High-temperature, high-pressure valve packing system
First Claim
1. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a compacted body of expanded graphite material having an apparent bulk density from 1.6 to 2.0 times its bulk density prior to compaction and positioned in and formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close internal clearance with said valve stem and close external clearance with the internal walls of said stuffing box.
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Accused Products
Abstract
Valve packing system comprising a compacted body of expanded graphite material having an apparent bulk density 1.6 to 2.0 times its apparent bulk density prior to compaction and positioned in stuffing box with zero clearance between each of valve stem and said stuffing box, and a pair of flat carbon guide rings retaining said compacted body and machined to close internal clearance with said valve stem and close external clearance with the internal walls of said stuffing box.
33 Citations
14 Claims
- 1. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a compacted body of expanded graphite material having an apparent bulk density from 1.6 to 2.0 times its bulk density prior to compaction and positioned in and formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close internal clearance with said valve stem and close external clearance with the internal walls of said stuffing box.
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6. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a compacted body of expanded graphite material having an apparent bulk density 1.6 to 2.0 times its bulk density prior to compaction and positioned in and formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close internal clearance with said valve stem and close external clearance with the internal walls of said stuffing box, said valve stem having been highly polished with an abrasive to provide a mirror finish in the packing system area, said expanded graphite material having been impregnated with a high temperature nickel metal powdered lubricant, in the form of a heavy oil paste, prior to compaction.
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7. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a compacted body of expanded graphite material having an apparent bulk density of approximately 1.8 times its bulk density prior to compaction and positioned in and formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close external clearance with said valve stem and close external clearance with the internal walls of said stuffing box, said valve stem having been highly polished with an abrasive to provide a mirror finish in the packing system area, said expanded graphite material having been impregnated with a high temperature nickel metal powdered lubricant, in the form of a heavy oil paste, prior to compaction.
- 8. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a remotely-compacted body of expanded graphite material having an apparent bulk density 1.6 to 2.0 times its bulk density prior to compaction by precision die compression and positioned in and die formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close internal clearance with the internal walls of said stuffing box.
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13. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a remotely-compacted body of expanded graphite material having an apparent bulk density 1.6 to 2.0 times its apparent bulk density prior to compaction by precision die compression and positioned in and die formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close internal clearance with said valve stem and close external clearance with the internal walls of said stuffing box, said valve stem having been highly polished with an abrasive to provide a mirror finish in the packing system area, said expanded graphite material having been impregnated with a high temperature nickel metal powdered lubricant, in the form of a heavy oil paste, prior to compaction.
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14. A valve packing system capable of gas-tight sealing of low molecular weight gases at extremes of temperature and pressure comprising, in combination with a valve stem and a valve stuffing box, a remotely-compacted body of expanded graphite material having an apparent bulk density approximately 1.8 times its bulk density prior to compaction by precision die compression and positioned in and die formed to contour said stuffing box with substantially zero clearance between each of said valve stem and said valve stuffing box, and a pair of flat baked or graphitized carbon guide and support bearing rings or bushings positioned to retain said compacted body of expanded graphite material therebetween and machined to operate in close external clearance with said valve stem and close external clearance with the internal walls of said stuffing box, said valve stem having been highly polished with an abrasive to provide a mirror finish in the packing system area, said expanded graphite material having been impregnated with a high temperature nickel metal powdered lubricant, in the form of a heavy oil paste, prior to compaction.
Specification