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  2. Suzuki GSX-R1100 - Wikipedia

    en.wikipedia.org/wiki/Suzuki_GSX-R1100

    The GSX-R used oil to cool parts of the engine otherwise unreachable by air, like the top of the combustion chamber. To provide enough oil for both cooling and lubrication, the team designed a double chamber pump, using the high-pressure side to lubricate the bearings while the low-pressure, high-volume side provided oil to the cooling circuit.

  3. Ceramic matrix composite - Wikipedia

    en.wikipedia.org/wiki/Ceramic_matrix_composite

    These bearings consist of a static bearing, shrink-fitted in its metallic environment, and a rotating shaft sleeve, mounted on the shaft. Under compressive stress, the ceramic static bearing has a low risk of failure, but a SiC shaft sleeve does not have this situation and must, therefore, have a large wall thickness and/or be specially designed.

  4. Suzuki GSX series - Wikipedia

    en.wikipedia.org/wiki/Suzuki_GSX_series

    The additional lower fairing, however, gives it a sportier look similar to that of the Suzuki GSX-R Series (though the Bandit chassis means that it carries 110 lb extra weight compared with a GSX-R), the engine has had a small amount of remapping to encourage revs, and the suspension is tweaked. It also has a one-piece seat, unlike the Bandit.

  5. Ceramic engine - Wikipedia

    en.wikipedia.org/wiki/Ceramic_engine

    A ceramic engine is an internal combustion engine made from specially engineered ceramic materials. Ceramic engines allow for the compression and expansion of gases at extremely high temperatures without loss of heat or engine damage. [1] Proof-of-concept ceramic engines were popularized by successful studies in the early 1980s and 1990s.

  6. Suzuki GSX-R series - Wikipedia

    en.wikipedia.org/wiki/Suzuki_GSX-R_series

    The first GSX-R of 1984 was a breakthrough model and the closest that any Japanese manufacturer had yet come to building a "race bike with lights". Throughout the 1970s the big four Japanese manufacturers had built bikes with a similar architecture: steel double loop frames, air-cooled inline fours with either SOHC or DOHC configurations.

  7. Suzuki GSX-R750 - Wikipedia

    en.wikipedia.org/wiki/Suzuki_GSX-R750

    This was the first GSX-R to be fitted with inverted forks as standard (USA models retained the conventional forks until 1991) and returned to the bore and stroke of the original long-stroke engine. The engine returned to the 749 cc engine bore and stroke dimensions of the original long-stroke engine but still maintained the 13,000 rpm redline.

  8. Suzuki GSX-R400 - Wikipedia

    en.wikipedia.org/wiki/Suzuki_GSX-R400

    The new GSX-R400R model name. In 1990, Suzuki introduced a completely new model GSX-R400 with inverted forks and new double cradle aluminum frame and with a new 4 into 1 exhaust power increased to 60 hp (45 kW). [1] In 1993 Powers was reduced to 53 hp (40 kW) because of a power restriction in Japan. [1] Production was ceased in May 1996.

  9. Labyrinth seal - Wikipedia

    en.wikipedia.org/wiki/Labyrinth_seal

    Indeed, many gas turbine engine seals leak by design. [4] Labyrinth seals are also found on pistons, which use them to store oil and seal against high pressure during compression and power strokes, as well as on non-rotating shafts. In these applications, it is the long and difficult path and the formation of controlled fluid vortices plus some ...

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