In the process of securing multi-strand steel cables to trees, power poles and the like, it is often necessary to secure one pole to another or to stabilize a tree in order to prevent it from falling over. This is accomplished generally by attaching one end of a cable to the tree or pole to be supported and securing the other end of the cable to some other object. The mechanics of attaching the cable to a tree or pole present technical difficulties in the field. Multi-strand cables are typically attached to the tree or utility pole by attaching a J-hook or lag bolt that is screwed into the tree or pole. A thimble and a preformed wrap are then attached to the J-hook. Also, a steel cable can be bent around the J-hook and the thimble secured with bulldog clips. As an alternative, the steel cable is attached using eyebolts installed through the tree or pole and secured in like manner. These known attachment methods require multiple parts to secure the steel cable in place and are difficult to use in close quarters such as when the trees are close together and when operating well above ground level.
A multi-strand steel cable with multiple strands disposed between inner and outer bodies of the cable termination device with the inner strand of the steel cable extending through an aperture formed in the inner body. The arrangement further includes an insertion tool having a magnetic end for attachment to the inner body with the insertion tool comprising a base handle section and an auxiliary handle section with a slot formed in the distal end of the auxiliary handle section for the purpose of bending the inner strand through an angle of 90 degrees.
In the drawings:
With reference to the drawings and with particular reference to
In
The insertion tool, according to this invention, is depicted in
This invention may be used to terminate steel cable in various applications and one application is shown in
With inner body 3 disposed in corresponding aperture 2 of outer body 1 and with inner body 3 still secured to the magnetized end of the insertion tool, inner strand 6 is automatically positioned in slot 14 of auxiliary handle section 8. Following this, the operator grips hand gripping bars 9 and 10 and pulls them apart which causes auxiliary handle section 8 to pivot on pin 11. As this occurs and as best shown in
Therefore, when working in a environment such as above the ground in a tree, this invention provides a reliable and efficient means to terminate a steel cable even under difficult circumstances. This is achieved by temporarily attaching inner body 3 to the insertion tool, because it is magnetized, and with a single motion of the insertion tool securing the cable termination device such that withdrawal of the cable from the device is virtually impossible.
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