Claims
- 1. A variable port valve plug comprising:
a plug body with a conically-shaped smooth tapered wall, the plug body having a proximal end adapted to connect with a valve stem and having a domed distal end surface that smoothly transitions into the tapered wall, whereby the valve plug can be selectively positioned within a valve to vary a flow capacity of the valve.
- 2. A variable port valve plug according to claim 1, further comprising:
an annular shoulder at the proximal end of the plug body, the annular shoulder having a diameter that is larger than a diameter of the tapered wall adjacent the annular shoulder; and a smooth transition surface extending between the tapered wall and the annular shoulder.
- 3. A valve assembly comprising:
a valve body having an inlet passageway and an outlet passageway; a flow orifice disposed within an orifice region of the valve body and providing flow communication between the inlet passageway and outlet passageway; a valve seat positioned in the orifice region; and a variable port valve plug including a plug body with a conically-shaped smooth tapered wall, a proximal end connected to a movable part of the valve assembly, and a domed distal end surface that smoothly transitions into the tapered wall, wherein the valve plug is movable between an open position out of contact with the valve seat and a closed position borne against the valve seat, and wherein a maximum travel position of the valve plug relative to the valve seat in the open position can be selectively changed to vary a flow capacity of the valve assembly.
- 4. A valve assembly according to claim 3, wherein the movable part of the valve assembly is a slidable valve stem.
- 5. A valve assembly according to claim 3, wherein the movable part of the valve assembly is a valve stem, and wherein the proximal end of the valve plug is connected to one end of the valve stem.
- 6. A valve assembly according to claim 3, wherein the maximum travel position can be selected from a plurality of discrete maximum open positions.
- 7. A valve assembly according to claim 6, wherein the plurality of maximum open positions includes at least one selectable position wherein the entire plug body is spaced a distance from a plane of the valve seat in a direction relative to the open position.
- 8. A valve assembly according to claim 6, wherein the plurality of maximum open positions includes at least one selectable position wherein at least part of the domed end surface of the plug body breaks a plane of the valve seat in a direction relative to the closed position.
- 9. A valve assembly according to claim 6, wherein the plurality of maximum open positions includes at least one selectable position wherein the domed end surface and at least part of the tapered wall of the plug body breaks a plane of the valve seat in a direction relative to the closed position.
- 10. A valve assembly according to claim 6, wherein the plurality of maximum open positions includes at least one selectable position wherein the domed end surface and a majority of the tapered wall of the plug body breaks a plane of the valve seat in a direction relative to the closed position.
- 11. A valve assembly comprising:
a valve body having an inlet passageway and an outlet passageway; a flow orifice disposed within an orifice region of the valve body and providing flow communication between the inlet passageway and outlet passageway; a valve seat positioned in the orifice region at an upstream end of the flow orifice; and a variable port valve plug including a plug body with a conically-shaped smooth tapered wall, a proximal end connected to a movable part of the valve assembly, and a domed distal end surface that smoothly transitions into the tapered wall, wherein the valve plug is movable between an open position out of contact with the valve seat and a closed position borne against the valve seat, and wherein a maximum open position of the valve plug relative to the valve seat can be selectively changed to vary flow characteristics through the valve assembly.
- 12. A valve assembly according to claim 11, wherein the movable part of the valve assembly is a valve stem, and wherein the proximal end of the valve plug is connected to one end of the valve stem.
- 13. A valve assembly according to claim 11, wherein the maximum open position altered and selected from a plurality of discrete open positions.
- 14. A valve assembly according to claim 13, wherein the plurality of discrete open positions includes at least one selectable position wherein the entire plug body is positioned outside of the flow orifice.
- 15. A valve assembly according to claim 13, wherein the plurality of discrete open positions includes at least one selectable position wherein at least part of the domed end surface of the plug body is positioned within the flow orifice.
- 16. A valve assembly according to claim 13, wherein the plurality of discrete open positions includes at least one selectable position wherein the domed end surface and at least part of the tapered wall of the plug body are positioned within the flow orifice.
- 17. A valve assembly according to claim 13, wherein the plurality of discrete open positions includes at least one selectable position wherein the domed end surface and a majority of the tapered wall of the plug body are positioned within the flow orifice.
- 18. A method of selectively controlling flow characteristics of a valve assembly having a valve body with an inlet passageway, an outlet passageway, a flow orifice disposed within the valve body between the inlet passageway and outlet passageway, and a valve seat positioned at an upstream end of the flow orifice, the method comprising the steps of:
providing a variable port valve plug having a plug body with a conically-shaped smooth tapered wall, a proximal end, and a domed distal end surface that smoothly transitions into the tapered wall; coupling the proximal end of the valve plug to a movable part of the valve assembly such that the valve plug is movable between an open position out of contact with the valve seat and a closed position borne against the valve seat; determining a desired flow capacity for the valve assembly; and selecting one valve plug discrete open position that corresponds to the desired flow capacity from a plurality of different selectable maximum open positions.
RELATED APPLICATION DATA
[0001] This patent is related to co-pending U.S. Provisional Patent Application Serial No. 60/335,920, which was filed on Nov. 15, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60335920 |
Nov 2001 |
US |