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  2. John Harwood (watchmaker) - Wikipedia

    en.wikipedia.org/wiki/John_Harwood_(watchmaker)

    Harwood self-winding watch. In 1923, supported by a local businessman, he developed a self-winding wristwatch and applied for a patent in Switzerland , which was granted in September, 1924. His design ensured that the watch could be hermetically sealed against the ingress of water or dust.

  3. Hose reel - Wikipedia

    en.wikipedia.org/wiki/Hose_reel

    A hose reel is a cylindrical spindle made of either metal, fiberglass, or plastic and is used for storing a hose. The most common styles of hose reels are spring driven (which is self retracting), hand crank, or motor driven. Hose reels are categorized by the diameter and length of the hose they hold, the pressure rating and the

  4. Reel - Wikipedia

    en.wikipedia.org/wiki/Reel

    A "split reel" is a motion picture film reel in two halves that, when assembled, hold a specific length of motion picture film that has been wound on a plastic core. Using a split reel allows film to be shipped or handled in a lighter and smaller form than film would on a "fixed" reel.

  5. Spinner's weasel - Wikipedia

    en.wikipedia.org/wiki/Spinner's_weasel

    Spinner's weasel or clock reel is a mechanical yarn-measuring device consisting of a spoked wheel with gears attached to a pointer on a marked face (which resembles a clock) and an internal mechanism that makes a "pop" sound after the desired length of yarn is measured (usually a skein). The pointer allows the spinner to see how close they are ...

  6. Winding machine - Wikipedia

    en.wikipedia.org/wiki/Winding_machine

    Winders have a center roll (a bobbin, spool, reel, belt-winding shell, etc.) on which the material is wound up. Often there are metal bars that travel through the center of the roll and are shaped according to their intended purpose. A circular bar facilitates greater speed, while a square bar provides a greater potential for torque.

  7. Wire rope spooling technology - Wikipedia

    en.wikipedia.org/wiki/Wire_rope_spooling_technology

    Cross winding is reduced to approximately 20% of the circumference of the drum, and 80% remains parallel to the flanges in the inner layer rope groove. This parallel grooving evenly distributes the load between the individual layers and has been shown to increase substantially – by more than 500%, tests have shown – the life of the wire rope.

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