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7071 SERIES HORIZONTAL END CENTRIFUGAL SUCTION

Gusher Pumps’ ANSI 7071 centrifugal pumps meet the ANSI B73.1 standards, allowing users to switch brands without affecting the piping location, coupling, motor attachment, or bedplate dimensions. These end-suction pumps are available in a wide range of materials. They can handle various fluids, making them useful in chemical, refineries, food manufacturing, oil, pulp & paper, pharmaceutical, and other process industries.


The ANSI 7071 pumps are easy to operate and energy savers, helping owners reduce operational costs.


Features & Benefits
Know more about the features & benefits of using 7071 Series Horizontal End Centrifugal Suction.
  • Centerline intake and discharge
  • ANSI 16.5 Flanges and ANSI 73.1 style casing for simpler installation
  • Heavy-duty casing and shaft for added pump longevity
  • Back pull-out design for ease of maintenance
  • Coupling guards around rotating parts to meet plant safety requirements
  • Repeller style sealing for abrasive applications when seals aren't cost-effective
Available Options
All-Pumps can customise pumps according to your requirements and specific applications. Get in touch with us today to find the right pump!
  • Cartridge seals option
  • Fabricated steel and cast iron base plates
  • 3 Power Frames - S Frame, M Frame, and L Frame
  • Finned cooler/jacketed bearing housing for high-temperature applications
  • Spare parts
  • Baseplates
Key Specifications
Here are the key specifications of 7071 Series Horizontal End Centrifugal Suction.
  • Capacity: 18927 lpm
  • Head: 229 m
  • Suction Lift: 300 PSIG
Applications
Here is a list of industrial applications for which 7071 Series Horizontal End Centrifugal Suction are commonly utilized.
  • Food Processing
  • Chemical
  • Oil
  • Textile
  • Filtration
  • Liquid Transfer
  • Pulp and Paper
  • Pharmaceutical
  • Paint Systems
7071 SERIES HORIZONTAL END CENTRIFUGAL SUCTION

Principle of Operation

The working principle of centrifugal pumps involves imparting energy to the liquid using a centrifugal force developed by rotating an impeller with several blades or vanes. Fluid enters the pump casing at the impeller eye. Velocity energy is then imparted to the liquid using the centrifugal force produced by the rotation of the impeller, and the fluid is radially pushed out towards the impeller periphery. Finally, the velocity energy of the liquid is converted to pressure energy by directing it to an expanding volute design casing in a volute-type centrifugal pump or diffusers in a turbine pump.

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