Check valve element and check valve using the same

US9739386B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9739386-B2
Application numberUS-201514872855-A
CountryUS
Kind codeB2
Filing dateOct 1, 2015
Priority dateApr 3, 2013
Publication dateAug 22, 2017
Grant dateAug 22, 2017

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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.

Provided is a check valve element enabling efficient supply of fluid while suppressing the occurrence of chattering. The check valve element is provided to be displaceable upstream and downstream in a downstream flow path extending downstream from a valve seat having an opening for introducing a fluid and is pressed against the valve seat by a pre-closing urging force applied thereto toward an upstream side. The check valve element has an arresting portion provided on an outer peripheral surface thereof, a sliding resistance imparting member support portion supporting a sliding resistance imparting member such that the sliding resistance imparting member slides along the wall of the downstream flow path when the check valve element is displaced upstream and downstream, and an urging member support portion supporting an urging member urged upstream so that the urging member urges the sliding resistance imparting member upstream, thereby causing the sliding resistance imparting member to increase in outer diameter while being arrested by the arresting portion.

First claim

Opening claim text (preview).

What is claimed is: 1. A check valve comprising: a housing having a valve seat and a downstream flow path, wherein the valve seat has an opening for introducing a fluid from an upstream flow path and the downstream flow path is defined by a tubular wall extending downstream from the valve seat; a check valve element provided to be displaceable upstream and downstream in the downstream flow path; an urging member provided to press the check valve element against the valve seat with a pre-closing urging force applied thereto toward an upstream side; and a sliding resistance imparting member; the check valve element comprising: an arresting portion provided on an outer peripheral surface of the check valve element; a sliding resistance imparting member support portion downstream adjacent to the arresting portion on the outer peripheral surface, the sliding resistance imparting member support portion being configured to support the sliding resistance imparting member, which is provided thereover, such that the sliding resistance imparting member slides along the tubular wall when the check valve element is displaced upstream and downstream; and an urging member support portion downstream of the sliding resistance imparting member support portion on the outer peripheral surface, the urging member support portion being configured to support the urging member; wherein the urging member is provided over the urging member support portion of the check valve element to urge the sliding resistance imparting member upstream, thereby causing the sliding resistance imparting member to increase in outer diameter while being arrested by the arresting portion; the urging member having: an engaging member engageable with the sliding resistance imparting member; and a spring member pressing the engaging member toward the sliding resistance imparting member from a downstream side; wherein the engaging member is provided over the outer peripheral surface of the check valve element displaceably toward the upstream side and has a projection on an inner peripheral surface thereof slidable along the outer peripheral surface of the check valve element; wherein the check valve element has a recess on the outer peripheral surface, the recess longitudinally displaceably receiving the projection of the engaging member, the recess having a front end edge for stopping forward displacement of the engaging member by engagement of the projection with the front end edge. 2. The check valve of claim 1 , wherein the engaging member has a pressing portion engageable with the sliding resistance imparting member from a downstream side, the pressing portion having an annular pressing surface surrounding the outer peripheral surface of the check valve element and engageable with the sliding resistance imparting member from the downstream side, the pressing surface being tapered toward the upstream side. 3. The check valve of claim 1 , wherein the sliding resistance imparting member is in a shape of a split ring split at a circumferential point thereof. 4. The check valve of claim 3 , wherein the sliding resistance imparting member is in an annular shape surrounding the outer peripheral surface of the check valve element and has an outer peripheral surface slidable along the tubular wall and a recess formed on the outer peripheral surface of the sliding resistance imparting member to form a gap between the recess and the tubular wall. 5. The check valve of claim 2 , wherein the sliding resistance imparting member is in a shape of a split ring split at a circumferential point thereof. 6. The check valve of claim 5 , wherein the sliding resistance imparting member is in an annular shape surrounding the outer peripheral surface of the check valve element and has an outer peripheral surface slidable along the tubular wall and a recess formed on the outer peripheral surface of the sliding resistance imparting member to form a gap between the recess and the tubular wall. 7. A check valve comprising: a housing having a valve seat and a downstream flow path, wherein the valve seat has an opening for introducing a fluid from an upstream flow path and the downstream flow path is defined by a tubular wall extending downstream from the valve seat; a check valve element provided to be displaceable upstream and downstream in the downstream flow path; an urging member provided to press the check valve element against the valve seat with a pre-closing urging force applied thereto toward an upstream side; and a sliding resistance imparting member; the check valve element comprising: an arresting portion provided on an outer peripheral surface of the check valve element; a sliding resistance imparting member support portion downstream adjacent to the arresting portion on the outer peripheral surface, the sliding resistance imparting member support portion being configured to support the sliding resistance imparting member, which is provided thereover, such that the sliding resistance imparting member slides along the tubular wall when the check valve element is displaced upstream and downstream; and an urging member support portion downstream of the sliding resistance imparting member support portion on the outer peripheral surface, the urging member support portion being configured to support an urging member; wherein the urging member is provided over the urging member support portion of the check valve element to urge the sliding resistance imparting member upstream, thereby causing the sliding resistance imparting member to increase in outer diameter while being arrested by the arresting portion; the urging member having: an engaging member engageable with the sliding resistance imparting member; and a spring member pressing the engaging member toward the sliding resistance imparting member from a downstream side; wherein the engaging member has a pressing portion engageable with the sliding resistance imparting member from a downstream side, the pressing portion having an annular pressing surface surrounding the outer peripheral surface of the check valve element and engageable with the sliding resistance imparting member from the downstream side, the pressing surface being tapered toward the upstream side. 8. The check valve of claim 7 , wherein the sliding resistance imparting member is in a shape of a split ring split at a circumferential point thereof. 9. The check valve of claim 8 , wherein the sliding resistance imparting member is in an annular shape surrounding the outer peripheral surface of the check valve element and has an outer peripheral surface slidable along the tubular wall and a recess formed on the outer peripheral surface of the sliding resistance imparting member to form a gap between the recess and the tubular wall. 10. A check valve comprising: a housing having a valve seat and a downstream flow path, wherein the valve seat has an opening for introducing a fluid from an upstream flow path and the downstream flow path is defined by a tubular wall extending downstream from the valve seat; a check valve element provided to be displaceable upstream and downstream in the downstream flow path; an urging member provided to press the check valve element against the valve seat with a pre-closing urging force applied thereto toward an upstream side; and a sliding resistance imparting member; the check valve element comprising: an arresting portion provided on an outer peripheral surface of the check valve element; a sliding resistance imparting member support portion downstream adjacent to the arresting portion on the outer peripheral surface, the sliding resistance imparting member support portion being configured to support

Assignees

Inventors

Classifications

  • the valve being loaded by a spring · CPC title

  • the valve being loaded by a spring (F16K15/03 - F16K15/12 take precedence) · CPC title

  • with vibration preventing means · CPC title

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What does patent US9739386B2 cover?
Provided is a check valve element enabling efficient supply of fluid while suppressing the occurrence of chattering. The check valve element is provided to be displaceable upstream and downstream in a downstream flow path extending downstream from a valve seat having an opening for introducing a fluid and is pressed against the valve seat by a pre-closing urging force applied thereto toward an …
Who is the assignee on this patent?
Nitto Kohki Co, Toyota Motor Co Ltd
What technology area does this patent fall under?
Primary CPC classification F16K17/0433. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 22 2017 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).