspension technology lauded by 12C owners due to its unique ability to provide executive car ride quality at any speed and on uneven road surfaces, yet its network of interconnected suspension hydraulics modify the amount of grip and roll control available when the driver adjusts the McLaren MP4-12C's 'Handling' settings through 'Normal', 'Sport' and 'Track' modes. The 12C is the only sports car among its competitor set that allows the driver to select 'Powertrain' and 'Handling' settings completely independently of each other, so that the driving experienced is optimized to their preference and environment. With a combined fuel consumption figure of 24.2mpg (11.7 l/100km) achievable from the car's lightweight 3.8-litre twin turbo V8 engine, the McLaren MP4-12C offers owners the option to enjoy driving a high performance sports car over greater distances and in a multitude of environments more than ever before.

Technical Specification
  •     Drivetrain layout: Longitudinal mid-engine, RWD
  •     Engine configuration: V8 twin turbo
  •     Engine material: Aluminium block and cylinder heads
  •     Oiling: Dry sump
  •     Compression ratio: 8.7:1
  •     Valvetrain: 32-valve, DOHC, dual VVT
  •     Redline: 8,500 rpm
  •     Bore x Stroke: 93 x 69.9 mm
  •     Engine displacement: 3799 cc
  •     Power: 625 PS @ 7500 rpm
  •     Torque: 600 Nm @ 3000-7000 rpm
  •     PS per litre: 164
  •     Transmission: 7 Speed SSG with Pre-Cog
  •     Body structure: Carbon fibre MonoCell with aluminum front and rear frames
  •     Wheelbase: 2670 mm
  •     Track: F:1656 mm / R:1583 mm
  •     Length: 4509 mm
  •     Width: 1908 mm
  •     Height: 1199 mm
  •     DIN weight: 1434 kg / 3161 lbs
  •     Dry weight: 1336 kg / 2945 lbs
  •     Dry weight with lightweight options: 1301 kg / 2868 lbs
  •     Weight distribution at DIN: F:42.5% / R:57.5%
  •     Active aerodynamics: McLaren Airbrake
  •     Suspension: ProActive Chassis Control
  •     ProActive Chassis Control modes: Winter / Normal / Sport / Track
  •     Powertrain modes: Winter / Normal / Sport / Track
  •     Brakes: Cast iron discs with forged aluminum hubs (F:370mm / R:350 mm)
  •     Wheel sizes (F / R): 19" x 8.5"J / 20" x 11" J
  •     Tyres (F / R): Pirelli PZero 235/35 R19 / 305/30 R20

Monday, December 10, 2012

McLaren MP4-12C Spider, 2013

 
 
 
 
 
 
 
 
  • McLaren MP4-12C Spider, 2013

The new McLaren MP4-12C Spider, unveiled at the 2012 Pebble Beach weekend in California, is the second vehicle in the growing range of high performance sports cars from McLaren Automotive. This lightweight, mid-engine open-top sports car combines the astonishing performance of the 12C with the increased exhilaration of roof-down motoring. Unlike most other spiders or convertibles, the 12C Spider offers the same performance, handling and driver enjoyment as the fixed-roof coupé version.

The 12C Spider uses the industry-leading carbon fibre MonoCell as the 12C, which needs no extra strengthening to provide the necessary rigidity and strength for an open roof car. In conventional steel or aluminium chassis cars, extra strengthening - and associated weight increase - is normal during the conversion from fixed-head coupé to open-roof convertible. This can compromise performance, handling and driving enjoyment.

The composure of a sports car, the fun of a convertible
'In the new 12C Spider you get the best of both worlds,' says McLaren Automotive Managing Director Antony Sheriff. 'You get all the performance and driving integrity of the 12C, plus the thrill of open-roof motoring.

The new 12C Spider is mechanically identical to the 12C. It uses the upgraded 625PS engine, which is part of the 12C Model Year 2013 upgrade. Acceleration - 0-62mph (100 km/h) - takes just 3.1 seconds (when fitted with Pirelli P Zero Corsa tyres), the same as the coupé. Fuel consumption and emissions also remain the same, returning 24.2 mpg (11.7 l/100km) on the combined cycle and 279g/km. The figures are much better than most high performance convertible sports cars, in keeping with McLaren's commitment to class-leading fuel efficiency. Maximum speed is 204 mph (329 km/h).

The Retractable Hard Top (RHT) on the 12C Spider is a fully automatic two-piece design which can be raised or lowered in less than 17 seconds at speeds of up to 30 km/h (19 mph). When lowered, the roof stows beneath a body coloured hard tonneau cover which incorporates twin buttresses. With the roof raised, the area beneath the tonneau cover can be used as additional luggage space.

The 12C Spider features a heated glass rear window, which can be operated independently of the roof. With the roof down, the rear window moves automatically to an 'aero' position to minimise buffeting. Additionally, with the roof up, the window can be lowered to give direct access to the sound of the twin-turbo 3.8-litre V8 engine mounted directly behind the cabin.

A roll over protection system includes a steel structure within each of the rear buttresses to absorb any impact and protect occupants. An 'active' pop-up system was ruled out as it would have added weight.

The detail changes of the 12C Spider extend to both the audio and climate control systems. Audio output changes when the roof is open - to compensate for extra external noise - while the climate control adapts when the roof is lowered.

12C programme included Spider from the outset
'The 12C Spider is not a converted version of the 12C,' notes Sheriff. 'Importantly, the two were conceived and developed at the same time, and alongside each other. The 12C programme included a coupé and convertible from the outset. The carbon fibre MonoCell chassis and all other mechanical components were designed to produce maximum performance in both configurations.

'The 12C Spider fully subscribes to the McLaren overriding principle, that every single component should be 'Pure McLaren'. Each constituent part was conceived, designed and produced to McLaren specification - nothing is shared from other manufacturers. The goal is to maximise driving enjoyment, performance and efficiency. Just as important, we always seek to innovate. By producing the 12C Spider with all the performance, handling and ride quality of the 12C, we have done just that.'

12C SPIDER: THE DETAILS
As with the 12C, everything on the 12C Spider was designed for a reason. There is no unnecessary 'jewellery', no styling fripperies. It is a 'pure' sports car, designed to deliver maximum driving appeal and performance, with unmatched efficiency.

'As with all McLarens, the 12C Spider is a racing car at heart,' notes Design Director Frank Stephenson. 'That is not true of many - if any - other high performance convertibles.

'It has the same timeless elegant style that distinguishes the 12C but with the added romance of open-top driving,' adds Stephenson. 'We have tried very hard to preserve the same design purity. With the roof in place, it looks like a coupé sports car that could just as easily be at Le Mans, as in London or Los Angeles. With the roof down, it looks like it belongs on Sunset Boulevard or the Cote d'Azur.'

Retractable Hard Top (RHT)
The Retractable Hard Top (RHT) has been designed specifically for the 12C Spider. Low weight, combined with high strength, was of paramount importance - as with all areas of the 12C.

The two roof panels and tonneau are made from the same composite material used in the construction of the 12C body. This is light, strong and allows for a very high standard of paint finish. Heated rear glass completes the roof construction.

The fully automatic mechanism raises or lowers the roof in less than 17 seconds, and can be activated at speeds up to 30 km/h (19 mph). It is controlled by a two-position switch on the centre panel within the cabin.

At the end of the roof lowering cycle, the windows fully close, and the rear glass adopts an 'aero' position that also reduces cabin wind buffeting. Continuing to hold the switch after the cycle is complete fully lowers the windows and rear cabin glass.
The RHT is operated by a single hydraulic pump. It is mounted as low as possible in the vehicle to optimise the centre of gravity, and improve handling.

Dual-purpose tonneau cover
When lowered, the roof stows beneath a body coloured hard tonneau cover which incorporates twin buttresses. With the roof raised, the area beneath the tonneau cover can be used as additional luggage space. This can accommodate 52 litres of luggage in two specially designed bags, supplied as standard. This is in addition to the 144 litres of luggage space provided under the bonnet.

Retractable rear glass provides increased audible drama
The rear glass can also be operated independently of the RHT. Roof up, the rear glass can be lowered to allow more engine sound into the cabin and also allows for a semi-open driving experience even in inclement weather. Roof down, the screen acts as a wind deflector, minimising disturbance in the cabin.

Roll over protection system
A roll over protection system ensures maximum occupant safety. Each rear buttress contains a steel structure to absorb the impact energy and protect both driver and passenger. An 'active' pop-up system would have added unnecessary weight.

Carbon fibre MonoCell ideally suited for convertible use
As with the mechanically identical 12C, the 12C Spider is a mid-engine two-seat rear-drive high performance sports car. Unlike rivals, it uses a carbon fibre monocoque chassis, the MonoCell. This confers major advantages in weight, strength and torsional rigidity - all improving handling, ride comfort and performance.

The MonoCell is a unique one-piece moulded chassis that weighs just 75kgs (165lbs). It is 25 per cent stiffer than an equivalent all-metal structure and 25 per cent lighter than a comparable aluminium chassis (the difference with a steel chassis is even greater). It is also stronger and safer in a crash, acting as a safety survival cell, as it does in a Formula 1 car.

'It provides the perfect combination of occupant space, structural integrity and light weight,' explains Chief Engineer Neil Patterson. 'It is the ideal chassis to deliver groundbreaking efficiency and performance in the sports car market.'

The MonoCell is unchanged from 12C to 12C Spider, as it was originally designed for both applications. 'This is highly unusual,' notes Patterson. 'Most convertibles require a strengthened chassis to reduce flex, thus adding weight - while still not achieving the structural integrity of a coupé. This flex can compromise handling precision and reduce ride comfort; while the added weight affects performance.'

The carbon fibre MonoCell not only gives advantages in strength and weight, it also improves packaging. The one-piece moulded design has been created to provide the perfect cabin - roomy, yet compact. 'We started with the driver,' says Design Director Frank Stephenson. 'With the 12C and 12C Spider, the driver sits close to the centre line of the car, improving control and driver enjoyment. The pedals are positioned inboard, reducing wheel well intrusion. The result is the perfect driving environment- unique and uncompromised.'

The steering column is centred on the driver, and is parallel to his seat and shoulders. The brake and throttle pedals are both placed directly in line with the driver and all primary controls are within reach. The overall cabin architecture is both elegant in its design and uncluttered and intuitive to use.

As with the 12C, the 12C Spider has class-leading all-round visibility. 'Enormous emphasis was put on ensuring excellent visibility, both for safety and driving precision,' adds Stephenson.

McLaren: The carbon innovators
The carbon fibre MonoCell of the 12C and 12C Spider follows more than three decades of McLaren carbon innovation. In 1981, McLaren Racing introduced the carbon monocoque to Formula 1™. It offered an unbeatable combination of strength and weight-saving, and soon recorded the first victory for a carbon-based F1 car, at the British GP, driven by John Watson.

The legendary McLaren F1 road car, launched in 1992, was the first road car to use a carbon chassis and body. In fact, since 1981 McLaren has never built a car without a carbon chassis.

On the 12C and 12C Spider, aluminium extrusions and castings are jig welded onto front and rear structures and bolted directly to the MonoCell. Along with the carbon MonoCell, they carry the lightweight composite body panels. Apart from the roof, and the engine cover, body panels are identical to the 12C. A redesigned glass engine cover maintains an unobstructed view of the handsome twin turbo V8 engine.

'The front and rear aluminium structures are easy to repair,' adds Patterson. 'They absorb impacts and can be replaced easily. Cars with full aluminium chassis use their structure to absorb and crumple on impact, causing more damage and expense to the whole structure, including the passenger cell.'

Unique Airbrake provides active aerodynamics
As with the 12C, the 12C Spider is fitted with the unique McLaren Airbrake - an 'active' rear wing that increases its angle to boost downforce and improve stopping power and stability through corners. 'As with every other aspect of the car, we have "added lightness",' notes McLaren Automotive Chief Test Driver, Chris Goodwin. 'Under heavy braking above 95 km/h, a piston operated by the transmission hydraulics raises the Airbrake to 32 degrees. Once this wing angle is set, and the Airbrake is pushed into the airflow, the centre of aerodynamic pressure forces the bottom of the wing up to 69 degrees. With the use of clever aerodynamics, rather than a bigger, heavier motor, the wing is deployed to its full and maximum angle. This weight-saving thinking has reduced the weight of the mechanism by 50 per cent.'

The 'active' aerodynamics of the McLaren Airbrake is another Formula 1™-derived innovation - although now banned, as it conferred a substantial performance advantage.

The total weight of the new 12C Spider is 1,474 kg, an increase of only 40 kg on the 12C, less than any other car in the class. The increase is because of the added weight of the Retractable Hard Top and other small changes, including a slightly heavier (by 2 kg) exhaust system. Overall, the 12C Spider is substantially lighter than most comparable convertibles, as well as being stronger and stiffer.

ENGINE AND TRANSMISSION
The light weight philosophy does not begin and end with the body and chassis of the 12C Spider. A light structure enables the designers to save weight through the whole design process. This includes the unique 3.8-litre twin turbo V8 engine, which weighs just 199 kg (439lbs).

Designed by McLaren Automotive, the British-made M838T engine features dry sump lubrication and a flat plane crankshaft, both of which have helped engineers place the engine extremely low in the chassis, lowering the centre of gravity and optimising handling and agility.

'The engine in the 12C and 12C Spider offers low weight, low-rev tractability, potent mid-range performance and extensive high-rev reach,' says Richard Farquhar, Function Group Manager for Powertrain. 'It also has a level of refinement and efficiency you wouldn't normally expect from a V8.'

Power boost for 2013
The McLaren MP4-12C Spider, along with the Model Year 2013 12C, gets the latest and more powerful 625PS (616hp) version of the engine, to give even more vivid acceleration with no loss of efficiency. Fuel economy has not been affected: it is still 24.2 mpg (combined) with emissions of just 279 g/km - excellent figures for so powerful a vehicle.

Revisions have also been made to the innovative Intake Sound Generator (ISG). This system works by controlling engine intake noise within the cabin at differing levels, depending on the Powertrain mode selected for the car. Moving up through Normal, Sport and Track Powertrain modes enhances the aural drama and driving experience of the 12C, allowing more of the natural sound of the V8 engine noise to enter the cabin. This allows the 12C Spider to be dramatic and exciting when required, but then also quieter for long distance journeys. With the 2013 specification 12C and 12C Spider, the driver can select the level of engine noise delivered in each mode through an electronic menu, accessible via the instrument cluster.

The exhaust system is the only part of the engine that has been changed for the 12C Spider. To ensure the audible experience is optimised for open-top driving, the exhaust has been developed to suit the harmonics of the 12C Spider body shape. An optional sports exhaust system is available, which is both lighter and louder than the standard equipment.

The seven-speed dual clutch 'SSG' transmission used in the 12C Spider is unchanged from that used in the 12C. It utilizes the Model Year 2013 upgrades, including crisper throttle response and improved clutch control. Gear changes are now faster and smoother. Like the 12C, it is available in Normal, Sport and Track gearshift modes providing progressively faster shifts, and differing shift points when in automatic mode. These modes are selected using the 'Powertrain' dial on the Active Dynamics Panel.

SUSPENSION
The goal with the 12C and 12C Spider was to offer executive car-like ride quality and sharp, agile handling. This is a combination of abilities that has never been seen on high-performance convertibles before.

Convertibles - especially fast convertibles - tend to have compromised ride and handling and often use different suspension settings than their fixed-head counterparts. The 12C Spider is a revelation. The exceptional strength and rigidity provided by the carbon fibre MonoCell means that the 12C Spider is able to retain exactly the same suspension components and settings as the groundbreaking 12C.

ProActive Chassis Control makes anti-roll bars redundant
The 12C Spider uses the same ProActive Chassis Control that proved such a revelation with the 12C. The suspension is based on double wishbones with coil springs, like a Formula 1 car. Innovative adaptive dampers, interconnected hydraulically and linked to a gas-filled accumulator, provide pro-active responses, depending on road conditions and driver preferences. Normal, Sport and Track settings are available which operate independently of the transmission settings.

One of the advantages of ProActive Chassis Control is that it makes traditional metal anti-roll bars unnecessary. Notes Paul Burnham, McLaren Automotive Vehicle Dynamics Manager: 'An anti-roll bar is a popular and simple solution to reducing a car's roll. But the problem is that its stiffness is always there, reducing ride suppleness and comfort. The ProActive Chassis Control system, with its interconnected adaptive dampers, takes care of body roll without the need to use separate metal anti-roll bars. It is a large factor in our goal to offer the best high performance sports car handling and yet also offer executive car ride suppleness.'

Electronic sensors monitor the movement of the body and the wheels, increasing the levels of damping as and when required.

Brake Steer is another important technology that helps to boost the agility of the 12C Spider. It is yet another Formula 1™ technology that McLaren uses on the 12C. However, unlike many of those technologies, Brake Steer is now banned in Formula 1™ because it offered a clear performance advantage. This was shown by the successful implementation in 1997 on McLaren's 1997 Formula 1™ car.

The Brake Steer system offers the same benefits as a 'torque vectoring' differential, but is up to 20 kg lighter - part of the 'weight down' philosophy used on the 12C and 12C Spider. The system uses the hardware of the 12C's existing Electronic Stability Control (ESC) to apply braking forces to the inside rear wheel, improving turn-in to corners, boosting cornering speed, agility and driver confidence.

Standard brakes - forged aluminium bell and cast iron ventilated and cross-drilled discs - are optimised for weight, saving around 8 kg from standard cast iron. Optional Ceramic Composite Matrix (CCM) brake discs are also available saving a further 3.7 kg.

INTERIOR
The McLaren MP4-12C Spider cabin design is identical to the 12C, offering a range of material and colour options allowing customers a great degree of freedom to personalise their car. This includes the, new for Model Year 2013, Semi-Aniline leather sport interior, which features a more naturally textured finish. The interior of the RHT roof panels are lined either in Carbon Black Fabric or optional Carbon Black Alcantara.

Audio and climate systems specially calibrated for the 12C Spider
Typical of McLaren attention to detail, the climate control and audio systems have been totally recalibrated, to compensate for top-down driving.

The audio system, developed specifically for the 12C Spider by Meridian, the bespoke British hi-fi specialists, optimises the music output depending whether the car is running with the top up or down. Meridian was involved in the audio system's development from the very outset of the car's design, to optimise audio quality.

The Automatic Volume Control (AVC) and Automatic Tone Control (ATC) are both recalibrated for the 12C Spider. Individual speakers are automatically adjusted to take into account increases in external sound.

The climate control system is also recalibrated to automatically adjust when the roof is lowered. Airflow to the windscreen is reduced and, instead, redirected to the lower cabin vents. Fan speed also responds to vehicle speed, to maintain the desired temperature.

When the roof is up, the climate control settings from the 12C are applied. However, even when the rear cabin glass is lowered - which can be done independently of the roof - the climate control system is automatically adjusted to ensure constant cabin temperature and occupant comfort.

MANUFACTURING
The McLaren MP4-12C Spider is built at the new £40 million McLaren Production Centre (MPC) facility in Woking, Surrey, adjacent to the McLaren Technology Centre (MTC). The manufacturing facility was opened in November 2011 by UK Prime Minister David Cameron and McLaren Group Chairman Ron Dennis.

Saturday, October 22, 2011

McLaren MP4-12C GT3, 2011

 
 
 
 
 
McLaren MP4-12C GT3, 2011

McLaren GT, a new race car manufacturer which brings together the expertise of McLaren Racing, McLaren Automotive and CRS Racing, unveiled the McLaren MP4-12C GT3 race car and plans for a 2011 development programme.

The new McLaren MP4-12C GT3 will be the first McLaren car built for FIA GT series racing since the McLaren F1 GTR finished production in1997. The 12C GT3 is based on the new MP4-12C high-performance sports car and a team of engineers, designers and test drivers with vast experience in Formula 1 and GT racing has been assembled to undertake the process of adapting the carbon chassis-based 12C to racing specification.

Drivers and FIA approved races confirmed for 2011
McLaren GT aims to deliver the highest quality, most reliable and most driveable car on the GT3 grid when 20 cars are delivered to privateer teams for racing in Europe in 2012. The unique combination of McLaren and CRS Racing's technology and development methodology is matched by McLaren GT's appointment of experienced and successful racing drivers to develop the 12C GT3 at challenging races over the 2011 season.

McLaren GT plans to debut the new McLaren MP4-12C GT3 at this season's Blancpain Endurance Series race at Spain's Circuito de Navarra, followed by Magny-Cours in France and Silverstone in England. As part of the development programme for the 12C GT3, McLaren GT also expects to enter the Total 24 Hours of Spa endurance race.
CRS Racing Team Principal Andrew Kirkaldy will be joined by 2010 Vodafone McLaren Mercedes test driver Oliver Turvey and Portuguese racing driver Álvaro Parente in the McLaren GT driver line-up for the 2011 development programme.
McLaren fans eager to see McLaren's first GT racing car since the legendary McLaren F1 GTR can expect to see the new 12C GT3 driven up the famous Hill at Goodwood Festival of Speed from 01-03 July 2011.

McLaren MP4-12C GT3 development targets

McLaren GT comprises a team of designers, engineers and test drivers with vast experience in developing successful race and road cars. Marcus Waite, McLaren GT Chief Engineer, began his career working with the McLaren Formula 1 Simulation Group. A move onto the Formula 1 team where he was Senior Test Team Engineer for many years was then followed by his appointment to McLaren Automotive as Test Team Leader responsible for the new MP4-12C sports car. Combining practical experience of Formula 1 car development methodology and a deep understanding of the 12C road car's technical specification is invaluable to McLaren GT.

The McLaren MP4-12C: The essence of a race car
Racing experience and development tools have played a key part in readying the 12C GT3 for its 2011 race programme. But, before the racing car takes to the competitive grid, McLaren, in the form of McLaren Automotive set out to develop a high-performance sports car that set new standards for speed, handling, efficiency, braking and driveability: formed from an obsession for aerodynamic purity and lightweight engineering. Assets and goals that make the McLaren MP4-12C a perfect road car from which to develop a race-winning GT car.

Once plans were agreed to take the 12C racing, key members of McLaren Automotive's design and engineering teams were eager to support this natural step at McLaren.
Under the McLaren Orange skin, the 12C GT3 shares the same 75kg carbon 'MonoCell' chassis as the 12C road car. Since the modern McLaren was formed in 1981, the company has used only carbon fibre for the chassis construction of all its road and race cars: it was a natural choice for the heart of the MP4-12C. Lightweight construction and manufacturing innovation through Resin Transfer Moulding was a priority for the engineers and designers responsible for the 12C's chassis. The result is a road car that, at 1301kg, is the lightest in the 'core' sector of the high-performance sports car market.
Andrew Kirkaldy said: "I believe the MP4-12C is an engineering masterpiece and that starts with its carbon chassis. A rigid chassis is hugely important to a racing driver. The McLaren MonoCell is unequalled as a safety cell, and our engineers can be sure that any changes made to the chassis set-up will have the desired effect because of its structural rigidity and predictability.

CRS Racing to deliver on expectations of a new McLaren race car
The prevailing design concept of the new McLaren MP4-12C road car is 'designed around the driver', and this is just one example of McLaren's uncompromising commitment to offering a new driving experience in road and race cars. CRS Racing Team Principal Andrew Kirkaldy brings a decade of GT-level racing experience to McLaren GT and, as the team's project manager, Kirkaldy was able to specify the cockpit and other attributes of the 12C GT3 to ensure restrictions normally associated with GT3 race cars are removed from the McLaren.

Specification and performance reflect McLaren expectations
Just as with the 12C road car, McLaren is working closely with specialist suppliers to deliver an innovative and lightweight car. The 3.8-litre McLaren V8 twin turbo 'M838T' engine supplied in the road car also features in the 12C GT3, but de-tuned to 500 PS (from 600 PS) in order to provide optimum power for this performance-balanced race car.

The new McLaren MP4-12C GT3 will feature a unique engine calibration, bespoke racing transmission developed in partnership with Ricardo (who also developed the engine with McLaren) and a suspension arrangement tuned specifically for racing.
McLaren GT has selected the TAG-400 Engine Control Unit for the new 12C GT3. The TAG-400 is a compact, self-contained engine management system and data logger for race engines designed and built by McLaren Electronic Systems. The procurement of components from suppliers used to working with partners in Formula 1 is another example of McLaren GT delivering on its objective to build a GT3 car of unrivalled quality and reliability.

McLaren MP4-12C, 2011

 
 
McLaren MP4-12C, 2011

The McLaren MP4-12C is revealed as the first in a range of high-performance sports cars from McLaren Automotive, the independent car division based at the McLaren Technology Centre in Woking, England. The 12C, and future models within the range, will challenge the world's best sports cars, benefiting from the expertise and virtuosity of the McLaren Group.

20 years of sports car design, engineering and production combined with inspirational success in Formula 1 have driven Ron Dennis, McLaren Automotive Chairman, to announce his plans for the ultimate line-up of technology-led and customer-focused performance cars for the 21st century. The rules in the sports car world are about to be re-written.

The Inside
The heart of the new car is the Carbon MonoCell. McLaren pioneered the use of carbon composite construction in the 1981 Formula 1 MP4/1 model and set a trend that all Formula 1 teams have followed. The company brought carbon fibre to road cars for the first time with the 1993 McLaren F1 and then built on this experience with a carbon fibre chassis and body on the SLR manufactured to the same exacting standards, but in higher volumes.

Adding lightness
Weight is the enemy of performance in every area of car design. It affects acceleration, speed, handling, fuel consumption and CO2 emissions - everything. McLaren Automotive engineers pursued weight saving obsessively. Like:
  •  The Carbon MonoCell not only reduces the weight of the structure but also allows for the use of much lighter weight body panels.
  • The close position of the driver and passenger allows a narrower, lighter body while giving improved visibility with a clearer perception of the car's extremities.
  • Brakes with forged aluminium hubs save 8 kg and weigh less than optional carbon ceramic brakes.
  • Lightweight exhaust pipes exit straight out the rear of the car, minimizing their length and weight.
  • Airflow-assisted Airbrake deployment dramatically reduces weight of the Airbrake activation system.
  • Small, compact downsized engine coupled to lightweight compact SSG minimizes vehicle length, weight and polar moment of inertia.
  • Significant weight was pared off the alloy wheels through intensive Finite Element Analysis of wall thicknesses.
  • The engine cooling radiators were mounted at the rear, as close to the engine as possible, to minimize the pipework, the fluids contained within them, and therefore weight. They were also mounted in car line to minimize vehicle width.

Might expect at McLaren, everything has a purpose and the nomenclature is no exception.
    * 'MP4' has been the chassis designation for all McLaren Formula 1 cars since 1981. It stands for McLaren Project 4, resulting from the merger of Ron Dennis' Project 4 organisation with McLaren.
    * The '12' refers to McLaren's internal Vehicle Performance Index through which it rates key performance criteria both for competitors and for its own cars. The criteria combine power, weight, emissions, and aerodynamic efficiency. The coalition of all these values delivers an overall performance index that has been used as a benchmark throughout the car's development.
    * The 'C' refers to Carbon, highlighting the unique application of carbon fibre technology to the future range of McLaren sports cars.

The elements of this name represent everything that the McLaren MP4-12C stands for:
  •  'MP4' represents the racing bloodline
  •  '12' represents the focus on complete performance and efficiency
  •  'C' represents the revolutionary Carbon MonoCell

A carbon fibre heart
Light weight and performance are defining philosophies at McLaren. But outright power alone is of little significance if a car's weight saps output or if that power is unmanageable and compromises the driving experience or results in unacceptable emissions.

The Powertrain: pure McLaren
The McLaren MP4-12C is powered by a twin-turbocharged, 3.8 litre 90° V8 engine - the 'M838T'. This marks the start of a new era in 'core' segment sports cars - smaller capacity, lighter weight, higher efficiency and more economical power units. The engine has the highest specific power output in its segment which, when allied to its low weight carbon composite chassis, delivers exemplary power- and torque-to-weight ratios.

In practice the latency of the shift is virtually zero, the actual gear change time is very fast and the level of impulse can be varied according to the gearbox mode. Considering that McLaren was the first Formula 1 team to introduce seamless shift gearchanges into motor racing, it was a natural step to develop such a bespoke transmission to its sports car project.

The Chassis: Proactive control
The suspension for the McLaren MP4-12C breaks new ground, offering hitherto unseen levels of roll control and grip (an almost flat cornering attitude, depending on the programme selected).

Though such track-like responses would normally imply a rock-hard ride, the 12C delivers compliance and ride comfort more akin to an executive saloon car. The mix of occupant cosseting and sporting potential is truly unique. The 12C offers the driver both class-leading ride comfort and class-leading performance.

Inside: it all starts with the driver
McLaren designers paid great attention to all-round visibility for both safety and driving precision.
The low cowl gives a full six degrees downward vision from eye height and, importantly, allows the driver a clear view of the front of the car. The view of the top of the front wings, with the highest point positioned directly above the centre of the wheel, also facilitates perfect placement of the 12C in a corner. Rear vision is excellent too and an internal buttress with a rear three-quarter glass provides a clear rearward view.

The McLaren F1, the driver has controls on both sides, which allows for a rational positioning of switches:
  • Climate controls on each door console
  • Telematics on the upper centre console
  • Active Dynamics Panel on the middle centre console
  • Transmission and minor controls on the tunnel console
  • Trip computer and cruise controls on steering column

The Active Dynamics Panel provides two rotary switches and four push buttons:
  •  'Start/Stop'
  •  'Active' activates all the dynamic controls.
  •  'Winter' sets powertrain, suspension and electronic aids to maximum driver support.
  •  'Launch' initiates the launch control system.
  •  The two rotary switches control 'powertrain' and 'handling', each having three position settings for normal, sport and high performance driving modes.
  •  'Powertrain' changes throttle response, gearbox strategy, shift times and impulse (how much one can feel the gearchange). The coaxial 'Manual' button controls use of manual gearbox functions.
  •  'Handling' changes stability control, steering weight, suspension firmness and roll stiffness. The coaxial 'Aero' button allows the driver to deploy the airbrake for increased downforce.

The interior's simplicity belies a world-class level of comfort and safety features that will include a full quota of airbags, fully automatic dual zone climate control, sophisticated telematics and audio systems, parking sensors, trip computer, cruise control and electric memory seats.

Testing and simulation
McLaren has developed one of the most sophisticated driving simulators in the world. It is an immensely powerful tool that can be used to predict handling, performance, and a multitude of other dynamic properties.

The simulator was initially designed to improve the performance of the Formula 1 cars. But it has also been used intensively in the design and development process for the 12C, where modelling offers the opportunity to test likely outcomes without having to build a component that might turn out to be inadequate. It saves both money and time and it is perhaps the most effective technology transfer from Formula 1 to road cars; the handling and suspension of the McLaren MP4-12C was developed using exactly the same tools and techniques as the McLaren Formula 1 cars.

Production
The production process for the McLaren MP4-12C will enable McLaren to build on its recent success of record production volumes and quality for a luxury supercar with the SLR.
The McLaren Production System brings a large scale lean production mentality into a small-scale, flexible operation. The process is championed by Production Director, Alan Foster's experiences at Japanese and European car manufacturers.

Aftersales, retail distribution, personalisation
Not only is McLaren establishing a new company, a new production plant, an all-new high performance sports car engineered and developed in house... it is also building a global network of retail distribution partners.
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