1. Field of the Invention
The invention relates to a friction bolt.
2. Description of the Related Art
Such friction bolts (trademark designation of the Atlas Copco “Swellex”) are known. For example, reference can be made to U.S. Pat. No. 4,459,067 A, WO 2005/073510 A, WO 2005/119009 A, WO 2006/066288 A and WO 2008/019409 A.
The known friction bolts are roof bolts (rock bolts), which have a tube that is folded inward in the longitudinal direction, which tube is introduced into a borehole and is widened by increasing the pressure inside the folded tube, so that the outside surface of the tube is applied to the inside surface of the borehole and the bolt is thus fixed (positively) in the borehole.
The known friction bolts have a cross-sectional shape that is reproduced in
The object of the invention is to propose an improved cross-sectional shape for friction bolts that has advantages relative to the known friction bolts.
Preferred and advantageous configurations of the invention are subjects of the subclaims.
Since, in the friction bolt according to the invention, a cross-sectional shape is selected in which the inward-formed part of the tube does not extend concentrically to the outer part of the tube but rather deviates inward from this concentric shape, a flatter shape of the lateral areas of the inward-folded part of the tube is produced. Thus, undercut areas are avoided, and advantageous, new properties of the friction bolt according to the invention are produced.
Additional details and features of the invention follow from the description of a preferred embodiment below.
Here:
The tube 1 of a known friction bolt that is shown in the non-widened state in
Because of the shape of the cross-section of the tube 1 of known friction bolts, shown in
The tube 1, shown in
The inward-folded part 5 is no longer designed essentially concentric to the outer part 3 of the tube 1 as in the known tube 1, but rather deviates from this shape in the middle, i.e., in the plane of symmetry 11 of the tube 1. As a result, in connection to the opening 7, which also can be designed wider than in the known tube 1, less heavily concave lateral areas 9 of the inward-folded part 5 are produced. This has the result that areas of the inner part, which have undercuts in the known tube (
In addition, the shape of the inward-folded part 5 produces larger radii of curvature (R3) in the inner part 5 in the transition areas 4 of the outer part 3 of the tube 1.
In the tube 1 of the friction bolt according to the invention, shown in
Moreover, the weld 13 is laterally offset to the plane of symmetry 11 of the cross-sectional shape of the tube 1, such that the weld 13 is no longer arranged where the inner part 5 rests on the outer part 3 of the tube 1.
In the tube 1 of a friction bolt according to the invention, the radius R1 of the lateral wall areas 9 of the inward-folded part 5 of the tube 1 is greater than the radius R2 of the outer part 3 of the tube 1. In practice, the radius of curvature R1 of the lateral wall areas 9 of the inner part 5 of the tube 1 can be in the range of between at least 250% and 350%, in particular at least 280%, of the radius R2 of the outer part 3 of the tube 1.
In the tube 1 of the friction bolt according to the invention, the largest distance A that the interiors 19 of the lateral wall areas 9 of the inner part should be apart is at most equal to 120% to 160% of the width B of the opening or the gap 7. The largest distance A between the interiors 19 is at most equal to 140% of the width B of the gap 7.
In the tube 1 of the friction bolt according to the invention, as already mentioned, the radius of curvature R3 in the transition areas 4 from the outer part 3 into the inner part 5 of the tube 1 is larger than in the known tube (
With the tube 1 of the friction bolt according to the invention, it can also be provided that the radius R4 in the area of the bottom 15 of the inner part 5 of the tube 1 is at least equal to 15% to 35%, preferably at least equal to 25%, of the radius R2 of the outer part 3 of the tube 1.
In one exemplary embodiment, the distance A between the inner surfaces 19 of the lateral wall parts 9 of the inner part 5 is 9 mm, and the opening 7 has a width of 6.5±0.5 mm. The radius R2 of the outer part 3 of the tube 1 is 14 mm in the embodiment. The radius R1, with which the lateral wall parts 9 of the inner part 5 are curved, is 39 mm in the example. The radius, with which the transition areas 4 are curved from the outer part 3 into the inner part 5, i.e., the areas on both sides of the opening 7 or the gap 7, is 4±0.5 mm in the embodiment. Finally, the inner part 5 of the tube 1 can be curved in the bottom area 15 with a radius R4 of 3.5 mm.
In summary, an embodiment of the invention can be described as follows:
A tube 1 of a friction bolt has an outer part 3 and an inward-folded inner part 5 and a gap 7 that extends in the longitudinal direction of the tube 1, where the outer part 3 turns into the inner part 5 of the tube 1. The lateral wall areas 9 of the inner part 5 are designed flat and have a shape in which the free space between the outer part 3 and the inner part 5 is essentially lens-shaped as in known tubes. Moreover, the bottom 15 of the inner part 5 rests on the outer part 3 of the tube 1, and the weld 13 is arranged laterally offset relative to the plane of symmetry 11 as the area where the bottom 15 rests on the outer part 3 of the tube 1. Finally, the radii of curvature R3 in the area of the transitions 4 from the outer part 3 of the tube 1 into the inner part 5 of the tube 1 are designed larger than in the known tubes of this type.
Number | Date | Country | Kind |
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A 1501/2009 | Sep 2009 | AT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/AT2010/000240 | 7/1/2010 | WO | 00 | 3/21/2012 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2011/035353 | 3/31/2011 | WO | A |
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Number | Date | Country |
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2005073510 | Aug 2005 | WO |
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Entry |
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International Search Report dated Feb. 17, 2012, corresponding to PCT/AT2010/000240. |
Austrian Office Action dated Mar. 12, 2010, corresponding to Foreign Priority Application No. A 1501/2009. |
Number | Date | Country | |
---|---|---|---|
20120308310 A1 | Dec 2012 | US |