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H44W API Swing Check Valve

H44W API Swing Check Valve

  • Model:H44W-Class150P/H44W-Class300P/H44W-Class600P/H44W-Class900P/H44W-1500P/H44W-Class150C/H44W-Class300C/H44W-Class600C/H44W-Class900C/H44W-1500C
  • Specification:1/2"-48"
  • Temperature:≤ 540 ℃
  • Medium:Water, Oil , Steam
  • Pressure:Class150LB,Class300LB,Class600LB,Class900LB,Class1500LB
  • Connection method:Flange
  • Driving method:automated
  • Material:Carbon Steel,Stainless Steel
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H44W API Swing Check ValveOverview

H44W API Check Valve Overview

The H44W API Swing Check Valve is a flanged check valve designed and manufactured in accordance with American standards (ASME/API), featuring a swing-type structure. The valve body is typically made of materials such as A216 WCB cast steel or CF8 stainless steel, with pressure ratings ranging from Class 150 to Class 600.  The valve operates by using the forward flow of the medium to push the disc open as it rotates around its pivot. When the medium stops or reverses flow, the disc automatically closes under its own weight and reverse pressure, achieving reliable unidirectional flow control.  Strictly compliant with standards such as API 6D, this valve is specifically designed for high-pressure, high-temperature, and demanding pipeline systems in industries such as petroleum, natural gas, chemical processing, and power plants. It effectively prevents backflow of water, steam, oil products, and corrosive media, making it a critical component for ensuring the safe operation of industrial facilities.

H44W API Check Valve Product Image

H44W API Swing Check ValveCharacteristic

H44W American Standard Swing Check Valve Features

1. Strict Compliance with American Standards  

  The design, manufacturing, and testing fully adhere to standards such as ASME B16.34 and API 6D, ensuring the valve meets international project requirements in terms of pressure ratings, structural dimensions, material performance, and interchangeability.

2. High Pressure and Temperature Resistance with Metal Hard Sealing  

  The disc and seat are often overlay-welded with hard alloys or feature stainless steel sealing surfaces, providing excellent resistance to erosion and high temperatures. This makes the valve suitable for high-pressure differentials, high temperatures, and media containing particles, ensuring a long service life.

3. Flexible Installation and Low Pressure Loss  

  The swing-type design allows for horizontal or vertical installation (with upward flow direction), offering strong adaptability. When fully open, the disc causes minimal flow resistance, barely affecting pipeline flow and system energy consumption.

4. Robust Structure and High Safety Reliability  

  The valve body is designed with high structural strength, capable of withstanding pipeline stress and pressure impacts. Some models are equipped with fireproof and anti-static designs. The durable hinge mechanism ensures rapid closure, effectively mitigating water hammer effects.

5. Easy Maintenance and Wide Applicability  

  The structural design facilitates online inspection, with some models supporting quick maintenance. Suitable for various industrial media such as petroleum, chemicals, LNG, and power plants, this valve is a preferred check device for high-standard pipeline systems.

H44W API Swing Check Valvestructure principle

H44W API Check Valve Structure Diagram

Parts Name Material List

NO.NameMaterial
1BODYcarbon steel、stainless steel
2DISCcarbon steel、stainless steel
3GASKETGraphite
4NUTA194-B8
5BOLTA193-8
6ROCKER ARMcarbon steel、stainless steel
7PLUGstainless steel
8CAPcarbon steel、stainless steel
9NUTA194-B4
10BOLTA193-8


H44W API Swing Check Valvetechnology parameter
性能规范表Performance Specification
公称压力Nominal Pressure2-25(150LB-1500LB)Mpa
强度试验压力Shell Test3-37.5
密封试验压力Seal Test2.2-27.5
适用温度Suitable Temp.≤540


H44W API Swing Check Valvestandard size

Dimensions Standard Requirements

1. The structural length of the valve shall conform to the standard ASME B16.10.

2. The connecting flange shall conform to the standard ASEM B16.50.

H44W API Check Valve View Drawing

H44W API Check Valve Dimensions Table

DNHDD1D2BFZ-d
32120135100781824-18
40130145110851834-18
501401601251002034-18
651601801451202238-18
801851951601352238-18
1002102301901602438-23
1252502702201882838-25
1503003002502183038-25
20038036031027834312-25


Articles related to technology research and development
  • Slow-closing wafer check valve patent

       The utility model provides a slow-closing wafer check valve, which includes a valve body, a valve disc, a valve shaft, and a torsion spring sleeved on the valve shaft. The valve body is provided with a medium channel for medium circulation in the axial direction, which includes an inlet end and an outlet end. The valve disc, valve shaft, and torsion spring are symmetrically arranged in two groups relative to the center of the valve body. The utility model further includes a damping device located at the inlet end, which includes a cylinder inserted on the valve body, a piston rod located inside the cylinder, a spring, and a cover connected to the outer end of the cylinder. The cylinder is provided with a first cavity and a second cavity that are connected and communicated. The cross-section of the second cavity is square, and its cross-sectional area is larger than that of the first cavity. One end of the piston rod located inside the medium channel is provided with a movable block. The utility model has low noise and technical characteristics of quick opening, slow closing, and water hammer elimination, enabling light-load pump start-up and preventing the generation of water hammer during pump shutdown.

    1. A slow-closing wafer check valve, comprising a valve body, a valve disc, a valve shaft, and a torsion spring sleeved on the valve shaft. The valve body is provided with a medium passage for medium circulation in the axial direction, and the medium passage includes an inlet end and an outlet end. The valve disc, valve shaft, and torsion spring are symmetrically arranged in two groups relative to the center of the valve body. The valve also comprises a damping device located at the inlet end. The damping device includes a cylinder inserted on the valve body, a piston rod located inside the cylinder, a spring, and a cover connected to the outer end of the cylinder. The cylinder is provided with a first cavity and a second cavity that are connected and communicated. The cross-section of the second cavity is square, and the cross-sectional area of the second cavity is larger than that of the first cavity. One end of the piston rod is located inside the second cavity, and the other end penetrates through the first cavity and is located inside the medium passage. The end of the piston rod located inside the medium passage is provided with a movable block, and the end of the piston rod located inside the second cavity is provided with an external thread. The second cavity is provided with a limit plate that is adapted to and threadedly connected with the piston rod. The spring is sleeved on the piston rod, with one end abutting against the limit plate and the other end abutting against the inner wall of the second cavity. The side of the valve disc facing the piston rod is provided with a driving block that cooperates with the movable block. During the closing process of the valve disc, the side of the driving block facing the center of the valve body cooperates with the movable block to achieve displacement of the piston rod relative to the cylinder towards the center of the valve body. The damping device is symmetrically arranged in two groups relative to the center of the valve body.

    2. A slow-closing wafer check valve according to claim 1, characterized in that a square hole is axially provided at the end of the piston rod located in the second cavity, an adjuster is inserted at a position on the cover corresponding to the square hole, a driving rod adapted to the square hole is provided at the end of the adjuster, and the adjuster is rotatable relative to the cover.

    3. A slow-closing wafer check valve according to claim 2, characterized in that a limit slot is provided at the connection between the cover and the regulator, and a limit mechanism is arranged inside the limit slot. The limit mechanism comprises a ball, a tower spring connected to the ball, and a positioning column for fixing the tower spring. At least four engaging slots adapted to the ball are provided circumferentially at the connection between the regulator and the cover.

    4. A slow-closing wafer check valve according to claim 3, characterized in that the top edge of the engaging groove is provided with a rounded corner.

    5. A slow-closing wafer check valve according to claim 1, characterized in that the valve body is provided with a stepped groove adapted to the cylinder body.

    6. A slow-closing wafer check valve according to claim 5, characterized in that a sealing ring is sleeved at the connection between the cylinder and the valve body.

    7. A slow-closing wafer check valve according to claim 1, characterized in that the valve disc is provided with a build-up welding layer that is sealed with the valve body. 8. A slow-closing wafer check valve according to claim 7, characterized in that one side of the build-up welding layer is provided with vulcanized rubber that is sealed with the valve body.