Transgrip arm assembly with quick change connection
09764864 · 2017-09-19
Assignee
Inventors
Cpc classification
B65B7/2828
PERFORMING OPERATIONS; TRANSPORTING
B65B59/003
PERFORMING OPERATIONS; TRANSPORTING
B67B2201/10
PERFORMING OPERATIONS; TRANSPORTING
B65B7/2835
PERFORMING OPERATIONS; TRANSPORTING
B67B1/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B7/00
PERFORMING OPERATIONS; TRANSPORTING
F16B12/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A transgrip spindle assembly includes a ball head coupler. A transgrip arm includes a quick change bore, and a lateral bore opening orthogonally into the quick change bore. A cam lock assembly includes a cylindrical body, and a ball head bore radially penetrating the cylindrical body for alignment with the quick change bore. The cylindrical body is receivable in the transgrip arm. The transgrip arm is coupleable with the transgrip spindle assembly by coupling the ball head coupler with the cylindrical body.
Claims
1. A transgrip arm assembly comprising: a transgrip spindle assembly characterized by a first longitudinal axis, coupleable with a repetitive motion apparatus, and comprising a ball head coupler; a transgrip arm comprising a quick change bore characterized by a second longitudinal axis, and a lateral bore characterized by a third longitudinal axis orthogonal to the second longitudinal axis and opening into the quick change bore; a cam lock assembly comprising a cylindrical body characterized by a fourth longitudinal axis, and a ball head bore radially penetrating the cylindrical body for alignment with the quick change bore; wherein the cylindrical body is receivable in the transgrip arm, and the transgrip arm is coupleable with the transgrip spindle assembly by coupling the ball head coupler with the cylindrical body and wherein the transgrip spindle assembly further comprises a threaded rod, an annular sleeve characterized by a collar transitioning through a neck to a threaded cylinder, lock nuts, a compression spring, and a plurality of spring bushings.
2. A transgrip arm assembly according to claim 1 wherein the cam lock assembly is rotatably receivable in the lateral bore.
3. A transgrip arm assembly according to claim 2 wherein the cam lock assembly is coupleable with the transgrip spindle assembly.
4. A transgrip arm assembly according to claim 1 wherein the transgrip spindle assembly is rotatable about the first longitudinal axis.
5. A transgrip arm assembly according to claim 1 wherein the ball head coupler is movable along the first longitudinal axis.
6. A transgrip arm assembly according to claim 1 wherein the coupling of the transgrip arm with the transgrip spindle assembly is controllable by a quarter turn of the cam lock assembly within the lateral bore.
7. A transgrip arm assembly according to claim 1, and further comprising a transgrip spindle assembly tube transitioning to a circular flange.
8. A transgrip arm assembly according to claim 7 wherein the circular flange further comprises a coaxially disposed threaded collar.
9. A transgrip arm assembly according to claim 8 wherein the annular sleeve is attachable to the circular flange by threadable coupling of the threaded cylinder with the threaded collar.
10. A transgrip arm assembly according to claim 7 wherein the transgrip spindle assembly is receivable within the transgrip spindle assembly tube.
11. A transgrip arm assembly according to claim 10 wherein the ball head coupler is extendable through the center of the circular flange.
12. A transgrip arm assembly according to claim 1 wherein the ball head bore comprises a cammed surface.
13. A transgrip arm assembly according to claim 12 wherein the ball head coupler is movable along the first longitudinal axis by movement of the cammed surface.
14. A transcript arm assembly according to claim 1 wherein the ball head coupler further comprises a cylindrical neck having a first diameter, transitioning to a spherical ball head having a second diameter greater than the first diameter.
15. A transgrip arm assembly according to claim 14 wherein the ball head bore transitions to an arcuate neck slot.
16. A transgrip arm assembly according to claim 15 wherein the cylindrical neck is receivable in the arcuate neck slot.
17. A transgrip arm assembly according to claim 16 wherein the second diameter is greater than the width of the arcuate neck slot.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the drawings:
(2)
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DETAILED DESCRIPTION
(15) Referring to the figures, and particularly to
(16) Referring also to
(17) A circular lateral bore 30 may extend through the rotation portion 16 beneath the hub 20 to intersect the quick change bore 26 (
(18) The transfer portion 18 may be coupleable with a known closure mechanism, such as a gripper or chuck (not shown). The transgrip arm 12 may be fabricated of a single piece of material, e.g. stainless steel, having properties, such as strength, durability, hardness, and the like, suitable for the purposes described herein.
(19) The transgrip spindle assembly 14 may be enclosed within a transgrip spindle assembly tube 32. Referring to
(20) Turning now to
(21) Referring again to
(22) Referring now to
(23) The threaded cylinder 52 may have a diameter somewhat less than the diameter of the tensioner sleeve collar 50, and may comprise external threads running from the neck 54 to the end of the threaded cylinder 52. The external threads may be complementary with the internal threads of the threaded annular collar 38. The threaded cylinder 52 may be threaded into the annular collar 38 with the assistance of a wrench applied to the planar flange faces of the tensioner sleeve collar 50. A circular aperture defining a tensioner rod aperture 64 may extend coaxially through the threaded cylinder 52 for slidable receipt of the threaded tensioner rod 42 therethrough. The tensioner rod bore 64 may have a diameter somewhat less than the diameter of the ball head coupler seat 66, and both may be characterized by a smooth bore.
(24) Referring again to
(25) Referring now to
(26) Referring again to
(27) Each compression spring 60 may have an inner diameter somewhat greater than the diameter of the cylindrical sleeve 110 for slidable insertion of the cylindrical sleeve 110 into the end of the spring 60. As illustrated in
(28) A flat washer 56 may be adapted to slidably engage one end of the threaded tensioner rod 42 to contact the adjacent spring bushing 62. Lock nuts 58 may be threaded onto the tensioner rod 42 and adjusted to provide a selected magnitude of compression in the springs 60.
(29) The opposed end of the threaded tensioner rod 42 may be inserted through the tensioner sleeve 46 and threaded into the ball head coupler 48. The ball head coupler 48 may be seated in the ball head coupler seat 66, enabling sliding coaxial movement of the ball head coupler 48 in a direction away from the ball head coupler seat 66, while the ball head coupler 48 may remain attached to the threaded tensioner rod 42. Compression of the springs 60 may be adjusted by turning the lock nuts 58 against the flat washer 56 and spring bushing 62.
(30) It may be recognized that, with the threaded portion 52 of the tensioner sleeve 46 threaded into the threaded collar 38, a tensile force applied to the ball head 70 may urge the ball head coupler 48 away from the flange 34, further compressing the compression springs 60. It may also be recognized that, when the transgrip spindle assembly 14 may be joined to the hub 20, the key 36 may be received in the keyway 24, with the threaded collar 38, tensioner sleeve 46, and ball head coupler 48 extending coaxially into the quick change bore 26.
(31) Referring now to
(32) Intermediate the arcuate slot 88 and the opposed end of the cylindrical body 82, a ball head bore 94 defining a fourth longitudinal axis 78 may radially penetrate the cylindrical body 82. The ball head bore 94 may have a diameter somewhat greater than the diameter of the ball head 70 to facilitate slidable insertion of the ball head 70 therethrough, as illustrated in
(33) Referring also to
(34) The cam lock assembly 80 may be installed into the transgrip arm 12 by inserting the cylindrical body 82 into the lateral bore 30 (
(35) In the locked position, the elongate neck 72 of the ball head coupler body 68 may extend through the arcuate neck slot 96 so that the ball head 70 may be retained against the cammed surface 92. The transgrip spindle assembly 14 may be adapted so that when the cam lock assembly 80 may be rotated into the locked position, tension may be exerted on the ball head coupler 48 by the compression springs 60, holding the ball head 70 in place against the cammed surface 92 and tightly coupling the transgrip arm 12 with the transgrip spindle assembly 14. The retaining pin 44 may be adjusted relative to the arcuate slot 88 to control under-rotation or over-rotation of the cam lock assembly 80.
(36) As illustrated in
(37) The cam lock assembly 80 in cooperation with the transgrip spindle assembly 14 and transgrip arm 12 may enable the transgrip spindle assembly 14 and transgrip arm 12 to be readily separated by a simple quarter turn rotation of the cam lock assembly 80. A replacement transgrip arm may be readily attached to the transgrip spindle assembly 14 by joining the replacement transgrip arm to the transgrip spindle assembly 14 and rotating the cam lock assembly 80 a quarter turn as hereinbefore described, thereby locking the replacement transgrip arm to the transgrip spindle assembly 14. Alignment of the transgrip arm 12 with the transgrip spindle assembly 14 may be facilitated by the key 36 and the keyway 24. Thus, transgrip arms may be replaced quickly and accurately, resulting in minimal downtime.
(38) While the invention has been specifically described in connection with certain specific embodiments thereof, it may be understood that this is by way of illustration and not of limitation. Reasonable variation and modification may be possible within the scope of the forgoing disclosure and drawings without departing from the spirit of the invention which is defined in the appended claims.