Non-spill connect under pressure coupler

US10156310B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10156310-B2
Application numberUS-201615262762-A
CountryUS
Kind codeB2
Filing dateSep 12, 2016
Priority dateNov 18, 2015
Publication dateDec 18, 2018
Grant dateDec 18, 2018

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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 quick connect/disconnect coupling having a female coupler and a corresponding male coupler. The female coupler has a non-spill configuration and includes a housing and a valve body slidably movable in the housing. A valve member is slidably movable in the valve body toward and away from a valve seat, the valve member being configured to engage the male coupler. A piston is interposed between a main cavity and a trap chamber of the female coupler. The piston may be fixed to the valve member for common movement, and may include an internal flow passage for enabling fluid connection between the main cavity and trap chamber. A check valve may allow fluid flow from the trap chamber to the main cavity when the trap chamber pressure is greater than the main cavity pressure. A locking collar may be independently movable of the valve body to reduce the force required to connect the couplers.

First claim

Opening claim text (preview).

What is claimed is: 1. A non-spill female coupler for quick connect/disconnect coupling with a corresponding male coupler, the non-spill female coupler comprising: a housing having an internal bore with an open forward end configured to receive the male coupler, and a supply passage for supplying pressurized fluid to the internal bore; a valve body slidably movable in the internal bore, the valve body defining an internal main cavity that opens to the forward end of the internal bore, and an inlet passage through the valve body for communicating the pressurized fluid from the supply passage to the main cavity; a valve member slidably movable in the valve body toward and away from a valve seat, the valve member having a front face, wherein the front face of the valve member is configured to engage a corresponding front face of the male coupler; a face sleeve disposed radially outwardly of the valve member and radially inwardly of the valve body, the face sleeve being axially moveable relative to the valve member and the valve body between a forward and a rearward position, wherein the face sleeve has a front face that is configured to be flush with the front face of the valve member and is configured to be flush with a front face of the valve body when the face sleeve is in the forward position; and a piston fixed to the valve member for common movement, the piston being interposed between the main cavity on one side of the piston and a trap chamber on an opposite side of the piston; wherein the piston includes an internal flow passage extending through the piston to enable fluid connection of the main cavity with the trap chamber. 2. The non-spill female coupler according to claim 1 , wherein the piston carries the valve member in response to a hydraulic force differential created between the pressure in the trap chamber on the one side of the piston and the pressure in the main cavity on the opposite side of the piston. 3. The non-spill female coupler according to claim 1 , wherein the piston is an unbalanced piston that defines at least a portion of the trap chamber, and is configured to intensify force applied to the valve member for enabling opening of a corresponding valve member in the male coupling. 4. The non-spill female coupler according to claim 1 , wherein the trap chamber is configured to retain a pressure that restricts rearward movement of the piston and valve member when fluid is flowing into the female coupler. 5. The non-spill female coupler according to claim 1 , wherein the housing includes an outlet passage in fluid communication with a low pressure line; wherein the female coupler further comprises a relief valve configured to open and close a flow path between the trap chamber and the outlet passage; and wherein, when the relief valve is activated, the flow path is opened to allow flow from the trap chamber to the outlet passage, thereby reducing pressure in the trap chamber and allowing the piston to shift rearwardly. 6. The non-spill female coupler according to claim 5 , wherein a rearward portion of the valve body defines at least a portion of the trap chamber internal to the valve body; and wherein the relief valve is a hydrostatically balanced relief valve having a spool sealingly engageable with a sealing surface of the valve body, the spool being activatable by an actuator to open the flow path between the trap chamber and the outlet passage. 7. A quick connect/disconnect coupling comprising the non-spill female coupler according to claim 1 in combination with the male coupler, wherein the piston fixed to the valve member of the female coupler is biased forwardly by a spring; and wherein the spring has a spring force that is less than a spring force of a main biasing spring in the male coupler. 8. The non-spill female coupler according to claim 1 , wherein the valve body is hydrostatically balanced in the internal bore. 9. The non-spill female coupler according to claim 1 , wherein the female coupler is configured to have a non-spill interface with the corresponding male coupler. 10. The non-spill female coupler according to claim 1 , wherein the valve member has a flat front face, wherein the flat front face of the valve member is configured to engage a corresponding flat front face of the male coupler. 11. A quick connect/disconnect coupling comprising the non-spill female coupler according to claim 1 in combination with the male coupler. 12. A non-spill female coupler for quick connect/disconnect coupling with a corresponding male coupler, the non-spill female coupler comprising: a housing having an internal bore with an open forward end configured to receive the male coupler, and a supply passage for supplying pressurized fluid to the internal bore; a valve body slidably movable in the internal bore, the valve body defining an internal main cavity that opens to the forward end of the internal bore, and an inlet passage through the valve body for communicating the pressurized fluid from the supply passage to the main cavity; a valve member slidably movable in the valve body toward and away from a valve seat, the valve member having a front face, wherein the front face of the valve member is configured to engage a corresponding front face of the male coupler; and a piston fixed to the valve member for common movement, the piston being interposed between the main cavity on one side of the piston and a trap chamber on an opposite side of the piston; wherein the piston includes an internal flow passage extending through the piston to enable fluid connection of the main cavity with the trap chamber; wherein the housing includes an outlet passage in fluid communication with a low pressure line; wherein the female coupler further comprises a relief valve configured to open and close a flow path between the trap chamber and the outlet passage; wherein, when the relief valve is activated, the flow path is opened to allow flow from the trap chamber to the outlet passage, thereby reducing pressure in the trap chamber and allowing the piston to shift rearwardly; wherein the relief valve is a first relief valve, and the female coupler further comprising a second relief valve configured to cooperate with the piston, the piston carrying a sealing surface for sealingly engaging the second relief valve; wherein, when the first relief valve is activated and the flow path is opened to allow flow from the trap chamber to the outlet passage, the pressure in the trap chamber is reduced such that the piston moves to disengage the piston sealing surface from the second relief valve, thereby enabling a flow path to open from the main cavity to the outlet passage across the piston internal flow passage and the trap chamber. 13. The non-spill female coupler according to claim 12 , wherein the piston internal flow passage is sized such that, when the flow path is opened from the main cavity to the outlet passage across the piston internal passage, a pressure drop occurs causing the pressure on the rearward side of the piston to be reduced relative to the pressure on the forward end of the piston, thereby allowing the piston carrying the valve member to shift rearwardly in response to the pressure differential between the opposite sides of the piston. 14. A non-spill female coupler for quick connect/disconnect coupling with a corresponding male coupler, the non-spill female coupler comprising: a housing having an internal bore with an open forward end configured to receive the male coupler, and a supply passage for supplying pressurized fluid to the internal bore; a valve body slidably movable in the internal bo

Assignees

Inventors

Classifications

  • Arrangement or mounting of devices, e.g. valves, for venting or aerating or draining (apparatus for draining F16T) · CPC title

  • F16L37/34Primary

    at least one of the lift valves being of the sleeve type, i.e. a sleeve being telescoped over an inner cylindrical wall · CPC title

  • F16L37/32Primary

    at least one of two lift valves being opened automatically when the coupling is applied · CPC title

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What does patent US10156310B2 cover?
A quick connect/disconnect coupling having a female coupler and a corresponding male coupler. The female coupler has a non-spill configuration and includes a housing and a valve body slidably movable in the housing. A valve member is slidably movable in the valve body toward and away from a valve seat, the valve member being configured to engage the male coupler. A piston is interposed between …
Who is the assignee on this patent?
Parker Hannifin Corp
What technology area does this patent fall under?
Primary CPC classification F16L37/34. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Dec 18 2018 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).