IP Library › Granted Patent US 8,261,894
Granted Patent B2
US 8,261,894 · App. 10/598,904 · Granted Sep 11, 2012

Rotary damper

Assignee: Kabushiki Kaisha Somic Ishikawa
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Quick Facts
Patent No.
US 8,261,894
App. No.
10/598,904
Granted
Sep 11, 2012
Kind
B2
Abstract

The present invention provides a rotary damper in which both yields and braking characteristics can be enhanced. The rotary damper of the invention includes a valve mechanism which comprises an operating chamber 7 through which fluid can pass, a valve body 8 which forwardly moves from a natural state position when the valve body 8 receives fluid pressure and which can forwardly moves in the operating chamber 7 , and a first spring 9 capable of giving a resistance to the forward movement of the valve body 8 . The valve mechanism can reduce a flow rate of fluid which passes through the operating chamber 7 by a flow path 14 formed between the valve body 8 and a peripheral wall 7 a of the operating chamber 7 . A reducing amount of fluid can be increased as a moving distance of the valve body 8 which forwardly moves in the operating chamber 7 is increased.

Claims (25)

1. A rotary damper, comprising

a valve mechanism, wherein the valve mechanism comprises

an operating chamber through which fluid can pass,

a valve chamber formed adjacently to the operating chamber,

a valve body which is placed in the valve chamber, and

a first spring mounted in the operating chamber,

wherein the damper is structured and arranged to apply fluid pressure behind the valve body which increases in proportion to a load,

wherein the valve body is structured and arranged to move forward into the operating chamber upon receiving the pressure of the fluid,

wherein the first spring is structured and arranged to provide a resistance to the forward movement of the valve body so that the valve body moves according to the pressure of the fluid,

wherein the valve mechanism further comprises a flow path which is formed by the forward movement of the valve body,

wherein the flow path is formed between an inner peripheral surface of a peripheral wall of the operating chamber and an outer peripheral surface of the valve body by the forward movement of the valve body,

wherein the damper is structured and arranged such that the fluid moves only through the flow path when moving from the valve chamber to the operating chamber, and

wherein a length of the flow path becomes longer as the valve body moves forwardly.

2. The rotary damper according to claim 1 ,

wherein the valve mechanism further comprises a second spring which is placed behind the valve body, and

wherein the second spring is structured and arranged to return the valve body to a natural state position which is a position where the valve body exists when no load is applied.

3. The rotary damper according to claim 1 , further comprising,

a pushing member which pushes the fluid by rotational motion,

a partitioning member which partitions a space into which fluid is charged, and

a shaft around which the pushing member or the partitioning member is provided, wherein the valve mechanism is provided in the shaft.

4. The rotary damper according to claim 1 , further comprising

a pushing member which pushes the fluid by rotational motion, and

a partitioning member which partitions a space into which fluid is charged, and

wherein the valve mechanism is provided in the pushing member or the partitioning member.

5. A product comprising a movable body and a rotary damper which controls motion of the movable body, wherein the rotary damper is that described in any one of the claims 1 and 2 to 4 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2021
From: KABUSHIKI KAISHA SOMIC ISHIKAWA
To: SOMIC MANAGEMENT HOLDINGS INC.
Reel/Frame 058443/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2006
From: KANNO, HIDENORI; SHIMURA, RYOTA; ITAGAKI, MASANORI
To: KABUSHIKI KAISHA SOMIC ISHIKAWA
Reel/Frame 018261/0483 →
Priority Claims (2)
JP 2004-104793 · Mar 31, 2004 · national
JP 2004-313639 · Oct 28, 2004 · national
Continuity (1)
Related Publication 20070158153A1 · Jul 12, 2007