IP Library Granted Patent US 8,939,437
Granted Patent B2
US 8,939,437 · App. 13/123,134 · Granted Jan 27, 2015

Anti-vibration device

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Quick Facts
Patent No.
US 8,939,437
App. No.
13/123,134
Granted
Jan 27, 2015
Kind
B2
Abstract

An anti-vibration device includes a pair of anti-vibration rubbers, each having an outer cylinder connected to any one of a vibration generating body and a vibration receiving body by means of a bracket member and provided with a first flange portion formed on an end portion of an outer side of the outer cylinder in an axial direction to protrude toward an outer side in a radial direction; an inner cylinder connected to the other of the vibration generating body and the vibration receiving body by means of a plate member and disposed at an inner side of the outer cylinder; and a main body rubber disposed between the outer cylinder and the inner cylinder, wherein the pair of anti-vibration rubbers is connected to the bracket member by interposing the bracket member between both sides of the pair of first flange portions in the axial direction so that the inner ends in the axial direction are opposite to each other, and a pair of plate members respectively disposed at outer sides of the pair of main body rubbers in the axial direction is pushed to the inner side in the axial direction by means of a coupling member passing through one pair of the inner cylinders so that the pair of anti-vibration rubbers is interposed between both sides in the axial direction by means of the plate members, and wherein a first stopper rubber made of a rubber material having a hardness equal to or greater than that of the rubber material of the main body rubber is fixed to any one of an inner peripheral surface of the outer cylinder and an outer peripheral surface of the inner cylinder while keeping a gap in the radial direction between the inner peripheral surface of the outer cylinder and the outer peripheral surface of the inner cylinder.

Claims (24)

1. An anti-vibration device, comprising:

a pair of anti-vibration rubbers, each having:

an outer cylinder connected to any one of a vibration generating body and a vibration receiving body by means of a bracket member and provided with a first flange portion formed on an end portion of an outer side of the outer cylinder in an axial direction to protrude toward an outer side in a radial direction;

an inner cylinder connected to the other of the vibration generating body and the vibration receiving body by means of a plate member and disposed at an inner side of the outer cylinder; and

a main body rubber disposed between the outer cylinder and the inner cylinder,

wherein the pair of anti-vibration rubbers is connected to the bracket member by interposing the bracket member between both sides of the pair of first flange portions in the axial direction so that the inner ends of the pair of anti-vibration rubbers in the axial direction are opposite to each other, and a pair of plate members respectively disposed at outer sides of the pair of main body rubbers in the axial direction is pushed to the inner side in the axial direction by means of a coupling member passing through one pair of the inner cylinders so that the pair of anti-vibration rubbers is interposed between both sides in the axial direction by means of the plate members,

wherein a first stopper rubber made of a rubber material having a hardness equal to or greater than that of the rubber material of the main body rubber is fixed to any one of an inner peripheral surface of the outer cylinder and an outer peripheral surface of the inner cylinder while keeping a gap in the radial direction between the inner peripheral surface of the outer cylinder and the outer peripheral surface of the inner cylinder,

wherein the first stopper rubber supports the main body rubber,

wherein a second flange portion protruding toward the inner side in the radial direction is formed at an end portion of an inner side of the outer cylinder in the axial direction, and

wherein the first stopper rubber is fixed to the second flange portion to support the main body rubber from the inner side in the axial direction and protrudes more inwardly in the radial direction than an inner peripheral edge of the second flange portion.

2. The anti-vibration device according to claim 1 , wherein, in the other of the inner peripheral surface of the outer cylinder and the outer peripheral surface of the inner cylinder, a region opposite to the first stopper rubber in the radial direction is covered with a coating member made of a rubber material.

3. The anti-vibration device according to claim 1 ,

wherein the main body rubber is made of a rubber material having a dynamic ratio lower than that of the rubber material of the first stopper rubber, and

wherein the first stopper rubber is made of a rubber material having a higher loss tangent than that of the rubber material of the main body rubber.

4. The anti-vibration device according to claim. 1 ,

wherein a second stopper rubber made of a rubber material having a hardness equal to or greater than that of the rubber material of the main body rubber and supporting the main body rubber from the outer side in the radial direction is fixed to an outer surface of the first flange portion facing toward the outer side in the axial direction, and

wherein a gap in the axial direction is formed between the second stopper rubber and the plate member.

5. The anti-vibration device according to claim 4 , wherein a region of the first flange portion where the second stopper rubber is fixed is enlarged toward the outer side in the axial direction.

6. The anti-vibration device according to claim 4 , wherein the first stopper rubber and the second stopper rubber are integrally formed with the same rubber material.

7. The anti-vibration device according to claim 4 , further comprising a stopper formed by bending back the outer peripheral end of the first flange portion in the radial direction toward the outer side in the axial direction,

wherein the second stopper rubber is fixed to the outer surface of the stopper toward the inner side in the radial direction so that the second stopper rubber is supported from the outer side in the radial direction, and the second stopper rubber extends to more outer side in the axial direction than the stopper.

8. The anti-vibration device according to claim 6 , further comprising a stopper formed by bending back the outer peripheral end of the first flange portion in the radial direction toward the outer side in the axial direction,

wherein the second stopper rubber is fixed to the outer surface of the stopper facing toward the inner side in the radial direction so that the second stopper rubber is supported from the outer side in the radial direction, and the second stopper rubber extends to more outer side in the axial direction than the stopper.

9. The anti-vibration device according to claim. 1 , further comprising a second flange portion protruding toward the inner side in the radial direction is formed at an end portion of the inner side of the outer cylinder in the axial direction, and the first stopper rubber is vulcanized and adhered to the second flange portion and supports the main body rubber from the inner side in the axial direction.

Assignments (2)
ABSORPTION-TYPE COMPANY SPLIT Recorded Jun 24, 2022
From: BRIDGESTONE CORPORATION
To: PROSPIRA CORPORATION
Reel/Frame 060439/0890 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2011
From: KOBORI, TATSUYA
To: BRIDGESTONE CORPORATION
Reel/Frame 026093/0070 →