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Slab Gate Valve

Slab Gate Valve

Slab Gate Valve

Material:Carbon Steel (WCB, WCC for strength), Stainless Steel (SS304, SS316 for corrosion resistance), Cast Iron

Size Range:2″ to 48″ (DN50-DN1200)

Connection Options:Flanged, Threaded (NPT, BSP), Butt Weld, Socket Weld

Working Pressure: PN16 ~ PN100

Working Temperature:-29°C to 425°C

Sealing Options:Metal-to-Metal, Resilient Seat, Graphite, PTFE

Manufacturing Method:Cast, Forged, Machined

Applicable Medium:Water, Oil, Gas, Steam, Chemical Fluids

Manufacturing Standard:API 600, API 602, ASME B16.34, BS 5163, DIN 3352

Product Overview

The Slab Gate Valve is a through-conduit valve designed for reliable isolation in oil, gas, and pipeline systems. Its solid, single-piece gate ensures tight sealing with minimal pressure drop, making it ideal for long-distance and high-pressure applications. With a full-bore design, it allows pigging operations and reduces flow turbulence. The valve features metal-to-metal or soft sealing, optional grease injection, and is available in both rising and non-rising stem configurations. Engineered for durability, it offers excellent performance in critical service environments.

Product Features

  • This valve is an enhanced design based on advanced flat plate gate valve technology. It offers significant improvements in structure, sealing reliability, and ease of maintenance.
  • The valve seat and damper plate undergo special precision machining. With the support of hard alloy and PTFE sealing, the valve achieves a dual-seal configuration. Optional auxiliary tail-end sealing further enhances leak prevention and extends service life.
  • This valve conforms to the JB/T standard series. The secondary sealing adopts a wedge-type structure to ensure tight sealing of the valve stem under the bonnet. Flange dimensions comply with JB/T79 standards, with optional thread-type connections available per customer request.
  • The version with a conduit (through-hole) design can accommodate pigging operations in pipelines. The version without the conduit hole is not suitable for pigging applications.
  • When internal pressure builds up in the valve body cavity, the seat is designed to automatically relieve excess pressure.
  • The valve’s transmission mechanism ensures smooth and agile operation. The required operating torque is approximately one-third to one-half of that of a conventional gate valve.
  • The pneumatic gate valve opens and closes rapidly, includes a buffer device, and avoids impact during operation. Its structure allows easy conversion between pneumatic and manual operation.
  • Operation is quick, flexible, and reliable.
  • The regulating version of the flat gate valve is ideal for use in pump stations, pipeline outlets, or other positions where flow control or isolation is required.
  • Tanggong Valve Group also manufactures special customized regulating flat gate valves based on customer needs.
  • For electrically operated models, Tanggong Valve Group uses reliable domestic actuators from Yangzhou Electric Power Repair Factory or Tianjin Electric, and also supports international brands such as Rotork (IQ series), AUMA (Germany, SA series), or any electric actuator specified by the customer.

 

Slab Gate Valve

Slab_Gate_Valve10

Specification Parameters

◇ Main External and Connection Dimensions (JB/T79.1–1994)

PN (MPa) DN (mm) L D D1 D2 D0 f b H H1 Z–φ
1.6 50 178 160 125 100 250 3 16 584 80 4–18
65 190 180 145 120 250 3 18 634 95 4–18
80 203 195 160 135 250 3 20 688 100 8–18
100 229 215 180 155 300 3 20 863 114 8–18
125 254 245 210 185 350 3 22 940 132 8–18
150 267 280 240 210 350 3 24 1030 150 8–23
200 292 335 295 265 350 3 26 1277 168 12–23
250 330 405 355 320 400 3 30 1491 203 12–25
300 356 460 410 375 450 4 30 1701 237 12–25
350 381 520 470 435 500 4 34 1875 265 16–25
400 406 580 525 485 305 4 36 2180 300 16–30
450 432 640 585 545 305 4 40 2440 325 20–30
500 457 705 650 608 305 4 44 2860 360 20–34
600 508 840 770 718 305 5 48 3450 425 20–41
700 610 910 840 788 305 5 50 3960 460 24–41
800 660 1020 950 898 305 5 52 4550 512 24–41
900 711 1120 1050 998 305 5 54 5250 565 28–41
1000 811 1255 1170 1100 305 5 56 5870 630 28–48
2.5 50 178 160 125 100 250 3 20 584 80 4–18
65 190 180 145 120 250 3 22 634 95 8–18
80 203 195 160 135 250 3 22 688 100 8–18
100 229 230 190 160 300 3 24 863 114 8–23
125 254 270 220 188 350 3 28 940 132 8–25
150 267 300 250 218 350 3 30 1030 150 8–25
200 292 360 310 278 350 3 34 1277 168 12–25
250 330 425 370 332 400 3 36 1491 203 12–30
300 356 485 430 390 450 4 40 1701 237 16–30
350 381 550 490 448 500 4 44 1875 265 16–34
400 406 610 550 505 305 4 48 2180 300 16–34
450 432 660 600 555 305 4 50 2440 325 20–34
500 457 730 660 610 305 4 52 2860 360 20–41
600 508 840 770 718 305 5 56 3450 425 20–41
700 610 955 875 815 305 5 60 3960 460 24–48
800 660 1070 990 930 305 5 64 4550 512 24–48
900 711 1180 1090 1025 305 5 66 5250 565 28–54
1000 811 1305 1210 1140 305 5 68 5870 660 28–58
PN (MPa) DN (mm) L D D1 D2 Y D0 f f2 b H H1 Z–φ
4.0 50 250 160 125 100 88 250 3 4 20 584 80 4–18
65 280 180 145 120 110 250 3 4 22 634 95 8–18
80 310 195 160 135 121 250 3 4 22 679 102 8–18
100 350 230 190 160 150 300 3 4.5 24 863 115 8–23
125 400 270 220 188 176 350 3 4.5 28 940 133 8–25
150 450 300 250 218 204 350 3 4.5 30 1040 152 8–25
200 550 375 320 282 260 350 3 4.5 38 1282 188 12–30
250 650 445 385 345 313 400 3 4.5 42 1495 223 12–34
300 750 510 450 408 364 450 4 4.5 46 1701 250 16–34
350 850 570 510 465 422 500 4 5 52 1880 280 16–34
400 950 655 585 535 474 305 4 5 58 2200 310 20–41
450 1050 680 610 560 524 305 4 5 60 2480 335 20–41
500 1150 755 670 612 576 305 4 5 62 2890 380 20–48
600 1350 890 795 730 678 305 5 6 62 3460 450 20–54
700 1450 995 900 835 768 305 5 6 68 3985 500 20–54
800 1650 1135 1030 960 876 305 5 6 76 4750 570 24–58

Slab_Gate_Valve14

Main External and Connection Dimensions (JB/T79.1–1994)

All dimensions in millimeters (mm)

PN (MPa) DN L D D1 D2 D0 f b H H1 Z–φ
1.6 50 178 160 125 100 250 3 16 584 8122 4–18
65 190 180 145 120 250 3 18 634 154 4–18
80 203 195 160 135 250 3 20 688 169 8–18
100 229 215 180 155 300 3 20 863 193 8–18
125 254 245 210 185 350 3 22 940 215 8–18
150 267 280 240 210 350 3 24 1030 283 8–23
200 292 335 295 265 350 3 26 1277 352 12–23
250 330 405 355 320 400 3 30 1491 440 12–25
300 356 460 410 375 450 4 30 1701 514 12–25
350 381 520 470 435 500 4 34 1875 602 16–25
400 406 580 525 485 305 4 36 2180 678 16–30
450 432 640 585 545 305 4 40 2440 785 20–30
500 457 705 650 608 305 4 44 2860 855 20–34
600 508 840 770 718 305 5 48 3450 1045 20–41
700 610 910 840 788 305 5 50 3960 1190 24–41
800 660 1020 950 898 305 5 52 4550 1350 24–41
900 711 1120 1050 998 305 5 54 5250 1510 28–41
1000 611 1255 1170 1110 305 5 56 5870 1715 28–48

Specification Applications

Industries
  • Oil & Gas Industry: Used in pipelines for controlling the flow of crude oil, natural gas, and other hydrocarbon products.
  • Power Plants: Ideal for steam and condensate systems requiring reliable shutoff at high temperatures.
  • Water Treatment Plants: Used to control the flow in both potable and wastewater treatment processes.
  • Chemical Industry: Suitable for handling a wide range of aggressive chemicals in processing applications.
  • HVAC Systems: Applied in heating and cooling systems for controlling the flow of water or steam.
Specific Applications
  • Pipeline Isolation: Used for isolating sections of piping for maintenance and safety.
  • Steam Lines: Suitable for high-temperature steam isolation in power generation and industrial applications.
  • Flow Control in Storage Tanks: Provides shutoff capabilities in storage tanks containing oil, gas, or chemicals.
  • Fire Suppression Systems: Used in fire mains and sprinkler systems for flow control and system isolation.
Installation Instructions
  • Verify the valve size, pressure rating, and material compatibility with the pipeline and medium before installation.
  • Ensure the pipeline is depressurized before installation to prevent accidents.
  • Install the valve in a fully open position to avoid damage to the gate and seat during installation.
  • Use appropriate sealing materials (e.g., PTFE tape or gaskets) to ensure a leak-proof connection.
  • Tighten flange bolts evenly to prevent distortion of the valve body.
  • Test the valve for proper operation after installation, including checking for any signs of leakage or misalignment.

Valve Actuation

Process Optimization

Precision Engineering

Pipeline Solutions

Industrial Valves

Flow Control

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