The electric flanged V-type ball valve has a V-shaped structure in the valve core, which can change the flow cross-sectional area of the ball valve to achieve regulation.
The electric flanged V-type ball valve has a V-shaped structure in the valve core, which can change the flow cross-sectional area of the ball valve to achieve regulation. The relative rotation with the valve seat generates a shearing force that can cut off fibers, preventing jamming. It features strong flow capacity, high regulation accuracy, good sealing performance, and lightweight design. It is particularly suitable for regulating slurries, media containing fibers, and media with fine solid suspensions. The product is widely used in industrial automation control systems in industries such as paper making, food, petroleum, chemical, metallurgy, power, pharmaceuticals, and wastewater treatment.
Main Performance Parameters | ||||||||||
Nominal Diameter | DN25-DN500 | |||||||||
Nominal Pressure | 1.0Mpa (PN10) -6.4Mpa (PN64) | |||||||||
Applicable Temperature | PTFE 150℃, PPL 200℃, Metal Hard Seal 425℃ | |||||||||
Applicable Medium | Water, Oil, Steam, Acids, Alkalis | |||||||||
Connection Type | Flanged Connection | |||||||||
Body Material | Cast Steel, Stainless Steel (304, 316, 316L), Duplex Steel | |||||||||
Core Material | Stainless Steel (304, 316, 316L), Duplex Steel | |||||||||
Stem Material | ||||||||||
Seat Material | Polytetrafluoroethylene (PTFE), High-Temperature PPL, Metal Hard Seal, etc. |
Main Outline and Connection Dimensions | ||||||||||||
Nominal Diameter | External Dimensions and Connection Sizes | Actuator Model | ||||||||||
DN(mm) | L | L1 | H | H1 | D | D1 | D2 | D3 | C | f | n-∅d | |
25 | 102 | 178 | 260 | 87 | 115 | 85 | 65 | 38 | 16 | 2 | 4-∅14 | Type 05 |
32 | 105 | 210 | 267 | 87 | 140 | 100 | 76 | 42 | 18 | 3 | 4-∅18 | Type 10 |
40 | 114 | 210 | 292 | 87 | 150 | 110 | 84 | 50 | 18 | 3 | 4-∅18 | Type 16 |
50 | 124 | 210 | 292 | 97 | 165 | 125 | 99 | 60 | 20 | 3 | 4-∅18 | Type 16 |
65 | 145 | 309 | 327 | 112 | 185 | 145 | 118 | 75 | 20 | 3 | 4-∅18 | Type 30 |
80 | 165 | 309 | 359 | 112 | 200 | 160 | 132 | 94 | 20 | 3 | 8-∅18 | Type 30 |
100 | 194 | 309 | 395 | 122 | 220 | 180 | 156 | 110 | 22 | 3 | 8-∅18 | Type 30 |
125 | 213 | 309 | 399 | 142 | 250 | 210 | 184 | 135 | 22 | 3 | 8-∅18 | Type 60 |
150 | 229 | 309 | 461 | 165 | 285 | 240 | 211 | 165 | 24 | 3 | 8-∅22 | Type 125 |
200 | 243 | 309 | 509 | 195 | 340 | 295 | 266 | 210 | 24 | 3 | 12-∅22 | Type 250 |
250 | 297 | 309 | 603 | 237 | 405 | 355 | 319 | 260 | 26 | 3 | 12-∅26 | Type 400 |
300 | 334 | 309 | 790 | 287 | 460 | 410 | 370 | 310 | 28 | 4 | 12-∅26 | Type 400 |
350 | 414 | 309 | 828 | 338 | 520 | 470 | 429 | 360 | 30 | 4 | 16-∅26 | Type 400 |
400 | 490 | 309 | 1063 | 390 | 580 | 525 | 480 | 410 | 32 | 4 | 16-∅30 | Type 400 |
500 | 600 | 309 | — | 510 | 715 | 650 | 609 | 510 | 36 | 4 | 16-∅33 | Type 400 |
Note: The actuator model used may vary depending on the valve torque and the medium being used, and related dimensions will change accordingly. | ||||||||||||