IP Library Granted Patent US 7,350,775
Granted Patent B2
US 7,350,775 · App. 11/687,237 · Granted Apr 1, 2008

Method of manufacturing a fluid-filled cylindrical damping assembly

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Quick Facts
Patent No.
US 7,350,775
App. No.
11/687,237
Granted
Apr 1, 2008
Kind
B2
Abstract

A method of manufacturing a fluid-filled cylindrical damping assembly having sufficiently large extraction-resisting force in an axial direction of a metallic shaped product and an intermediate sleeve by the process following. There is provided a sealing rubber layer at an inner circumferential surface of the metallic shaped product having a tapered cylindrical shape where the inner flange portion is provided at an end portion of a small-diameter side. At least one concave groove is formed at an inside surface of an inner flange portion The metallic shaped product is inserted on an outer circumferential surface of an intermediate molded-body in a non-compressible fluid, and is diameter-reduced so as to be fitted and fixed. A large-diameter side end portion of the metallic shaped product is radially inwardly bent to form an engaging portion, and the engaging portion is engaged with a large-diameter side end portion of the intermediate sleeve.

Claims (20)

1. A method of manufacturing a fluid-filled cylindrical damping assembly comprising:

a shaft member;

an intermediate sleeve disposed radially outwardly of the shaft member with a predetermined radial spacing therebetween;

a main elastic rubber body interposed between the shaft member and the intermediate sleeve, and connecting the shaft member and the intermediate sleeve;

an outer cylindrical metal member inserted on an outer circumferential surface of the intermediate sleeve, provided a sealing rubber layer on an inner circumferential surface thereof, and being fitted and fixed to the intermediate sleeve;

an engaging portion formed by radially inwardly bending an end portion of one side in an axial direction of the outer cylindrical metal member;

an inner flange portion integrally formed at an end portion of the other side in the axial direction of the outer cylindrical metal member; and

a plurality of fluid chambers provided between the outer cylindrical metal member and the shaft member, defined at least a part of a wall portion thereof by the main elastic rubber body and the sealing rubber layer, and filled with a non-compressible fluid, wherein the engaging portion is engaged with end portion of one side in an axial direction of the intermediate sleeve, while the inner flange portion is contacted to and engaged with an end portion of the other side in the axial direction of the intermediate sleeve, the method comprising the steps of:

providing an intermediate molded-body formed of an integrally vulcanized product wherein the shaft member and the intermediate sleeve are connected by main elastic rubber body disposed therebetween, and wherein the end portion of the other side in the axial direction of the intermediate sleeve is formed to have a diameter smaller than a diameter of the end portion of the one side in the axial direction of the intermediate sleeve;

providing a metallic shaped product having a tapered cylindrical shape to provide the outer cylindrical metal member, being formed so that the diameter thereof decreases gradually from the one side in an axial direction towards the other side, and wherein the inner flange portion is integrally formed at the end portion of the small diameter side;

forming the sealing rubber layer on an inner circumferential surface of the metallic shaped product;

providing at least one concave groove at an inside surface of the inner flange portion of the metallic shaped product, respectively opening on an inside surface and at an inside in a radial direction, while extending in the radial direction; and

engaging the engaging portion with an end portion of a large-diameter side of the intermediate sleeve in the non-compressible fluid, wherein the engaging step comprises the steps of:

inserting the metallic shaped product provided with the at least one concave groove, on an outer circumferential surface of the intermediate molded-body;

contacting and engaging the inside surface of the inner flange portion of the metallic shaped product with an end surface of the small-diameter side of the intermediate sleeve in the intermediate molded-body;

performing a diameter-reducing operation on the metallic shaped product after assembling the metallic shaped product and the intermediate molded-body;

fitting and fixing the metallic shaped product on the intermediate sleeve; and

forming the engaging portion by means of inwardly bending an end portion of the large-diameter side of the metallic shaped product in the radial direction.

2. The method of manufacturing a fluid-filled cylindrical damping assembly according to claim 1 , wherein the sealing rubber layer is provided with a predetermined thickness on the inside surface of the inner flange portion of the metallic shaped product, and the at least one concave groove is formed in a surface opposite to the inner flange portion side of the sealing rubber layer provided on the inside surface of the inner flange portion.

3. The method of manufacturing a fluid-filled cylindrical damping assembly according to claim 1 , wherein the diameter-reducing operation for the metallic shaped product after performing an assembling operation of the metallic shaped product and the intermediate molded-body is performed in a manner such that an end portion at a side of the metallic shaped product where the inner flange portion is formed is formed to have a smaller diameter than a diameter of an end portion at a side opposite thereto.

Assignments (2)
CHANGE OF NAME Recorded Oct 20, 2014
From: TOKAI RUBBER INDUSTRIES, LTD.
To: SUMITOMO RIKO COMPANY LIMITED
Reel/Frame 034016/0613 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2007
From: SATO, YUJI; KATO, KAZUHIKO
To: TOKAI RUBBER INDUSTRIES, LTD.
Reel/Frame 019024/0308 →