Plumbing Valves
Ball, gate, globe, butterfly and check valves for fluid lines.
Also searched as: ball valvegate valvebutterfly valvecheck valveglobe valve
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In-Line Check Valve
Size: 3/4"
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In-Line Check Valve
Flow Rate: 4 GPMPressure Rating: 5000 PSISize: 1/4 NPT
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Industrial Cast Steel Double Flanged Gate Valve ASME B16.34 Manual Power for Water
End Connection: Double FlangedStandard: ASME B16.34
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Industrial Heavy-Duty 8-Inch Globe Valve
Size: 8 inch
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Industrial Steel Flange Stainless Steel Gate Valve Water Oil Gas
End Connection: Flange
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Insert Check Valve
Size: 10mm~32mm
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Integral Globe Valve
End Connection: ThreadedMaximum Working Pressure: 200.000Overall Length: 2.00
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Iron Renewable Globe Valve
Bonnet Style: BoltedBore: 3 inchDisc Material: BronzeEnd Connection: FlangedPressure Class: 125
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Iron Renewable Globe Valve
Bonnet Style: BoltedBore: 8 inchDisc Material: BronzeEnd Connection: FlangedPressure Class: 250
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Lead Free Brass Rising Stem Globe Valve
Bore: 2 inchEnd Connection: FNPT
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Manual 2-Way Ball Valve, NPT
Nominal Valve Size: 2 inValve Construction: Two-Piece
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Manual Rising Stem Ductile Iron Globe Valve
Coating: Blue epoxyStem Type: Rising
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Mini Ball Valve
Bore: 1 inch
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Motorized Ball Valve
Bore: 1/2 inch
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NPT Female 316 Stainless Steel Full Port Ball Valve
Connection Type: NPT FemaleMax Pressure: 1000 psiNominal Working Pressure: 1000 WOGPort Type: Full Port
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NPT Standard Port Ball Valves for Water, Oil, and Gas (3/4")
Connection Type: NPTPipe Size: 3/4"Port Type: Standard Port
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OS & Y Gate Valve, 5" Pipe, Flanged, Iron
Bonnet Style: BoltedDisc Style: Solid WedgeEnd Connection: FlangedPipe Size: 5"Valve Type: OS & Y
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One Way Check Valve
Size: 1/4" Barb
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PVC Inline Check Valve for Backflow
Function: Backflow Prevention
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PVC Plastic Check Valve
Bore: 25mm
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PVC Spring Flapper Check Valve
Bore: 1-1/2 inchConnection: Slip
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Plastic Hand Wheel Type Butterfly Valve
Hand Wheel Material: ABSSeat Material: EPDM
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Pneumatic Globe Control Valve 2 inch
Bore: 2 in.
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PumpSpy Silent Check Valve - 1-1/2 inch with Buna-N
Bore: 1-1/2 inch
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Sanitary Stainless Steel Pulling Handle Tri Clamp Clover Butterfly Valve
Connection: Tri Clamp Clover
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Silent Spring-Loaded Swing Inline Check Valve
Body Style: InlineType: Silent Spring-Loaded
About plumbing valves
Plumbing valves are mechanical devices that control the flow of fluids through a piping system by opening, closing, or partially obstructing passageways. Key types include ball valves, which use a pivoting ball with a bore to control flow; gate valves, which employ a wedge-shaped gate that moves perpendicular to the flow; globe valves, characterized by their spherical body and a movable disc that regulates flow via throttling; butterfly valves, utilizing a rotating disc to control flow; and check valves, designed to permit fluid flow in only one direction. Selection criteria typically involve nominal pipe size (NPS) or DN, pressure ratings (e.g., ANSI Class 150, 300, or PN10, PN16), and connection types such as NPT, BSPP, BSPT, flanged (e.g., ASME B16.5), or welded ends. Actuation methods range from manual levers or handwheels to pneumatic, hydraulic, or electric actuators. Common materials include brass, bronze, cast iron, ductile iron, carbon steel (e.g., A216 WCB), stainless steel (e.g., 304, 316), and various plastics like PVC or CPVC, chosen based on fluid compatibility, temperature, and pressure requirements. Internal trim materials, such as seat and seal compounds (e.g., PTFE, EPDM, Viton), are critical for sealing performance and longevity.
How to choose
When selecting plumbing valves, first define the fluid type, temperature, and pressure to establish material compatibility and pressure ratings (e.g., ANSI Class or PN). Second, determine the required flow control: on/off for isolation (ball, gate), throttling for regulation (globe, butterfly), or backflow prevention (check). Third, specify the connection type and size (e.g., 1" NPT, DN50 Flanged) to match existing piping. Fourth, consider the actuation method – manual for infrequent operation, or automated (electric, pneumatic) for remote or frequent cycling. Finally, evaluate space constraints and maintenance requirements, as some valve types offer more compact designs or easier in-line servicing.