IP Library Granted Patent US 9,702,425
Granted Patent B2
US 9,702,425 · App. 14/382,790 · Granted Jul 11, 2017

Rotary damper

Inventor: Atsushi Sakuta (Gifu, JP)
Assignee: KYB Corporation
F16F9/12F16F9/145F16F9/34F16F9/348F16F9/52
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Quick Facts
Patent No.
US 9,702,425
App. No.
14/382,790
Granted
Jul 11, 2017
Kind
B2
Abstract

A rotary damper includes: a shaft having a hollow portion; a pair of side panels; a case provided between the pair of side panels; a vane provided on the shaft so as to divide a first chamber and a second chamber; a liquid chamber defined within the hollow portion; a first partition wall and a second partition wall housed in the hollow portion; a first side valve chamber that is defined by the first partition wall; a second side valve chamber that is defined by the second partition wall; a first side port that connects the first side valve chamber to a second liquid chamber; a second side port that connects the second side valve chamber to the second liquid chamber; a first side damping valve capable of opening and closing the first side port; and a second side damping valve capable of opening and closing the second side port.

Claims (52)

1. A rotary damper, comprising:

a shaft that is provided to be capable of rotating about a central axis and has a hollow portion in an interior thereof;

a pair of side panels that support the shaft rotatably;

a case provided between the pair of side panels such that an operating chamber is defined in an interior thereof;

a vane provided on the shaft such that a tip end thereof slides against an inner periphery of the case, thereby dividing the operating chamber into a first chamber and a second chamber;

a liquid chamber defined within the hollow portion;

a partitioning member housed in the hollow portion and defining the liquid chamber, the partitioning member having an outer periphery in contact with an inner periphery of the hollow portion;

a first partition wall housed in the hollow portion and being separated from the partitioning member in an axial direction;

a second partition wall housed in the hollow portion and being separated from the first partition wall in the axial direction;

a first side valve chamber that is defined in the hollow portion between the first partition wall and the partitioning member, and communicates with the first chamber;

a second liquid chamber that is defined in the hollow portion between the first partition wall and the second partition wall, and in constant communication with the liquid chamber;

a second side valve chamber that is defined in the hollow portion by the second partition wall, and communicates with the second chamber;

a first side port provided in the first partition wall and connecting the first side valve chamber to the second liquid chamber;

a second side port provided in the second partition wall and connecting the second side valve chamber to the second liquid chamber;

a first side damping valve capable of opening and closing the first side port; and

a second side damping value capable of opening and closing the second side port.

2. The rotary damper as defined in claim 1 , wherein the liquid chamber and a pressurization mechanism that is configured to pressurize the liquid chamber are provided in the shaft.

3. The rotary damper as defined in claim 1 , wherein the first side damping valve and the second side damping valve are annular leaf valves that are attached to an outer periphery of a rod penetrating the first partition wall and the second partition wall, and are fixed to the first partition wall and the second partition wall, respectively.

4. The rotary damper as defined in claim 3 , further comprising:

a holder member that holds the rod and closes the second side valve chamber; and

an outer peripheral screw nut that is screwed to an inner periphery of the hollow portion and fixes the holder member to the hollow portion, wherein

a step portion is provided on the inner periphery of the hollow portion,

the holder member includes

an annular portion attached to the outer periphery of the rod, and

a fitting portion provided on an outer periphery of the annular portion and fitted to the hollow portion, and

the outer peripheral screw nut sandwiches the fitting portion of the holder member together with the step portion such that the fitting portion is fixed to the hollow portion.

5. A rotary damper, comprising:

a shaft that is provided to be capable of rotating about a central axis and has a hollow portion in an interior thereof;

a pair of side panels that support the shaft rotatably;

a case provided between the pair of side panels such that an operating chamber is defined in an interior thereof;

a vane provided on the shaft such that a tip end thereof slides against an inner periphery of the case, thereby dividing the operating chamber into a first chamber and a second chamber;

a liquid chamber defined within the hollow portion;

a partitioning member housed in the hollow portion and defining the liquid chamber, the partitioning member having an outer periphery in contact with an inner periphery of the hollow portion;

a first partition wall housed in the hollow portion and being separated from the partitioning member in an axial direction;

a second partition wall housed in the hollow portion and being separated from the first partition wall in the axial direction;

a first side valve chamber that is defined in the hollow portion between the first partition wall and the partitioning member, and communicates with the first chamber;

a second liquid chamber that is defined in the hollow portion between the first partition wall and the second partition wall, and communicates with the liquid chamber;

a second side valve chamber that is defined in the hollow portion by the second partition wall, and communicates with the second chamber;

a first side port provided in the first partition wall and connecting the first side valve chamber to the second liquid chamber;

a second side port provided in the second partition wall and connecting the second side valve chamber to the second liquid chamber;

a first side damping valve capable of opening and closing the first side port;

a second side damping valve capable of opening and closing the second side port;

a holder member that holds the rod and closes the second side valve chamber; and

an outer peripheral screw nut that is screwed to an inner periphery of the hollow portion and fixes the holder member to the hollow portion, wherein

the first side damping valve and the second side damping valve are annular leaf valves that are attached to an outer periphery of a rod penetrating the first partition wall and the second partition wall, and are fixed to the first partition wall and the second partition wall, respectively,

a step portion is provided on the inner periphery of the hollow portion,

the holder member includes

an annular portion attached to the outer periphery of the rod, and

a fitting portion provided on an outer periphery of the annular portion and fitted to the hollow portion,

the outer peripheral screw nut sandwiches the fitting portion of the holder member together with the step portion such that the fitting portion is fixed to the hollow portion, and

the hollow portion opens onto at least one end of the shaft, and one of the side panels covers the end of the shaft and forms, together with the holder member, an auxiliary liquid chamber that communicates with the liquid chamber.

6. The rotary damper as defined in claim 5 , wherein one of the side panels includes a fluid injection port which communicates with the auxiliary liquid chamber and through which a fluid is injectable into the liquid chamber, the second liquid chamber, the first chamber, and the second chamber.

Assignments (2)
CHANGE OF NAME Recorded Dec 21, 2015
From: KAYABA INDUSTRY CO., LTD.
To: KYB CORPORATION
Reel/Frame 037355/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2014
From: SAKUTA, ATSUSHI
To: KAYABA INDUSTRY CO., LTD.
Reel/Frame 033665/0138 →
Priority Claims (1)
JP 2012-047679 · Mar 5, 2012 · national
Continuity (1)
Related Publication 20150014105A1 · Jan 15, 2015