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Stainless Steel Gate Valve

National Standard Stainless Steel Gate Valve

Stainless Steel Gate Valve

Size Range: 2″ to 48″ (DN50-DN1200)

Connection Options: Flanged

Working Pressure: 1.0Mpa ~ 6.4Mpa

Material: Carbon Steel, Stainless Steel, Cast Iron

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

Product Overview

Gate valves are used to completely shut off or allow full flow in a pipeline. They are commonly used when a straight-line flow of fluid and minimum flow restriction are required. The gate valve operates by lifting a gate (wedge) out of the path of the fluid, providing a full, unrestricted flow when open. Made from high-quality materials including carbon steel, stainless steel, and cast iron, these valves are designed to provide durability, corrosion resistance, and reliable service across various industrial applications.

Product Features

Full Port Flow: Provides an unobstructed flow path, resulting in minimal pressure drop when fully open.

Reliable Sealing: Metal-to-metal or resilient seating options provide tight sealing, minimizing leakage.

Corrosion Resistant: Manufactured from materials such as stainless steel, cast iron, and bronze for excellent corrosion resistance.

Versatile Connection Options: Available in flanged, threaded, butt weld, and socket weld connections to accommodate a variety of piping systems.

Durable Construction: Forged or cast body for enhanced strength and extended service life.

Manual, Gear, or Actuated Operation: Can be operated manually using a handwheel, by a gearbox, or automated with electric or pneumatic actuators.


 

Specification Parameters

Standards and Norms

ItemStandard
Design and ManufactureGB 12234
Structure LengthGB 12221
Pressure-Temperature RatingGB/T 12224
Connection FlangeJB/T 79.1–2–94, GB 9113–2000, HG 20592–20635
Test and InspectionJB/T 9092–1999, GB 13927–2005

Specification Applications

  • 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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