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Cryogenic butterfly valve with composite heat dissipation disc valve cover

A heat dissipation plate and valve cover technology, which is applied in the heating/cooling device of the valve, valve lift, valve details, etc., can solve the problems of small convection area between cold temperature and ambient temperature, insufficient sealing specific pressure, and inability to seal, etc. Achieve the effect of preventing the valve stem and packing from being scratched, ensuring the opening and closing action of the valve, and prolonging the service life

Active Publication Date: 2014-03-26
HUBEI TAIHE PETROCHEM EQUIP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the existing technology, the bonnet of the cryogenic top-mounted butterfly valve adopts a single large-diameter cooling plate and an extended bonnet top to dissipate temperature, but the radius of the single cooling plate increases, and the closer to the periphery, the cryogenic medium The smaller the temperature difference between the cold temperature transmitted by the base surface and the ambient convection, that is to say, the average temperature conductivity is reduced, the cooling conditions are not sufficient, and the effect is poor; it is necessary to extend the top of the valve cover, but the cold temperature of the peripheral wall of the top is extended The area for heat dissipation and convection with the environment is small, and the heat dissipation conditions are not good enough, which will reduce the strength of the valve cover and increase the cost
Insufficient heat dissipation conditions will cause the sliding joint between the valve stem and the packing to freeze and bond, the opening and closing action torque is large or cannot be moved, and the frozen hard objects scratch the valve stem and packing, the service life of the cryogenic butterfly valve is short, and the replacement is frequent
[0003] In addition, the sealing pair of the inner part of the butterfly valve needs to be replaced after it wears out and loses its sealing function. Since the processing size of the new replacement part will always be different from the original part, it is difficult to adjust the sealing specific pressure after replacement, and the sealing specific pressure may be insufficient or even unable to seal.
will cause leakage

Method used

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  • Cryogenic butterfly valve with composite heat dissipation disc valve cover
  • Cryogenic butterfly valve with composite heat dissipation disc valve cover

Examples

Experimental program
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Effect test

Embodiment Construction

[0028] See attached Figure 1-2 As shown, a cryogenic butterfly valve with composite cooling plate bonnet includes a valve body 1, a butterfly plate assembly and an axial floating seat assembly are arranged in the valve body, and the butterfly plate assembly and the axial floating seat assembly form a Sealing structure, the valve rod 26 passes through the butterfly plate assembly and is fixed with the butterfly plate assembly, and passes through the upper and lower shaft holes of the valve body, and then passes through the valve cover 23 upwards, and the graphite packing layer 41 in the sealing box on the upper part of the valve cover Cooperate and stretch out, extend upwards through the bracket 29 and enter the actuator assembly 33 above the bracket, the actuator assembly rotates 90° to drive the butterfly plate assembly to move; above the graphite filler is provided with a packing gland 38, the packing gland There is a packing gland 37 on the top, and the packing gland is fi...

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Abstract

Disclosed is a cryogenic butterfly valve with a composite heat dissipation disc valve cover. The cryogenic butterfly valve comprises a valve body. A butterfly plate assembly and an axial floating type valve seat assembly are arranged in the valve body and form a sealing structure. A valve rod penetrates through the butterfly plate assembly to be fixed to the butterfly plate assembly, penetrates through an upper shaft hole and a lower shaft hole of the valve body, then penetrates through the valve cover upwards, stretches outwards in cooperation with a graphite packing layer in a stuffing box on the upper portion of the valve cover, and stretches upwards until penetrating through a support and entering an actuator assembly above the support. The actuator assembly does 90-deree rotary motion to drive the butterfly assembly to move. Due to the adoption of the thinking of improving temperature conductivity lambda, increasing the convection heat dissipation area A of the valve cover and the surrounding environment and the convection heat dissipation temperature difference delta T of the valve cover and the surrounding environment, a composite heat dissipation disc structure composed of a single large-diameter heat dissipation disc and a neck multi-ring small-diameter heat dissipation disc outside the valve cover is designed, and an excellent heat dissipation effect is achieved.

Description

technical field [0001] The invention relates to a cryogenic butterfly valve, in particular to a cryogenic top-mounted butterfly valve with a composite temperature-dissipating disc valve cover. Background technique [0002] In the automatic control of the process of the modern liquefied natural gas, liquid oxygen, liquid hydrogen, liquid helium, etc. -150 ℃ to -250 ℃ cryogenic system process, the cryogenic top-mounted butterfly valve plays a very important role, and can be maintained online . In this process control, it is necessary to adjust and open and close the circulation parameters of the medium according to the real-time data signal. The sensitivity and reliability of its control action, the sealing performance and life between the valve stem and packing are very important. Because the lower part of the valve stem in the bonnet of the cryogenic top-entry butterfly valve is connected with the butterfly plate, and the upper part is flexibly matched with the graphite pa...

Claims

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Application Information

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IPC IPC(8): F16K49/00F16K41/02F16K1/36F16K1/42F16K27/02
CPCF16K1/22F16K1/222F16K1/2261F16K1/2268F16K1/42F16K27/0218F16K27/08F16K49/00
Inventor 阳学明章文忠
Owner HUBEI TAIHE PETROCHEM EQUIP