The present invention relates to torque wrenches and in particular to a torque wrench mounting a reaction arm and a tether arrangement for such torque wrench and reaction arm assemblies.
Hydraulic torque wrenches are used widely, particularly in the oil and gas industries. Torque wrenches require some form of reaction member or reaction arm that engages with an immovable object to prevent the wrench from spinning about the component that is to be tightened or loosened. It is usually necessary to adjust the position the reaction arm on the torque wrench so that the reaction arm is in engagement with the immovable object. When carrying our a particular task, such as bolting up a flange connection it might be necessary to re-orientate the reaction arm on the torque wrench a number of times.
GB2524825 describes a torque wrench which couples to a reaction arm using a quick release mechanism.
An improved arrangement for attaching a torque wrench to a reaction arm is described in the applicant's pending United Kingdom patent application number 1700597.6 which is incorporated herein by reference.
Torque wrenches are often used when working at height. In order to adjust the position of the torque wrench relative to the reaction arm it is necessary to release the reaction arm and slide it from the torque wrench. The reaction arm is rotated relative to the torque wrench to a desired position and re-attached to the torque wrench. During this procedure there is a risk of the reaction arm falling as the operator attempts to manipulate its position.
It would therefore be desirable to reduce the possibility of a reaction arm and/or torque wrench falling with the potentially disastrous consequences that might follow.
The present invention provides arrangements of safety tethers which reduce the risk of a reaction arm and/or torque wrench falling.
According to a first aspect of the invention there is provided a torque wrench assembly comprising a torque wrench, a reaction arm and a tether having a first end and a second end, the first end attached to the torque wrench and wherein the reaction arm includes an aperture and the tether passes through the aperture and wherein the second end of the tether comprises a stop member, at least a part of the stop member being wider than the aperture, and wherein the reaction arm is slidable relative to and rotatable about the tether when released from the torque wrench.
Preferably, the tether comprises a flexible elongate element and the stop member is attached to the flexible element. Preferably, the flexible element is comprised of a wire rope. Advantageously, the stop member comprises first and second components, releasably attachable to each other, and wherein one of the first and second components is so shaped and dimensioned as to pass through the aperture and the other of the first and second components is wider than the aperture.
The first component may comprise a ferrule attached to one end of the flexible element. The second component may comprise a keeper. The second component may be attachable to the ferrule. The keeper may include a nut. The keeper may include a washer.
The first end of the tether may include a connection member. The connection member may be releasably attachable to the torque wrench. The connection member may include a threaded portion for connection with a correspondingly threaded part of the torque wrench. The connection member may include a recess configured to receive a slidably mounted locking member of the reaction arm.
The reaction arm may be a reaction arm according to the second aspect of the invention described below.
According to a second aspect of the invention there is provided a reaction arm that is attachable to a torque wrench, wherein the reaction arm includes a wall having a circular cross section the wall including a seat configured to receive a ring, wherein the ring rotatable around the said wall of the reaction arm, and wherein the ring includes an attachment element.
The attachment element is adapted to attach to a tether, clip or the like.
Preferably, the attachment element is a shackle.
Preferably, the ring comprises two parts, wherein the two parts are joined together by a hinge at one side and by a releasable fastener at the other side. When mounted on the reaction arm the hinge is on one side of the reaction arm and the releasable fastener on the other.
The releasable fastener may form part of the shackle. Preferably, the shackle includes a shackle body and a shackle pin and the releasable fastener is the shackle pin.
Advantageously, the seat is a groove formed in or on the wall of the reaction arm. The seat may be formed as a recess in the wall of the reaction arm or by spaced apart up stands formed on the wall of the reaction arm.
An elongate attachment member may be attached to the attachment element of the reaction arm at a first end, a second end of the elongate attachment member attachable to another object for securing the assembly when not supported by an operator.
A third aspect of the invention comprises a torque wrench assembly comprising a torque wrench, a reaction arm according to the second aspect of the invention.
In the Drawings, which illustrate preferred embodiments of a torque wrench according to the invention:
The locking member 5 has an upper end which protrudes from the reaction arm 2, as shown in the drawings, and a lower end which is connected to a spring 8. The spring is arranged to bias the locking member 5 so that it protrudes from the reaction arm 2 as shown. When the locking member 5 is at rest the aperture 7 is partially overlaps with openings 4 and 12 for receiving the connection member 3.
As shown in
As shown in
To unlock the reaction arm 2 from the torque wrench 1, the user simply presses down on the upper end of the locking member 5, and this causes the locking member 5 to slide towards the spring and causes the aperture 7 to fully align with the first opening 12, allowing the connection member 3 of the torque wrench 1 to be withdrawn from the reaction arm 2, uncoupling the two devices.
The connection member 3 is mounted on a tether 15. The connection member includes a bore 21 extending through the connection member 3 on the centre axis thereof. One end of the connection member 3 has a threaded outer wall 23 for attachment of the connection member 3 to a component 24 of the torque wrench 1. The component 24 includes an internally threaded bore 24a. The threaded outer wall 23 of the connection member engages with the internally threaded bore 24a to secure the connection member 3 to the torque wrench 1. The tether 15 includes an end-stop 23 which engages in a bore 21 formed in the end of the connection member 3.
The tether 16 further comprises a flexible elongate element in the form of a wire rope 16 in the present example. The above-mentioned end stop 21 is attached to one end of the wire rope 16, with a ferrule 17 attached to the other end of the wire rope 16. The ferrule 17 includes an attachment portion 18 which receives and connects to the wire rope 16 and an externally threaded portion 19 which receives an internally threaded nut 20. The nut 20 is removable so that the reaction arm 2 may be detached completely from the torque wrench 1.
The tether 15 allows the reaction arm 2 to be moved axially with respect to the torque wrench 1 and rotated relative thereto for repositioning of the reaction arm 2 relative to the torque wrench 1. As can be seen best in
Referring now to
A slip ring 10 comprises two parts 10a, 10b connected together by a hinge 10c. The free ends 10e, 10d of the respective parts 10a, 10b each comprise a hole 10e′, 10d′. The free ends 10e, 10d are each offset so that when the free ends 10e, 10d are brought together they overlap one another and the holes 10e′, 10d′ align. A shackle 11 comprises a shackle pin 11b and a shackle body 11a. With the holes 10e′, 10d′ aligned the shackle body 11a is positioned so that the shackle pin 11b may pass through holes in the shackle body 11a and the aligned holes 10e′, 10d′.
The slip ring 10 is shown in its closed configuration in
Whilst
The torque wrench assembly of the invention provides an improved mechanism for securely locking together a torque wrench and a reaction arm without the requirement for user input prior to assembly of the two devices.
Number | Date | Country | Kind |
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1708826.1 | Jun 2017 | GB | national |
Filing Document | Filing Date | Country | Kind |
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PCT/GB2018/051513 | 6/1/2018 | WO | 00 |