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  2. Belt problem - Wikipedia

    en.wikipedia.org/wiki/Belt_problem

    The belt problem. The belt problem is a mathematics problem which requires finding the length of a crossed belt that connects two circular pulleys with radius r 1 and r 2 whose centers are separated by a distance P. The solution of the belt problem requires trigonometry and the concepts of the bitangent line, the vertical angle, and congruent ...

  3. Belt (mechanical) - Wikipedia

    en.wikipedia.org/wiki/Belt_(mechanical)

    Flat belt Flat belt drive in the machine shop at the Hagley Museum. A belt is a loop of flexible material used to link two or more rotating shafts mechanically, most often parallel. Belts may be used as a source of motion, to transmit power efficiently or to track relative movement. Belts are looped over pulleys and may have a twist between the ...

  4. Mechanism (engineering) - Wikipedia

    en.wikipedia.org/wiki/Mechanism_(engineering)

    The design of mechanisms to achieve a particular movement and force transmission is known as the kinematic synthesis of mechanisms. [5] This is a set of geometric techniques which yield the dimensions of linkages, cam and follower mechanisms, and gears and gear trains to perform a required mechanical movement and power transmission.

  5. Transport phenomena - Wikipedia

    en.wikipedia.org/wiki/Transport_phenomena

    Transport Phenomena Archive Archived 2017-10-08 at the Wayback Machine in the Teaching Archives of the Materials Digital Library Pathway "Some Classical Transport Phenomena Problems with Solutions – Fluid Mechanics". "Some Classical Transport Phenomena Problems with Solutions – Heat Transfer".

  6. Line shaft - Wikipedia

    en.wikipedia.org/wiki/Line_shaft

    Four wool spinning machines driven by belts from an overhead lineshaft (Leipzig, Germany, circa 1925) The belt drives of the Mueller Mill, model and reality, in motionA line shaft is a power-driven rotating shaft for power transmission that was used extensively from the Industrial Revolution until the early 20th century.

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  8. Involute gear - Wikipedia

    en.wikipedia.org/wiki/Involute_gear

    The involute gear profile, sometimes credited to Leonhard Euler, [1] was a fundamental advance in machine design, since unlike with other gear systems, the tooth profile of an involute gear depends only on the number of teeth on the gear, pressure angle, and pitch. That is, a gear's profile does not depend on the gear it mates with.

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