High Viscous Liquid Transfer Pump
100000.00 - 100000.00 INR/Piece
Product Details:
- Theory Other
- Head Size Up to 240 Bar
- Color NETZSCH Green
- Flow Rate Few ML To 1000 M3/hr
- Product Type Positive Displacement Pumps
- Material CI/SS
- Structure Screw Pump
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High Viscous Liquid Transfer Pump Price And Quantity
- 100000.00 - 100000.00 INR/Piece
- 1 Piece
High Viscous Liquid Transfer Pump Product Specifications
- NETZSCH Green
- Electric
- Few ML To 1000 M3/hr
- Up to 240 Bar
- Gasoline
- Positive Displacement Pumps
- High Pressure
- Other
- Other
- Other
- Gland Packing / Mechanical Seal
- CI/SS
- Screw Pump
High Viscous Liquid Transfer Pump Trade Information
- Cash in Advance (CID)
- 100 Piece Per Week
- 1 Week
- Contact us for information regarding our sample policy
- Asia
- South India All India
Product Description
NETZSCH Pumps and Systems is the leading manufacturer and supplier of an excellent quality range of High Viscosity Pumps in India. These are applied in various industries, the Progressive Cavity Pump has been used as a fluid transfer pump for years. These Progressive Cavity Pumps can pump or transfer high and low-viscosity products, with or without solids or long fibers, in suspension.
High Viscous Liquid Transfer Pump Specifications:
Brand |
NETZSCH |
Model |
NEMO |
Head |
Up to 240 Bar |
Max Flow Rate |
Few ML To 1000 M3/hr |
Condition |
New |
Design Type |
Positive Displacement Pumps |
Features of High Viscous Liquid Transfer Pump:
- Minimal noise level
- Low energy consumption
- High resistance to abrasion and corrosion
- Ability to pump a wide range of fluid viscosities
- Simple installation, operation, and maintenance
- The product remains unchanged during the pumping process
- Simple operation as the single helical rotor rotates inside the double helical, elastomer-lined stator
- The rotor rotates eccentrically in the stator through a series of sealed cavities for 180 degrees therefore progressing the medium from the intake to the discharge end of the assembly
- The volumetric efficiency is directly proportional to the number of rotations of the pump to the size of the cavity formed between the rotor and stator
- Another captivity is created after one is diminished at the same rate resulting in a constant non-pulsating flow
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