JOINT FOR CONNECTING AN ATTACHMENT TO A HYDRAULIC RAM
20230213058 · 2023-07-06
Inventors
Cpc classification
International classification
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A joint for connecting an attachment to a hydraulic ram comprises a ball and a socket. The socket connected to the base top surface of the attachment and encompassing at least a portion of the ball. The ball may be connected to a stem which may comprise a hole which serves as a connection point between the joint and an end of a hydraulic ram.
Claims
1. A joint (500) for connecting an attachment (100) to a hydraulic ram (10), said attachment comprising: a base (110) having a base first edge, a base second edge opposite the base first edge, a base first end, and a base second end defining a base horizontal plane having a base top surface (116) and a base bottom surface (117) with a base wall spanning a distance between the base top surface and the base bottom surface; the joint comprising a ball (510) and a socket (520); and at least a first plurality of teeth (130) and a second plurality of teeth (140); and wherein the socket is connected to the base top surface; wherein the socket encompasses at least a portion of the ball; wherein the first plurality of teeth extend from the base bottom surface along at least a portion of the base first edge; and wherein the second plurality of teeth extend from the base bottom surface along at least a portion of the base second edge.
2. The joint for connecting an attachment to a hydraulic ram of claim 1, said socket comprising a first socket component (521) integrally connected to the base top surface, and a second socket component (522) removably connected to the first socket component by one or more fasteners.
3. The joint for connecting an attachment to a hydraulic ram of claim 1, said ball comprising a stem (540) extending from a ball surface substantially opposite the portion of the ball which is encompassed by the socket.
4. The joint for connecting an attachment to a hydraulic ram of claim 1, wherein the first plurality of teeth are integrally connected to a first tooth plate, the second plurality of teeth are integrally connected to a second tooth plate, the first tooth plate is connected to the base along the base first edge by at least a first fastener, and the second tooth plate is connected to the base along the base second edge by at least a second fastener.
5. The joint for connecting an attachment to a hydraulic ram of claim 1, further comprising at least a third plurality of teeth (150) and a fourth plurality of teeth (160), wherein the third plurality of teeth extend from the base bottom surface along at least a portion of the base first end, and the fourth plurality of teeth extend from the base bottom surface along at least a portion of the base second end.
6. The joint for connecting an attachment to a hydraulic ram of claim 1, further comprising at least one spike (300) connected to and extending from the base bottom surface.
7. The joint for connecting an attachment to a hydraulic ram of claim 1, wherein the base is made of a first material comprising aluminum.
8. The joint for connecting an attachment to a hydraulic ram of claim 1, wherein the first plurality of teeth and the second plurality of teeth are each independently made of a material comprising steel.
9. The joint for connecting an attachment to a hydraulic ram of claim 2, said ball comprising a stem extending from a ball surface substantially opposite the portion of the ball which is encompassed by the socket.
10. The joint for connecting an attachment to a hydraulic ram of claim 3, wherein the stem comprises a hole (541) passing into the stem substantially parallel with a stem central axis (542).
11. The joint for connecting an attachment to a hydraulic ram of claim 4, wherein the first plurality of teeth and the second plurality of teeth are each independently made of a material comprising steel.
12. The joint for connecting an attachment to a hydraulic ram of claim 5, wherein the third plurality of teeth are integrally connected to a third tooth plate, the fourth plurality of teeth are integrally connected to a fourth tooth plate, the third tooth plate is connected to the base along the base first end by at least a third fastener, and the fourth tooth plate is connected to the base along the base second end by at least a fourth fastener.
13. The joint for connecting an attachment to a hydraulic ram of claim 5, wherein the third plurality of teeth and the fourth plurality of teeth are each independently made of a material comprising steel.
14. The joint for connecting an attachment to a hydraulic ram of claim 6, wherein the at least one spike comprises a plurality of spikes.
15. The joint for connecting an attachment to a hydraulic ram of claim 9, wherein the stem comprises a hole passing into the stem substantially parallel with a stem central axis.
16. The joint for connecting an attachment to a hydraulic ram of claim 11, wherein the base is made of a first material comprising aluminum.
17. The joint for connecting an attachment to a hydraulic ram of claim 12, wherein the third plurality of teeth and the fourth plurality of teeth are each independently made of a material comprising steel.
18. The joint for connecting an attachment to a hydraulic ram of claim 15, wherein the plurality of spikes are arranged in an “X” pattern along the base bottom surface.
19. The joint for connecting an attachment to a hydraulic ram of claim 17, wherein the base is made of a first material comprising aluminum.
20. A hydraulic ram comprising at least a first attachment and a second attachment wherein the first attachment and the second attachment are each independently connected to the hydraulic ram by a joint of the type called for in claim 1, the first attachment is connected to a hydraulic ram first end, and the second attachment is connected to a hydraulic ram second end opposite the hydraulic ram first end.
Description
BRIEF DESCRIPTION OF FIGURES
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026] Disclosed herein is a joint for connecting an attachment to a hydraulic ram. As described herein and in the claims, the following numbers refer to the following structures as noted in the Figures.
[0027] 10 refers to a hydraulic ram.
[0028] 100 refers to an attachment.
[0029] 110 refers to a base.
[0030] 111 refers to a base first edge.
[0031] 116 refers to a base top surface
[0032] 117 refers to a base bottom surface.
[0033] 130 refers to a first plurality of teeth.
[0034] 131 refers to a first tooth plate.
[0035] 140 refers to a second plurality of teeth.
[0036] 141 refers to a second tooth plate.
[0037] 150 refers to a third plurality of teeth.
[0038] 151 refers to a third tooth plate.
[0039] 160 refers to a fourth plurality of teeth.
[0040] 161 refers to a fourth tooth plate.
[0041] 300 refers to a spike.
[0042] 500 refers to a joint.
[0043] 510 refers to a ball.
[0044] 520 refers to a socket.
[0045] 521 refers to a first socket component.
[0046] 522 refers to a second socket component.
[0047] 530 refers to a joint central axis.
[0048] 540 refers to a stem.
[0049] 541 refers to a hole.
[0050] 542 refers to a stem central axis.
[0051]
[0052] Specifically,
[0053] In the embodiment shown in
[0054]
[0055] In some embodiments, the second plurality of teeth will be connected to a second tooth plate with the second tooth plate connected to the base second edge. When used, the second plurality of teeth are preferably integrally connected to the second tooth plate such as by manufacturing the second plurality of teeth and the second tooth plate of a single integral piece of material. The second tooth plate may be connected to the base second edge by at least one fastener such as a bolt, a screw, a clip, a rivet, or the like.
[0056] In some embodiments, the third plurality of teeth will be connected to a third tooth plate with the third tooth plate connected to the base first end. When used, the third plurality of teeth are preferably integrally connected to the third tooth plate such as by manufacturing the third plurality of teeth and the third tooth plate of a single integral piece of material. The third tooth plate may be connected to the base first end by at least one fastener such as a bolt, a screw, a clip, a rivet, or the like.
[0057] In some embodiments, the fourth plurality of teeth will be connected to a fourth tooth plate with the fourth tooth plate connected to the base second end. When used, the fourth plurality of teeth are preferably integrally connected to the fourth tooth plate such as by manufacturing the fourth plurality of teeth and the fourth tooth plate of a single integral piece of material. The fourth tooth plate may be connected to the base second end by at least one fastener such as a bolt, a screw, a clip, a rivet, or the like.
[0058]
[0059] Once assembled, the socket (520) encompasses at least a portion of the ball (510) in a manner such that the ball may pivot about a joint central axis (530). In this manner, the joint may be considered a ball and socket joint – sometimes referred to as an enarthrodial joint.
[0060] The ball (510) may be connected to a stem (540) which extends from a ball surface substantially opposite the portion of the ball which is encompassed by the socket. As shown in
[0061] The various components may be manufactured of any rigid material with rigid metals such as aluminum, aluminum alloys, steel, stainless steel, cast iron, titanium, copper, and brass being preferred materials. In preferred embodiments, the base will be manufactured of aluminum or an aluminum alloy. The teeth in preferred embodiments will be manufactured of steel or stainless steel.
[0062] The joint disclosed herein is an improvement on existing devices for connecting an attachment – such as a hydraulic ram plate – to a hydraulic ram. The ball and socket joint allows the attachment to pivot about the hydraulic ram central axis such that the attachment may be secured against various surfaces in confined spaces and at varying angles.