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  • API Standard Bevel Gear Gate Valve

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API Standard Bevel Gear Gate Valve

API Standard Bevel Gear Gate Valve

  • Model:Z541H-150LB/Z541H-300LB/Z541H-600LB/Z541H-900LB/Z541Y-150LB/Z541Y-300LB/Z541Y-600LB/Z541Y-900LB/
  • Specification:1-1/2’’-48’’
  • Temperature:≤80℃
  • Medium:water, oil, steam, gas, and corrosive media.
  • Pressure:class150-class2500
  • Connection method: flange
  • Driving method:manual
  • Material:cast steel, stainless steel
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API Standard Bevel Gear Gate ValveOverview

Z941W electric gate valve is a rising stem wedge gate valve driven by an electric actuator and connected by a flange. It drives the reduction mechanism through a motor to lift and lower the valve stem, causing the wedge gate to move vertically and achieve the opening and closing of the pipeline. The valve body can be made of various materials such as carbon steel and stainless steel, and the sealing surface is directly machined from the valve body material ("W" shape) to form a hard metal to metal seal. This valve integrates a manual operating mechanism, which can perform emergency operations in case of power interruption. It is designed for remote centralized control, automated processes, and frequent opening and closing situations, and is the core execution unit for intelligent management in modern industrial pipeline systems. Widely used in automation control systems for petrochemical, power, metallurgy, municipal water supply, sewage treatment, HVAC, and general industrial pipelines, as a key cutoff device for remote operation, process interlocking, or unmanned situations. Especially suitable for modern industrial pipeline systems that require centralized monitoring, frequent operation, or integration with upper computer systems.

API Standard Bevel Gear Gate Valve  Product Drawing

API Standard Bevel Gear Gate ValveCharacteristic

1. Electric drive, remote automation control

Equipped with multi turn or partial turn electric actuators, powered by electricity, capable of receiving standard electrical signals (such as 4-20mA, switch signals) from DCS/PLC systems, achieving remote centralized control, automated operation, and process interlocking of valves.

2. Clear stem structure, intuitive valve position

The valve stem rises and falls with the gate, and the valve opening can be directly determined by observing the height of the valve stem extension, which is convenient for on-site inspection and debugging.

3. Valve body sealing surface ("W" type)

The sealing surface is directly processed from the valve body material, which is economical, practical, wear-resistant, and suitable for conventional media such as water, oil, and gas.

4. Flange connection, stable and reliable

Using standard flange connections (such as RF and RTJ flanges), the connection strength is high, the sealing performance is good, and it is easy to install and disassemble.

5. Manual emergency operation

The top of the actuator is equipped with a handwheel or square head, and is equipped with an electric/manual switching mechanism, which can be manually operated in case of power interruption or debugging, ensuring that the system is controllable in any situation.

6. Multiple protection functions

The actuator is equipped with overload protection, overheating protection, phase protection, and mechanical/electrical limit switches, effectively preventing motor damage and ensuring safe and reliable operation.

7. Optional intelligent control

Optional intelligent actuator, supporting fieldbus control, fault self diagnosis, parameter setting, and status display functions, to meet high-end automation needs.

API Standard Bevel Gear Gate Valvestructure principle

API Standard Bevel Gear Gate Valve Structure Diagram

Part name and material list

阀体valve bodyWCB CF8 CF8M铬钼钢低温钢镍合金Monel Duplex Steel Nickel Alloy of Chromium Molybdenum Steel at Low Temperature
球体ball bodyWCB CF8 CF8M铬钼钢低温钢镍合金Monel Duplex Steel Nickel Alloy of Chromium Molybdenum Steel at Low Temperature
阀杆valve stem2Cr13 F304 F316铬钼钢低温钢镍合金Monel Nickel Alloy of Chromium Molybdenum Steel at Low Temperature
密封面 Sealing surface不锈钢司太立合金碳化钨镍合金Monel Stainless Steel Staili Alloy Tungsten Carbide Nickel Alloy
填料filing柔性石墨 Flexible Graphite


API Standard Bevel Gear Gate Valvetechnology parameter

Performance Specification Sheet

性能规范表 Performance Specification Sheet
公称压力 Nominal pressure1.6MPa
强度试验压力 Strength test pressure2.4
密封试验压力Seal test pressure1.76
适用温度 Applicable temperature≤80


API Standard Bevel Gear Gate Valvestandard size

Outline Drawing of API Standard Bevel Gear Gate Valve

Outline Dimension Table

规格Size阀 门 尺 寸Valve Main Dimension重 量Weight (kg)扭矩Toqure (N.m)Cv
mmin.L(RF)L(BW)L(PU)HHtWRFBW
401-1/2241241241375-250412820-
502292292295387-250503923-
652-1/2330330333483-2505453--
803356356359537-350856750710
1004432432435647-350126101681300
1506559559562914-6102742301833110
20086606606641082-6104543902705500
250107877877911181-7206285664798485
300128388388411333-72089582365012850
350148898898921473-7201350119898815370
400169919919941651-86017001532124320170
450181092109210951727-86021401996151226200
500201194119412002019-86026832450218532100
60024139713971407-238361045503244305346750
65026144814481461-25006105260--56300
70028154915491562-26636105960--65900
75030165116511664-284061067006160545275520
80032177817781794-31007208312--85180
90036208320832099-34507201012595807875114250
10004021492149--360072014300--156127
10504222602260--395072016460--197272
12004826672667--460072022900--296300


Articles related to technology research and development
  • soft-sealed gate valve patented

       The utility model discloses a novel soft-seal gate valve, which includes a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium channel for medium circulation and a connecting chamber that is connected to the medium channel and corresponds to the valve cover. The rubber-coated gate plate is adapted to the connecting chamber and used to cut off or connect the medium channel. The medium channel includes an inlet end and an outlet end. Guide rails are arranged on the inner wall of the connecting chamber on both sides opposite to the rubber-coated gate plate. Both sides of the rubber-coated gate plate are provided with metal sliders, and the metal sliders are provided with sliding grooves that are adapted to the guide rails. Compared to existing soft-seal gate valves, the utility model has good sealing performance, convenient disassembly and assembly, and a long service life for the rubber-coated gate plate.

    1. A novel soft-seal gate valve comprises a valve body, a valve cover, a valve rod, a valve chamber, and a rubber-coated gate plate. The valve rod penetrates through the valve cover and is connected to the rubber-coated gate plate. The valve chamber includes a medium passage for medium circulation and a connecting chamber connected to the medium passage and corresponding to the valve cover. The rubber-coated gate plate is fitted to the connecting chamber and used to cut off or connect the medium passage. The medium passage includes an inlet end and an outlet end. The utility model is characterized in that guide rails are arranged on both sides of the rubber-coated gate plate on the inner wall of the connecting chamber, metal sliding blocks are arranged on both side walls of the rubber-coated gate plate, sliding grooves adapted to the guide rails are opened on the metal sliding blocks, a sealing groove is opened on the top of the valve cover in the axial direction relative to the valve rod, a clamping block is arranged at the opening of the sealing groove, at least three clamping blocks are arranged circumferentially at intervals relative to the central axis of the sealing groove, a sealing seat fitted to and sleeved on the valve rod is arranged inside the sealing groove, a fixed block corresponding to the rotational fit of the clamping block is arranged on the outer circumferential wall at the bottom of the sealing seat, a pressing block abutting against the top surface of the valve cover is arranged on the top of the sealing seat, and a rubber sleeve is sleeved on the top of the valve cover.

    2. A novel soft-seal gate valve according to claim 1, characterized in that a limit opening is provided at the position on the pressure block corresponding to the gap between two adjacent clamping blocks, a limit groove is provided on the end face of the pressure block, a thrust stopper is provided on the sealing seat, and the thrust stopper comprises a fixed disc adapted to the limit groove and a thrust block provided on the outer circumferential wall of the fixed disc and adapted to the limit opening.

    3. A novel soft seal gate valve according to claim 2, characterized in that a limiting block is arranged on the outer circumferential wall of the sealing seat at a position between two adjacent fixing blocks, and a clamping groove adapted to the limiting block is provided on the thrust block.

    4. A novel soft seal gate valve according to claim 1, characterized in that a stepped groove is provided in the valve body at the inlet end, and a filter screen is arranged inside the stepped groove.

    5. A novel soft-seal gate valve according to claim 4, characterized in that the side of the filter screen facing the inlet end is provided with a flow dividing device, which comprises a fixing ring that fits with interference with the inner wall of the stepped groove, a connecting column located on the central axis of the fixing ring, and a flow dividing plate connected to the fixing ring and the connecting column. The side of the stepped groove located on the inlet end facing the fixing ring is provided with an inner groove, and an elastic snap ring is arranged in the inner groove.

    6. A novel soft seal gate valve according to claim 5, characterized in that the side wall of the diverter plate facing the inlet end has a triangular cross-section.

    7. A novel soft seal gate valve according to claim 5, characterized in that one end of the connecting column facing the inlet end is hemispherical