Sabtu, 02 Agustus 2008

Fire protection under the three-pointed star: The history of Mercedes-Benz fire-fighting vehicles and their predecessors - PART I


OFFICIAL PRESS RELEASE

Stuttgart, Germany, Jan 01, 2007

The beginnings from 1888 - 1905



Rapid help

Fire brigades have a reputation for providing rapid help in all kinds of emergency. This reputation is not least attributable to the engines and chassis of commercial vehicle manufacturers. The diverse and often extreme challenges encountered in fire fighting, rescue operations and disaster aid place the highest demands not only on those companies which specialize on fire engine superstructures � the right chassis also has to be available for every purpose. Market leader Mercedes-Benz offers a range of matching chassis, which, in its diversity, is second to none. Above all, high speeds call for powerful engines. More often than not, the engine compartments of fire-fighting vehicles contained the most powerful engines that were available at any given point in time.

Things were still quite different one hundred years ago. Steam-powered fire engines � mammoth syringes, you might say � rattled along to a scene of fire on horse-drawn carriages at speeds of three to three-and-a-half kilometers per hour. While the machinery built up steam pressure, water hoses dispensed their wet charge under carbonic acid pressure. Only bicycles reached the scene of fire more quickly than horse-drawn carriages: up to six firefighters worked the pedals of tricycles and quadricycles, to arrive on the scene completely exhausted. Gottlieb Daimler and Karl Benz were among the first to look for new solutions in this field. The undisputed advantages of their vehicles finally convinced even the greatest skeptics.

The world's first fire-fighting pump driven by a gasoline engine

Stuttgart 1888: Two years after the successful trials with the first automobiles designed by Gottlieb Daimler and Karl Benz, Daimler was able to present a gasoline engine for the fire brigades. On July 29, 1888 he obtained a patent for an engine-powered fire-fighting pump which was, however, still drawn by horses. A single-cylinder 1 hp engine operating at 180 rpm was connected by means of a reduction gear to a piston pump made by the renowned fire pump manufacturer Heinrich Kurtz from Stuttgart. In the same year, Daimler exhibited such a motorized fire-fighting unit � already equipped with a two-cylinder 4 hp unit � at the 13th German fire brigades' convention in Hanover.

A third model with 6 hp engine attracted worldwide attention in 1892. This fire engine was displayed in St. Petersburg, Leipzig, Munich, Florence and Milan and in the following year at the World Exposition in Chicago. The pump, with a capacity of 300 liters per minute delivered at a pressure of three bar, was for the first time used in a major fire in 1892. For five hours, it sucked water from a depth of five meters and pumped it through a 150 meter long pressure hose 20 meters high into the roof structure of a factory producing bed feathers in Cannstatt near Stuttgart. In 1896, the pump was sold at a price of 5,610 Goldmarks to Erfurt where it did valuable service for 25 years. Today, it is displayed in the Mercedes-Benz Museum.

Gottlieb Daimler realized the major advantage of his fire pump with gasoline engine drive: its instant readiness for operation. By contrast, steam-powered pumps took almost a quarter of an hour before the required pressure was built up. There was, however, room for improvement where the matching of engine and pump was concerned. The low-speed piston pump customary at the time was ideal for the steam engine � but not for the high-speed combustion engine.

New propulsion systems: steam engine and electric motor

The gasoline engine had already been invented but the fire brigades continued to use horse-drawn carriages exclusively in the early 20th century. Initially, it was not even speed that was the focus of motorization plans but the high expense associated with keeping horses. A single horse cost as much as 1,500 Marks, and its upkeep incurred more than 1,000 Marks annually. Horses had to be curried, fed and exercised, they produced quite a lot of manure and were even prone to illness. It was therefore not surprising for fire brigades to consider the possibilities of using the new motor vehicle technology for themselves.

Initially they were far from opting for the gasoline engine, however. The first motorized fire engine fleet in Germany, put into operation by Hanover's fire brigade in 1902, consisted of two vehicles with electric motors and a steam-powered pump whose steam engine also drove the vehicle. Steam engine and electric motor dominated the field until 1906 and remained the two most important propulsion systems until around 1910. The biggest disadvantage of the steam engine, quite apart from its price and weight, was the fact that the boiler had to be heated first or kept under a constant pressure. Electric drive also posed a weight problem because of the onboard batteries. A less serious disadvantage at the time was the limited range, given the fire brigades' radius of action at the time.

Ferdinand Porsche's wheel hub motors improved the situation considerably. The 21-year-old design engineer had joined the Viennese company Jacob Lohner & Co., a court vehicle and automobile manufacturer. He came up with the ingenious idea of minimizing the power transmission travel by installing two electric motors directly in the front wheels � a feat for which he received a gold medal at the Paris World Exhibition the following year. Daimler-Motoren-Gesellschaft in Berlin-Marienfelde soon recognized the advantages of the Lohner-Porsche system and from 1906 produced wheel hub motors in large numbers. The manufacturer's vehicles became known as "Mercedes Electrique" or "Electro Daimler".

The commissioner of the Berlin fire brigades, Maximilian Reichel, who had already put the first German motorized fire engines in operation in Hanover, was enthusiastic. In 1906, he had compared a steam-powered vehicle with a vehicle with Lohner-Porsche wheel-hub motors � with the result that he was convinced of the advantages of electrical propulsion. In 1908, he therefore ordered the first combination of four electrically powered vehicles from Daimler, composed of gas extinguisher, steam extinguisher, implement carrier and turntable ladder. Each powered by two 7.5 hp wheel-hub motors, the four vehicles reached top speeds of 36 kilometers per hour. The battery, weighing 900 kilograms, fitted under the driver's seat and supplied by Akkumulatoren-Fabrik Berlin-Hagen, provided for a radius of 50 kilometers.

Premiere of the hybrid mixte drive of Ferdinand Porsche

Porsche had changed to Austro-Daimler in 1905 after having worked for quite some time towards combining the advantages of his wheel-hub motor with the key competence of the leading gasoline engine manufacturer. He replaced the excessively unwieldy battery by a gasoline engine which provided the required electricity for the wheel-hub motors via a dynamo, thereby reducing the weight and enlarging the radius of action significantly. The example set by the Berlin fire brigade was soon followed by the professional fire brigade in Hamburg � the latter ordered twelve Daimler mixte vehicles some of which remained in operation right into the thirties.

The undisputed advantage of the electric motors over steam engines was that they didn't have to be preheated over a lengthy period of time and were therefore operational at all times. The gasoline engine contributed to enlarging the vehicles' radius of action and made it possible to dispense with the bulky and heavy batteries. On the other hand, the question arose why an electric motor was required in the first place if the gasoline engine was capable of driving the vehicle.


Copyright � 2008, fastfivecars. All rights reserved.

Jumat, 01 Agustus 2008

1963: With the cab-over-engine truck LP 1620 modern times were just beginning in the heavy class


OFFICIAL PRESS RELEASE

Stuttgart, Germany, Jul 10, 2008

* Extremely spacious cab with a high level of comfort

* New direct-injection engines replaced pre-combustion chamber engine

* Maximum engine power gradually increased to 320 hp



Daimler-Benz AG was able to demonstrate its class at the IAA International Motor Show in September 1963 both in terms of its passenger cars and its trucks. While among the sedans there was the first Mercedes-Benz 600 to admire, the commercial vehicle line also made an excellent impression in the heavy class with its new cab-over-engine truck, LP 1620. Even the name of the model revealed that this represented a revolution in attitude. Model designations that were difficult to interpret and revealed little (such as the �LP 333� for example) were on their way out, to be replaced by abbreviations with transparent meanings, the first two digits of which referred to maximum gross vehicle weight and the last two digits to rated power.

Spatial miracle with optimal visibility

And even a fleeting glance at the cubically designed cab revealed that the previous cab-over-engine trucks and this new series were worlds apart. Whereas the former were characterized by a split windshield, a high engine tunnel and a tight squeeze on entering, the new LP 1620 represented a genuine spatial miracle with an engine tunnel that is only 170 millimeters high and with a considerably widened panorama from the driver�s seat. In addition, a substantially increased front overhang created space for the two invitingly wide steps which enabled easy access to the cab.
The context within which the plant is responding to vastly changed general conditions with the new LP 1620 has many facets. From a modern perspective, economic conditions at the time are absolutely ideal: The average unemployment rate throughout Europe is barely 1.5 percent and the average price of a barrel of oil is less than two dollars (from 1950 to 1973).

All-rounder approach emerges

Nevertheless, two situations were beginning to crystallize: Firstly, the capacities of Daimler-Benz in Mannheim (medium-duty trucks) and Gaggenau (heavy class) could no longer meet the forecast higher demand for production. Hence the decision was taken in 1964 to set up centralized production in W�rth, to commit Mannheim to engine supply and Gaggenau, on the other hand, to supply axles and transmissions.
In any case, Daimler-Benz had already decided at that time to target the upper middle class segment and above for passenger cars but to operate as an all-rounder for commercial vehicles. This strategy bore fruit: Growth in commercial vehicles between 1960 and 1970 speaks for itself � production climbed from 64,478 to no less than 196,149 units during that period.

Regulations soon relaxed again

On the other hand, where trucks are concerned politics has always had a role to play � at times tougher than at others, but always rather unpredictable nevertheless. Transport Minister Seebohm gave truck users a memorable shock in the second half of the 1950s whe he introduced radical measures relating to permissible dimensions and weights. He was soon forced to relax his radical plans however, and instead of the planned 12.0 meters, a total length of 16.5 meters has now been permitted in Germany since 1960. Nor could the total weight reduction to 24 metric tons be implemented in the long term, and since July 1, 1960 32 metric tons have remained the maximum.

Future belongs to the cab-over-engine truck

But one thing was clear: In the future there was to be no stopping the cab-over-engine truck as a means of transport, which was superior to conventional models owing to the length limitations. Consequently it was only logical that the sophisticated cubic cab concept, which was capable of adaptation for use with everything from light trucks to heavy trucks, proved a very successfully successor to the �island� solutions of the cab-over-engine truck from the 1950s.

However, a tilting cab could not yet be bestowed upon the new LP 1620. With the cubic cab such a design only arrived in 1969, along with the new V-engines. Nevertheless, the design engineers had at least ensured that for maintenance and repair work the cumbersome removal of the engine hood was no longer necessary, unavoidable on its predecessors. This was made possible by a substantial number of widely varying flaps at cab hip level, which also gave the new vehicle the nickname of �advent calendar�. There were two such openings at the front.

To begin with, it was also possible to fold the entrance forward and then, from 1965 onwards, elegantly upwards. This ensured that many procedures, such as adjustments to the injection pumps or checking V-belt tension, could be conducted from inside without having to open the engine cover in the cab.

Dual-line brakes for increased safety

At the beginning of its career the design engineers provided the LP 1620 with a number of technical refinements such as a hydraulic recirculating ball steering � instead of the previously used hydraulic cam-and-lever steering � and dual-line brakes. These were to be followed by many others within the scope of continuous model improvement. The new braking system pumped fresh compressed air into the system even during the braking procedure and thus at last eliminated the risk of brakes failure on long downhill stretches owing to insufficient pressure. This had always been a possibility with the traditional single-line braking system.

On the fan there was also a modification. Previous fans, which were driven by the V-belt and always guzzled power, were replaced on the LP 1620 by a modern viscous fan from Behr, which was thermostatically controlled and only cut in when required.
Although that helped to save the odd drop of gasoline, it could not conceal the fact that the days were numbered for the use of pre-combustion chamber engines in heavy trucks. Compared to the modern direct injection engines they were gradually becoming a little conspicuous as a result of their drinking habits. That is why on the LP 1620 Daimler-Benz replaced the long-serving 200 hp pre-combustion chamber engine, the OM 326, with the new direct injection engine, the OM 346, only one year after introduction of the vehicle.

Fuel consumption drastically reduced

Practically the only features which this engine had in common with its predecessor were the engine block and the displacement of 10.8 liters. Substantial investments were made in the new 210 hp design, which operated at a higher brake mean effective pressure and therefore required modified intakes, combustion chambers and pistons. However, it was worth the trouble: Fuel consumption dropped by up to one quarter, the way had been paved for a further increase in power and, what is more, the new engine remained almost totally unaffected by teething troubles. In terms of reliability the newcomer almost immediately overshadowed its predecessor, which was forever keeping the warranty system on its toes.

However, the political world alone, with its demand for 6 hp per metric ton, ensured that 210 hp could never be the upper limit. With the gradual switch from the 32-mt truck to the 38-mt truck, the output of the new direct injection engine was forced to increase accordingly. 1967 finally saw the introduction of the 230 hp version, two years later displacement was increased to 11.6 liters and another 10 hp were added.

Model range expanded considerably


In the meantime the LP 1620 from 1963 had been joined by a respectable family of modern heavy cab-over-engine trucks. They ranged from the LP 1418, specially designed for light operations such as furniture removal, to three-axle rigid trucks and semitrailer tractors for virtually any operation imaginable. Those special three-axle semitrailer tractors, equipped with two steered front axles, have remained legendary to this day, and in the form of LP 2020 to LP 2024 from 1967 onward they succeeded the LP 333, which became known as the �millipede�. These vehicles admirably combine optimal driving qualities and minimal tire wear.

Continuously cab refinements

From 1956 onwards the customer also had a choice between the original cab and one 200 millimeters longer, with two fixed bunks, the width of which was 600 millimeters at the top and a comfortable 730 millimeters at the bottom. In addition, on the shorter cab version the original single-part folding bunk had been superseded by a two-part folding bunk, of which only one part needed to be raised when driving. That created additional storage space for all the essential items necessary on board on long hauls. A variety of cab versions � particularly luxurious ones � were supplied by external body contractors such as Doll and Wackenhut.

Unconventional solution for all-wheel drive cab-over-engine trucks

However, one specialty could not be handled by the trucks with the cubic cab: all-wheel drive two-axle and three-axle trucks. Since the arrival of the �new generation� was beginning to make its mark commercially and therefore a second internally-developed cab-over-engine truck in parallel to the well-established semi-forward control models did not seem economically viable, the plant resorted to an unconventional solution. It provided the existing cab-over-engine truck made by Henschel, in which Daimler-Benz had held a 51% majority interest since 1968, with the new V8 and V10 engines as well as the equally new planetary axles, and in this way it still retained a presence in all-wheel drive cab-over-engine trucks.

New V10 for 8 hp per metric ton

The new V-engines were already available on trucks with the cubic cab from 1969 onwards. At the International Motor Show in Frankfurt Daimler-Benz presented new two-axle and three-axle rigids as well as semitrailer tractors that were fitted with this new engine from the newly designed 400 model series. At 320 hp the new V10 satisfied transport minister Leber's demand for 8 hp per metric ton, although at the last minute the regulation was not implemented. With these new V-engines there now came a tilting version of cab. The tilting cab was recognizable by its doors reaching low down to the level of the bumper and its slightly higher roof.

It was small wonder then that the 320 hp V10, with its huge 16-liter displacement, was soon followed by a gentler and lighter-built version in the form of the V8 introduced in 1972 which had a displacement of 12.8 liters and achieved a rated output of 256 hp. In parallel to all this, the 240 hp in-line six-cylinder OM 355 soldiered on boldly and cheerfully accompanied the model series to the end of its days in 1974. Only certain export models as well as the versions with rear-axle air suspension remained a part of the range until 1975. The light LP 1424, successor to the 1418, successfully held its own against the �new generation� introduced in 1973 for a little longer and even managed to reach the year 1976 before the lights finally went for that model as well.









Copyright � 2008, fastfivecars. All rights reserved.

New spy photos of the 2009 CLK in the U.S.






Copyright � 2008, fastfivecars. All rights reserved.

F1 Budapest - FRI - Free Practice


OFFICIAL PRESS RELEASE

Budapest, Hungary, Aug 01, 2008

Vodafone McLaren Mercedes driver Lewis Hamilton set the fastest time of the day after Friday's two free practice sessions for the Hungarian Grand Prix at the Hungaroring, near Budapest. In the afternoon, Lewis completed 35 laps and set a best time of 1m20.554. His team-mate Heikki Kovalainen completed 33 laps and was third fastest with a 1m20.760. This morning, Heikki was third fastest with a 1m21.410 (17 laps) followed by Lewis in fourth with a 1m21.535 (18 laps).



Comments

Lewis Hamilton
�The track was very dusty this morning so we took our time before starting our run programme. Once again, the car felt good even though I encountered quite a lot of traffic during both sessions. This afternoon, I also got to try the revised aero package for the first time � it definitely seemed to make the car better balanced, which is very encouraging.�

Heikki Kovalainen
�Another positive day for us. The car started the day pretty strongly but we were able to keep improving it throughout both sessions. This afternoon, I was able to find a particularly good balance and focused on conserving the tyres rather than going for a laptime. I had a little bit of graining, but things look very promising for tomorrow.�

Ron Dennis
"Today we ran two more-or-less trouble-free sessions, save for a few traffic issues this morning which aren't unusual on this circuit. Having said that, those traffic issues weren't sufficient to disrupt our programme unduly. The aero package we've developed for this race appears to have delivered the predicted results, and the performance of the car is encouraging so far."

Norbert Haug
"A good and constructive start to the weekend. We simulated race conditions and both Lewis and Heikki posted fast and consistent laptimes. With more rubber on the asphalt, the conditions will change tomorrow � so it is too early to judge precisely where we are compared to the competition.�


Copyright � 2008, fastfivecars. All rights reserved.

New Mercedes-Benz GLK-Class Posts Impressive Number of Incoming Orders


OFFICIAL PRESS RELEASE

* 10,000 orders in Western Europe alone just one month after vehicle was released for sale

* Already 1,000 orders for exclusive �Edition 1� model

* Customers especially appreciate the GLK�s attractive design, extensive safety features, and typical Mercedes-Benz driving comfort



Stuttgart, Germany, Aug 01, 2008 � Mercedes-Benz� new compact SUV has met with an outstanding response from customers in the first month after the vehicle was released for sale on June 30, 2008. In Western Europe alone, Mercedes-Benz has already received a total of 10,000 orders for a GLK-Class vehicle by the end of July. Deliveries of the GLK, which celebrated its world premiere at the Auto China show in Beijing at the end of April, are scheduled to commence in Western Europe in October, with market launch in the U.S. set to follow at the beginning of 2009.

The exclusive GLK �Edition 1� variant has already attracted a lot of interest even before its official introduction to the market, as Mercedes-Benz has received 1,000 orders for the special model to date. In Germany, every fourth GLK order is an �Edition 1� vehicle. The special model will only be available for the launch of the GLK-Class. Among other things, the high-end model will feature a specially designed exterior and interior with a sports package as well as an AMG multifunction leather steering wheel.

�Apparently the GLK-Class perfectly meets the current trends,� says Dr. Klaus Maier, head of Sales and Marketing at Mercedes-Benz Cars. �The GLK is a compact SUV that has everything that is typical for a Mercedes-Benz: an expressive design, extensive safety features, and the typical Mercedes-Benz driving comfort. Moreover, it impresses customers with its outstanding performance in both on and off-road applications.�

The media response to initial GLK-Class test drives was also very positive. During a three-week driving presentation on all types of terrain in July, a total of 600 international media representatives were able to experience for themselves the superior driving quality offered by the model series. Thanks to its AGILITY CONTROL chassis, the GLK boasts excellent handling and safety combined with outstanding driving comfort. In addition, the model�s variable 4MATIC all-wheel drive system and electronic stability control ensure perfect on-road performance, and reliability in off-road applications.

Mercedes-Benz offers four and six-cylinder engines for the GLK that are both powerful and economical. The brand will also begin offering a BlueEFFICIENCY model in the spring of 2009 in the form of the GLK 220 CDI featuring a new four-cylinder diesel engine. The GLK-Class boasts pioneering passive safety systems, excellent interior comfort and low noise, and a high level of value retention. Mercedes-Benz is also making available for the first time in this vehicle class state-of-the-art systems such as the PRE-SAFE� safety package and the ILS intelligent light system.

Copyright � 2008, fastfivecars. All rights reserved.

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