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1. Field of the Invention
The present invention relates to rigging for lifting of loads. More particularly, the present invention relates to an improved shackle apparatus that can be rigged to slings, lifting lines, or other rigging and wherein an interlocking arrangement is provided between the shackle bow portion and a pin assembly wherein connection of the pin assembly and bow is perfected by rotating a drive shaft to extend projecting members that engage a receptacle on one end of a shackle bow.
2. General Background of the Invention
Shackles have been used for many years as part of rigging for lifting items that are very heavy. Shackles are typically coupled to a lifting line of a lifting device such as a crane. Shackles can also be used to attach lifting lines to slings, to spreader bars, or to other devices that are used commonly in the rigging process.
One of the problems with shackles is that the pin which is attached to the bow using a threaded connection is easily disassembled, sometimes inadvertently.
The present invention provides an improved shackle apparatus that has a bow with bow end portions. A pin assembly detachably connects to the bow, the pin assembly including a barrel having spaced apart ends, one that carries locking members. Each locking member is pivotally attached to a shaft. Each locking member has a projecting end portion that engages a recess of a barrel when the bow is to be locked to the pin assembly.
In the preferred embodiment, the locking members rotate upon the pins. In the preferred embodiment, the pinion gear rotates with the drive shaft, the drive shaft being rotatably attached to the two plates. Thus, the drive shaft and pinion gear are connected together and rotate together.
For a further understanding of the nature, objects, and advantages of the present invention, reference should be had to the following detailed description, read in conjunction with the following drawings, wherein like reference numerals denote like elements and wherein:
Receptacle 19 is attached to bow end 12 using a threaded connection 20 for example. Receptacle 19 has an externally threaded section 20 that provides a hollowed interior 22 (see
Pin assembly 14 provides pin barrel 27 that has a longitudinal open ended bore 28. Shaft 29 occupies longitudinal bore 28 in use as is shown in
Plate 30 provides an internally threaded opening 31 and a plurality of circumferentially spaced apart pins 32. Each of the pins 32 extends radially away from opening 31 as shown in
A plurality of locking arms 34 are mounted upon the pins. In the preferred embodiment, each pin 32 has a locking arm 34. Each locking arm 34 has an opening 35 that enables it to be mounted upon pin 32 as shown in
Each locking arm 34 has an upper surface 40 and a lower surface 41. Each locking arm 34 has a concavity 37 that engages a part of barrel 27 at the end portion of barrel 27 that is opposite oval shaped end portion 44. Concavities 38, 39 are provided on each locking arm 34 opposite concavity 37.
End portion 36 of barrel 27 provides preferably three circumferentially spaced apart radially extending slots 42. When moving to an expanded position of
Shaped end portion 44 joins to barrel 27 at shoulder 43. The shaped end portion 44 provides an oval shaped outer surface 45. Coil spring 46 fits over shaped end portion 44 and engages annular shoulder 43. Collar 47 is fitted upon shaped end portion 44 with shaft 29 and its enlarged end portion 50, which provides eyelet 49.
In order to disengage pin assembly 14 from shackle bow 11, a user pulls spring loaded release pin 51 and then pushes collar 47 in the direction of arrow 55 which allows handle 52 to be rotated. Inversely by rotating handle 52 in opposite direction once locking arms 34 are fully extended the spring 46 pushes collar 47 onto eyelet 47 which locks central shaft 29 into a fixed position with locking arms 34 extended and no amount of vibration can disengage them. Handle 52 can be any structure that enables rotation to be imparted to shaft 29. Handle 52 can be an eyelet shape having opening 53. When shaft 29 is rotated, projecting members 34 move to the retracted position of
The following is a list of parts and materials suitable for use in the present invention.
All measurements disclosed herein are at standard temperature and pressure, at sea level on Earth, unless indicated otherwise. All materials used or intended to be used in a human being are biocompatible, unless indicated otherwise.
The foregoing embodiments are presented by way of example only; the scope of the present invention is to be limited only by the following claims.
Priority of U.S. Provisional Patent Application Ser. No. 60/914,894, filed Apr. 30, 2007, incorporated herein by reference, is hereby claimed.
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Number | Date | Country | |
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60914894 | Apr 2007 | US |