ADAPTABLE FASTENING MECHANISMS FOR VARIOUS SIZED TUBING
20170037884 ยท 2017-02-09
Assignee
Inventors
Cpc classification
F16B2/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62M6/40
PERFORMING OPERATIONS; TRANSPORTING
B62M7/08
PERFORMING OPERATIONS; TRANSPORTING
B62M6/75
PERFORMING OPERATIONS; TRANSPORTING
B62M7/10
PERFORMING OPERATIONS; TRANSPORTING
B62M6/45
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16B2/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B63B25/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The disclosure relates to improved fastening mechanisms having both sufficient stiffness to bear a load and the ability to fit securely on a wide-range of sizes and shapes of tubing, including tapered tubing. Embodiments include a fastening mechanism with a first body part having a first inner surface, and a second body part having a second inner surface. A first fastening set may be disposed at a first end of the first and second body parts. A second fastening set may be disposed at a second end of the first and second body parts. The first and second fastening sets may be capable of securing the first and second body parts about a central tube, which may have tapered dimensions. The first inner surface and the second inner surface may each have a first subsurface and a second subsurface, the first subsurfaces may have a first contour, the second subsurfaces may have a second contour, and the first contour may fit a different size and shape of tubing than the second contour.
Claims
1. A fastening mechanism comprising: a first body part comprising a first pair of holes disposed towards the top of the first body part, a second pair of holes disposed towards the bottom of the first body part, and a first inner surface, a second body part comprising a third pair of holes disposed towards the top of the second body part, a fourth pair of holes disposed towards the bottom of the second body part, and a second inner surface, wherein the first body part is attached to the second body part by a first pair of bolts passing through the first pair of holes and the third pair of holes and by a second pair of bolts passing through the second pair of holes and the fourth pair of holes.
2. The fastening mechanism of claim 1, further comprising: an accessory mount disposed on the first body part.
3. The fastening mechanism of claim 2, wherein the accessory mount comprises at least one of a bolt, a screw, a threaded hole, or an eyelet.
4. The fastening mechanism of claim 1, wherein a first distance between the first pair of holes and the second pair of holes in an axial direction is 25 mm.
5. The fastening mechanism of claim 4, wherein a second distance between each hole in the first pair of holes in a direction perpendicular to the axial direction is between 22.5 mm and 34.5 mm.
6. The fastening mechanism of claim 1, wherein a distance between each hole in the first pair of holes in a direction perpendicular to an axial direction is between 22.5 mm and 34.5 mm.
7. The fastening mechanism of claim 1, wherein the first inner surface and the second inner surface each comprise a first subsurface and a second subsurface, the first subsurfaces have a first contour, the second subsurfaces have a second contour, and the first contour is different from the second contour.
8. The fastening mechanism of claim 1, wherein the first inner surface and the second inner surface are capable of fitting securely onto a tapered tube.
9. A fastening mechanism comprising: a first body part comprising a first inner surface; a second body part comprising a second inner surface; a first fastening set disposed at a first end of the first and second body parts; a second fastening set disposed at a second end of the first and second body parts, wherein the first and second fastening sets are capable of securing the first and second body parts about a central tube.
10. The fastening mechanism of claim 9, wherein the first fastening set is disposed at a distance between 22.5 mm and 34.5 mm from the second fastening set in an axial direction.
11. The fastening mechanism of claim 9, wherein each of the first and second fastening sets comprises at least one of a bolt, a screw, a wing-nut, a clip, a hose clamp, a quick release cam, or a cable tie.
12. The fastening mechanism of claim 9, further comprising a mount disposed on the first body part.
13. The fastening mechanism of claim 9, wherein the mount comprises at least one of a bolt, a screw, a threaded hole, or a screw.
14. The fastening mechanism of claim 9, wherein the first inner surface and the second inner surface are capable of forming an angle with respect to a central axis of a tapered tube when secured to the tapered tube.
15. The fastening mechanism of claim 9, wherein the first inner surface and the second inner surface are capable of fitting securely onto a tapered tube.
16. The fastening mechanism of claim 9, wherein the first inner surface and the second inner surface each comprise a first subsurface and a second subsurface, the first subsurfaces have a first contour, the second subsurfaces have a second contour, and the first contour is different from the second contour.
17. The fastening mechanism of claim 16, wherein the first and second contours correspond to first and second sizes of bicycle tubing.
18. The fastening mechanism of claim 16, wherein the first contour corresponds to tubing with a cross section of one of 28 mm19 mm, 27.5 mm20 mm, 29 mm21.5 mm, 22 mm22 mm, 30 mm12.5 mm, 28.5 mm16.5 mm, 29 mm16 mm, 34 mm23 mm, 24 mm24 mm, 28.6 mm28.6 mm, or 31.8 mm31.8 mm.
19. The fastening mechanism of claim 16, wherein the second contour corresponds to tubing with a cross section of one of 28 mm19 mm, 27.5 mm20 mm, 29 mm21.5 mm, 22 mm22 mm, 30 mm12.5 mm, 28.5 mm16.5 mm, 29 mm16 mm, 34 mm23 mm, 24 mm24 mm, 28.6 mm28.6 mm, or 31.8 mm31.8 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
[0018]
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[0020]
[0021]
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DETAILED DESCRIPTION
[0025] As shown in
[0026] As shown in
[0027] As shown in
[0028] As shown in
[0029] Advantageously, providing dual fastening sets at opposite ends of the body allows the clamp to fit securely onto tapered tubing. As shown in the example of
[0030]
TABLE-US-00001 TABLE 1 SIZE D1 (mm) D2 (mm) SMALL 22.5 25 MEDIUM 27.5 25 LARGE 34.5 25
[0031] Each bolt 200 used in the dual fastening sets may include a nut and/or washer. Bolts 200 may be used to securely fasten dual body parts 110a and 110b around a central tubing by tightening nuts onto bolts 200. Bolts 200 may be used with unthreaded holes 115a and 115b. Alternatively, holes 115a and 115b may be threaded to provide additional grip and further reduce the possibility of relative movement between dual body parts 110a and 110b As would be understood by a person of skill in the art in view of the present disclosure, other fasteners may be used instead of bolts 200, such as screws, wing-nuts, clips, hose clamps, quick release cams, or cable ties. For example, screws may be used together with threaded holes 115a and 115b without providing nuts or washers. As another example, in some embodiments, dual body parts 110a and 110b may be connected on one side by a hinge and may clip, snap, or bolt together on the other side.
[0032]
[0033] Dual body parts 110a and 110b of clamp 100 may be formed of plastic, metal, or ceramic, or another material (or combination of materials) with suitable hardness and durability to withstand the clamping forces and bear a load, as would be understood by a person of skill in the art in view of the present disclosure.
[0034] Each dual body part 100a and 110b of clamp 100 may include an inner surface and one or more subsurfaces for gripping a central tube. The inner surfaces may be formed of a softer material (e.g., having a greater elasticity) than the body, for example, plastic or rubber with a lower durometer. The inner surface(s) may have one or more contours for fitting securely onto tubing of a particular size. The greater elasticity of the inner surfaces may help to protect the inner tubing from damage, spread the load force across the clamp, and improve grip.
[0035]
[0036] As would be understood by a person of skill in the art in view of the present disclosure, other numbers of inner subsurfaces having other contours may be used, depending on the particular application. For example, contours may be selected to fit a wide range of common sizes and shapes of bicycle tubing, including 28 mm19 mm, 27.5 mm20 mm, 29 mm21.5 mm, 22 mm22 mm, 30 mm12.5 mm, 28.5 mm16.5 mm, 29 mm16 mm, 34 mm23 mm, 24 mm24 mm, 28.6 mm28.6 mm, and/or 31.8 mm31.8 mm. A single inner subsurface may be used or, alternatively, five or more inner subsurfaces may be used. As would be understood by a person of skill in the art in view of the present disclosure, embodiments of clamp 100 may be used in other applications besides bicycle and vehicle accessories. In general, embodiments of clamp 100 may be used wherever it is desirable to attach a load to a tube, pipe, or other object with an approximately elliptical cross-section and, in particular, wherever it is desirable to have a single clamp that fits onto various sizes and shapes of tubing.
[0037] It should be understood that, while various embodiments have been described herein, the claimed invention(s) should not be limited by those embodiments. To the contrary, the foregoing summary, detailed description, figures, and abstract have been presented for illustrative purposes, and are not meant to limit the claims. As a person of skill in the art in view of the present disclosure would recognize, various changes can be made to the embodiments described herein without departing from the scope and spirit of the present invention(s).