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Hoisting device and bolt for use therewith, method of making and using the same

  • US 10,450,174 B1
  • Filed: 04/21/2017
  • Issued: 10/22/2019
  • Est. Priority Date: 10/07/2014
  • Status: Active Grant
First Claim
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1. A hoist ring assembly comprising:

  • a bolt including a head, a shank, and an axial bore extending from the head and into the shank, the axial bore including a first end defining an opening at the head of the bolt, the opening being covered by a window, and a second distal end, the bolt being selectively securable to an associated object to be lifted by the hoist ring,a non-adjustable tensile stress indicator that is visible through the window and adapted to indicate when a single set tensile stress in the bolt is reached, the tensile stress indicator including,an actuating rod positioned in the axial bore, a lower end of the actuating rod being fixed relative to the second distal end of the axial bore, an upper end of the actuating rod including a indicating surface, andlight-absorbing fluid positioned in the axial bore;

    a bushing extending about a portion of the bolt, the bushing including a stem, the bolt being rotatably secured relative to the bushing;

    a ring body rotatably secured relative to the stem of the bushing;

    a load-lifting device pivotably mounted to the ring body,wherein the bolt has a predetermined preload, the hoist ring assembly has a predetermined load limit, and the load limit of the hoist ring assembly is less than the predetermined preload of the bolt, the single set tensile stress of the non-adjustable tensile stress indicator being permanently set to the predetermined preload of the bolt that is less than a proof load of the bolt,wherein, when the tensile stress in the bolt is below the predetermined preload of the bolt, the indicating surface is at least closely adjacent to the window and is visible through the window,wherein when the bolt is subject to tensile stress, the indicating surface is pulled away from the window thereby creating a gap between the indicating surface and the window, the light-absorbing fluid enters the gap, and the light-absorbing fluid in the gap becomes visible through the window, andwherein when the tensile stress in the bolt reaches the predetermined preload, the light-absorbing fluid in the gap is visible through the window.

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