Slotted Tubular Anchor
20180023391 ยท 2018-01-25
Inventors
- John C. Stankus (Canonsburg, PA, US)
- Dakota Faulkner (New Kensington, PA, US)
- David Rager (McKeesport, PA, US)
Cpc classification
International classification
Abstract
A mine bolt includes an elongated body having a first end and a second end positioned opposite the first end, and an anchor comprising a tube defining a central opening and a slot extending at least a portion of the length of the tube. The anchor is secured to the elongated body. The anchor is configured to compress upon installation of the mine bolt to anchor the elongated body within a bore hole.
Claims
1. A mine bolt comprising: an elongated body having a first end and a second end positioned opposite the first end; and an anchor comprising a tube defining a central opening and a slot extending at least a portion of the length of the tube, the anchor is secured to the elongated body, wherein the anchor is configured to compress upon installation of the mine bolt to anchor the elongated body within a bore hole.
2. The mine bolt of claim 1, wherein the anchor comprises a nut secured to the tube and positioned within the central opening, the elongated body having a threaded portion configured to be received by the nut.
3. The mine bolt of claim 2, wherein the nut is welded to the tube.
4. The mine bolt of claim 2, wherein the threaded portion is positioned at the first end of the elongated body.
5. The mine bolt of claim 1, wherein the anchor includes a tapered first end and a second end positioned opposite the tapered first end.
6. The mine bolt of claim 5, wherein the second end of the anchor defines a plurality of slits configured to engage a bore hole wall when the mine bolt is installed and placed under loading.
7. The mine bolt of claim 5, wherein the tapered first end defines a slit.
8. The mine bolt of claim 1, wherein the anchor extends from the first end of the elongated body to a position intermediate the first end and the second end of the elongated body.
9. The mine bolt of claim 1, wherein the anchor comprises a nut secured to the tube and positioned within the central opening, the elongated body having a threaded portion received by the nut, the elongated body axially and rotationally moveable relative to the anchor.
10. The mine bolt of claim 1, wherein the second end of the elongated body comprises a drive head.
11. The mine bolt of claim 1, further comprising a bearing plate configured to receive the elongated body.
12. The mine bolt of claim 1, wherein the anchor comprises an unthreaded nut secured to the tube and positioned within the central opening, the elongated body having first and second support nuts received by a threaded position of the elongated body, the first and second support nuts configured to restrict the axial movement of the elongated body relative to the unthreaded nut and the anchor.
13. A method of installing a mine bolt comprising: providing a mine bolt comprising an elongated body having a first end and a second end positioned opposite the first end, and an anchor comprising a tube defining a central opening and a slot extending at least a portion of the length of the tube, the anchor is secured to the elongated body; and inserting the mine bolt into a bore hole with the anchor compressing as the anchor is inserted into the bore hole.
14. The method of claim 13, wherein the mine bolt is inserted into the bore hole until the second end of the elongated body is positioned at an opening of the bore hole.
15. The method of claim 13, wherein the method further comprises: providing a bearing plate that receives the elongated body; and tensioning the mine bolt by rotating the elongated body about a longitudinal axis to move the elongated body axially relative to the anchor.
16. The method of claim 15, wherein the anchor comprises a nut secured to the tube and positioned within the central opening, the elongated body having a threaded portion received by the nut.
17. The method of claim 16, wherein the second end of the elongated body comprises a drive head, and wherein the elongated body is rotated by engaging the drive head of the elongated body.
18. The method of claim 13, wherein the anchor includes a tapered first end and a second end positioned opposite the tapered first end, and wherein the tapered first end is the first portion of the mine bolt inserted into the bore hole.
19. The method of claim 13, wherein the elongated body comprises a drill bit.
20. The method of claim 19, wherein the anchor comprises an unthreaded nut secured to the tube and positioned within the central opening, the elongated body having first and second support nuts received by a threaded position of the elongated body, the first and second support nuts configured to restrict the axial movement of the elongated body relative to the unthreaded nut and the anchor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0022] The present invention will now be described with reference to the accompanying figures. For purposes of the description hereinafter, the terms upper, lower, right, left, vertical, horizontal, top, bottom, and derivatives thereof shall relate to the invention as it is oriented in the drawing figures. However, it is to be understood that the invention may assume various alternative variations and step sequences, except where expressly specified to the contrary. It is to be understood that the specific apparatus illustrated in the attached figures and described in the following specification is simply an exemplary embodiment of the present invention. Hence, specific dimensions and other physical characteristics related to the embodiments disclosed herein are not to be considered as limiting.
[0023] Referring to
[0024] As discussed in more detail below, the anchor 26 is configured to secure the elongated body 12 within a bore hole. The anchor 26 further includes a nut 32 secured to the anchor 26 and positioned within the central opening 28. The threaded portion 18 of the elongated body 12 is threaded into the nut 32 to secure the elongated body 12 to the anchor 26. The nut 32 is secured to the anchor 26 via a weld 34, although any other suitable mechanical fastening may be utilized. Furthermore, although the nut 32 is utilized, any other suitable arrangement for securing the elongated body 12 to the anchor 26 may be utilized. The anchor 26 includes a tapered first end 36 and a second end 38 positioned opposite the tapered first end 36. The tapered first end 36 has a smaller diameter than the remaining portion of the anchor 26. The tapered first end 36 of the anchor 26 allows the anchor 26 to be inserted into the bore hole with the anchor 26 radially compressing as the anchor 26 is inserted into the bore hole thereby providing a radial force to secure the mine bolt 10 within the bore hole. In other words, when the anchor 26 is radially compressed, the anchor 26 wants to return to its original position thereby providing a biasing force radially outward. The first end 36 of the anchor 26 may define at least one slit 40 to facilitate providing the taper of the first end 36 during manufacture of the anchor 26. The slit 40 may extend for part of or the entire tapered portion of the first end 36 of the anchor 26. As shown in
[0025] Referring to
[0026] Referring to
[0027] Referring to
[0028] The anchor 26 of the mine bolt 100 operates in the same manner as discussed above in connection with the mine bolt 10 shown in
[0029] While several embodiments were described in the foregoing detailed description, those skilled in the art may make modifications and alterations to these embodiments without departing from the scope and spirit of the invention. Accordingly, the foregoing description is intended to be illustrative rather than restrictive.