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  2. Disc coupling - Wikipedia

    en.wikipedia.org/wiki/Disc_coupling

    A disc coupling is a high performance motion control coupling designed to be the torque transmitting element (by connecting two shafts together) while accommodating for shaft misalignment. It is designed to be flexible, while remaining torsionally strong under high torque loads. Typically, disc couplings can handle speeds up to 10,000 r/min.

  3. Giubo - Wikipedia

    en.wikipedia.org/wiki/Giubo

    A driveshaft coupling. Note the split damage beginning to appear, likely due to the large axial displacement. A giubo. A giubo (/ ˈ dʒ uː b oʊ / JOO-boh; etymology: giunto Boschi, "Boschi joint"), also known as a 'flexdisc', and sometimes misspelled as guibo, is a flexible coupling used to transmit rotational torque between the drive shaft and the companion flange on mechanical devices ...

  4. Schmidt coupling - Wikipedia

    en.wikipedia.org/wiki/Schmidt_coupling

    Schmidt couplings have been refined to come in several coupling designs, [5] including the following: * Offset Couplings: Schmidt couplings which transmit constant angular velocity and torque in a wide range of parallel shaft misalignment. * Semi flex Couplings: Semiflex coupling is a torsionally stiff and restoring-force-free precision coupling.

  5. Coupling - Wikipedia

    en.wikipedia.org/wiki/Coupling

    A grid coupling is composed of two shaft hubs, a metallic grid spring, and a split cover kit. Torque is transmitted between the two coupling shaft hubs through the metallic grid spring element. Like metallic gear and disc couplings, grid couplings have a high torque density. A benefit of grid couplings, over either gear or disc couplings, is ...

  6. Geislinger coupling - Wikipedia

    en.wikipedia.org/wiki/Geislinger_coupling

    The Geislinger coupling is an all-metal coupling for rotating shafts. It is elastic in torsion, allowing it to absorb torsional vibration. [1] Unlike some other coupling types, it is not intended to compensate for high radial misalignment between shafts, but it can compensate for axial misalignments better than elastomer couplings.

  7. Jaw coupling - Wikipedia

    en.wikipedia.org/wiki/Jaw_coupling

    The curved jaw coupling is less suited for applications that rely on a constant scanning type of motion, where accuracy is required during movement, which requires a torsionally stronger coupling. [5] Like other flexible couplings, jaw couplings are limited in the shaft misalignment that they can accommodate. Too much axial motion will cause ...

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