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Butterfly valve

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210:, has the lowest pressure rating. The high-performance double offset butterfly valve, used in slightly higher-pressure systems, is offset from the center line of the disc seat and body seal (offset one), and the center line of the bore (offset two). This creates a cam action during operation to lift the seat out of the seal resulting in less friction than is created in the zero offset design and decreases its tendency to wear. The valve best suited for high-pressure systems is the triple offset butterfly valve. In this valve, the disc seat contact axis is offset, which acts to virtually eliminate sliding contact between disc and seat. In the case of triple offset valves the seat is made of metal so that it can be machined such as to achieve a bubble-tight shut-off when in contact with the disc. 323: 311: 141: 122: 347: 335: 25: 179:, which allows for quick shut off. Butterfly valves are generally favored because they cost less than other valve designs, and are lighter weight so they need less support. The disc is positioned in the center of the pipe. A rod passes through the disc to an actuator on the outside of the valve. Rotating the 246:, precision machined, and a flat valve face on the upstream and downstream sides of the valve.the drawback is that wafer butterfly valves only have a small flow control range. The pressure drop across wafer butterfly valves may be greater. Wafer butterfly valves are prone to clogging due to their design. 273:
Rotary valves constitute a derivation of the general butterfly valves and are used mainly in powder processing industries. Instead of being flat, the butterfly is equipped with pockets. When closed, it acts exactly like a butterfly valve and is tight. But when it is in the rotation, the pockets allow
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The butterfly valve has been in use since the late 18th century. James Watt used a butterfly valve in his steam engine prototypes. With advances in material manufacturing and technology, butterfly valves could be made smaller and withstand more-extreme temperatures. After World War II, synthetic
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In the pharmaceutical, chemical, and food industries, a butterfly valve is used to interrupt product flow (solid, liquid, gas) within the process. The valves used in these industries are usually manufactured according to cGMP guidelines (current good manufacturing practice). Butterfly valves
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disc mounted on a rod. When the valve is closed, the disc is turned so that it completely blocks off the passageway. When the valve is fully open, the disc is rotated a quarter turn so that it allows an almost unrestricted passage of the fluid. The valve may also be opened incrementally to
265:) pressure rating. The same valve mounted with one flange, in dead end service, has a 520 kPa (75 psi) rating. Lugged valves are extremely resistant to chemicals and solvents and can handle temperatures up to 200 °C, which makes it a versatile solution. 299:
rubbers were used in the sealer members, allowing the butterfly valve to be used in many more industries. In 1969 James E. Hemphill patented an improvement to the butterfly valve, reducing the hydrodynamic torque needed to change the output of the valve.
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Butterfly valve with actuator electric valve - An electrically actuated butterfly valve is a quarter-turn valve controlled by an electric motor. It offers fast and precise flow regulation, remote operation, and versatility for various
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A lug-style butterfly valve used in dead end service generally has a reduced pressure rating. For example, a lug-style butterfly valve mounted between two flanges has a 1,000 kPa (150 
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Lug-style valves have threaded inserts at both sides of the valve body. This allows them to be installed into a system using two sets of bolts and no nuts. The valve is installed between two
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which makes the valve suitable for dosing bulk product by gravity. Such valves are usually of small size (less than 300 mm), pneumatically activated and rotate 180 degrees back and forth.
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generally replaced ball valves in many industries, particularly petroleum, due to lower cost and ease of installation, but pipelines containing butterfly valves cannot be
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There are different kinds of butterfly valves, each adapted for different pressures and different usage. The zero-offset butterfly valve, which uses the flexibility of
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Doubly-eccentric butterfly valves (high-performance butterfly valves or double-offset butterfly valves) – different type of materials is used for seat and disc.
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using a separate set of bolts for each flange. This setup permits either side of the piping system to be disconnected without disturbing the other side.
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turns the disc either parallel or perpendicular to the flow. Unlike a ball valve, the disc is always present within the flow, so it induces a
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Triply-eccentric butterfly valves (triple-offset butterfly valves) – the seats are either laminated or solid metal seat design.
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The wafer style butterfly valve is designed to maintain a seal against bi-directional pressure differential to prevent any
68: 108: 42: 75: 415: 194:. In operation, the valve is fully open or closed when the disc is rotated a quarter turn. The "butterfly" is a 46: 242:
in systems designed for unidirectional flow. It accomplishes this with a tightly fitting seal; i.e., gasket,
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Concentric butterfly valves – this type of valve has a resilient rubber seat with a metal disc.
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A butterfly valve is from a family of valves called
515:. James E Hemphill, Fisher Governor Co. 1966-09-19. 49:. Unsourced material may be challenged and removed. 551: 233: 249: 170: 109:Learn how and when to remove this message 139: 120: 163:of a fluid. The closing mechanism is a 552: 413: 274:dropping a defined amount of solids, 47:adding citations to reliable sources 18: 13: 280: 175:Operation is similar to that of a 14: 576: 147:in wafer butterfly configuration. 345: 333: 321: 309: 125:Large butterfly valve used on a 23: 268: 159:that isolates or regulates the 34:needs additional citations for 505: 481: 456: 432: 407: 1: 401: 395:Plastic pressure pipe systems 7: 357: 234:Wafer-style butterfly valve 10: 581: 293: 420:Cair Euromatic Automation 328:Cast iron butterfly valve 316:Cast iron butterfly valve 302: 250:Lug-style butterfly valve 213: 528:Cite journal requires 493:www.stoneleigh-eng.com 352:Butterfly valve DN3000 187:drop, even when open. 171:Principle of operation 148: 137: 444:www.powderprocess.net 414:sshaik (2023-04-13). 340:Large butterfly valve 143: 124: 132:water inlet pipe in 43:improve this article 539:CS1 maint: others ( 192:quarter-turn valves 16:Flow control device 149: 138: 513:"Butterfly valve" 119: 118: 111: 93: 58:"Butterfly valve" 572: 545: 544: 537: 531: 526: 524: 516: 509: 503: 502: 500: 499: 485: 479: 477: 475: 474: 460: 454: 453: 451: 450: 436: 430: 429: 427: 426: 411: 349: 337: 325: 313: 114: 107: 103: 100: 94: 92: 51: 27: 19: 580: 579: 575: 574: 573: 571: 570: 569: 565:Plumbing valves 550: 549: 548: 538: 529: 527: 518: 517: 511: 510: 506: 497: 495: 489:"Valve History" 487: 486: 482: 472: 470: 462: 461: 457: 448: 446: 438: 437: 433: 424: 422: 412: 408: 404: 399: 375:Diaphragm valve 360: 353: 350: 341: 338: 329: 326: 317: 314: 305: 296: 283: 281:Use in industry 271: 252: 236: 216: 173: 153:butterfly valve 115: 104: 98: 95: 52: 50: 40: 28: 17: 12: 11: 5: 578: 568: 567: 562: 547: 546: 530:|journal= 504: 480: 468:www.bitorq.com 455: 431: 405: 403: 400: 398: 397: 392: 387: 382: 377: 372: 367: 361: 359: 356: 355: 354: 351: 344: 342: 339: 332: 330: 327: 320: 318: 315: 308: 304: 301: 295: 292: 290:for cleaning. 282: 279: 270: 267: 251: 248: 235: 232: 231: 230: 226: 223: 220: 215: 212: 172: 169: 167:that rotates. 117: 116: 31: 29: 22: 15: 9: 6: 4: 3: 2: 577: 566: 563: 561: 558: 557: 555: 542: 535: 522: 514: 508: 494: 490: 484: 478:, broken link 469: 465: 459: 445: 441: 435: 421: 417: 410: 406: 396: 393: 391: 388: 386: 383: 381: 378: 376: 373: 371: 370:Control valve 368: 366: 363: 362: 348: 343: 336: 331: 324: 319: 312: 307: 306: 300: 291: 289: 278: 276: 266: 264: 259: 257: 247: 245: 241: 229:applications. 227: 224: 221: 218: 217: 211: 209: 204: 202: 197: 193: 188: 186: 182: 178: 168: 166: 162: 158: 154: 146: 142: 135: 131: 130:power station 128: 127:hydroelectric 123: 113: 110: 102: 99:December 2007 91: 88: 84: 81: 77: 74: 70: 67: 63: 60: –  59: 55: 54:Find sources: 48: 44: 38: 37: 32:This article 30: 26: 21: 20: 521:cite journal 507: 496:. Retrieved 492: 483: 471:. Retrieved 467: 458: 447:. Retrieved 443: 434: 423:. Retrieved 419: 409: 390:Needle valve 297: 284: 275: 272: 269:Rotary valve 260: 253: 237: 205: 191: 189: 174: 152: 150: 145:Duplex valve 144: 105: 96: 86: 79: 72: 65: 53: 41:Please help 36:verification 33: 385:Globe valve 365:Check valve 554:Categories 498:2018-03-04 473:2018-08-28 449:2019-08-23 425:2023-05-12 402:References 380:Gate valve 177:ball valve 69:newspapers 358:See also 288:'pigged' 240:backflow 201:throttle 185:pressure 181:actuator 294:History 256:flanges 83:scholar 560:Valves 303:Images 244:o-ring 208:rubber 203:flow. 85:  78:  71:  64:  56:  214:Types 196:metal 157:valve 155:is a 134:Japan 90:JSTOR 76:books 541:link 534:help 165:disk 161:flow 62:news 263:psi 45:by 556:: 525:: 523:}} 519:{{ 491:. 466:. 442:. 418:. 151:A 543:) 536:) 532:( 501:. 476:. 452:. 428:. 136:. 112:) 106:( 101:) 97:( 87:· 80:· 73:· 66:· 39:.

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