BUFFER STOPPER
20190085928 ยท 2019-03-21
Assignee
Inventors
Cpc classification
F16F1/3716
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F7/087
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/3713
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/3828
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2224/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/3735
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2232/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16F1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/371
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A buffer stopper capable of increasing an absorbable energy amount without causing changes in characteristics due to wear of a buffer body. In order to achieve the object, the buffer body containing a rubber elastic body disposed between an end surface formed in a housing and an end surface formed in a shaft which is relatively movable in the axial direction with respect to the housing and a wear resistant sheet which is provided so as to surround the outer peripheral surface of the buffer body and which can contact an inner peripheral surface of the housing by expansion and deformation in the radial direction of the buffer body are provided.
Claims
1. A buffer stopper comprising: a buffer body containing a rubber elastic body disposed between an end surface formed in a housing and an end surface formed in a shaft which is relatively movable in an axial direction with respect to the housing; and a wear resistant sheet which is provided so as to surround an outer peripheral surface of the buffer body and which can contact an inner peripheral surface of the housing by expansion and deformation in a radial direction of the buffer body.
2. The buffer stopper according to claim 1, wherein the wear resistant sheet contains cloth having elasticity.
Description
BRIEF EXPLANATION OF THE DRAWINGS
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0018] Hereinafter, a preferable embodiment of a buffer stopper according to the present invention is described with reference to the drawings. First,
[0019] In
[0020] The buffer stopper 1 is externally inserted into the shaft 3 and is disposed between an end surface 21a facing the enlarged diameter portion 31 side of the shaft 3 in the flange portion 21 of the housing 2 and the end surface 31a of the enlarged diameter portion 31 of the shaft 3. The buffer stopper 1 has a metal ring 11 caused to abut on the end surface 21a of the flange portion 21 of the housing 2, a metal ring 12 caused to abut on the end surface 31a of the enlarged diameter portion 31 of the shaft 3, a buffer body 13 integrally provided between the metal rings 11 and 12, and a wear resistant sheet 14 provided on the outer peripheral surface of the buffer body 13.
[0021] The metal rings 11 and 12 in the buffer stopper 1 are produced by punching a metal plate and are formed into a flat washer shape.
[0022] The buffer body 13 in the buffer stopper 1 is molded into an annular shape with a rubber elastic body (rubber material or synthetic resin material having rubber-like elasticity) and is integrally vulcanized and bonded between the metal rings 11 and 12.
[0023] The wear resistant sheet 14 in the buffer stopper 1 contains woven fabrics excellent in wear resistance, such as synthetic fibers. Those which are woven so as to have elasticity, such as knit or double knitting, are preferably adopted. The wear resistant sheet 14 is provided in an endless shape in the circumferential direction so as to surround the entire outer peripheral surface of the buffer body 13. The distance in the radial direction between an inner peripheral surface 22a of the large-diameter cylindrical portion 22 of the housing 2 and the outer peripheral surface of the buffer body 13 is smaller than the distance in the radial direction between the outer peripheral surface of the shaft 3 into which the buffer stopper 1 is externally inserted and the inner peripheral surface of the buffer body 13. Therefore, the wear resistant sheet 14 can contact the inner peripheral surface 22a of the large-diameter cylindrical portion 22 of the housing 2 by the expansion and deformation in the radial direction when the buffer body 13 receives the compression in the axial direction.
[0024] In the buffer stopper 1 configured as described above, when the shaft 3 relatively moves in the axial direction with respect to the housing 2 in a direction of compressing the buffer body 13, the buffer body 13 is compressed and deformed in the axial direction and expanded and deformed in the radial direction between the metal ring 11 caused to abut on the end surface 21a of the flange portion 21 of the housing 2 and the metal ring 12 caused to abut on the end surface 31a of the enlarged diameter portion 31 of the shaft 3. The wear resistant sheet 14 provided on the outer peripheral surface of the buffer body 13 contains woven fabrics having elasticity, and therefore permits the expansion and deformation in the outer radial direction of the buffer body 13. Therefore, a stress caused by the compression in the axial direction of the buffer body 13 is reduced by the expansion and deformation in the radial direction, i.e., the spring constant is kept low (The inclination of the characteristic line is small.) in the early stage of the compression with a small displacement amount as illustrated in
[0025] Next, when the wear resistant sheet 14 provided on the outer peripheral surface of the buffer body 13 abuts on the inner peripheral surface 22a of the large-diameter cylindrical portion 22 of the housing 2 by the expansion and deformation in the radial direction of the buffer body 13 as illustrated in
[0026] Herein, although the wear resistant sheet 14 has elasticity as described above, the wear resistant sheet 14 has an action of suppressing the expansion and deformation in the radial direction of the buffer body 13 to some extent by being provided so as to surround the entire outer peripheral surface of the buffer body 13. Therefore, the spring constant in the early stage of the compression is somewhat higher (The inclination of the characteristic line is somewhat large.) than that of a conventional buffer stopper illustrated by the dashed line in
[0027] Moreover, the wear resistant sheet 14 can prevent the outer peripheral surface of the buffer body 13 from wearing due to contacting under pressure accompanying the sliding with the inner peripheral surface 22a of the large-diameter cylindrical portion 22 of the housing 2. Therefore, a transition point P between a linear region on the small displacement side and a nonlinear region on the large displacement side in the characteristic line illustrated in
[0028] In the above-described configuration, the wear resistant sheet 14 surrounds the entire outer peripheral surface of the buffer body 13. However, as illustrated in a second embodiment of the buffer stopper according to the present invention illustrated in
[0029] More specifically, the binding force of the wear resistant sheet 14 to the outer peripheral surface of the buffer body 13 decreases by being configured as described above, and therefore an increase in the absorbable energy amount is suppressed but, on the other hand, an increase in the spring constant in the early stage of the compression can be made small, i.e., the buffering properties in the early stage of the compression can be improved. Moreover, when the buffer body 13 has a certain amount of width in the axial direction, the wear of the buffer body 13 can be sufficiently prevented even when the wear resistant sheet 14 is provided only in the intermediate portion in the axial direction of the buffer body 13.
DESCRIPTION OF REFERENCE NUMERALS
[0030] 1 buffer stopper [0031] 11, 12 metal ring [0032] 13 buffer body [0033] 14 wear resistant sheet [0034] 2 housing [0035] 21a end surface [0036] 22a inner peripheral surface [0037] 3 shaft [0038] 31a end surface