Valve
US-11149858-B2 · Oct 19, 2021 · US
US9732715B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9732715-B2 |
| Application number | US-201615047142-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 18, 2016 |
| Priority date | Jan 21, 2014 |
| Publication date | Aug 15, 2017 |
| Grant date | Aug 15, 2017 |
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A valve ( 100 ) comprises a barrel ( 104 ) having a central bore ( 110 ), an inlet ( 112 ), and an outlet ( 114, 116 ), and a spool ( 120 ) disposed for motion within the central bore, including a ball tip ( 128 ), a metering edge ( 130 ), and a bore ( 132 ). The spool is moveable between a closed position, wherein the ball tip engages a seat ( 142 ) to prevent fluid flow through the inlet and the metering edge is disposed in a lower chamber ( 148 ) of the central bore to prevent the fluid flow through the outlet, and an opened position, wherein the tip is spaced apart from the seat to permit fluid flow through the inlet and the spool bore into an upper chamber ( 154 ) of the central bore to equalize pressure on the spool, and the metering edge is disposed in a flow path of the outlet to permit fluid flow through the outlet.
Opening claim text (preview).
What is claimed is: 1. A metering valve, comprising: a barrel having a central bore, a first opening in flow communication with the central bore, and a second opening in flow communication with the central bore; and a spool disposed for reciprocal motion within the central bore of the barrel, the spool including a tip surface, a metering edge, and at least one bore extending between a first orifice and a second orifice; wherein the spool is moveable between a closed position, wherein the tip surface engages a seat formed in a wall of the barrel to prevent fluid flow between the first opening and a first chamber of the central bore and the metering edge is disposed in the first chamber to prevent fluid flow between the first chamber and the second opening, and an opened position, wherein the tip surface is spaced apart from the seat to permit fluid flow between the first opening and the first chamber and through the at least one bore of the spool into a second chamber of the central bore to thereby equalize pressure of the fluid on the spool, and the metering edge is disposed in a flow path of the second opening to permit fluid flow between the first chamber and the second opening. 2. The metering valve of claim 1 , further comprising a spring disposed in the first chamber to bias the spool toward the opened position. 3. The metering valve of claim 2 , further comprising a solenoid for generating a magnetic flux as a function of input current, the magnetic flux causing a plunger in contact with the spool to move the spool toward the closed position against the biasing force of the spring. 4. The metering valve of claim 1 , further comprising a plunger in contact with the spool, the plunger being positioned within a housing of the valve for guided movement as the spool is moved between the closed position and the opened position. 5. The metering valve of claim 1 , wherein the at least one bore extends substantially diagonally through a body of the spool from a side wall of the body to an upper surface of the body. 6. The metering valve of claim 5 , wherein fluid flow through the at least one bore causes rotation of the spool about a longitudinal axis of the spool. 7. The metering valve of claim 1 , wherein when the spool is in a fully opened position, a plunger in contact with the spool engages a portion of a housing of the valve. 8. A system for metering fuel to at least one fuel pumping chamber, comprising: a metering valve having a first opening in flow communication with the fuel supply and a second opening in flow communication with the at least one pumping chamber, the valve further including a solenoid and a spool mounted within a housing for reciprocal movement between a plurality of opened positions, wherein fuel flows through the valve from the fuel supply to the at least one pumping chamber, and a closed position, wherein fuel is substantially prevented from flowing through the valve; and an ECM configured to provide signals to the solenoid to position the spool into the plurality of opened positions and the closed position; wherein the spool includes a tip surface at one end that engages a seating surface to prevent fuel flow when the spool is in the closed position, a metering edge that cooperates with the second opening when the spool is in the plurality of opened positions to meter fuel flowing through the valve, and wherein the valve includes a flow path between a first chamber disposed between the first opening and the second opening and a second chamber disposed adjacent another end of the spool, the flow path permitting fuel flow between the first chamber and the second chamber to substantially equalize pressure exerted by the fuel on each end of the spool. 9. The system of claim 8 , wherein the valve includes a barrel having a central bore defining the first chamber adjacent the one end of the spool and the second chamber adjacent the other end of the spool. 10. The system of claim 8 , further comprising a spring disposed in the first chamber to bias the spool toward the plurality of opened positions. 11. The system of claim 10 , wherein the solenoid generates a magnetic flux as a function of an input current from the ECM, the magnetic flux urging the spool to move toward the closed position against the biasing force of the spring. 12. The system of claim 8 , wherein the valve further includes a plunger in contact with the spool, the plunger being positioned within the housing of the valve for guided movement as the spool is moved between the closed position and the plurality of opened positions. 13. The system of claim 8 , wherein the flow path includes at least one bore extending through the spool between a first orifice disposed in the first chamber and a second orifice disposed in the second chamber, the at least one bore permitting fuel flow between the first chamber and the second chamber to substantially equalize pressure exerted by the fuel on each end of the spool. 14. The system of claim 13 , wherein the at least one bore extends substantially diagonally through a body of the spool such that fuel flow through the at least one bore causes rotation of the spool about a longitudinal axis of the spool. 15. The system of claim 8 , wherein the flow path includes at least one groove extending between the first chamber and the second chamber. 16. The system of claim 15 , wherein the at least one groove is formed in a side wall of a body of the spool. 17. The system of claim 8 , wherein the flow path includes at least one flat formed in a side wall of a body of the spool and extending between the first chamber and the second chamber. 18. The system of claim 8 , wherein when the spool is in a fully opened position, a plunger in contact with the spool engages a portion of the housing of the valve to limit further movement of the spool away from the closed position. 19. A method of metering fuel to a fuel pumping chamber, comprising: supplying fuel to a metering valve; and controlling a signal supplied to the metering valve to cause movement of the metering valve between a closed position, wherein a tip surface of a spool of the metering valve engages a seat at one opening of the valve to substantially prevent fuel from flowing through the valve, and a plurality of opened positions, wherein a metering edge of the spool is disposed within a flow path of another opening of the valve to permit a metered quantity of fuel to flow to the pumping chamber, and a bore extending through the spool distributes pressure exerted on the spool by the fuel. 20. The method of claim 19 , further comprising biasing the spool toward the plurality of opened positions. 21. The method of claim 19 , wherein controlling a signal comprises generating a magnetic flux as a function of an input current supplied by an ECM, the magnetic flux urging the spool to move toward the closed position against a biasing force. 22. The method of claim 19 , further comprising limiting movement of the spool away from the closed position by causing a plunger in contact with the spool to engage a portion of a housing of the valve.
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