• Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

Media: Gas
Temperature: Low Temperature
Material: Cast Steel
Structure: Swing
Pressure: Low Pressure
Function: Ddcv Double Lobe, Nrvr Silence
Samples:
US$ 20/Piece 1 Piece(Min.Order)
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Customization:
Diamond Member Since 2024

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Basic Info.

Model NO.
bv-001
Flow Direction
Unidirection
Application
Industrial Usage, Water Industrial Usage, Household Usage
Delivery Time
15-25 Days
Coating
Customized
Design
BS 1868 / API 6D / ASME B16.34
Size
DN15-DN1200
End Connection
Threaded, Socket Weld
Face to Face
ASME B16.10
End Flange
ASME B16.5
Test
API598
Certificates
CE/ISO/SGS/Mtc
Warranty Time
24 Months
OEM/ODM
Customized
Manufacturer
Kamroo
Trim
Ss AISI 410
Socket Weld End
ANSI B 16.11
Transport Package
Wooden Case
Specification
customized
Trademark
KAMROO
Origin
China
HS Code
8481804090
Production Capacity
10000PCS/Year

Product Description



Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
High-pressure check valve structure and installation method:
1. The disc of the high-pressure check valve is disc-shaped and rotates around the rotating axis of the valve seat channel. Because the channel inside the valve is streamlined, the flow resistance is smaller than that of the lifting butterfly check valve. It is suitable for large-diameter occasions with low flow rate and infrequent flow changes, but it is not suitable for pulsating flow. Its sealing performance is not as good as the lifting type. Butterfly check valves are divided into single-flap type, double-flap type and most-flap type. These three forms are mainly divided according to the valve diameter. The purpose is to prevent the medium from stopping or backflowing and weakening the hydraulic impact.
2. The high-pressure check valve disc slides along the vertical center line of the valve body. The internal thread check valve can only be installed on the horizontal pipe. The disc on the high-pressure small-diameter check valve can be a ball. The valve body shape of the butterfly check valve is the same as that of the stop valve (it can be used with the stop valve), so its fluid resistance coefficient is larger. Its structure is similar to that of the stop valve, and the valve body and disc are the same as the stop valve. The upper part of the valve disc and the lower part of the valve cover are processed with guide sleeves. The valve disc guide sleeve can be freely raised and lowered in the valve guide sleeve. When the medium flows downstream, the valve disc is opened by the thrust of the medium. When the medium stops flowing, the valve disc falls on the valve seat by self-sagg, which prevents the medium from flowing back. The medium inlet and outlet channels of the straight-through butterfly check valve are perpendicular to the direction of the valve seat channel; the medium inlet and outlet channels of the vertical lifting check valve are the same as the direction of the valve seat channel, and its flow resistance is smaller than that of the straight-through type.
3. High-pressure check valve: a check valve in which the valve disc rotates around the pin shaft in the valve seat. The butterfly check valve has a simple structure and can only be installed on horizontal pipes, with good sealing performance.
4. High-pressure check valve: a valve in which the valve disc slides along the center line of the valve body. The pipeline check valve is a new type of valve with small size, light weight, and good processing technology. It is one of the development directions of the check valve. However, the fluid resistance coefficient is slightly larger than that of the swing check valve.
5. High-pressure check valve: This valve is used as a boiler feed water and steam cut-off valve. It has the combined functions of a lift check valve and a stop valve or angle valve.
In addition, there are some check valves that are not suitable for pump outlet installation, such as bottom valves, spring-type, Y-type check valves, etc.
B. High-pressure check valve use and performance specifications:
This valve is used as a device to prevent medium backflow on industrial pipelines.


Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
  • Prevents Backflow: The primary function of a check valve is to prevent the backflow of fluids in a piping system. It ensures that the flow of fluid occurs in one direction only, effectively blocking reverse flow. This is especially important in situations where backflow could cause damage, contamination, or interference with the intended flow direction.
  • Protects Equipment and Systems: Check valves help safeguard equipment and systems by preventing potential damage caused by reverse flow. They act as a barrier, preventing fluids from flowing back and causing issues such as pump damage, pipe collapse, water hammer, or contamination of sensitive components.
  • Maintains Pressure: Check valves assist in maintaining optimal pressure levels within a system. By allowing fluid to flow in the desired direction and preventing backflow, they help maintain the desired pressure conditions, ensuring efficient operation of pumps, regulators, and other pressure-sensitive equipment.
  • Enhances System Efficiency: Check valves contribute to the overall efficiency of a system. By preventing reverse flow, they eliminate the need for additional pumps or mechanisms to counteract backflow, thereby reducing energy consumption and operational costs.
  • Minimizes Water Hammer: Water hammer, characterized by sudden pressure surges or shockwaves in a system, can lead to pipe damage and system failure. Check valves help mitigate water hammer by preventing reverse flow and the subsequent pressure spikes that can occur.
  • Allows for System Isolation and Maintenance: Check valves provide a means of isolating sections of a system for maintenance or repairs. By closing off the valve, the flow of fluids can be stopped in a specific direction, allowing for safe and efficient maintenance procedures.

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
During the use of this valve, the medium flows in the direction of the arrow shown in the figure.
1. When the medium flows in the specified direction, the valve disc is opened by the force of the medium; when the medium flows back, due to the deadweight of the valve disc and the reverse force of the medium, the valve disc and the sealing surface of the valve seat are tightly closed, so as to prevent the backflow of the medium.
2. The sealing surface of the valve body and valve disc is welded with stainless steel.
3. The structural length of this valve is in accordance with the provisions of GB12221-1989, and the flange connection size is in accordance with the provisions of JB/T79-1994.


Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
In pipes and similar devices and equipment, check valves are generally used to prevent a reverse flow by allowing materials or fluids to flow in only one direction. Despite their various forms, sizes, and functions, these valves generally operate based on the same principle. 

The primary components of a check valve include the Body,Body Seats,Gasket,Cover Plate,Hinge,Nuts,Washer.


 Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
 
 

NPS

DN

API US Standard swing check valve size list

 

Type

in

mm

L

D

D1

D2

b

z-Фd

H

W(kg)

H44H-150Lb

2"

50

203

152

120.6

92

19

4-Ф19

161

17

H44W-150LbP

21/2"

65

216

178

139.7

105

22

4-Ф19

180

23

H44Y-150LbP

3"

80

241

190

152.4

127

24

4-Ф19

190

33

H44Y-150LbR

4"

100

292

229

190.5

157

24

8-Ф19

203

44

H44Y-150LbPL

5"

125

330

254

215.9

186

24

8-Ф22

229

62

H44Y-150LbRL

6"

150

356

279

241.3

216

25

8-Ф22

257

78

 

8"

200

495

343

298.4

270

29

8-Ф22

292

137

 

10"

250

622

406

362

324

30

12-Ф25

355

207

 

12"

300

698

483

431.8

381

32

12-Ф25

396

279

 

14"

350

787

533

476.2

413

35

12-Ф29

445

387

 

16"

400

864

597

539.8

470

37

16-Ф29

490

446

 

18"

450

978

635

577.8

533

40

16-Ф32

520

621

 

20"

500

978

698

635

584

43

20-Ф32

546

770

 

24"

600

1295

813

749.3

692

48

20-Ф35

880

970

                     

H44H-300Lb

2"

50

267

165

127

92

22

8-Ф19

180

20

H44W-300LbP

21/2"

65

292

190

149.4

105

25

8-Ф22

190

24

H44Y-300LbP

3"

80

318

210

168.1

127

29

8-Ф22

212

40

H44Y-300LbR

4"

100

356

254

200.2

157

32

8-Ф22

246

51

H44Y-300LbPL

5"

125

400

279

235

186

35

12-Ф22

 

65

H44Y-300LbRL

6"

150

444

318

269.7

216

37

12-Ф25

292

90

 

8"

200

533

381

330.2

270

41

16-Ф29

328

175

 

10"

250

622

444

387.4

324

48

16-Ф32

379

210

 

12"

300

711

521

450.6

381

51

20-Ф32

420

286

 

14"

350

838

584

514.4

413

54

20-Ф35

530

400

 

16"

400

864

648

571.5

470

57

20-Ф35

584

550

 

18"

450

978

711

628.6

533

60

24-Ф35

610

700

 

20"

500

1016

775

685.8

584

64

24-Ф41

860

860

 

24"

600

1346

914

812.8

692

70

28-Ф44

203

1931

                     

H44H-600Lb

2"

50

292

165

127

92

25

8-Ф19

203

34

H44W-600LbP

21/2"

65

330

190

150

105

29

8-Ф22

229

45

H44Y-600LbP

3"

80

356

210

168

127

32

8-Ф22

235

63

H44Y-600LbR

4"

100

432

273

216

157

38

8-Ф25

286

114

H44Y-600LbPL

5"

125

508

330

266

186

44

8-Ф29

292

160

H44Y-600LbRL

6"

150

559

356

292

216

48

12-Ф29

330

207

 

8"

200

660

419

349

270

56

12-Ф32

381

387

 

10"

250

787

508

432

324

64

16-Ф35

457

580

 

12"

300

838

559

489

381

67

20-Ф35

584

778

 

14"

350

889

603

527

413

70

20-Ф38

635

869

 

16"

400

991

686

603

470

76

20-Ф41

684

1380

                     
                     
                     
                     
                     

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve



Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check ValveGood Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve
Good Quality/Reduce Core/Sw/Bw/Motorised/Flanged End/Valve Manufacturer/Turbine Actuator/DN32/1.2′′/Class400/High Pressure Check Valve

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