Specifications & Standards
Application | Isolation |
Features / Benefit | OS & Y Construction Renewable Seat Rings Burnish Finish Stem for Low Operating Torque |
Ansi Class / Rating | 150# / PN 10 |
Design Standard | MSS SP 81 |
Testing Standard | ISO 5208 |
F to F Standard | ASME B16.10 |
Size | 50 MM to 600 MM |
Materials | Body: WCB, CF8, CF8M, Hast Alloy, Super Duplex, Alloy 20 etc Gate: CF8, CF8M, Hast Alloy, Super Duplex, Alloy 20 etc |
Ends | Wafer Lugged End |
Operation | Manual, Pneumatic, Electric |
Quality over quantity
Hand Wheel Operated
Hand wheel (manual) knife edge gate valves are operated by turning a robust wheel that drives a threaded stem to open or close the valve. This design features a sharp-edged gate that cuts through thick media like slurries and viscous fluids, ensuring non-clogging shut-off. Constructed with high-quality materials such as stainless steel or cast iron, these valves are ideal for industries like mining, pulp and paper, and wastewater treatment, offering durability and resistance to abrasive and corrosive conditions.
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Gear Operated
Gear-operated knife edge gate valves utilize a gear mechanism to amplify torque, simplifying the operation of larger valves or those handling high-pressure or high-viscosity media. The sharp-edged gate ensures effective cutting through suspended solids, providing reliable shut-off and flow control. Built with robust materials like stainless steel or cast iron, these valves are suited for demanding applications in industries such as chemical processing, power plants, and mining.
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Electric Actuator Operated
Electric actuator-operated knife edge gate valves feature automated control via an electric motor, enabling precise and remote operation. The sharp-edged gate design prevents clogging by cutting through thick or abrasive media, making them ideal for large-scale industrial systems like wastewater treatment, pulp and paper, and mining. Constructed with durable materials such as stainless steel or cast iron, these valves ensure long-lasting performance under varying pressures and temperatures.
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