IP Library Granted Patent US 7,658,367
Granted Patent B2
US 7,658,367 · App. 11/588,354 · Granted Feb 9, 2010

Valve essentially gastight closing of a flow path

Assignee: VAT Holding AG
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Quick Facts
Patent No.
US 7,658,367
App. No.
11/588,354
Granted
Feb 9, 2010
Kind
B2
Abstract

The invention relates to a valve, in particular a pendulum or slide gate valve, for essentially gastight closing of a flow path (F). The valve includes a valve housing ( 1; 1 a ) having a first wall ( 2 ) which has a first opening ( 3 ) and a first valve seat ( 4 ), a valve disk ( 5 ) having a closing side ( 6 ) with a sealing ring ( 7 ) and at least one drive ( 8 ). Through drive ( 8 ), the valve disk ( 5 ) is pivotable or displaceable from an opened position (A) essentially parallel to the first valve seat ( 4 ), and the perpendicular distance between the valve disk ( 5 ), and the first valve seat ( 4 ) can be reduced so that, in the closed position (C), the flow path (F) is closed essentially gastight by an axially sealing contact between the sealing ring ( 7 ) and the first valve seat ( 4 ). The valve disk ( 5 ) includes an outer disk section ( 9 ), which is connected to the drive ( 8 ) and fixes the sealing ring ( 7 ) in the perpendicular direction to the first valve seat ( 4 ), and an inner disk section ( 10 ) which has an outer circumferential area ( 11 ) and which is mounted so as to be movable relative to the outer disk section ( 9 ) in a direction (Z) essentially perpendicular to the first valve seat ( 4 ). The outer circumferential area ( 11 ) is enclosed essentially gastight with an inner seal by the sealing ring ( 7 ). Thus, in the closed position (C), a pressure difference at the valve disk ( 5 ) acts essentially on the inner disk section ( 10 ) so that the inner disk section ( 10 ), decoupled from the outer disk section ( 9 ), is supported perpendicularly on a section of the valve housing ( 1 ), in particular the first valve seat ( 4 ) or a lateral groove ( 27 ).

Claims (38)

1. A valve for essentially gastight closing of a flow path (F), comprising

a valve housing ( 1 , 1 a ) having a first wall ( 2 ), which has a first opening ( 3 ) for the flow path (F) and a first valve seat ( 4 ) surrounding the first opening ( 3 ),

a valve disk ( 5 ) having a closing side ( 6 ) on which a sealing ring ( 7 , 7 a , 7 b , 7 c ) corresponding with the first valve seat ( 4 ) is arranged, and

at least one drive ( 8 ), by means of which

the valve disk ( 5 ) is pivotable or displaceable from an opened position (A) in which the flow path (F) is unobstructed to an intermediate position (B) essentially parallel to the first valve seat ( 4 ) over the cross-section of the first opening ( 3 ), wherein the sealing ring is perpendicularly displaced from the first wall ( 2 ) and first valve seat ( 4 ) during the displacement from the opened position to the intermediate position, and

the perpendicular distance between the valve disk ( 5 ) and the first valve seat ( 4 ) can be reduced from the intermediate position (B) to a closed position (C) in such a way that the flow path (F) is closed essentially gastight by an axially sealing contact between the sealing ring ( 7 , 7 a , 7 b , 7 c ) and the first valve seat ( 4 ),

wherein the valve disk ( 5 ) has

an outer disk section ( 9 , 9 a ) which

is connected to the drive ( 8 ) and

fixes the sealing ring ( 7 , 7 a , 7 b , 7 c ) in the perpendicular direction to the first valve seat ( 4 ), and

an inner disk section ( 10 ),

which has an outer circumferential area ( 11 ), which is mounted so as to be movable relative to the outer disk section ( 9 , 9 a ) and thus being decoupled from the outer disk section ( 9 , 9 a ) within a range of movement in a direction (Z) essentially perpendicular to the first valve seat ( 4 ) and

whose outer circumferential area ( 11 ) is enclosed essentially gastight with an inner seal by the sealing ring ( 7 , 7 a , 7 b , 7 c ), wherein the sealing ring ( 7 ) seals the connection between the inner disk section ( 10 ) and the outer disk section ( 9 , 9 a ) in a radial direction,

wherein, in the closed position (C), a pressure difference at the valve disk ( 5 ) acts essentially on the inner disk section ( 10 ), and the inner disk section ( 10 ) is supported perpendicularly on the valve housing ( 1 , 1 a ) and in a manner enabling displacement relative to the outer disk section ( 9 , 9 a ) within a range of movement.

2. The valve as claimed in claim 1 , wherein the outer disk section ( 9 ) has, on the closing side ( 6 ) in an edge region enclosing the inner disk section ( 10 ), a recess ( 13 ) which runs around the inside, holds the sealing ring ( 7 , 7 a , 7 b ) and has an undercut ( 14 ) fixing the sealing ring ( 7 , 7 a , 7 b ) in the perpendicular direction to the first valve seat ( 4 ).

3. The valve as claimed in claim 1 , wherein the sealing ring ( 7 c ) is fixed to an edge region of the closing side ( 6 ) of the outer disk section ( 9 a ) by adhesive force.

4. The valve as claimed in claim 3 , wherein the sealing ring ( 7 c ) is fixed to the edge region of the closing side ( 6 ) of the outer disk section ( 9 a ) by means of vulcanization.

5. The valve as claimed in claim 1 , wherein the sealing ring ( 7 ) is in the form of an O-ring.

6. The valve as claimed in claim 1 , wherein, in the case of a relative reduced pressure ( 25 ) on the closing side ( 6 ) of the valve disk ( 5 ), the inner disk section ( 10 ) is supported on the first valve seat ( 4 ) of the valve housing ( 1 ).

7. The valve as claimed in claim 1 , wherein

the valve housing ( 1 ) has, in an essentially parallel position opposite to the first wall ( 2 ) and to the first opening ( 3 ) and a distance away, a second wall ( 19 ) having a second opening ( 20 ) for the flow path (F) and a second valve seat ( 21 ) surrounding the second opening ( 20 ),

the valve disk ( 5 ) is pivotable or displaceable between the first opening ( 3 ) and the second opening ( 20 ) and

the inner disk section ( 10 ) is formed in such a way that, in the closed position (C) with a relative excess pressure ( 26 ) on the closing side ( 6 ) of the valve disk ( 5 ), the inner disk section ( 10 ) is supported perpendicularly, essentially decoupled from the outer disk section ( 9 , 9 a ), on the second valve seat ( 21 ).

8. The valve as claimed in claim 7 , wherein the inner disk section ( 10 ) has a support frame ( 22 ) which extends perpendicularly to the second valve seat ( 21 ) and by means of which support on the second valve seat ( 21 ) is provided in the case of the relative excess pressure ( 26 ).

9. The valve as claimed in claim 1 , comprising an inner lateral groove ( 27 ) in the valve housing ( 1 a ), which lateral groove ( 27 ) is formed and arranged in such a way that

at least a partial section of the inner disk section ( 10 )—projects in the closed position (C) into the lateral groove ( 27 ) and

the inner disk section ( 10 ) is supported on the valve housing ( 1 a ), on a lateral area ( 28 ; 29 ) of the lateral groove ( 27 ).

10. The valve as claimed in claim 1 , comprising resilient means, which are arranged in such a way—acting between the outer disk section ( 9 , 9 a ) and the inner disk section ( 10 )—that the inner disk section ( 10 ) in the closed position (C), with relative pressure equality at the valve, rests on the valve housing ( 1 ; 1 a ).

11. The valve as claimed in claim 10 , wherein the resilient means comprise at least one spring ( 15 ).

12. The valve as claimed in claim 1 , wherein the valve disk(S) has on the side ( 17 ) opposite to the closing side ( 6 ), a strut system ( 16 ) which connects the outer disk section ( 9 , 9 a ) to an arm ( 23 ), which is connected to the drive ( 8 ), in a central region located close to the central axis ( 18 ) of the first opening ( 3 ).

13. The valve as claimed in claim 12 , comprising a ball joint ( 24 ) which connects the arm ( 23 ) to the strut system ( 16 ) in such a way that the valve disk ( 5 ) is aligned parallel with the first valve seat ( 4 ) on pressing the sealing ring ( 7 , 7 a , 7 b , 7 c ) onto the first valve seat ( 4 ).

14. The valve as claimed in claim 1 , wherein

the valve is in the form of a pendulum valve and

the drive ( 8 ) is formed in such a way that the valve disk ( 5 ) is pivotable essentially parallel over the cross-section of the first opening ( 3 ).

15. The valve as claimed in claim 1 , wherein

the valve is in the form of a slide gate valve and

the drive ( 8 ) is formed in such a way that the valve disk ( 5 ) is displaceable essentially parallel over the cross-section of the first opening ( 3 ).

16. The valve of claim 9 wherein a support frame arranged on the inner disk section projects in the closed position into the lateral groove.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Oct 17, 2017
From: UBS AG, STAMFORD BRANCH
To: VAT HOLDING AG
Reel/Frame 044218/0314 →
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2016
From: UBS AG, STAMFORD BRANCH, AS COLLATERAL AGENT
To: VAT HOLDING AG
Reel/Frame 040186/0654 →
SECURITY INTEREST Recorded May 23, 2014
From: VAT HOLDING AG
To: UBS AG, STAMFORD BRANCH
Reel/Frame 033007/0131 →
IP PLEDGE AGREEMENT Recorded May 23, 2014
From: VAT HOLDING AG
To: UBS AG, STAMFORD BRANCH
Reel/Frame 033013/0289 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Feb 11, 2014
From: VAT HOLDING AG
To: UBS AG, STAMFORD BRANCH
Reel/Frame 032250/0457 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2007
From: GEISER, FRIEDRICH
To: VAT HOLDING AG
Reel/Frame 018884/0124 →
Continuity (2)
Continuation In Part 1131143400 · Dec 20, 2005
Related Publication 20070138425A1 · Jun 21, 2007