Honda J Engine
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Honda J Engine
The J-series is Honda's fourth production V6 engine family introduced in 1996, after the Honda C engine, C-series, which consisted of three dissimilar versions. The J-series engine was designed in the United States by Honda engineers. It is built at Honda's Anna, Ohio, and Lincoln, Alabama, engine plants. It is a 60° V6 engine, V6 – Honda's existing Honda C engine, C-series were 90° engines. Unlike the C series, the J-series has never been used in a longitudinal application; the J-series was specifically designed for transverse engine, transverse mounting. It has a shorter bore spacing (), shorter connecting rods and a special smaller crankshaft than the C-series to reduce its size. All J-series engines are gasoline-powered, use four valves per cylinder, and have a single timing belt that drives the overhead camshafts. VTEC variable valve timing is used on almost all applications, with exceptions being the Honda J engine#J30AC, J30AC (which uses Variable Timing Control [VTC] in ...
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Honda Motor Manufacturing
is a Japanese public multinational conglomerate manufacturer of automobiles, motorcycles, and power equipment, headquartered in Minato, Tokyo, Japan. Honda has been the world's largest motorcycle manufacturer since 1959, reaching a production of 400 million by the end of 2019, as well as the world's largest manufacturer of internal combustion engines measured by volume, producing more than 14 million internal combustion engines each year. Honda became the second-largest Japanese automobile manufacturer in 2001. In 2015, Honda was the eighth largest automobile manufacturer in the world. Honda was the first Japanese automobile manufacturer to release a dedicated luxury brand, Acura, in 1986. Aside from their core automobile and motorcycle businesses, Honda also manufactures garden equipment, marine engines, personal watercraft, power generators, and other products. Since 1986, Honda has been involved with artificial intelligence/robotics research and released their ASIMO rob ...
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Lincoln, Alabama
Lincoln is a city in Talladega County, Alabama, United States. It was incorporated in 1911. At the 2020 census, the population was 6,845. It was named for Major General Benjamin Lincoln, who served in the American army during the Revolutionary War. The Talladega Superspeedway, the International Motorsports Hall of Fame and the Talladega Municipal Airport are all located in Lincoln. Geography Lincoln is located at (33.593156, -86.138879). It is home to Honda Manufacturing of Alabama, employing over 4,000 people. Talladega Superspeedway race track is located near the city. It is located off of exit 173 along I-20, which is just outside the city limits. According to the U.S. Census Bureau, the city has a total area of , of which is land and (0.61%) is water. The city is located along Interstate 20, which runs west to east through the southern part of the city. Access to the city can be found from exits 165 and 168. Via I-20, Birmingham is 44 mi (71 km) west, and ...
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Hybrid Car
A hybrid vehicle is one that uses two or more distinct types of power, such as submarines that use diesel when surfaced and batteries when submerged. Other means to store energy include pressurized fluid in hydraulic hybrids. The basic principle with hybrid vehicles is that the different motors work better at different speeds; the electric motor is more efficient at producing torque, or turning power, and the combustion engine is better for maintaining high speed than a typical electric motor. Switching from one to the other at the proper time while speeding up yields a win-win in terms of Energy efficiency in transportation, energy efficiency, such that it translates into greater fuel efficiency. Vehicle types Two-wheeled and cycle-type vehicles Mopeds, Motorized bicycles, electric bicycles, and even electric kick scooters are a simple form of a hybrid, powered by an internal combustion, internal combustion engine or electric motor and the rider's muscles. Early prototype ...
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Integrated Motor Assist
Integrated Motor Assist (commonly abbreviated as IMA) is Honda's hybrid car technology, introduced in 1999 on the Insight. It is a specific implementation of a parallel hybrid. It uses an electric motor mounted between the internal combustion engine and transmission to act as a starter motor, engine balancer, and assist traction motor. Overview In its first generation, IMA could not power the car on electricity alone, and could only use the motor to assist or start the engine. 2006 Civic Hybrid, however, can activate the electric motor while the vehicle is coasting without turning on the internal combustion engine, though in contrast to Toyota's Hybrid Synergy Drive (HSD) or General Motors and DaimlerChrysler's Global Hybrid Cooperation, the IMA has a less powerful motor/generator which allows the car to slow or stop its rate of deceleration to a lesser extent; it cannot operate without turning over the engine which is directly coupled to its electric motor. Regenerative bra ...
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Ward's 10 Best Engines
10 of the World's best engines is an annual list of the ten ''"''best''"'' automobile engines available in the U.S. market, that are selected by ''Ward's AutoWorld'' magazine. The list was started in 1994 for Model Year 1995, and has been drawn every year since then, published at the end of the preceding year. Engines must be available in regular-production vehicles on sale in the U.S. market no later than the first quarter of the year. Eligibility has also been based on availability in a vehicle below a base price limit, which increased progressively from for the 1995 list up to for the 2020 list; this limit was eliminated for future competitions following the announcement of the 2020 winners. During a 2-month testing period, Wards editors evaluate each engine according to a number of objective and subjective criteria in everyday driving situations – there is no instrumented testing. The selection takes into account power and torque output, noise, vibration and harshness (NVH ...
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Exhaust Manifold
In automotive engineering, an exhaust manifold collects the exhaust gases from multiple cylinders into one pipe. The word ''manifold'' comes from the Old English word ''manigfeald'' (from the Anglo-Saxon ''manig'' anyand ''feald'' old and refers to the folding together of multiple inputs and outputs (in contrast, an inlet or intake manifold ''supplies'' air ''to'' the cylinders). Exhaust manifolds are generally simple cast iron or stainless steel units which collect engine exhaust gas from multiple cylinders and deliver it to the exhaust pipe. For many engines, there are aftermarket tubular exhaust manifolds known as headers in American English, as extractor manifolds in British and Australian English,''The Design and Tuning of Competition Engines'', Philip H. Smith, pp. 137–138 and simply as "tubular manifolds" in British English. These consist of individual exhaust headpipes for each cylinder, which then usually converge into one tube called a collector. Headers that do n ...
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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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Honda Saber
The is a mid-size sedan introduced by Honda in 1990 derived from Honda Accord chassis. The first Inspire debuted in 1990 as the Accord Inspire, a sister nameplate to the Honda Vigor, but sold at different retail channels in Japan, known as ''Honda Verno'' for the Vigor/Saber, and the Inspire at ''Honda Clio'' stores. The Inspire was developed during what was known in Japan as the Japanese asset price bubble or "bubble economy". In 1995, the Inspire was updated and exported to the US as the Acura 3.2 TL, while the Vigor nameplate was replaced with the Honda Saber. The longitudinal 2.5 L straight-5 engine layout and platform remained and was sold as the Acura 2.5 TL. In 1999, these cars were replaced by the second generation TL that was based on the US-spec Accord platform, and largely designed and engineered in the US by Honda R&D Americas, Inc. in Raymond, Ohio. Manufactured in the US, these were imported into Japan as the new Inspire and Saber. In June 2003, the fourth gene ...
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Intake Manifold
In automotive engineering, an inlet manifold or intake manifold (in American English) is the part of an engine that supplies the fuel/air mixture to the cylinders. The word ''manifold'' comes from the Old English word ''manigfeald'' (from the Anglo-Saxon ''manig'' anyand ''feald'' epeatedly and refers to the multiplying of one (pipe) into many.manifold, (adv.) "in the proportion of many to one, by many times". AD1526 ''Oxford English Dictionary'', In contrast, an exhaust manifold collects the exhaust gases from multiple cylinders into a smaller number of pipes – often down to one pipe. The primary function of the intake manifold is to ''evenly'' distribute the combustion mixture (or just air in a direct injection engine) to each intake port in the cylinder head(s). Even distribution is important to optimize the efficiency and performance of the engine. It may also serve as a mount for the carburetor, throttle body, fuel injectors and other components of the engine ...
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Honda Inspire
The is a mid-size sedan introduced by Honda in 1990 derived from Honda Accord chassis. The first Inspire debuted in 1990 as the Accord Inspire, a sister nameplate to the Honda Vigor, but sold at different retail channels in Japan, known as ''Honda Verno'' for the Vigor/Saber, and the Inspire at ''Honda Clio'' stores. The Inspire was developed during what was known in Japan as the Japanese asset price bubble or "bubble economy". In 1995, the Inspire was updated and exported to the US as the Acura 3.2 TL, while the Vigor nameplate was replaced with the Honda Saber. The longitudinal 2.5 L straight-5 engine layout and platform remained and was sold as the Acura 2.5 TL. In 1999, these cars were replaced by the second generation TL that was based on the US-spec Accord platform, and largely designed and engineered in the US by Honda R&D Americas, Inc. in Raymond, Ohio. Manufactured in the US, these were imported into Japan as the new Inspire and Saber. In June 2003, the fourth gene ...
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Straight-3
A straight-three engine (also called an inline-triple or inline-three) is a three-cylinder piston engine where cylinders are arranged in a line along a common crankshaft. Less common than straight-four engines, straight-three engines have nonetheless been used in various motorcycles, cars and agricultural machinery. Design A crankshaft angle of 120 degrees is typically used by straight-three engines, since this results in an evenly spaced firing interval. Another benefit of this configuration is perfect primary balance and secondary balance, however an end-to-end rocking couple is induced because there is no symmetry in the piston velocities about the middle piston. A balance shaft is sometimes used to reduce the vibrations caused by the rocking couple. Other crankshaft angles have been used occasionally. The 1976-1981 Laverda Jota motorcycle used a 180 degree crankshaft, where the outer pistons rise and fall together and inner cylinder is offset from them by 180 degrees. T ...
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Honda J Engine
The J-series is Honda's fourth production V6 engine family introduced in 1996, after the Honda C engine, C-series, which consisted of three dissimilar versions. The J-series engine was designed in the United States by Honda engineers. It is built at Honda's Anna, Ohio, and Lincoln, Alabama, engine plants. It is a 60° V6 engine, V6 – Honda's existing Honda C engine, C-series were 90° engines. Unlike the C series, the J-series has never been used in a longitudinal application; the J-series was specifically designed for transverse engine, transverse mounting. It has a shorter bore spacing (), shorter connecting rods and a special smaller crankshaft than the C-series to reduce its size. All J-series engines are gasoline-powered, use four valves per cylinder, and have a single timing belt that drives the overhead camshafts. VTEC variable valve timing is used on almost all applications, with exceptions being the Honda J engine#J30AC, J30AC (which uses Variable Timing Control [VTC] in ...
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