KGC Industrial Gear Pumps

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KGC is a trusted brand of industrial gear pumps for transporting different media in different industries. Their gear pumps boast reliable performance and rugged construction with cast iron and mild steel as main materials. KGC pumps are designed for handling different types of fluids including low viscosity liquids like alcohols, solvents or liquid gases, as well as medium and high viscosity liquids like polymer melts, gum-base or rubber. These gear pumps are also used for pressure boosting, liquid transfer, process pumping and lubrication duties.

KNOW MORE ABOUT KGC Industrial Gear Pumps

  • KGC is a trusted brand of industrial gear pumps for transporting different media in different industries.
  • KGC is a trusted brand of industrial gear pumps for transporting different media in different industries.

Key Features & Benefits

  • Rugged and robust
  • Temperatures up to 150C
  • Excellent for low to high-viscosity fluids
  • Reversible pumping action
  • Non-pulsating discharge
  • Constant flow regardless of pressure

Available Options

We customise pumps according to your specific application. Get in touch with us today to get a complete list of your options.

  • Materials
  • Mechanical seal and grease-lubricated bearings for large models
  • Spare parts
  • Mounting or baseplate

Key Specifications

  • Flow: Up to 455 l/min
  • Pressure: Up to 300 kPa

Applications

  • Tallow
  • Transformer oil
  • Paint
  • Lubricating liquids
  • Printer ink
  • Bitumen emulsion
  • Molasses
  • Jelly products
  • Fertilizer
  • Kerosene
  • Lubricating liquids

KGC Industrial Gear Pumps — Pump Range & Technical Data

MODEL KGC-13 KGC-20 KGC-25 KGC-35 KGC-50 KGC-80
Port Diameter 13 20 25 35 50 80
RPM 400 400 400 400 400 400
Flow rate (lpm) 21 37 55 121 242 455
Pressure (kpa) 300 300 300 300 300 300
Power (kW) 0.25 0.37 0.75 1.5 3 5.5

PRINCIPLE OF OPERATION

KGC Gear pumps use rotating cogs or gears to move fluids from the inlet to the discharge side. Pumping begins when fluid enters through the inlet port and passes through the rotating gears. As the gears come out of mesh on the inlet side of the pump, an expanded volume is formed. Liquid flows into the cavities and is trapped by the gear teeth as the gears continue to rotate against the pump casing. The trapped fluid then moves from the inlet to the discharge. As the teeth of the gears become interlocked on the discharge side of the pump, the volume is reduced, and the fluid is forced out of the pump under pressure.

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