Valve device

US11079028B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11079028-B2
Application numberUS-202016805982-A
CountryUS
Kind codeB2
Filing dateMar 2, 2020
Priority dateMar 6, 2019
Publication dateAug 3, 2021
Grant dateAug 3, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A sleeve member of a movable unit has a first pressure receiving surface and a second pressure receiving surface. The first pressure receiving surface receives a first fluid pressure in an axial direction opposite to a biasing force of a spring, when a valve member closes a seat opening portion. The second pressure receiving surface receives a second fluid pressure in the same axial direction to a direction of the biasing force of the spring, when the valve member closes the seat opening portion. A first surface area and a second surface area are made to be equal to each other. Each of the first and the second surface areas is an area of a projected portion on a virtual plane perpendicular to the axial direction. Each of the projected portions is obtained when each of the first and the second pressure receiving surfaces is projected to the virtual plane.

First claim

Opening claim text (preview).

What is claimed is: 1. A valve device for increasing or decreasing a flow amount of fluid comprising: a valve housing; a movable unit movably provided in the valve housing in its axial direction and having a fluid flow passage extending in the axial direction so that the fluid flows through the fluid flow passage, the movable unit further having a valve seat surface formed around a seat opening portion which is formed at an axial-inner end of the fluid flow passage in the axial direction; a valve member rotatably provided in the valve housing and having a valve surface, which is opposed to and in contact with the valve seat surface in the axial direction, wherein the valve member operatively opens or closes the seat opening portion; and a biasing member for generating a biasing force to bias the movable unit in the axial direction to the valve member, so that the biasing member pushes the valve seat surface to the valve surface by the biasing force, wherein the fluid flows through the fluid flow passage from an axial-outer side to an axial-inner side of the axial direction when the valve member opens the seat opening portion, wherein the movable unit has a first pressure receiving surface and a second pressure receiving surface, wherein the first pressure receiving surface receives a first fluid pressure from the fluid in the axial direction opposite to a direction of the biasing force, when the valve member closes the seat opening portion, wherein the second pressure receiving surface receives a second fluid pressure from the fluid in the axial direction opposite to a direction of the first fluid pressure, when the valve member closes the seat opening portion, wherein a first surface area and a second surface area is equal to each other, wherein each of the first surface area and the second surface area is an area of a projected portion on a virtual plane perpendicular to the axial direction, wherein each of the projected portions is obtained when each of the first and the second pressure receiving surfaces is projected to the virtual plane in the axial direction, wherein the valve device further comprises: a sleeve sealing member of an annular shape; and a seal holding member for holding the sleeve sealing member on an axial-inner side of the sleeve sealing member, wherein the movable unit includes a cylindrical portion extending in the axial direction and forming the fluid flow passage in an inside of the cylindrical portion, wherein the valve housing has; a spacer member provided at an outside of the cylindrical portion in a radial direction thereof and surrounding the cylindrical portion; and a plate supporting portion formed at a position of an axial-inner side of the seal holding member and opposing to a part of the seal holding member in the axial direction, wherein the sleeve sealing member is arranged at the outside of the cylindrical portion in the radial direction for sealing a radial gap between the cylindrical portion and the spacer member, and wherein the plate supporting portion restricts a movement of the sleeve sealing member in the axial direction to the axial-inner side, when the sleeve sealing member is brought into contact with the plate supporting portion. 2. The valve device according to claim 1 , wherein the movable unit includes a seat holding portion extending from the cylindrical portion in a radial outward direction thereof, the biasing member is composed of a spring, which is arranged at an axial-inner side of the seal holding member, and the biasing member is held between the seal holding member and the seat holding portion in a compressed condition in the axial direction. 3. The valve device according to claim 1 , wherein the movable unit includes a valve seat member having the valve seat surface, and the cylindrical portion is integrally formed with the valve seat member as one piece. 4. The valve device according to claim 1 , wherein the sleeve sealing member is composed of an X-ring or an O-ring. 5. A valve device for increasing or decreasing a flow amount of fluid comprising: a valve housing; a movable unit movably provided in the valve housing in its axial direction and having a fluid flow passage extending in the axial direction so that the fluid flows through the fluid flow passage, the movable unit further having a valve seat surface formed around a seat opening portion which is formed at an axial-inner end of the fluid flow passage in the axial direction; a valve member rotatably provided in the valve housing, and having a valve surface, which is opposed to and in contact with the valve seat surface in the axial direction, wherein the valve member operatively opens or closes the seat opening portion; and a biasing member for generating a biasing force to bias the movable unit in the axial direction to the valve member, so that the biasing member pushes the valve seat surface to the valve surface by the biasing force, wherein the fluid flows through the fluid flow passage from an axial-outer side to an axial-inner side of the axial direction when the valve member opens the seat opening portion, wherein the movable unit has a first pressure receiving surface and a second pressure receiving surface, wherein the first pressure receiving surface receives a first fluid pressure from the fluid in the axial direction opposite to a direction of the biasing force, when the valve member closes the seat opening portion, wherein the second pressure receiving surface receives a second fluid pressure from the fluid in the axial direction opposite to a direction of the first fluid pressure, when the valve member closes the seat opening portion, wherein a first surface area and a second surface area is equal to each other, wherein each of the first surface area and the second surface area is an area of a projected portion on a virtual plane perpendicular to the axial direction, wherein each of the projected portions is obtained when each of the first and the second pressure receiving surfaces is projected to the virtual plane in the axial direction, wherein the valve device further comprises: a sleeve sealing member of an annular shape; and a seal holding member for holding the sleeve sealing member on an axial-inner side of the sleeve sealing member, wherein the movable unit includes a cylindrical portion extending in the axial direction and forming the fluid flow passage in an inside of the cylindrical portion, wherein the valve housing includes a spacer member provided at an outside of the cylindrical portion in a radial direction thereof and surrounding the cylindrical portion, wherein the sleeve sealing member is arranged at the outside of the cylindrical portion in the radial direction for sealing a radial gap between the cylindrical portion and the spacer member, and wherein the seal holding member is fixed to the valve housing. 6. A valve device for increasing or decreasing a flow amount of fluid comprising a valve housing; a movable unit movably provided in the valve housing in its axial direction and having a fluid flow passage extending in the axial direction so that the fluid flows through the fluid flow passage, the movable unit further having a valve seat surface formed around a seat opening portion which is formed at an axial-inner end of the fluid flow passage in the axial direction; a valve member rotatably provided in the valve housing and having a valve surface, which is opposed to and in contact with the valve seat surface in the axial direction, wherein the valve member operatively opens or closes the seat opening portion; and a biasing member for generating a biasing force to bias the movable unit in the axial direction to the valve member so that the biasing member pushes the valve seat surfa

Assignees

Inventors

Classifications

  • actuated by fluid ({fluid-actuated lift valves F16K1/126} ; fluid-actuated check valves F16K15/00; fluid-actuated safety valves F16K17/00) · CPC title

  • the coolant being liquid · CPC title

  • with the housing or parts of the housing mechanically pressing the seal against the plug · CPC title

  • one connecting conduit having the same axis as the spindle · CPC title

  • with spherical plugs · CPC title

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What does patent US11079028B2 cover?
A sleeve member of a movable unit has a first pressure receiving surface and a second pressure receiving surface. The first pressure receiving surface receives a first fluid pressure in an axial direction opposite to a biasing force of a spring, when a valve member closes a seat opening portion. The second pressure receiving surface receives a second fluid pressure in the same axial direction t…
Who is the assignee on this patent?
Denso Corp
What technology area does this patent fall under?
Primary CPC classification F16K11/0876. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 03 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).