USRE29679EExpiredUtility
Stem sealing for high pressure valve or the like
Priority: Mar 20, 1975Filed: Sep 15, 1977Granted: Jun 27, 1978
Est. expiryMar 20, 1995(expired)· nominal 20-yr term from priority
F16J 15/006F16J 15/40Y10S277/924
14
PatentIndex Score
7
Cited by
17
References
1
Claims
Abstract
Apparatus . .and method.!. for sealing a shaft extending between a high-pressure region and a low-pressure region so that the seal life is long, and so that stem torque as a result of the sealing is kept to a minimum. A plurality of sealing elements are provided and arranged so that the differential pressure across any one sealing element is only a fraction of the pressure differential between the high-pressure and the low-pressure regions. Flowable plastic or the like under selected pressures is injected and maintained between adjacent sealing elements.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. Apparatus comprising: a. a body having a cavity adapted to contain a fluid under high pressure, b. an operative element for functioning within said cavity, in response to the rotation of a shaft, c. a shaft extending through said body from said cavity to a region outside said body of relatively low pressure, d. means for providing a seal between said shaft and said body between said cavity and said region, said means including a plurality of sealing elements which are successively disposed between the relatively high and low pressure regions and sealing between said shaft and said body each having a side thereof toward said cavity and a side thereof opposite said cavity, . .and.!. .Iadd.e. a plurality of chambers, each in communication with the side of one sealing element nearest the region and the side of the adjacent sealing element nearest the cavity, and .Iaddend. . .e..!. .Iadd.f. .Iaddend.means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount and that . .to.!. .Iadd.no .Iaddend.sealing element differential pressure is as large as the pressure differential between said cavity and said low-pressure region. ...!..Iadd., said means including means for providing flowable plastic material under pressure in each of said chambers decreasing from said high pressure bore to said region comprising a floating piston having one face thereof exposed to the pressure of fluid within said cavity, and having the other face thereof bearing on flowable plastic material in a channel in fluid communication with each of said chambers, and a differential back-pressure valve operatively associated with each of said chambers. .Iaddend. . .2. Apparatus as recited in claim 1 wherein at least three sealing elements are provided and wherein the pressure differential across each sealing element is at most about one-third the pressure differential between said cavity and said low-pressure region..!.. .3. Apparatus as recited in claim 1 wherein said means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount, includes a chamber located in communicating relationship with one of said sealing elements on the side thereof opposite said cavity, and means for maintaining a flowable plastic material under a pressure in said chamber, said pressure having a magnitude between the pressures in said high-pressure cavity and said low-pressure region..!. . .4. Apparatus as recited in claim 3 wherein said means for maintaining a flowable plastic material under pressure in said chamber includes a regulated pressure source remote from said body member but in communication therewith..!. . .5. Apparatus as recited in claim 3 wherein said means for maintaining a flowable plastic material under pressure in said chamber includes an injection valve means for allowing the introduction of flowable plastic material under pressure into said chamber and for maintaining the flowable plastic material under pressure in said chamber once injected..!. . .6. Apparatus as recited in claim 3 wherein said means for maintaining a flowable plastic material under a pressure in said chamber comprises a piston having one side thereof exposed to the pressure of fluid within said cavity and having the other side thereof on flowable plastic material in a channel in fluid communication with said chamber, and a differential back pressure valve interposed in a passageway between said channel and said chamber..!. . .7. Apparatus as recited in claim 6 wherein said differential back pressure valve includes a valve member, a valve seat, and biasing means for supplying a pressure of a magnitude between the pressure in said cavity and the pressure in said region for biasing said valve member toward engagement with said valve seat..!. . .8. Apparatus as recited in claim 1 further comprising a plurality of chamber, each in communication with the side of one sealing element nearest the region and the side of the adjacent sealing element nearest the cavity, and wherein said means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount includes means for providing flowable plastic material under pressure in each of said chamber, the magnitude of the pressure in said chambers decreasing from said high pressure bore to said region..!. . .9. Apparatus as recited in claim 8 wherein said means for providing flowable plastic material under pressure in each of said chambers comprises a piston having one side thereof exposed to the pressure of fluid within said cavity and having the other side thereof bearing on flowable plastic material in a channel in fluid communication with each of said chambers, and a plurality of differential back pressure valves, one interposed in a passageway between said channel and each of said chambers, and wherein each of said differential back pressue valves includes a valve member, a valve seat, and biasing means for supplying a pressure of a magnitude between the pressure in said cavity and the pressure in said region for biasing said valve member toward engagement with said valve seat, and the magnitude of the biasing pressure provided by the biasing means increasing from said
high pressure cavity toward said region..!. 10. A gate valve assembly comprising a. a body having a bore extending therethrough, said bore adapted to carry fluid under high-pressure and defining a cavity, b. a bonnet operatively connected to said body, c. a valve member for opening and closing said bore, d. means for moving said valve member for opening and closing said bore, said means including a shaft extending from said body member through said bonnet to a region of relatively low pressure exterior of said bonnet, .Iadd.said means including a screw-threaded rod located within said bonnet and said body so that said shaft is not translated during operation of said valve member thereby, but is merely rotated,.Iaddend. e. means in said region for rotating said shaft, f. means for providing a seal between said shaft and said bonnet intermediate said bore and said region, said means including a plurality of sealing elements which are successively disposed between said cavity and said low-pressure region and seal between said shaft and said body each having a side thereof toward said cavity and a side thereof opposite said cavity, and g. means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount and that no sealing element differential pressure is as large as the pressure differential between said cavity and said low-pressure region. ...!..Iadd., including a chamber located in communicating relationship with one of said sealing elements on the side thereof opposite said bore, and means for maintaining a flowable plastic material under a pressure in said chamber, said pressure having a magnitude between the pressures in said high-pressure bore and said low-pressure region, comprising a piston having one side thereof exposed to the pressure of fluid within said bore and having the other side thereof bearing flowable plastic material in a channel in fluid communication with said chamber, and a differential back pressure valve interposed in a passageway between
said channel and said chamber. .Iaddend. . .11. An assembly as recited in claim 10 wherein said means for moving said valve member includes a screw-threaded rod located within said bonnet and said body so that said shaft is not translated during operation of said valve member thereby, but is merely rotated..!. . .12. Apparatus as recited in claim 10 wherein at least three sealing elements are provided and wherein the pressure differential across each sealing element is at most about one-third the pressure differential between said cavity and said low-pressure region..!. . .13. An assembly as recited in claim 10 wherein said means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount, includes a chamber greater than a predetermined amount, includes a chamber located in communicating relationship with one of said sealing elements on the side thereof opposite said bore, and means for maintaining a flowable plastic material under a pressure in said chamber, said pressure having a magnitude between the pressures in said high-pressure bore and said low-pressure region..!. . .14. An assembly as recited in claim 13 wherein said means for maintaining a flowable plastic material under pressure in said chamber includes a regulated pressure source remote from said body member but in communication therewith..!. . .15. An assembly as recited in claim 13 wherein said means for maintaining a flowable plastic material under pressure in said chamber includes an injection valve means for allowing the introduction of flowable plastic material under pressure into said chamber and for maintaining the flowable plastic material under pressure
in said chamber once injected..!. 16. An assembly as recited in claim . .13.!. .Iadd.10 .Iaddend.wherein each of said sealing elements comprises a tubular member having a first seal located at one end thereof on the inside diameter thereof for sealing engagement with said shaft, and a second seal located at the other end thereof on the outside diameter thereof for sealing engagement with said bonnet, flowable plastic material in said chamber being adapted to apply pressure to both said first and second seals. . .17. An assembly as recited in claim 16 further comprising an injection valve member for allowing the injection of flowable plastic material under pressure into said chamber..!. . .18. An assembly as recited in claim 13 wherein said means for maintaining a flowable plastic material under a pressure in said chamber comprises a piston having one side thereof exposed to the pressure of fluid within said bore and having the other side thereof bearing flowable plastic material in a channel in fluid communication with said chamber, and a differential back pressure valve interpossed in a passageway between said
channel and said chamber..!. 19. An assembly as recited in claim . .18.!. .Iadd.10 .Iaddend.wherein said differential back pressure valve includes a valve member, a valve seat, and biasing means for supplying a pressure of a magnitude between the pressure in said bore and the pressure in said region for biasing said valve member toward engagement with said valve
seat. 20. An assembly as recited in claim . .13.!. .Iadd.10 .Iaddend.further comprising a plurality of chambers, one in operative relationship with the side of one sealing element nearest the region and the side of the adjacent sealing element nearest the bore, and wherein said means for ensuring that the differential pressure on each of said sealing elements is not greater than a predetermined amount includes means for providing flowable plastic material under pressure in each of said chamber, the magnitude of the pressures in said chambers decreasing from
said high pressure bore to said region. 21. An assembly as recited in claim 20 wherein said means for providing flowable plastic material under pressure in each of said chambers comprises a piston having one side thereof exposed to the pressure of fluid within said bore and having the other side thereof bearing on flowable plastic material in a channel in fluid communication with each of said chambers, and a plurality of differential back pressure valves, one interposed in a passageway between said channel and each of said chambers, and wherein each of said differential back pressure valves includes a valve member, a valve seat, and biasing means for supplying a pressure of a magnitude between the pressure in said bore and the pressure in said region for biasing said valve member toward engagement with said valve, seat, and the magnitude of the biasing pressure provided by the biasing means increasing from said
high pressure bore toward said region. .Iadd.22. Apparatus as recited in claim 1 wherein each differential back pressure valve includes a valve seat and a valve member interposed in each passageway between said channel and one of said chambers. .Iaddend. .Iadd.23. Apparatus as recited in claim 22 wherein each of said differential back pressure valves further includes spring biasing means for supplying a pressure of a magnitude between the pressure in said cavity and the pressure in said region for biasing said valve member toward engagement with said valve seat, the magnitude of the biasing pressure provided by the spring biasing means increasing from said high pressure cavity toward said region. .Iaddend. .Iadd.24. Apparatus as recited in claim 23 wherein each of said valve seats is located in each respective passageway between each respective valve member and said channel. .Iaddend. .Iadd.25. Apparatus as recited in claim 23 wherein each said valve member is connected to each respective spring biasing means by a rod, each respective rod extending through said passageway and said valve seat to operatively connect each respective valve member to each respective spring biasing means, each said spring biasing means located on the opposite side of said channel as each respective valve member. .Iaddend. .Iadd.26. Apparatus as recited in claim 1 wherein said piston faces are of substantially equivalent
cross-sectional area. .Iaddend. .Iadd.27. Apparatus as recited in claim 1 wherein each of said sealing elements comprises a tubular body member having an inner seal for sealing engagement between said shaft and said body member, and an outer seal for sealing engagement between said body member and said body, said inner and outer seals being spaced along the length of said shaft, and said body members of adjacent sealing elements nesting together. .Iaddend. .Iadd.28. Apparatus as recited in claim 27 wherein the inner seal of each sealing element is located closer to said cavity along said shaft than the outer sealing element of each respective sealing element. .Iaddend. .Iadd.29. Apparatus as recited in claim 27 wherein nested portions of adjacent sealing elements are in screw-threaded engagement with each other. .Iaddend. .Iadd.30. Apparatus as recited in claim 19 wherein said valve member is connected to said spring biasing means by a rod, said rod extending through said passageway and said valve seat to operatively connect said valve member to said spring biasing means, said spring biasing means located on the opposite side of said channel as said valve member. .Iaddend. .Iadd.31. Apparatus as recited in claim 16 wherein said tubular members nest together.Join the waitlist — get patent alerts
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