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Goodwin
Goodwin
Termékek
Axial Isolation Valve
Axial Isolation & Control Valves are used in highly demanding applications where tight shut off, high reliability, fast opening / closing and precise control are desired.
Axial Control Valve
Axial Isolation & Control Valves are used in highly demanding applications where tight shut off, high reliability, fast opening / closing and precise control are desired.
A cégről
The product range offered by Goodwin has now been extended to include a selection of high performance Axial Isolation and Control Valves.
Several years of Research, Design and Testing has been carried out to bring these products to market, with international patents pending for innovative design features.
Axial Isolation & Control Valves are used in highly demanding applications where tight shut off, high reliability, fast opening / closing and precise control are desired. Goodwin Axial Isolation & Control Valves represent a highly effective and cost efficient alternative to current designs available to the market.
Goodwin can supply a diverse range of forged or cast valve body materials, including a wide selection of Carbon Steel, Stainless Steel, Duplex Stainless Steel, Nickel Alloy and Titanium Alloy.
Axial Flow
Reduced turbulence through the valve body as a result of the streamlined flow path.
High capacity, low noise and minimal pressure loss through the body
3 Piece Split Body Design
Inherent manufacturing advantages compared to single piece body design
Flexible design allows the use of forgings or castings.
Full NDE accessibility for the pressure boundary components.
Advanced sealing and precise component manufacturing result in zero leakage.
Rack-Pinion-Rack Gear Train
Highly durable fast acting and precise.
Zero risk of gear teeth seizure even in low or non lubricated service.
Low friction and high efficiency compared to sliding gear mechanisms.
Low backlash maintained over the lifetime of the product.
Fully Pressure Balanced
Truly pressure balanced allowing the use of compact and cost effective actuation.
Pressure balancing is equally effective in both forward and reverse pressure conditions.
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