IP Library Granted Patent US 7,134,638
Granted Patent B2
US 7,134,638 · App. 11/041,060 · Granted Nov 14, 2006

Stop valve for gas tank

Assignees: Toyooki Kogyo Co., Ltd.; Toyoda Koki Kabushiki Kaisha
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Quick Facts
Patent No.
US 7,134,638
App. No.
11/041,060
Granted
Nov 14, 2006
Kind
B2
Abstract

A stop valve for a gas tank is provided which achieves favorable sealing performance by inhibiting rotation of a sealing member attached to a valve element. A passage is formed inside a valve body, and a valve seat is provided in the passage. The valve element which is engaged and disengaged from the valve seat is slidably inserted to a sliding hole bored in the valve body. The annular sealing member is arranged in sliding contact with the outer peripheral surface of the valve element and the inner peripheral surface of the sliding hole. A screw hole connecting to the sliding hole and coaxial thereto is provided in the valve body. A rotating operation member having a male screw is rotatably screwed into the screw hole from the outside of the valve body. One end of the rotating operation member is made to abut the valve body.

Claims (44)

1. A stop valve that opens and closes a passage connected to a high-pressure gas tank, the stop valve comprising:

a valve body comprising

the passage including a valve seat formed within the passage; and

a female threaded portion including a central axis formed coincident to

a central axis of a sliding hole portion;

a valve element comprising an annular sealing member;

a rotating operation member comprising a male threaded portion; and

an urging member;

wherein the valve element slidably interacts with the sliding hole portion of the valve body so as to engage and disengage an end of the valve element with the valve seat and correspondingly close and open the passage;

the annular sealing member slidably seals an outer circumferential surface of the valve element and an inner circumferential surface of the sliding hole portion of the valve body;

the male threaded portion of the rotating operation member is threadably fastened to the corresponding female threaded portion of the valve body;

the urging member biases the valve element away from the valve seat and causes contact between the rotating operation member and the valve element;

the rotating operation member has an axis of rotation substantially coincident to a longitudinal centerline of the valve element;

one end of the rotating operation member abuts on an other end of the valve element opposite to the end of the valve element opposing the valve seat at a point of contact centered about the axis of rotation of the rotating operation member;

rotation of the rotating operation member causes the valve element to slidably interact with the sliding hole portion of the valve body;

the one end of the rotating operation member directly opposing the valve element is in a substantially hemispherical shape; and

the other end of the valve element directly opposing the rotating operation member is substantially planar.

2. The stop valve according to claim 1 whereby the valve element is made from SUS316L.

3. The stop valve according to claim 1 , whereby the rotating operation member is locked in a desired rotation position by a locking nut.

4. The stop valve according to claim 1 , whereby the urging member is a spring.

5. The stop valve according to claim 1 , whereby the annular sealing member is an O-ring; and

the annular sealing member is attached to the valve element and slidably engages the inner circumferential surface of the sliding hole portion of the valve body.

6. A stop valve that opens and closes a passage connected to a high-pressure gas tank, the stop valve comprising:

a valve body comprising

the passage including a valve seat formed within the passage; and

a female threaded portion including a central axis formed coincident to a

central axis of a sliding hole portion;

a valve element comprising an annular sealing member;

a rotating operation member comprising a male threaded portion; and

an urging member;

wherein the valve element slidably interacts with the sliding hole portion of the valve body so as to engage and disengage an end of the valve element with the valve seat and correspondingly close and open the passage;

the annular sealing member slidably seals an outer circumferential surface of the valve element and an inner circumferential surface of the sliding hole portion of the valve body;

the male threaded portion of the rotating operation member is threadably fastened to the corresponding female threaded portion of the valve body;

the urging member biases the valve element away from the valve seat and causes contact between the rotating operation member and the valve element;

the rotating operation member has an axis of rotation substantially coincident to a longitudinal centerline of valve element;

one end of the rotating operation member abuts on an other end of the valve element opposite to the end of the valve element opposing the valve seat at a point of contact centered about the axis of rotation of the rotating operation member;

rotation of the rotating operation member causes the valve element to slidably interact with the sliding hole portion of the valve body;

the one end of the rotating operation member directly opposing the valve element is substantially planar; and

the other end of the valve element directly opposing the rotating operation member is substantially hemispherical in shape.

7. The stop valve according to claim 6 , whereby the rotating operation member is locked in a desired rotation position by a locking nut.

8. The stop valve according to claim 6 , whereby the valve element is made from SUS316L.

9. The stop valve according to claim 6 , whereby the urging member is a spring.

10. The stop valve according to claim 6 , whereby the annular sealing member is an O-ring; and

the annular sealing member is attached to the valve element and slidably engages the inner circumferential surface of the sliding hole portion of the valve body.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2010
From: JTEKT CORPORATION
To: TOYOOKI KOGYO CO., LTD
Reel/Frame 024563/0198 →
CHANGE OF NAME Recorded Jun 14, 2010
From: KOYO SEIKO CO., LTD.
To: JTEKT CORPORATION
Reel/Frame 024529/0088 →
MERGER Recorded Jun 8, 2010
From: TOYODA KOKI KABUSHIKI KAISHA
To: KOYO SEIKO CO., LTD.
Reel/Frame 024492/0428 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2005
From: KAMIYA, TADAYOSHI; SHIRAI, SOICHI; SHIRAI, NOBUYUKI; SHIMA, TOSHIHIKO; SUZUKI, HIROAKI; TAKEUCHI, YOSHIYUKI
To: TOYOOKI KOGYO CO., LTD.; TOYODA KOKI KABUSHIKI KAISHA
Reel/Frame 015666/0461 →
Priority Claims (1)
JP 2004-020339 · Jan 28, 2004 · national
Continuity (1)
Related Publication 20050161627A1 · Jul 28, 2005