Hansa 400
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Hansa 400
{{Infobox automobile , image = , name = Hansa 400 / Hansa 500 , manufacturer = Goliath-Werke Borgward & Co. , production = 1933 – 1934 , predecessor = Goliath Pionier , successor = Hansa 1100 from 1934-1939 , class= Microcar , body_style = 2-door Sedan2-door Convertible , engine = 398 cc / 494 cc two cylinder 2-stroke , layout=RR layout , transmission = 3-speed manual , length = {{convert, 3750, mm, in, 1, abbr=on , width = {{convert, 1360, mm, in, 1, abbr=on , height = {{convert, 1500, mm, in, 1, abbr=on , weight = {{convert, 620, kg, lb, , abbr=on (empty) , wheelbase = {{convert, 2400, mm, in, 1, abbr=on , track = , related = , designer = The Hansa 400 is a microcar made in 1933 to 1934 by Hansa Lloyd and Goliath Company, Borgward & Tecklenborg in Bremen, Germany. After about a year in production, it was replaced by the next model Hansa 500 with a bigger engine. History In 1933, as successor and to supplement the three-wheeled Goliat ...
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Borgward
The former Borgward car manufacturing company, based in Bremen, Germany, was founded by Carl F. W. Borgward (1890–1963). It produced cars of four brands, which were sold to a diversified international customer base: Borgward, Hansa, Goliath and Lloyd. Borgward's Isabella was one of the most popular German premium models in the 1950s, while Lloyd's Alexander / Lloyd 600 model offered affordable mobility to many working-class motorists. The group ceased operations in 1961, following controversial insolvency proceedings. The brand was revived in the 21st century, with the Stuttgart-based Borgward Group AG designing and marketing cars manufactured in China. Origins of the component companies The origins of the company go back to 1905 with the establishment in Varel (near Bremen) of Hansa Automobilgesellschaft and the foundation in Bremen itself of NAMAG, maker of the Lloyd car. These two businesses merged in 1914 to form the "Hansa-Lloyd-Werke A.G." After the war, in ...
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Compression Ratio
The compression ratio is the ratio between the volume of the cylinder and combustion chamber in an internal combustion engine at their maximum and minimum values. A fundamental specification for such engines, it is measured two ways: the static compression ratio, calculated based on the relative volumes of the combustion chamber and the cylinder when the piston is at the bottom of its stroke, and the volume of the combustion chamber when the piston is at the top of its stroke. The dynamic compression ratio is a more advanced calculation which also takes into account gasses entering and exiting the cylinder during the compression phase. Effect and typical ratios A high compression ratio is desirable because it allows an engine to extract more mechanical energy from a given mass of air–fuel mixture due to its higher thermal efficiency. This occurs because internal combustion engines are heat engines, and higher compression ratios permit the same combustion temperature to ...
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Goliath F400
The Goliath F400 is a three-wheeled pickup transporter, made by Hansa-Lloyd and Goliath Company Borgward & Tecklenborg in Bremen, Germany which was sold under the brand Goliath. It was based on the three-wheeled passenger car Goliath Pionier with a closed timber-framed wood cab. Unlike the ''Pionier'', a three-wheel microcar, the rear of the F400 a longer box as panel van or a framed flatbed as pickup truck was installed. The rear axle was mounted on leaf springs, and the engine was under the seat. The front wheel was guided on a single swingarm. The body had a reclined front, externally mounted headlights and unlike the Goliath Pionier not a vertical, but a tilted windshield to reduce wind drag. The maximum speed of the "Quick Transport Vehicle" (''Schnelltransporter'') was 30 mph. It was equipped with an air-cooled two-cylinder two-stroke engine with 12 to 13.6 hp reached by a 396 cc engine displacement with a bore 60 mm and stroke 70 mm. The rear wheels were driven by a card ...
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Fender (automobile)
Fender is the American English term for the part of an automobile, motorcycle or other vehicle body that frames a wheel well (the fender underside). Its primary purpose is to prevent sand, mud, rocks, liquids, and other road spray from being thrown into the air by the rotating tire. Fenders are typically rigid and can be damaged by contact with the road surface. Sticky materials, such as mud, may adhere to the smooth outer tire surface, while smooth loose objects, such as stones, can become temporarily embedded in the tread grooves as the tire rolls over the ground. These materials can be ejected from the surface of the tire at high velocity as the tire imparts kinetic energy to the attached objects. For a vehicle moving forward, the top of the tire is rotating upward and forward, and can throw objects into the air at other vehicles or pedestrians in front of the vehicle. In British English, the fender is called the wing. (This may refer to either the front or rear fenders. Howe ...
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Weymann Fabric Bodies
Weymann Fabric Bodies is a patented design system for fuselages for aircraft and superlight coachwork for motor vehicles. The system used a patent-jointed wood frame covered in fabric. It was popular on cars from the 1920s until the early 1930s as it reduced the usual squeaks and rattles of coachbuilt bodies by its use of flexible joints between body timbers.A-Z of British Coachbuilders. Nick Walker. Bay View Books 1997. The system when used on cars provided quieter travel, and improved performance because of the body's light weight; but gave little protection in the event of a serious accident, and without care (the materials being prone to rot), a potentially short life. Fabric provided a matt surface and the framework sharp corners. Later supporting metal corner-inserts were employed to smooth corners and the fabric could be finished with layer upon layer of hand-sanded paint, called ''Tôle Souple'', giving the impression of polished metal panelling. Introduced to the market ...
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Suicide Door
A suicide door is an automobile door hinged at its rear rather than the front. Such doors were originally used on horse-drawn carriages, but are rarely found on modern vehicles, primarily because they are perceived as being less safe than a front-hinged door. Being rear-hinged, if the vehicle was moving and the door opened, the driver/passenger would have to lean forward and out of the vehicle to close it. As seat belts were not in common use at that time, the risk of falling out of the car and into traffic was high, hence the name "suicide door". Initially standard on many models, later they became popularized in the custom car trade. Automobile manufacturers call the doors coach doors (Rolls-Royce and Lincoln), flexdoors (Opel), freestyle doors (Mazda), rear access doors (Saturn), or simply describe them as rear-hinged doors. History Rear-hinged doors were common on cars manufactured in the first half of the 20th century, including the iconic Citroën Traction Avant. In the ...
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L/100 Km
The fuel economy of an automobile relates distance traveled by a vehicle and the amount of fuel consumed. Consumption can be expressed in terms of volume of fuel to travel a distance, or the distance traveled per unit volume of fuel consumed. Since fuel consumption of vehicles is a significant factor in air pollution, and since importation of motor fuel can be a large part of a nation's foreign trade, many countries impose requirements for fuel economy. Different methods are used to approximate the actual performance of the vehicle. The energy in fuel is required to overcome various losses ( wind resistance, tire drag, and others) encountered while propelling the vehicle, and in providing power to vehicle systems such as ignition or air conditioning. Various strategies can be employed to reduce losses at each of the conversions between the chemical energy in the fuel and the kinetic energy of the vehicle. Driver behavior can affect fuel economy; maneuvers such as sudden acceler ...
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Fuel Economy In Automobiles
The fuel economy of an automobile relates distance traveled by a vehicle and the amount of fuel consumed. Consumption can be expressed in terms of volume of fuel to travel a distance, or the distance traveled per unit volume of fuel consumed. Since fuel consumption of vehicles is a significant factor in air pollution, and since importation of motor fuel can be a large part of a nation's foreign trade, many countries impose requirements for fuel economy. Different methods are used to approximate the actual performance of the vehicle. The energy in fuel is required to overcome various losses (wind resistance, tire drag, and others) encountered while propelling the vehicle, and in providing power to vehicle systems such as ignition or air conditioning. Various strategies can be employed to reduce losses at each of the conversions between the chemical energy in the fuel and the kinetic energy of the vehicle. Driver behavior can affect fuel economy; maneuvers such as sudden accelerat ...
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Km/h
The kilometre per hour ( SI symbol: km/h; non-standard abbreviations: kph, km/hr) is a unit of speed, expressing the number of kilometres travelled in one hour. History Although the metre was formally defined in 1799, the term "kilometres per hour" did not come into immediate use – the myriametre () and myriametre per hour were preferred to kilometres and kilometres per hour. In 1802 the term "''myriamètres par heure''" appeared in French literature. The Dutch on the other hand adopted the kilometre in 1817 but gave it the local name of the ''mijl'' ( Dutch mile). Notation history The SI representations, classified as symbols, are "km/h", "" and "". Several other abbreviations of "kilometres per hour" have been used since the term was introduced and many are still in use today; for example, dictionaries list "kph", "kmph" and "km/hr" as English abbreviations. While these forms remain widely used, they are explicitly disallowed by the International Bureau of Weights and Measure ...
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Miles Per Hour
Miles per hour (mph, m.p.h., MPH, or mi/h) is a British imperial and United States customary unit of speed expressing the number of miles travelled in one hour. It is used in the United Kingdom, the United States, and a number of smaller countries, most of which are UK or US territories, or have close historical ties with the UK or US. Usage Road traffic Speed limits and road traffic speeds are given in miles per hour in the following jurisdictions: *Antigua and Barbuda *Bahamas *Belize *Dominica *Grenada *Liberia (occasionally) *Marshall Islands *Micronesia *Palau *Saint Kitts and Nevis *Saint Lucia *Saint Vincent and the Grenadines *Samoa (along with kilometres per hour) *United Kingdom *The following British Overseas Territories: **Anguilla **British Virgin Islands **British Indian Ocean Territory **Cayman Islands **Falkland Islands **Montserrat **Saint Helena, Ascension and Tristan da Cunha **Turks and Caicos Islands *The Crown dependencies: **Bailiwick of Guernse ...
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Solex Carburetor
Solex is a French manufacturer of carburetors and the powered bicycle VéloSoleX. Solex carburetors were used by many European automobile companies and were licensed to Japanese maker Mikuni. History The Solex company was founded by Marcel Mennesson and Maurice Goudard to manufacture vehicle radiators. These were fitted to several makes of early cars including Delaunay-Belleville and buses of the Paris General Omnibus company. After World War I, the radiator business went into decline and the company bought the rights to the carburetor patents of Jouffret and Renée and named them Solex after their business. The Solex brand is now owned by Magneti Marelli. The original Solex company changed its name in 1994 to Magneti Marelli France and on May 31, 2001, Magneti Marelli France partially bought its assets (including the trademark SOLEX) from Magneti Marelli Motopropulsion France S.A.S. Carburetors Solex carburetors were widely used by many European makers and under license to ...
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Carburetor
A carburetor (also spelled carburettor) is a device used by an internal combustion engine to control and mix air and fuel entering the engine. The primary method of adding fuel to the intake air is through the venturi tube in the main metering circuit, however various other components are also used to provide extra fuel or air in specific circumstances. Since the 1990s, carburetors have been largely replaced by fuel injection for cars and trucks, however carburetors are still used by some small engines (e.g. lawnmowers, generators and concrete mixers) and motorcycles. Diesel engines have always used fuel injection instead of carburetors. Etymology The name "carburetor" is derived from the verb ''carburet'', which means "to combine with carbon," or in particular, "to enrich a gas by combining it with carbon or hydrocarbons." Thus a carburetor mixes intake air with hydrocarbon-based fuel, such as petrol or autogas (LPG). The name is spelled "carburetor" in American English ...
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