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  2. Caterpillar C13 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_C13

    The peak torque occurs at an engine speed of 1200 RPM. [2] The engine weighs over one ton at 2610 pounds. The Cat C13 is often used in Class 8 vehicles (tractor-trailers). The Gleaner A85 is a Gleaner combine harvester that uses the C13, and it is considered a class 8 vehicle. In the A85 as well as in fire trucks, it is rated at a higher ...

  3. Caterpillar D6 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_D6

    All used the Cat 3306T 6-cylinder engine. The D6M XL and D6M LGP versions with 140 hp (100 kW) weighed 33,200 and 36,400 pounds (15,100 and 16,500 kg). Respectively, closer to the older D6C and D6D. Both used the Cat 3116T engine.

  4. Caterpillar 3126 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_3126

    The Caterpillar 3126 is a turbocharged 7.2L inline 6-cylinder diesel engine manufactured by Caterpillar and first introduced in 1995; it was the first electronic mid-range diesel engine that Caterpillar produced. [1]

  5. Caterpillar C175 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_C175

    The Caterpillar C175 is a family of diesel internal combustion engines made by Caterpillar.The engine is 5.3 litres per cylinder in displacement.The cylinder size is 175 millimetres (6.9 in) x 220 millimetres (8.7 in) bore/stroke.

  6. Caterpillar 3208 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_3208

    The Caterpillar 3208 is a turbocharged 10.4-liter v8 eight-cylinder diesel engine manufactured by Caterpillar and first introduced in 1975. The Caterpillar 3208 was discontinued in 1999 due to its low fuel efficiency and lack of compliance with internal combustion exhaust emission laws which were due to come into force.

  7. Caterpillar C27 - Wikipedia

    en.wikipedia.org/wiki/Caterpillar_C27

    The Caterpillar C27 is a V12 diesel internal combustion engine made by Caterpillar.The engine is 27 litres (1,648 cu in) in displacement.Each cylinder has a bore of 137 mm (5.4 in) and a stroke of 154 mm (6.1 in).

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  9. Bolted joint - Wikipedia

    en.wikipedia.org/wiki/Bolted_joint

    The applied torque causes the bolt to "climb" the thread causing a tensioning of the bolt and an equivalent compression in the components being fastened by the bolt. The preload developed in a bolt is due to the applied torque and is a function of the bolt diameter, the geometry of the threads, and the coefficients of friction that exist in the ...