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DQ347H Cryogenic Ball Valve

DQ347H Cryogenic Ball Valve

  • Model:DQ347H-CL150/CL300/CL600/CL900
  • Specification: 3”-16”
  • Temperature:-196℃ ~-29℃
  • Medium:Liquefied natural gas, ethylene, propylene, and other cryogenic media
  • Pressure:150LB,300LB,600LB,900LB
  • Connection method:Flange
  • Driving method:Manual, pneumatic, electric Other
  • Material:LCB、CF8、CF3、CF8M、CF3M
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DQ347H Cryogenic Ball ValveOverview

DQ347H Cryogenic Ball Valve Overview

The DQ347H low-temperature ball valve is specifically designed for ultra-low temperature medium control systems such as liquefied natural gas, liquid nitrogen, liquid oxygen, and liquid hydrocarbons, with a temperature range applicable down to -196°C. Featuring a top-mounted design and full bore flow path, the valve ensures low flow resistance and convenient online maintenance. Its opening and closing mechanism is achieved by rotating the ball 90 degrees, enabling swift and reliable operation. Both the valve body and critical components are made of austenitic stainless steel and undergo cryogenic treatment, effectively preventing material brittleness and ensuring sealing integrity and structural safety under extreme low-temperature conditions. It serves as an ideal shut-off device for key systems in liquefied gas storage and transportation, air separation, and cryogenic chemical processes.

DQ347H Cryogenic Ball Valve Product Image

DQ347H Cryogenic Ball ValveCharacteristic

DQ347H Cryogenic Ball Valve Features

1. Cryogenic Material Guarantee: The main body is made of austenitic stainless steel treated with cryogenic processing, featuring excellent low-temperature toughness to completely eliminate the risk of brittle failure between the valve body and the ball at cryogenic temperatures.

2. Long-term low-temperature sealing: Utilizes specially formulated reinforced polytetrafluoroethylene (PTFE) or metal sealing rings, combined with an elastic loading design, to automatically compensate for severe temperature fluctuations and ensure bidirectional zero leakage.

3. Anti-blowout safety design: The valve stem adopts an inverted sealing stepped structure, combined with an anti-static device, effectively preventing stem ejection even under abnormal pressure, ensuring high safety.

4. Easy and reliable operation: Equipped with built-in low-temperature lubrication bearings to significantly reduce operational torque; the extended valve cover design effectively isolates cold sources, protecting the packing and actuator while ensuring flexible valve opening and closing.

5. Fireproofing and Versatility: Compliant with API 607 fireproof standards, forming an auxiliary metal seal in case of soft seal failure; supports manual, gear, pneumatic, and electric drive methods, meeting automation control requirements.

DQ347H Cryogenic Ball Valvestructure principle

DQ347H Cryogenic Ball Valve Structure Diagram

Parts Name Material List

NO.NameMaterial
1Body304、316、LCB
2Ball304、316、LCB
3sealing ringPTFE
4packingPTFE + O ring
5Stem304、316、LCB


DQ347H Cryogenic Ball Valvetechnology parameter
性能规范表Performance Specification
公称压力Nominal Pressure2-15MPa
强度试验压力Shell Test3-22.5
密封试验压力Seal Test2.2-16.5
适用温度Suitable Temp.-196~-29


DQ347H Cryogenic Ball Valvestandard size

Dimensions Standard Requirements

1. The structural length of the valve shall conform to the standard ASME16.10.

2. The connecting flange shall conform to the standard ASME16.50.

DQ347H Cryogenic Ball Valve View Drawing

DQ347H Cryogenic Ball Valve Dimensions Table

(mm)
TypeSizeNPS/in
346810121416
DQ347H-CL150 DQ347H-CL150P DQ347H-CL150Rd1100150201252303334385
L229394457533610686762
D230280345405485535595
D1190.5241.3298.5362431.8476.3539.8
D2157216270323.8381412.8469.9
DQ347H-CL300 DQ347H-CL300P DQ347H-CL300Rd1150201252303334385
L403502568648762838
D320380445520585650
D1269.9330.2387.4450.8514.4571.5
D2216270323.8381412.8469.9
DQ347H-CL600 DQ347H-CL600P DQ347H-CL600Rd1100150201252303
L432559660787838
D275355420510560
D1215.9292.1349.2431.8489


Articles related to technology research and development
  • Wafer-type ball valve patented

       The utility model provides a wafer-type float valve, which includes a valve body and a driving mechanism. The valve body is provided with a through medium channel in the axial direction, and is tubular in shape. It also includes a butterfly plate that fits and seals with the inner wall of the medium channel. The driving mechanism comprises a valve shaft that passes through the valve body and is connected to the butterfly plate, a valve rod connected to the outer end of the valve shaft in the radial direction, and a float ball connected to the valve rod. The valve rod is provided with a limit bolt that is threadedly connected to the valve body in the swinging direction. The butterfly plate can rotate relative to the valve body. The front end of the valve body at the inlet of the medium channel is provided with a filter screen, which is hollow and hemispherical in shape. The end face of the valve body opposite the filter screen is provided with an annular groove, and the open end of the filter screen is provided with a raised edge that is embedded in the annular groove. The utility model can filter the medium, is simple to install, time-saving, labor-saving, small in size, widely applicable, and can reduce the impact force of the medium on the butterfly plate.

    1. A double-clip type float valve, comprising a valve body and a driving mechanism. The valve body is provided with a through medium channel in the axial direction. It is characterized in that the valve body is tubular and further comprises a butterfly plate that fits and seals with the inner wall of the medium channel. The driving mechanism comprises a valve shaft passing through the valve body and connected to the butterfly plate, a valve rod connected to the outer end of the valve shaft in the radial direction, and a float connected to the valve rod. The valve rod is provided with a limit bolt threadedly connected to the valve body in the swinging direction. The butterfly plate is rotatable relative to the valve body. The front end of the valve body located at the inlet of the medium channel is provided with a filter screen. The filter screen is hollow and hemispherical. The end surface of the valve body opposite the filter screen is provided with an annular groove. The open end of the filter screen is provided with a convex edge embedded in the annular groove.

    2. A wafer-type float valve according to claim 1, characterized in that the valve rod penetrates one end of the valve shaft located outside the valve body, and is threadedly engaged with the valve rod through a nut to clamp the valve shaft and achieve positioning of the valve rod.

    3. A wafer-type ball valve according to claim 2, characterized in that a step is provided at the position on the valve shaft connected to the valve body, a groove is provided at the position on the outer circumferential wall of the valve body corresponding to the step, and a gland is sleeved on the valve shaft, which is threadably connected to the groove and abuts against the step.

    4. A wafer-type ball valve according to claim 3, characterized in that a sealing groove is provided on the side of the groove facing the butterfly plate, and a sealing ring sleeved on the valve shaft is arranged in the sealing groove.

    5. A wafer-type ball valve according to claim 1, characterized in that an inner groove is provided on the side wall within the annular groove, and an elastic snap ring, which is used to press the convex edge and is compatible with the inner groove, is provided within the annular groove.

    6. A wafer-type ball valve according to claim 5, characterized in that the bottom of the convex edge is provided with a plurality of protrusions arranged around the center of the filter screen, and the annular groove is provided with a limiting groove adapted to the protrusions.

    7. A wafer-type float valve according to claim 6, characterized in that the protrusion is hemispherical. 8. A wafer-type float valve according to claim 7, characterized in that a clamping groove is provided at the junction of the protrusion and the protruding edge, and a clamping block adapted to the clamping groove is provided at the opening of the limiting groove.