Pumps
Gear, centrifugal, diaphragm, vacuum and metering pumps.
Also searched as: gear pumpcentrifugal pumpdiaphragm pumpvacuum pumpwater pump
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Air-Driven Diaphragm Pump
Discharge Port Size: 1 inchFlow Rate: 35 gpmMaximum Discharge Pressure: 120 psiTotal Head Height: 289 ft
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Air-Driven Diaphragm Pump
Discharge Port Size: 1 inchFlow Rate: 45 gpmMaximum Discharge Pressure: 100 psi
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Air-Driven Diaphragm Pump
Discharge Port Size: 1 inchFlow Rate: 49 gpmMaximum Discharge Pressure: 125 psi
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Air-Operated Diaphragm Pump
Inlet/Outlet Port: 1"Max Flow Rate: 5 m3/h
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Air-Operated Double Diaphragm Pump
Inlet Outlet: 1 in
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Air-Operated Double Diaphragm Pump
Flow Rate: 13.2 GPMHead Lift: 226.4 ftInlet Outlet: 1/2 in
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Air-Operated Double Diaphragm Pump
Flow Rate: 39.6 GPMHead Lift: 275.6 ftInlet Outlet: 1 in
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Air-Operated Double Diaphragm Pump
Inlet/Outlet Port: 2"Max Flow Rate: 75 GPMMax Head Lift: 275.6 ft
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Air-Operated Double Diaphragm Pump, 1/2 inch Inlet & Outlet
Inlet: 1/2 inchOutlet: 1/2 inch
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Air-Operated Double Diaphragm Pump, 12 GPM, 115 PSI
Flow Rate: 12 GPMMax Pressure: 115 PSI
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Air-Operated Heavy Duty Double Diaphragm Pump, 13 GPM, 100 PSI
Flow Rate: 13 GPMMax Pressure: 100 PSI
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Air-operated Single Way Diaphragm Pump
Flow: 15L/minSuction Lift: 2m
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Aluminum Air Double Diaphragm Pump, 3 inch, 230 GPM
Flow Rate: 230 GPMMax Temperature: 212FSize: 3 inch
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Arc-Tooth Helical Gear Pump Silent Hydraulic Power Station
Motor Power: 1.5kw-5.5kwWorking Pressure: 6-10MPa
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Automotive Vacuum Pump
Displacement: 3 SCFMDisplacement CFM: 1.5Micron Rating: 115Oil Capacity: 10
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Brushless Magnetic Drive Centrifugal Pump
Size: 1/2"Voltage: 12V DC
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Centrifugal Pump
Dimensions: 5-1/2" x 3-1/2" x 4-3/4"Flow Rate @ 1 ft of Head (Maximum): 300 gphHorsepower: 1/40 hpVoltage: 115V AC
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Centrifugal Pump
Discharge Pipe Size: 1 1/2 inDischarge Pipe Type: NPTFeet of Head (Maximum): 91 ftFlow Rate (Maximum): 96 gpmHorsepower: 2 HP
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Centrifugal Pump
Maximum Feet of Head: 57 ftSized for Horsepower: 29/50 hp
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Centrifugal Pump
HP: 5Max. Head: 80 ft
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Centrifugal Pump
HP: 0.75Voltage: 208-230/460V
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Centrifugal Pump
Capacity: >400 L/minMaximum Head: 30-50mSize: 2.5' 4X3X13
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Centrifugal Pump, 1 hp, 115/230V AC
Horsepower: 1 hpVoltage: 115/230V AC
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Centrifugal Pump, 10 hp, 240/480V AC
Horsepower: 10 hpVoltage: 240/480V AC
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Centrifugal Pump, 2 hp, 115/230V AC
Horsepower: 2 hpVoltage: 115/230V AC
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Centrifugal Self Primer Pedestal Pump
Inlet Outlet Port Sizes: 3 in NPTMax ft of Head: 145 ftMaximum Flow Rate: 320 gpmType Design: Centrifugal Self Primer Pedestal
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Chemical Resistant Double Air Diaphragm Pump
Size: 1.5"
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Chemical Transfer Pump and Go System
Flow Rate: 13 GPMHorsepower: 1/4 HPVoltage: 115V AC
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Cordless Electric Water Pump
Flow Rate: 40-60 l/minVoltage: 24V
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Diaphragm Pump
Voltage: 12V, 24V
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About pumps
Pumps are mechanical devices designed to move fluids, whether liquids, gases, or slurries, by converting mechanical energy into hydraulic energy. They are broadly categorized by their operational principle into positive displacement and kinetic (dynamic) types. Positive displacement pumps, such as gear, diaphragm, and peristaltic pumps, trap a fixed volume of fluid and force it into the discharge pipe. Kinetic pumps, including centrifugal and axial-flow pumps, impart velocity to the fluid through an impeller, then convert that velocity into pressure. Key selection parameters include flow rate (typically in GPM or m³/hr), discharge pressure (PSI or bar), NPSH requirements, and fluid viscosity. Material compatibility is critical, with common construction materials including cast iron, stainless steel (304, 316L), bronze, and various polymers like PTFE or PVDF, chosen based on fluid corrosivity, temperature, and abrasiveness. Seal types, such as mechanical seals, packing, or sealless magnetic drive designs, are specified according to leakage tolerance and fluid characteristics. Drive mechanisms range from electric motors (AC/DC, single/three-phase) to pneumatic or hydraulic power sources, with considerations for RPM and power consumption (HP or kW). Connection types often conform to NPT, BSPT, or flange standards like ANSI B16.5.
How to choose
title: How to Choose a Pump
steps: What fluid is being pumped? Identify its viscosity, temperature, chemical compatibility, and presence of solids. This dictates material selection and pump type.
What flow rate (GPM/m³/hr) and discharge pressure (PSI/bar) are required? This defines the pump's hydraulic performance curve and motor sizing. Consider system head losses.
What is the available Net Positive Suction Head (NPSHa)? Compare this to the pump's NPSH required (NPSHr) to prevent cavitation. Evaluate suction lift or flooded suction conditions.
What power source is available (electric, pneumatic, hydraulic)? Specify voltage, phase, and frequency for electric motors, or air/fluid pressure for others. Consider hazardous area classifications (e.g., ATEX, NEMA).
What level of leakage is acceptable? Select between sealed (mechanical seals, packing) or sealless (magnetic drive, canned motor) designs based on fluid toxicity or value, and maintenance requirements.