Anti-rotation worm gear clamp
09541226 ยท 2017-01-10
Assignee
Inventors
- Robert H. Saunders (Oak Park, MI, US)
- Robert J. Mohan (Canton, MI, US)
- Jeffrey P. Luther (Ann Arbor, MI, US)
- Scott M. Rollins (Canton, MI, US)
- ERIK H. HERMANN (ANN ARBOR, MI, US)
- Darice M. Morris (Wolverine Lake, MI, US)
- Roger Khami (Troy, MI)
Cpc classification
Y10T24/1441
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
An assembly for clamping a tube includes a fitting including a land, a bolt housing, legs, and a tooth on each leg, a band surrounding an axis, contacting the land and formed with holes spaced along the band, and a bolt located in the bolt housing, including helical teeth engaged with said holes for changing a diameter of the band and forcing the tooth toward the band as the band is tightened by rotating the bolt.
Claims
1. A tube clamping assembly, comprising: a fitting including a land extending circumferentially about a central axis and axially along the axis, the land haying two portions separated by a circumferentially extending gap, a bolt housing integrally connected to both of the portions of the land, a leg integral with and extending from one of the two portions, and a tooth on the leg, both portions of the land, the bolt housing, the leg and the tooth being formed as a single monolithic piece; a band surrounding the axis, contacting both portions of the land radially outward from the axis, the band formed with holes spaced along the band; a bolt located in the bolt housing, including teeth engaged with said holes for changing a diameter of the band as the band is tightened by rotating the bolt.
2. The tube clamping assembly of claim 1, further comprising: a second leg extending from one of the two portions of the land; and a second tooth located on the second leg and able to be forced toward an axis as the band is tightened by rotating the bolt, the second leg and the second tooth being formed as a single monolithic piece with the land.
3. The tube clamping assembly of claim 1, further comprising: a first lip extending circumferentially along one of the portions of the land and located at a first side of the land; a second lip extending circumferentially along the other of the portions of the land and located at a second side of the land opposite the first side.
4. The tube clamping assembly of claim 1, wherein the band is elastically flexible, the holes are elongated, a length of each hole being directed across a width of the band, the holes being spaced mutually along a length of the band.
5. A tube clamping assembly, comprising: a fitting including a land extending circumferentially about a central axis and axially along the axis, the land having two portions separated by a circumferentially extending gap, a bolt housing integrally connected to both of the portions of the land, first and second legs integral with and extending from one of the two portions and spaced apart circumferentially along the land, a recess and a tooth in each of the legs, both portions of the land, the bolt housing, the first and second legs, the recesses, and the teeth being formed as a single monolithic piece; a band surrounding the axis, contacting both portions of the land radially outward from the axis, the band formed with holes spaced along the band; a bolt located in the bolt housing, including teeth engaged with said holes for changing a diameter of the band as the band is tightened by rotating the bolt.
6. The tube clamping assembly of claim 5, further comprising: a first lip extending circumferentially along one of the portions of the land and located at a first side of the land; a second lip extending circumferentially along the other of the portions of the land and located at a second side of the land opposite the first side.
7. The tube clamping assembly of claim 5, wherein the band is elastically flexible, the holes are elongated, a length of each hole being directed across a width of the band, the holes being spaced mutually along a length of the band.
8. A clamped connection, comprising: a fitting including a land extending circumferentially about a central axis and axially along the axis, the land haying two portions separated by a circumferentially extending gap, a bolt housing integrally connected to both of the portions of the land, a leg integral with and extending from one of the two portions, the leg including a recess and a tooth, both portions of the land, the bolt housing, the leg, the recess and the tooth being formed as a single monolithic piece; a tube including an end surface located in the recess, and a wall that is engaged by the tooth; a band extending circumferentially around the tube and formed with holes spaced along the band; a bolt located in the bolt housing including threads for engaging the holes, the band being clamped against the tube as the band is tightened by rotating the bolt.
9. The clamped connection of claim 8, wherein the leg extends from an outer surface of the tube, across the end surface, and along an inner surface of the wall.
10. The clamped connection of claim 8, wherein: the leg extends around an outer surface of the tube, across the end surface, and along an inner surface of the wall; and the tooth engages the tube by piercing the inner surface of the wall.
11. A clamped connection, comprising: a fitting including a land extending circumferentially about a central axis and axially along the axis, the land haying two portions separated by a circumferentially extending gap, a bolt housing integrally connected to both of the portions of the land, first and second legs integral with and extending from one of the two portions and spaced apart circumferentially along the land, each leg including a recess and a tooth, both portions of the land, the bolt housing, the first and second legs, the recesses, and the teeth being formed as a single monolithic piece; a tube including an end surface located in the recess, and a wall able to be engaged by at least one of the teeth; a band extending circumferentially around the tube and formed with holes spaced along the band; a bolt located in the bolt housing including threads for engaging the holes, the band being clamped against the tube as the band is tightened by rotating the bolt.
12. The clamped connection of claim 11, wherein the legs extend around an outer surface of the tube, across the end surface, and along an inner surface of the wall.
13. The clamped connection of claim 11, wherein: the legs extend around an outer surface of the tube, across the end surface, and along an inner surface of the wall; and each tooth is able to engage the tube by piercing the inner surface of the wall.
Description
DESCRIPTION OF THE DRAWINGS
(1) The invention will be more readily understood by reference to the following description, taken with the accompanying drawings, in which:
(2)
(3)
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(5)
DESCRIPTION OF THE PREFERRED EMBODIMENT
(6) Referring first to
(7)
(8)
(9) The legs 16, 18 of fitting 10 are in the form of U-channels that overlap the end of tube 42 and direct the teeth 20, 22 toward the inner surface of the tube. When the clamp bolt 36 is rotated clockwise, clamp band 30 is tightened around the outer surface of the hose 42 with teeth 20, 22 engaged with the wall of tube 42.
(10) Preferably teeth 20, 22 are approximately 10 mm long by 3 mm wide and are angled inward toward the inner surface of tube 42, the last 3 mm of the length coming to a sharpen point that can pierce 3 mm into the wall thickness the hose.
(11) Preferably fitting 10 includes one tooth 20, 22 located at each side of the clamp bolt housing 28, thereby providing an attachment between fitting 10 and hose 42 that prevents the band clamp 30 from rotating around the hose while clamp bolt 36 is rotated and the clamp band is being tightened.
(12) Preferably teeth 20, 22 and clamp bolt housing 28 are formed integrally, i.e., are formed of a single piece. But the teeth 20, 22 can be welded to the clamp bolt housing 28 in a secondary operation, which is less preferred than the integral construction.
(13) In accordance with the provisions of the patent statutes, the preferred embodiment has been described. However, it should be noted that the alternate embodiments can be practiced otherwise than as specifically illustrated and described.