System for lubrication pivot joint
10132352 ยท 2018-11-20
Assignee
Inventors
Cpc classification
Y10T403/32926
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
F16C33/1045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32861
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
F16C2350/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32918
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
F16C33/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E02F9/00
FIXED CONSTRUCTIONS
Abstract
A system for lubricating a pivot joint including a first bushing and a second bushing and a pin disposed coaxially within a cylinder clevis, the pin having a first groove and a second groove on a first side, and third grooves on a second side and a bore along a length of the pin from first side to the second side. The first groove is used for mounting a seal. The second groove and the third grooves provide transmission of a lubricant to the first bushing and the second bushing respectively. A first cover plate and a second cover plate are fastened to the cylinder clevis using a plurality of fasteners. The first cover plate includes a first port and a second port for providing the lubricant to the first bushing and the second bushing respectively. A spring is provided between the second cover plate and the pin.
Claims
1. A system for lubricating a pivot joint of a cylinder clevis, the system comprising: a first bushing disposed in a first opening at a first end of the cylinder clevis; a second bushing disposed in a second opening at a second end of the cylinder clevis; a pin coupled to the first bushing at the first end and the second bushing at the second end, each of the first bushing, the second bushing, and the pin disposed coaxially within the cylinder clevis, the pin having: a first side having: a first groove provided for mounting a seal; and a second groove in fluid communication with the first bushing, and provided for transmission of a lubricant; a second side having at least one third groove in fluid communication with the second bushing, the at least one third groove provided for transmission of the lubricant; and a bore extending along a length of the pin from the first side to the second side through the pin, the bore being in fluid communication with the at least one third groove; a first cover plate and a second cover plate, connected to the cylinder clevis through a plurality of fasteners, wherein the first cover plate having: a first port in fluid communication with the second groove and the first bushing, the first port provided to transfer the lubricant to the first bushing through the second groove; and a second port in fluid communication with the bore, the at least one third groove, and the second bushing, the second port provided to transfer the lubricant to the second bushing through the bore and the at least one third groove; and a spring placed between the second cover plate and the second side of the pin, wherein the spring enabling a contact between the seal and the first cover plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(11) In the present disclosure, each of the first cover plate 16 and the second cover plate 48 is equipped with a press fit mechanism enabling the first cover plate 16 and the second cover plate 48 to be press-fitted to the cylinder clevis 12. Further, the fasteners 20 for fastening the first cover plate 16 and the second cover plate 48 to the cylinder clevis 12 have countersunk heads.
(12) It will be apparent to one skilled in art that although the
INDUSTRIAL APPLICABILITY
(13) Heavy machines have pivot joints between various components of the machine. Typically, these pivot joints are lubricated with a lubricant such as grease or oil, using a number of lubricant lines. These lubricant lines are externally connected through ports to a cylinder clevis. As these lubricant lines are external and, therefore, are vulnerable to collisions, for example, with excavated material while the machine is operating. The damage in the lubricant lines leads to a failure of the pivotal joint, which causes unnecessary downtime of the machines. Moreover, such damage to the lubricant lines is difficult to spot immediately after it occurs, and thereby results in the failure of the pivotal joints.
(14) The present disclosure provides the system for lubricating the pivot joint 14 of the cylinder clevis 12. The system provides for a more compact arrangement of the lubricant lines 18 which is less susceptible to the collision with the excavated material during operation, thereby preventing a failure of the pivot joint 14. Further, the first cover plate 16 and the second cover plate 48 are fastened with the fasteners 20 having countersunk heads further reducing a likelihood of leakage of lubricant due to damage in the fasteners 20. The first cover plate 16 and the second cover plate 48 are also equipped with a press fit mechanism enabling the first cover plate 16 and the second cover plate 48 to be press-fitted to the cylinder clevis 12 in order to prevent leakage of the lubricant and to transfer forces generated due to the collisions with the excavated boulders to the cylinder clevis 12 during the excavation operations.
(15) The system further discloses the pin 26 having the second groove 42. The second groove 42 is connected to the first port 22 and receives lubricant from the first port 22. The second groove 42 is designed in form of a circular channel enabling a uniform distribution of the lubricant across the first surface 44 of the first bushing 28. Similarly, the lubricant flowing through the second port 24 flows through the bore 36. The bore 36 being in fluid communication with the third grooves 58 on the second side 46 of the pin 26, transfers the lubricant to the third grooves 58. The third grooves 58 are arranged at a 90 degree angle with respect to each other enabling a uniform distribution of the lubricant across the second surface 60 of the second bushing 52. The third grooves 58 further transfer the lubricant to the second surface 60 of the second bushing 52, thereby lubricating the second bushing 52. Further, the system provides the spring 50 between the second cover plate 48 and the second side 46 of the pin 26, which applies a spring force on the pin 26 and improves the sealing action of the seal 40, thereby enabling a uniform distribution of the lubricant across the first bushing 28 and the second bushing 52.
(16) While aspects of the present disclosure have been particularly shown and described with reference to the embodiments above, it will be understood by one skilled in the art that various additional embodiments may be contemplated by the modification of the disclosed machines, systems and methods without departing from the spirit and scope of what is disclosed. Such embodiments should be understood to fall within the scope of the present disclosure as determined based upon the claims and any equivalents thereof.