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T Type Strainer

Our valves utilize cutting-edge technology, undergo rigorous quality control, ensuring outstanding performance and durability.

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T Type Strainer

Materials:

WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1

LC2、LC3、LCB、LCC、Monel、 20# Alloys、4A、5A、C95800

product feature

Face to Face Dimensions: ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:ANSI B16.34

Pressure Test:API 598

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Class150   T Type Strainer 

 

 Application

Face to Face Dimensions: ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:ANSI B16.34

Pressure Test:API 598

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1

LC2、LC3、LCB、LCC、Monel、 20# Alloys、4A、5A、C95800

 

NPS in 2 2 1/2 3 4 6 8 10 12 14 16
d mm 51 64 76 102 152 203 254 305 337 387
L(RF) mm 203 216 241 292 406 495 622 698 787 914
L(BW) mm 203 216 241 292 406 495 622 698 787 914
d1 mm 92 105 127 157 216 270 324 381 413 470
d2 mm 120.5 139.5 152.5 190.5 241.5 298.5 362 432 476 540
D mm 152 178 190 229 279 343 406 483 533 597
b mm 16 18 19 24 26 29 31 32 35 37
n-Фd mm 4-19 4-19 4-19 8-19 8-22 8-22 12-25 12-25 12-29 16-29
H mm 126 144 154 180 230 278 316 367 404 430

 

Class300   T Type Strainer

 

 Application

Face to Face Dimensions: ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:ANSI B16.34

Pressure Test:API 598

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1

LC2、LC3、LCB、LCC、Monel、 20# Alloys、4A、5A、C95800

 

NPS in 2 2 1/2 3 4 6 8 10 12 14 16
d mm 51 64 76 102 152 203 254 305 337 387
L(RF) mm 267 292 318 356 444 559 622 711 838 864
L(BW) mm 267 292 318 356 444 559 622 711 838 864
d1 mm 92 105 127 157 216 270 324 381 413 470
d2 mm 127 149 168.5 200 270 330 387.5 451 514.5 571.5
D mm 165 190 210 254 318 381 445 521 584 648
b mm 23 26 29 32 37 42 48 51 54 58
n-Фd mm 8-19 8-22 8-22 8-22 12-22 12-25 16-29 16-32 20-32 20-35
H mm 135 155 170 195 245 295 335 380 425 455

 

Class300   T Type Strainer

 

Application

Face to Face Dimensions: ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:ANSI B16.34

Pressure Test:API 598

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1

LC2、LC3、LCB、LCC、Monel、 20# Alloys、4A、5A、C95800

 

NPS in 2 2 1/2 3 4 6 8 10 12 14 16
d mm 51 64 76 102 152 200 248 298 327 375
L(RF) mm 292 330 356 432 559 660 787 838 889 991
L(BW) mm 292 330 356 432 559 660 787 838 889 991
d1 mm 92 105 127 157 216 270 324 381 413 470
d2 mm 127 149 168.5 216 292 349 432 489 527 603
D mm 165 190 210 273 356 419 508 559 603 686
b mm 26 29 32 38 48 56 64 67 70 77
n-Фd mm 8-19 8-22 8-22 8-25 12-29 12-32 16-35 20-35 20-38 20-41
H mm 145 160 175 205 260 315 355 405 450 475

 

POPULAR PRODUCTS

Face to Face Dimensions: ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:API 609

Pressure Test:API598

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1LC2、LC3、LCB、LCC、Monel、20# Alloys、4A、5A、C95800、C95500, ect.

Face to Face Dimensions: EN558-1/DIN3202 F2

Flange end Dimension : EN1092-1/DIN2545

Design and Manufacture:EN 13709/DIN3356

Pressure Test:EN12266/DIN3230

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1LC2、LC3、LCB、LCC、Monel、20# Alloys、4A、5A、C95800、C95500, ect.

Face to Face Dimensions:ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:API 602

Pressure Test:API 598Materials:A105、 F304 、F304L 、F316 、F316L、LF1 、LF2、LF3、LF9、 F51、F53、F11、F22

Face to Face Dimensions:ANSI B16.10

Flange end Dimension :ANSI B16.5

Butt Welded Dimensions:ANSI B16.25

Design and Manufacture:API 6D

Pressure Test:API598

Materials:WCB 、WC6 、WC9 、CF8、 CF8M、 CF3、 CF3M 、CN7M、LC1LC2、LC3、LCB、LCC、Monel、20# Alloys、4A、5A、C95800、C95500, ect.

POPULAR PRODUCTS

Butt Weld vs Socket Weld vs Flanged Valves: How to Choose the Right End Connection

Butt Weld vs Socket Weld vs Flanged Valves: How to Choose the Right End Connection

A practical buyer’s guide to choosing between butt weld, socket weld and flanged valve end connections — compared by pressure, temperature, pipe size, maintenance and governing code.
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Hydraulic Actuator Valves: When to Choose Hydraulic Over Pneumatic or Electric

Hydraulic actuator valves deliver the highest torque density and reliable fail-safe performance in heavy-duty oil, gas, and power applications. This B2B guide compares hydraulic, pneumatic, and electric actuation so engineers and buyers can choose the right valve package.
Large gear operated ball valve installed on a high-pressure pipeline at an industrial plant

Gear Operated Ball Valve: Benefits for Large-Bore and High-Pressure Lines

A gear operated ball valve uses a worm-gear actuator to multiply hand torque 20–60×, making it the safe, practical choice for large-bore (DN50+) and high-pressure (Class 300+) pipelines where a lever handle would require unsafe force.
Lever Operated Ball Valve: When Manual Beats Gear or Actuator

Lever Operated Ball Valve: When Manual Beats Gear or Actuator

A lever operated ball valve is the cost-effective, low-maintenance choice for small- to mid-bore isolation points where hand torque is sufficient. Learn when it beats gear or actuated operators.
Engineering Double Block and Bleed (DBB) Systems: Why Through-Conduit Slab Gate Valves Outperform Wedge Gates

Engineering Double Block and Bleed (DBB) Systems: Why Through-Conduit Slab Gate Valves Outperform Wedge Gates

Achieving reliable fluid isolation in high-pressure oil and gas pipelines is critical for plant safety. While traditional wedge gate valves often suffer from seat wear, high operating torque, and trapped solids in bottom V-shaped pockets, through-conduit slab gate valves offer superior Double Block and Bleed (DBB) isolation. Featuring parallel flat gates, spring-loaded floating seats, and full-bore piggable designs, these valves eliminate wedging stress and feature automatic body cavity pressure relief. Sedelon API 6D monogrammed slab gate valves deliver long-term, zero-pressure-drop isolation for demanding pipeline manifolds.
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