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Showing posts with label chassis. Show all posts
Showing posts with label chassis. Show all posts

Tuesday, March 13, 2012

The new Mercedes-Benz SL: Chassis and suspension - Best contact with the road


Powerful when accelerating, effortlessly superior at every speed, zappy on winding stretches – the new SL is a shining example, displaying perfect manners on all the world’s roads and in all driving situations. What’s more, it also pampers all the senses with any amount of fun at the wheel. For these emotive experiences SL drivers can thank the potent engines – and above all the sporty, agile tuning of the suspension – which is nevertheless very comfortable, being offered in the form of two different systems for the SL.


The SL features semi-active adjustable damping as standard. The optional active suspension system ABC (Active Body Control) is offered as an alternative.
The spring struts which come as part of the standard equipment combine a steel spring with a continuously adjustable damper. Its damping properties can be varied via an electrically controlled valve.

Continuous adjustment of the damping in accordance with the respective driving situation is taken care of fully automatically by control electronics which record the driving condition in question via sensors. The control unit uses the sensor data to determine the necessary damping forces for optimum comfort and handling. On this basis it steplessly regulates the damping valves at every wheel within a broad damping characteristic so that sprung mass vibrations such as lifting, rolling and pitching are minimised on uneven roads. As a result, the new SL gives its occupants a smooth ride even on poor roads, without relinquishing any driving dynamics.

The semi-active adjustable damping also rapidly counteracts sprung mass vibrations caused by the driver, by adjusting the damping characteristics. By way of example, the dynamic anti-roll and anti-pitch support compensates for pitch ensuing from braking and accelerating, and quickly and effectively stems rolling motion which is initiated above all by cornering or jerking the steering wheel during a dynamic evasive manoeuvre. Torsion bars at the front and rear axle help to reduce wide roll angles when cornering, and positively influence the understeer/oversteer characteristics.

Setting the basic characteristics of the suspension is still left to the driver, however, using a switch that enables them to choose from a broad spectrum ranging from comfortable to sporty damping characteristics. At the touch of a button they can therefore have a chassis and suspension set-up available which places more emphasis on comfort, for instance, whilst if they choose the sports setting, they are opting for a driving experience with a very high level of dynamic response.

Sports suspension in the AMG Sports package

A variant of this suspension is offered in the AMG Sports package. This sports suspension lowers the roadster by ten millimetres, the spring strut and torsion bars are configured to be ten percent more rigid and the parameterisation of the adjustable damping is selected in such a way that the sprung mass vibration is dampened more strongly – all measures which underline the vehicle’s sporty character.

ABC suspension for high levels of comfort

As an option the new SL is available with the unique active suspension system ABC (Active Body Control) as an alternative. It has been further improved for the new SL by the Mercedes-Benz chassis and suspension specialists. This system’s highly effective control elements are spring struts with a hydraulic steel cylinder arranged in line with the steel spring. When this cylinder retracts and extends, it actively adjusts the length of the spring and therefore the spring force in the spring strut. This eliminates the need for torsion bars at the front and rear axle.

With this technology an automatically controlled electronic system permanently adjusts the suspension to suit the driving situation and the road condition without any perceptible delay. This means that the active suspension system ABC can raise comfort to a high level, whilst simultaneously improving the roadster’s driving dynamics. This is possible as it almost completely compensates the vehicle body’s rolling and pitching movements when accelerating, braking and cornering. In addition to this, at the touch of a button it offers a unique, further increased spread of suspension settings between sports and comfort.

As the vibrations initiated by irregularities in the road surface are greatly reduced, the occupants in the SL experience a vehicle with perfect absorption capacity on poor roads. Above all it is alternating sprung mass vibrations (“cross-pitching”) which are extremely minimal.

Sprung mass vibrations which arise through the driver’s influence are also almost entirely ironed out – this is the case, for instance, when the body rolls during steering or when there is pitching during braking and accelerating. The occupants experience a vehicle which drives “as if on rails”, but without having to pay for this with the usual reduction in ride comfort which is typical of sports suspensions.

As the ABC system modifies the roll torque distribution depending on the driving speed, the driver experiences handling which changes with the driving speed. It varies from motoring pleasure where one can afford it in driving dynamics terms to directional stability where it is most needed. In other words, on winding rural roads the roadster moves with nimble agility, and on motorway stretches it stays safely on track and does not worry the driver with any nervous reactions.

The ABC system is also fitted with a hydraulic all-round level control system, thus ensuring a constant vehicle level irrespective of the load. When the engine is running, the driver can raise the level of the vehicle at the touch of a button, both when the vehicle is at a standstill and during the journey. Thanks to a new feature in the SL, if the level is raised by 50 millimetres in this way, the ground clearance for rough roads or ramps is increased. In addition, the SL fitted with ABC is automatically lowered by up to 13 millimetres at high speeds, thus lowering the centre of gravity and wind resistance – and therefore also the fuel consumption.

More track, less unsprung weight

The track and wheel suspension are the same in the case of both suspension variants. In favour of sporty, agile and handling which can be safely kept under control, the new SL has a considerably wider track than the predecessor (front axle plus 38 mm, rear axle plus 63 mm).

At the front axle, the tried-and-trusted principle of the 4-link front suspension has been adopted from the previous model series. It achieved superb results where comfort, dynamism, agility plus active and passive safety are concerned. Most importantly they are characterised by two individual links (a torque strut and a spring link), which are included in place of a lower wishbone. In conjunction with the ABC suspension no torsion bar is necessary.

In order to optimise the front axle even further in terms of weight, in the new SL the steering knuckle and the spring link are also made of aluminium. The lower front axle elements, the steering gear and the engine mounts are linked with an aluminium assembly carrier which is directly bolted to the body.

A lightweight construction was also systematically implemented at the rear axle, too. In order to reduce the unsprung masses, virtually all the suspension parts are made of aluminium, as is the subframe with load-matched panel thicknesses. The weight-reduced rear axle carrier consists of high-strength steel.

But the focus was not just on saving weight when developing the rear axle; the engineers have also optimised the kinematics and elastokinematics, with the objective of achieving more agility. Other results of the new configuration are lower forces, which considerably increases comfort. An additional support linking the rear subframe bearing to the bodywork also has a positive effect on the new SL’s ride comfort. It increases the introduction rigidity – a parameter whose properties include excellent road roar characteristics where NVH (noise, vibration, harshness) qualities are concerned. Thanks to these constructive measures relating to materials technology, the new luxury roadster offers a chassis with outstanding comfort coupled with excellent driving dynamics.

Like its predecessor, the new SL with adjustable damping also has an anti-roll bar, which is mounted directly at the rear axle and assembled together with the subframe, and serves to reduce the connection points with the bodyshell.

The chassis has a virtually neutral configuration, pleasing sporty drivers. In particular in the range from 60 to 130 km/h it reacts with enormous agility, and therefore facilitates a great deal of fun at the wheel on rural roads. In so doing the SL allows lateral accelerations which are impressive even for a sports car. Two different programs can be selected for the ESP®. The control interventions from the more sportily tuned variant allow side-slip angles during accelerated cornering – offering adept drivers plenty of motoring pleasure. At the same time it can be driven more easily and safely at higher speeds.

Electric Direct-Steer system for more driving dynamics

The broad spread of suspension settings is supported by a new electromechanical Direct-Steer system with speed-sensitive steering power assistance and a variable steering ratio that changes according to the steering angle. The ratio is very indirect when the steering is centred, which ensures good straight-line stability and therefore a high level of safety. In contrast to other variable steering systems, the ratio of the Direct-Steer system decreases rapidly after a steering angle of 5 degrees, becoming extremely direct from a steering angle of just 100 degrees. Only relatively small steering movements are then needed to make course corrections.

In contrast to the predecessor, the Direct-Steer system optimises the ratio course. This enables the new SL to shine with yet more agility, making cornering even more fun as a result. At the same time, through the new ratio course the maximum steering effort required when parking or turning is reduced by about 15 percent. This means that only 2.2 turns of the steering wheel from limit to limit are now necessary.

This has the following effect in practice: even at urban driving speeds, the driver needs to perform less pronounced steering movements, making changes in direction possible more rapidly and with less effort. The effect of the Direct-Steer system is even more impressive on winding country roads, where only small steering movements are sufficient to steer the vehicle. Even on tighter bends, the driver’s hands hardly need to change their grip on the steering wheel. Rapid sequences of bends can be mastered safely and precisely, and with enormous enjoyment.

Despite its remarkable effect, the key component of the Direct-Steer system is a simple steering rack. Its secret lies in the teeth cut into it. In the mid-area these are slightly wave-shaped, with varying flank profiles. To both sides the teeth are spaced at varying distances apart. The change in steering ratio is therefore produced by purely mechanical means. With this ingenious solution, Mercedes engineers have been able to dispense with the elaborate actuators and complex sensor systems used by other variable steering systems. The advantages of the Direct-Steer system therefore include very low susceptibility to faults and low weight. Moreover, the system always responds predictably and in the same way at each steering angle, while other variable steering systems sometimes require rapid adaptation by the driver in rapidly changing situations.

Instead of hydraulically, as is the case with the familiar speed-sensitive steering from Mercedes-Benz, the Direct-Steer system in the SL regulates the steering force electrically. This is taken care of by an electric motor – positioned axially parallel to the toothed rack – which transfers its power to the ball screw as a rotary movement via a toothed belt. The electric motor, drive unit, control unit and sensor system are integrated in a compact unit.

The control unit evaluates a large number of input variables in order to configure the steering torque optimally in accordance with the situation in question. A torque sensor determines the necessary assistance required at the steering-gear input shaft. In so doing the electronics take into account, for example, different vehicle axle loads. Due to the different engine weights, the characteristic maps for six-cylinder and eight-cylinder models are proof positive of the engineering artistry that lies behind the system.

Further advantages of the electric steering

- More active response: the electronics support the steering return, meaning that drivers hardly need to steer in order to return to the centre position.

- Lower consumption: as output is only called up when the driver is actually steering, the consumption falls by up to 0.3 l/100 km compared with the hydraulic Direct-Steer system.

- Active parking: with the electromechanical Direct-Steer system the Automatic Parking Control (APC) system can be offered in the SL for the first time.


Assistance for critical road surface conditions

A further assistance function has been realised in the new SL thanks to the electromechanical steering power assistance – the Steer Assist system: it can support stabilisation of the vehicle if the vehicle brakes on a road surface with different friction (ยต-split) on the left and right, making it pull to one side. Drivers can find themselves confronted with this situation, for example, on a road surface which is covered with ice on one side. When braking, the vehicle then turns in the direction of the high friction – referred to by experts as a yaw impulse.

In this case the steering assistance system indicates to the driver via the steering wheel that they should countersteer in the correct direction in order to compensate for the yaw impulse caused by the difference in friction – until the vehicle has stabilised again. In order to do this the control unit evaluates the difference between the ABS pressures on the right and left, giving an indication of different road surface friction coefficients, and it also includes the ESP® data which register oversteer in this sort of situation.

By way of indication, the electric steering power assistance impresses a steering torque which supports the driver’s own reaction like a suggestion. This steering torque, which causes the driver to steer correctly through a light impulse, is hardly perceptible, and most of the time it is not even noticed at all. Nevertheless the assistance function is effective. However the steering assistance system merely provides an indication of the direction in which the driver should steer in order to stabilise the vehicle; it does not overrule the driver.

Brakes for sporty driving enjoyment

The new SL has adopted the proven braking system with a dual-circuit brake and the split of the two braking circuits between the front and rear axle from the predecessor model. At the front all the variants are equipped with newly developed 4-piston fixed-calibre brakes with an aluminium monobloc design and perforated brake discs. 1-piston combined floating brake callipers are fitted at the rear.

In order to be able to provide the required output from the braking system, the heat arising at the brakes must be removed as quickly as possible. This is why special attention was given to aerodynamically favourable and highly effective brake cooling. On the basis of different wind tunnel and road tests, the aerodynamics engineers developed a system comprising several components for targeted air ducting in the front axle area. A brake air channel has been integrated into the front engine compartment trim in order to guide the air over the front wheel spoiler in a targeted manner and steer it onto a guide blade. The guide blade fixed to the front suspension link diverts the air coming from the brake air channel over the brake discs to the exterior. Together with a front matched wheel spoiler, this has achieved effective cooling of the brakes. The newly developed brake cover plates consist of steel at the front axle and aluminium at the rear axle.

Brake disc dimensions
Electric parking brake with emergency braking function

As a new feature in the SL, the electrically operated parking brake helps in the design of a generous interior. Its switch is located in the dashboard, under the rotary light switch. Pressing this engages the electric parking brake, and pulling releases it. It is also released automatically as soon as the engine is running, the transmission is in the D or R position, the driver has a fastened seat belt and the accelerator is operated.

Under normal circumstances, irrespective of the duration of operating, the electric parking brake only closes the responsible combined floating brake calliper at the rear axle fully and for a sustained period when the vehicle is at a standstill or at speeds below 4 km/h. Provision has also been made for an emergency braking function: if the driver pressed the electric parking brake at a speed higher than 4 km/h, the SL brakes to a safe stop with the aid of the service brake. In this case, the emergency braking function is taken care of by the hydraulic unit of the ESP®, with the brake lights also lighting up.

The emergency braking is interrupted as soon as the control element is no longer kept depressed.

Torque Vectoring Brakes: ESP® helps with the steering

The new SL includes the Torque Vectoring Brakes system as part of its standard specification. This ensures an additional safety margin at the physical limits, makes the roadster even more agile and therefore enhances its sportiness. The system achieves this with targeted, one-sided braking intervention by the Electronic Stability Program ESP® at the inside rear wheel when cornering. If ESP® detects a tendency to understeer, the Torque Vectoring Brakes generate a defined turning or yawing moment around the vehicle’s vertical axis within fractions of a second. Thanks to the different torque distribution that results, the SL turns into the bend under precise control without any loss of handling dynamics. The advantage of this solution over complex mechanical components such as an active steering rear axle, additional multi-disc clutches or an active differential is that the Torque Vectoring Brakes can be implemented without an increase in vehicle weight and therefore no disadvantages in terms of fuel consumption.

Wheels and tyres – a broad base for the SL

As part of its standard specification the SL 350 is fitted with 17-inch light-alloy wheels with 255/45 R17 tyres – options ranging up to 19-inch wheels are available for selection on request. The SL 500 is shod as standard with 18-inch wheels with mixed-size tyres (8.5 J x 18 ET 35.5 with 255/40 R 18 tyres at the front, and 9.5 J x 18 ET 47.5 wheels with 285/35 R 18 tyres at the rear).




Credits: Daimler AG

Copyright © 2012, Mercedes-Benz-Blog. All rights reserved.

Wednesday, January 25, 2012

CLASSIC: 1955 alloy-based 300 SL auctioned off for a staggering $4.62 million

We are pleased to hear that, after having underwent an exceptional restoration process carried out by specialist house Rudi & Company, one of the rare, 29 300 SLs from the 1950s equipped with a lightweight alloy bodyshell/chassis has recently found an owner. Originally painted in silver grey and displaying a blue leather interior, the car exited the assembly line on April 20th, 1955 and received the chassis no. 198.043.5500208. After the auction organized by Gooding & Company, the Gullwing was sold off for no less than $4.62 million, a lot more than initially expected. It is no wonder why the client spent so much to have the special 300 SL in his own garage: the car is simply shining. The job done by Rudi Koniczek's team achieved the main target of restoring the classic aura of this icon, with a brilliant, careful attention paid to all the minute details.

You might also be interested in reading the following articles:

- Classic car find: a 1955 300 SL Racing with light-alloy bodyshell shows up in California
- CLASSIC: the 1955 alloy-bodied, chassis no.21 300 SL Racing uncovered

Read a detailed story about this specific 300 SL after pressing the jump button!



Vehicle Description

"[The 300 SL Coupe] is the ultimate in an all-around sports car. It combines more desirable features in one streamlined package than we ever imagined or hoped would be possible" – Road & Track Editors, 1955

If not for US importer Max Hoffman and his passion for a sports coupe based on the highly successful W194 series race cars, the Mercedes-Benz immortal 300 SL line would never have come to production.

The racing success of the factory team was having a positive effect on Mercedes-Benz sales in the US. However, without a car clearly related to the race-winning machines, the marketing advantage of the immensely costly racing effort was limited. Accordingly, Mercedes-Benz management approved the 300 SL project after Mr. Hoffman's firm made a commitment to purchase 1,000 of the cars for US distribution.

Integral to the marketing plan for the groundbreaking new sports car was the expectation that the cars would be used for competition by private owners in order to bolster sales in the showrooms, and the factory ensured that the 300 SL was accepted by the FIA for international competition.

As a result, the production Gullwing could be ordered with an all-aluminum body. When chosen, many additional competition upgrades followed suit. A competition camshaft was fitted along with stiffer, shorter springs that lowered the car and enhanced peak performance, while racing-specification tires on wider rims promoted better adhesion. Plexiglass windows and vented brake drums were also featured in the package. The cars were nearly 200 pounds lighter than the standard steel-bodied version. In all, just 29 of these aluminum-bodied cars were ordered and built – approximately 2% of the total Gullwing production.

This Car

Derived for sport, this aluminum Gullwing did not see competitive use. Completed on April 20, 1955, 5500208 was appropriately finished in metallic silver gray over a blue leather interior. The 300 SL was also outfitted with Rudge wheels, the NSL motor and Plexiglas windows per aluminum-build specifications.

On May 27, 1955, the Alloy Gullwing was sent to Rotterdam where it was loaded aboard a Holland America Line ship for transport to New York. Upon arrival, the Mercedes-Benz distributor sent 5500208 to the West Coast for ultimate delivery to Veron Holz of Bonita, California. The new aluminum-bodied Gullwing would have been an extravagant machine on the roads of San Diego in the late 1950s.

Although the early history of this Gullwing is not known, there is no apparent race record for 5500208. In March 1980, the 300 SL resurfaced in San Diego and was sold through a motorcar locator to Hans Dieter Blatzheim of Bonn, Germany. The purchase price was an astonishing $57,000 for an unrestored car, which the seller most likely assumed was steel. The invoice for the purchase still exists, indicating the alloy chassis number 198.043.5500208.

In need of some attention, the Alloy Gullwing made its way to the well-known restoration shop Hill & Vaughn in Santa Monica, California. Phil Hill and Ken Vaughn had gained a reputation for their high-quality restorations and were frequent winners at the Pebble Beach Concours d'Elegance. Disassembly of the car began in April 1980, and the car is accompanied by a significant file of numerous invoices and photographs documenting the work performed by Hill & Vaughn.

The invoices identify the completeness of 5500208, as well as its solid state, which was no doubt a benefit of having spent 25 years in Southern California. Some necessary aluminum work was addressed and the meticulous fitting of the doors, hood and deck lid are thoroughly outlined. Additionally, the engine and gearbox were sent to AMG Motorbau in Germany for rebuilding. Subsequently returned to Hill & Vaughn in early 1982, the project was nearing completion. By mid-year, the car was ready for paint and assembly.

For unknown reasons, Herr Blatzheim requested that 5500208 be packed in a sea container and sent to Germany. The car was loaded and loose parts were thoroughly inventoried before shipment in November 1982.

The completion of the restoration was conducted in Germany, but not before the body was stripped and prepared again for paint. Photos dated October 1983 show the bare aluminum skin in outstanding condition, proving straight and showing good panel fit. Further photo documentation shows the restoration and assembly of the chassis and completion of the car in silver with gray leather.

In May 1984, the 5500208 was sold to Markus Ahr of Germany. During his ownership, work was performed by Daimler-Benz Aktiengesellschaft including a rebuild of the engine. Herr Ahr kept the car well into the 1990s, at which time work was performed by Kienle Automobiltechnik. Photo documentation shows a rebuild of the transmission, rear end, brakes and suspension. Retaining the silver-over-gray finish, detail work was conducted on gauges and other ancillary components and the project was completed in 1998. Not long after, the Alloy Gullwing was sold to Friedhelm Loh, a noted German collector with a passion for significant Mercedes-Benz.

In 2009, Ken McBride of Seattle, Washington, was given the opportunity to buy 5500208. Having had a handful of Gullwings, Mr. McBride appreciated the importance of an Alloy and, for the first time in his many years of collecting, had the chance to own one. Although his collection was significantly diverse, Mr. McBride had always focused on Mercedes-Benz and had acquired a 540 K Special Coupe, a 540 K Cabriolet A and eventually a 380 K Erdmann & Rossi Special Roadster.

After some serious thought, and perhaps a little family persuasion, the Alloy Gullwing was bought for the collection. In the company of a J Duesenberg Murphy Roadster, a Ferrari 410 Superamerica and other significant cars, the 300 SL was more than a notable entry, it was a dream come true for a man who had an Alloy Gullwing high on a short list of cars to own.

In late 2009, Mr. McBride fell ill and the newly acquired Mercedes-Benz took a back seat. At that time, the Gullwing was sent to noted 300 SL restorer Rudi Koniczek at Rudi & Co. for some necessary sorting. Mr. McBride wanted certain aspects of the car corrected, predominantly the shade of silver and the interior. In the months to come, the Alloy Gullwing was stripped to bare metal and repainted in its original silver (DB 180). Necessary body work was conducted and a methodical process was undertaken to ensure proper assembly and fit of the aluminum body. The gray leather interior was removed and the correct blue leather was installed. Some additional mechanical work was conducted, as well as detailing of various components. One deviation from the original was the addition of seat cushions upholstered in plaid, acknowledging the lightweight car's racing alter ego – they are a marvelous touch.

In mid-2011, Mr. Koniczek had finished the restoration but, sadly, Mr. McBride passed away before he could see the final masterpiece. The result was truly spectacular! Shortly after, Mr. McBride's wife Patty and the rest of the McBride family chose to show the Alloy Gullwing at the Kirkland Concours d'Elegance where it rightfully won its class.

The finish of the 300 SL is of the highest level and the car retains a very correct appearance. With a livery that is a tasteful yet bold statement, the quality of the work and attention to detail is obvious and further inspection reveals the purity of this Alloy Gullwing. The original engine remains, correctly stamped NSL, and the body number can be found stamped on the left wheel arch in the engine compartment. Additionally, the Gullwing has belly pans, its chrome Rudge wheels are original, the luggage is properly finished in natural pig skin, the Becker radio is correct, the grille has the proper "curved star" – the list goes on.

Furthermore, this Alloy Gullwing is accompanied by a tool kit, a knock-off hammer, a jack, comprehensive documentation, the Mercedes-Benz Certificate, an owner's manual, an instruction manual, a spare parts catalogue, a service book and Becker radio manuals.

5500208 is a sensation to drive. Its road manners are what one would expect from any beautifully engineered motorcar. The true excitement, however, is when this supercar comes on cam. With abundant power and torque, and precise gearshift, this Gullwing is simply addictive.

In recent years, these ultra-rare, competition- specification cars have come to be recognized by collectors and enthusiasts for what they have always been – truly the best of the best. They are a tiny group of factory-built, lightweight racers, constructed with the express intention of increasing the public visibility of one of the greatest sports cars ever constructed.

Gullwings are routinely acknowledged as favorites in a collection of any size. They are prized for their magnificent engineering and build quality, purity of design and outstanding driving experience. Aluminum-bodied examples – all 29 of which have survived to this day – are very seldom offered for sale.

As one of the most iconic motorcars of all time, it can easily be said that the Alloy Gullwing is the most significant road-going Mercedes-Benz of the post-war era.

Credits: Gooding & Company

Copyright © 2012, Mercedes-Benz-Blog. All rights reserved.

Tuesday, November 29, 2011

Permanent adhesive power: the 4MATIC all-wheel drive system from Mercedes-Benz (II)

New chassis developments and innovative dynamic handling control systems: Relishing the winter with the M-Class

Outstanding safety and well-balanced ride comfort combined with impressive driving dynamics on dry, wet as well as wintry roads, plus superlative skills off the beaten track are some of the key strengths of the third-generation M-Class with permanent all-wheel drive. The premium SUV also makes its mark with new chassis developments and innovative dynamic handling control systems designed to increase both driving pleasure and active safety in winter.



The optional ON&OFFROAD package for the new M-Class uses six different driving modes to optimise driving dynamics and handling safety by providing the optimum drive control needed to cope with the wide spectrum of operating conditions encountered both on and off the road. Drivers have the choice of an automatic mode, two specially programmed off-road modes as well as three on-road modes – “Winter”, “Sport” and “Towing”.

The specific driving modes for all-wheel drive resolve a conflict of objectives that has previously hampered further development of 4MATIC and the 4ETS electronic traction system as well as ESP® and acceleration skid control (ASR). To take an example: on off-road tracks or snow-covered roads, it is important that the control systems respond very gently due to the low friction coefficients, but this makes a sporty set-up virtually impossible. Conversely, a sporty basic setup impairs performance abilities in off-road terrain and snow. In the past, excellent compromises were always found which worked brilliantly under all conditions. The new ON&OFFROAD package with its specific driving modes, however, enables driving dynamics and handling safety to be optimised almost as far as is physically possible under all operating conditions by maximising networking between the individual control systems.

In terms of “hardware”, the ON&OFFROAD package comprises an underguard, a two-stage transfer case with low-range ratio, an inter-axle differential lock and enhanced AIRMATIC functionality that allows a maximum ground clearance of 285 millimetres and a fording depth of 600 millimetres.

Winter driving mode: more fun, more safety

The driving mode is chosen using a rotary control on the centre console. To ensure the selected driving mode – in this case “Winter” – is clearly indicated, a special snowflake graphic appears in the instrument cluster, while the COMAND screen shows the M-Class in a wintry, snow-covered landscape.

The ON&OFFROAD package’s winter driving mode optimises handling on roads affected by snow, ice or freezing rain and when using snow chains, and offers drivers added safety with its well-defined, predictable reactions. The extensive fine-tuning work carried out focused on further increasing longitudinal traction, at the same time as improving lateral dynamics and handling safety. The development team was able to implement these specifications to impressive effect using targeted control mechanisms in the drivetrain:

- When pulling away with or without the steering turned, the inter-axle lock in the centre differential is triggered earlier in order to increase traction and reduce understeer when accelerating briskly. In parallel to this, the 7G-TRONIC PLUS switches to the “gentler” ECO mode and automatically engages 2nd gear when pulling away to avoid high wheel slip. Finally, a flatter response curve gives the driver more sensitive control over the accelerator pedal.

- Maintaining a locking torque that has been set in the centre differential for longer improves handling stability and helps the driver by making the self-steering characteristics more definite.

- Higher ASR slip thresholds when driving in a straight line result in high traction levels as well as safe operation with snow chains with outstanding tractive power.

- ASR slip thresholds lowered when cornering in order to ensure stable handling characteristics at all times as far as is physically possible.


ACTIVE CURVE SYSTEM for safe fun in the snow at its very best

When the ON&OFFROAD package is combined with the ACTIVE CURVE SYSTEM (ACS), a specially programmed winter set-up guarantees dynamic driving pleasure while giving the driver excellent control over the vehicle for a high degree of handling safety. ACS uses active anti-roll bars at the front and rear axles to compensate for the roll angle of the body through bends, increasing agility and driving pleasure in the process. At the same time, the system is capable of giving the M-Class greater traction, especially in wintry road conditions with low grip levels.

The ACTIVE CURVE SYSTEM “Snow mode” features two control strategies. Firstly, many of the parameters needed for driving on wintry roads are already incorporated into the basic functions, i.e. when the ON&OFFROAD package’s Automatic driving mode is activated. This means that the system’s reactions to the driver’s steering inputs will be less dynamic on slippery surfaces. External influencing factors, such as fluctuating friction coefficients on roads that are partially covered in ice or snow, are balanced out faster though. Thanks to this control strategy, the M-Class becomes far more docile, even if the vehicle switches between moderate oversteer and understeer.

Secondly, the system control for the winter driving mode includes a special control algorithm. In just the same way as the shaped skis thrill alpine skiers by closely following the desired line even through turns with a tight radius, the M-Class handles in tight bends in this mode. This control strategy produces increased traction on snow-covered road surfaces by dynamic displacement of the wheel loads. If the driver turns into a tighter bend while travelling at a constant speed or accelerating, the wheel load and, as a result, the traction will be increased at the front wheel on the outside of the bend. Doing so minimises the understeer that is otherwise typical in this driving situation. If the driver then reduces the steering angle when exiting from the bend while travelling at a constant speed or accelerating, the load at the rear wheel on the outside of the bend will be raised instead. This has the effect of increasing lateral support at the rear axle, so that the vehicle’s handling is stabilised in the same way as when entering the bend. This time though, it is the tendency to oversteer that is countered.

M-Class sets benchmarks in the world of SUVs

The third generation of the Mercedes-Benz M-Class excels above all with its outstandingly efficient use of energy. On average, the fleet consumes 25 percent less fuel than the predecessor models. The ML 250 BlueTEC 4MATIC is the fuel efficiency champion, consuming just 6.0 l per 100 km on the NEDC driving cycle (158 g CO2/km) and capable of covering up to 1500 kilometres on a single tank of fuel. Other key strengths of the premium SUV with permanent all-wheel drive include outstanding safety and well-balanced ride comfort combined with impressive driving dynamics both on the road and off the beaten track. A distinctive body design and a versatile interior that is highly conducive to its occupants' wellbeing further enhance the M-Class driving experience.

















Source: Daimler AG

Copyright © 2011, Mercedes-Benz-Blog. All rights reserved.