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Q41F API Ball Valve

Q41F API Ball Valve

  • Model:Q41F-Cl150P/Q41F-Cl300P/Q41F-Cl300P/Q41-Cl400P/Q41F-Cl150C/Q41F-Cl300C
  • Specification:1/2"-8"
  • Temperature:-196~350℃
  • Medium:Water, oil, liquid
  • Pressure:Class150LB,Class300LB,Class400LB
  • Connection method:Flange
  • Driving method:Manual, pneumatic, electric Other
  • Material:carbon Steel、stainless steel,Aluminum-nickel bronze
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Q41F API Ball ValveOverview

Q41F API Ball Valve Overview

Q41F API Ball Valve is a flange connected ball valve designed and manufactured in accordance with American standards such as ASME B16.34. It adopts a floating ball or fixed ball structure and can be quickly opened and closed by rotating the ball 90 degrees. Valve bodies are typically made of ASTM standard materials such as A216 WCB cast steel, CF8 stainless steel, etc., with pressure ratings ranging from Class 150 to Class 600. The valve adopts PTFE reinforced sealing or metal hard sealing to ensure reliable cut-off and connection control of water, steam, oil and corrosive media in medium and high pressure pipeline systems in industries such as petroleum, natural gas, chemical, and power.

Q41F API Ball Valve Product Image

Q41F API Ball ValveCharacteristic

Q41F API Ball Valve Features

1. Standard compliant design: Strictly follow American standards such as ASME and API, and be compatible with internationally recognized standards in terms of pressure rating, structural length, flange size, and material requirements, ensuring interchangeability and global project adaptability.

2. High performance sealing: The combination of precision ground spheres and reinforced PTFE or high-temperature resistant PPL valve seats forms a bi-directional seal, suitable for various working conditions, and some models support fire and anti-static design.

3. Stable connection and pressure bearing: RF or RTJ flange surface is used, combined with high-strength bolt connection, the structure is stable, able to withstand system pressure fluctuations and pipeline stress, and has high safety.

4. Low torque operation: Smooth flow channel, low friction coefficient, can achieve lightweight 90 degree opening and closing operation even under high pressure difference, and can be equipped with gearbox or pneumatic/electric actuators.

5. Easy and reliable maintenance: Most designs are top mounted or detachable connections, which facilitate online maintenance and replacement of valve seat seals, extend valve service life, and reduce operation and maintenance costs.

Q41F API Ball Valvestructure principle

Q41F API Ball Valve Structure Diagram

Parts Name Material List

NO.NameMaterial
1Bodycarbon Steel、stainless steel
2Ballstainless steel
3sealing ringPTFE、RPP
4packingPTFE
5Stemstainless steel


Q41F API Ball Valvetechnology parameter
Performance Specification
Nominal Pressure1.6/2.5/4/6.4Mpa
Shell Test2.4/3.75/6/9.6
Seal Test1.76/2.75/4.4/7.04
Suitable Temp.≤350


Q41F API 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.

Q41F API Ball Valve View Drawing

Q41F API Ball Valve Dimensions Table PN1.6Mpa

DN1520253240506580100125150200
L130140150165180200220250280320360400
H5963758595107140152178252272342
W130130160180230230400400650105010501410

Q41F API Ball Valve Dimensions Table PN2.5Mpa

DN1520253240506580100125150200
L130140150165180200220250320400400550
H59637597107142152178252272342345
W1301301602302304004007001100110015001500

Q41F API Ball Valve Dimensions Table PN4.0Mpa

DN1520253240506580100125150200
L130140150180200220250280320400400550
H59637597107142152178252272342345
W1301301602302304004007001000110015001800

Q41F API Ball Valve Dimensions Table PN6.4Mpa

DN1520253240506580100125150200
L165190216229241292330356432408559660
H59637597107142152178252272305398
W1301301602302304004007001000110015001800


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.