Corrosion Resistant Yieldable Bolt
20180016900 ยท 2018-01-18
Inventors
- Lumin Ma (Pittsburgh, PA, US)
- Dakota Faulkner (New Kensington, PA, US)
- John C. Stankus (Canonsburg, PA, US)
Cpc classification
E21D21/0026
FIXED CONSTRUCTIONS
E21D21/0046
FIXED CONSTRUCTIONS
International classification
E21D21/00
FIXED CONSTRUCTIONS
Abstract
A mine bolt includes an elongated body having a first end and a second end positioned opposite the first end, with the elongated body having a first threaded section, a second threaded section, and a non-threaded section positioned between the first threaded section and the second threaded section. The non-threaded section is configured to yield under loading when the mine bolt is installed with grout in 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, the elongated body having a first threaded section, a second threaded section, and a smooth, non-threaded section positioned between the first threaded section and the second threaded section, wherein the non-threaded section is configured to yield under loading when the mine bolt is installed with grout in a bore hole.
2. The mine bolt of claim 1, wherein the elongated body comprises a hollow bar defining a central passageway.
3. The mine bolt of claim 1, wherein the smooth, non-threaded section is welded to the first and second threaded sections.
4. The mine bolt of claim 1, wherein the first threaded section and the second threaded section each comprise a coarse thread form.
5. The mine bolt of claim 4, wherein the first threaded section and the second threaded section each comprise an acme thread.
6. The mine bolt of claim 1, wherein the non-threaded section is more ductile and yieldable than the first and second threaded sections of the elongated body.
7. The mine bolt of claim 6, wherein the elongated body is manufactured from a mild steel with the first and second threaded sections being heat-treated such that first and second threaded sections are less ductile than the non-threaded section.
8. The mine bolt of claim 6, wherein the elongated body is manufactured from steel with the non-threaded section being annealed.
9. The mine bolt of claim 1, wherein the elongated body comprises pipe with threads extending from the first end of the elongated body to the second end of the elongated body, and wherein the smooth, non-threaded section is defined by a de-bonding tube positioned over the elongated body.
10. The mine bolt of claim 2, further comprising a drill bit positioned at the first end of the elongated body.
11. The mine bolt of claim 1, wherein the first threaded section extends from the first end of the elongated body to a position intermediate the first and second ends of the elongated body, and wherein the second threaded section extends from the second end of the elongated body to a position intermediate the first and second ends of the elongated body.
12. A mine bolt comprising: an elongated body having a first end and a second end positioned opposite the first end, the elongated body having a plurality of threaded sections and a plurality of non-threaded sections, each of the non-threaded sections positioned between respective threaded sections, wherein the non-threaded sections are configured to yield under loading when the mine bolt is installed with grout in a bore hole.
13. The mine bolt of claim 12, wherein the first end of the elongated body has a pointed tip configured to pierce a resin cartridge.
14. A method of manufacturing a mine bolt comprising: threading first and second sections of an elongated body with a non-threaded section positioned between the first and second sections; and heat-treating the elongated body such that the non-threaded section is more ductile and yieldable than the first and second sections.
15. The method of claim 14, wherein the heat-treating comprises annealing the non-threaded section.
16. The method of claim 14, wherein the heat-treating comprises heat-treating the first and second sections such that the first and second sections are less ductile than the non-threaded section.
17. The method of claim 14, wherein the elongated body comprises a hollow metal bar defining a central passageway.
18. The method of claim 14, further comprising reducing the cross-sectional diameter of the non-threaded section via a metalworking process.
19. A method of installing a mine bolt comprising: inserting a mine bolt into a bore hole, the mine bolt comprising an elongated body having a first end and a second end positioned opposite the first end, the elongated body having a first threaded section, a second threaded section, and a non-threaded section positioned between the first threaded section and the second threaded section, the elongated body comprising a hollow bar defining a central passageway; grouting the mine bolt such that grout is positioned within the central passageway of the elongated body and between the elongated body and rock strata defining the bore hole.
20. The method of claim 19, wherein the first and second threaded sections are rough and configured to engage and bond to the grout, and wherein the non-threaded section is smooth and configured to de-bond from the grout when the mine roof bolt is placed under loading.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026] 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.
[0027] Referring to
[0028] The first threaded section 20 extends from the first end 14 of the elongated body 12 to a position intermediate the first and second ends 14, 16 of the elongated body 12. The second threaded section 22 extends from the second end 16 of the elongated body 12 to a position intermediate the first and second ends 14, 16 of the elongated body 12. The first threaded section 20 is longer than the second threaded section 22, although other suitable configurations may be utilized. In one aspect, the elongated member 12 is 102 inches long with a 39 inch first threaded section 20, a 39 inch non-threaded section 24, and a 24 inch second threaded section 22. The elongated body 12 may have a minimum yield strength of about 47 kips, a minimum tensile strength of about 58 kips, and a nominal elongation of about 15%, although other suitable properties may be selected.
[0029] In one aspect, the mine bolt 10 is manufactured by threading a hollow bar to provide the first and second threaded sections 20, 22 while leaving a portion of the hollow bar unthreaded to form the non-threaded section 24. The non-threaded section 24 of the elongated body 12 is then heat-treated such that the non-threaded section 24 is more ductile and yieldable than the first and second threaded sections 20, 22. The non-threaded section 24 may be heat-threaded through inductive heating with the inductive heating apparatus sufficiently spaced from the first and second threaded sections 20, 22 to ensure the properties of the first and second threaded sections 20, 22 is substantially unchanged by the heat-treatment.
[0030] Referring to
[0031] Referring to
[0032] Referring to
[0033] Referring to
[0034] Furthermore, the mine bolt 130 may also be made from a single piece of tubing with the first and second threaded sections 20, 22 heat-treated to have a higher strength and corresponding lower elongation and ductility compared to the non-threaded section 24. The single piece of tubing may be made from a mild steel having the desired strength and ductility properties for the non-threaded section 24 with the first and second threaded sections 20, 22 being heat-treated to increase the strength and reduce the ductility. The non-threaded section 24 of the mine bolt 130 may also have a reduced cross-sectional area relative to the threaded sections 20, 22. The non-threaded section 24 of the mine bolt 130 may have an outer diameter that is smaller than the major diameter of the threads of the threaded sections 20, 22, although the non-threaded section 24 may also have a smaller outer diameter than the pitch diameter and/or minimum diameter of the threads of the threaded sections 20, 22. The non-threaded section 24 of the mine bolt 130 may be a tube with a smaller cross-sectional area relative to the threaded sections 20, 22 or may be machined, rolled, or otherwise processed via metalworking to reduce the cross-sectional area of the non-threaded section 24.
[0035] Referring to
[0036] 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.