ASME B16.34 High Pressure Gate Valve, ASTM A217 WC9, BW
Key Specifications / Features
ASME B16.34 High Pressure Gate Valve Manufacturer in China: ASME B16.34 High Pressure Gate Valve, API 600, ASTM A217 WC9, Class 1500 - 2500 LB, BW End.
Detail Information
Name: ASME B16.34 High Pressure Gate Valve.
Body: ASTM A217 WC9.
Nominal pressure: Class 1500 - 2500 LB.
Connection end: Butt welded.
Design Standards: API 600 or ASME B16.34
Test and Inspection: API 598.
The main part material
The main shape and connection dimensions
Diagram

Body: ASTM A217 WC9.
Nominal pressure: Class 1500 - 2500 LB.
Connection end: Butt welded.
Design Standards: API 600 or ASME B16.34
Test and Inspection: API 598.
The ASME B16.34 High Pressure Gate Valve with nominal pressure from 1500LB~2500LB which is manufactured by Topper Valve is butt welded and also can be operated manually. The valve body is made of ASTM A217 WC9 and the sealing surface of the valve rod carbide.
Performance parameters
| Model | CLASS | Applicable temperature / ℃ | Suitable media | Body |
| A-1500LB | 1500LB | ≤570 | steam | WC9 |
| B-2500LB | 1500LB | ≤57 | steam | WC9 |
The main part material
| model | material | ||||
| Body | Valve plate | cap | Stem mother | filler | |
| A-1500LB | WC9 | WC9 | WC9 | 38CrMoA1A | Flexible graphite |
| B-2500LB | WC9 | WC9 | WC9 | 38CrMoA1A | Flexible graphite |
The main shape and connection dimensions
| DN | L | D | H | D0 | weight/Kg |
| 50 | 280 | 82 | 585 | 300 | 42 |
| 65 | 340 | 110 | 650 | 320 | 53 |
| 80 | 475 | 130 | 680 | 400 | 130 |
| 100 | 500 | 170 | 755 | 450 | 180 |
| 125 | 600 | 195 | 830 | 500 | 190 |
| 150 | 700 | 225 | 1050 | 550 | 320 |
| 175 | 750 | 255 | 1050 | 600 | 400 |
| 200 | 800 | 285 | 1050 | 650 | 550 |
| 225 | 850 | 300 | 1100 | 700 | 600 |
Diagram

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Teresa is a skilled author specializing in industrial technical articles with over eight years of experience. She has a deep understanding of manufacturing processes, material science, and technological advancements. Her work includes detailed analyses, process optimization techniques, and quality control methods that aim to enhance production efficiency and product quality across various industries. Teresa's articles are well-researched, clear, and informative, making complex industrial concepts accessible to professionals and stakeholders.
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