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We offer a complete product range of Magnetic Drive Sealless Pumps, Vertical Submerged Pumps, non-metallic chemicals pump, Self Priming Non-Clog Mud Pumps (MP) and Vertical Line Shaft Pumps

Chemical Pumps (CP)

  • Impeller Design Open, Semi-Open, Closed
  • Suitable Media Water, Waste-water, Slurry, Pulp, Contaminated Media
  • Solids Handling Up To 8%
Our pumps are available in a highly wear-resistant, open impeller design. We have pumps with Open, Semi-Open and Closed impeller design are suitable for conveying many different media like water, waste-water, various types of slurry, pulp and also handle contaminated media with some solids and content with consistencies of up to 8%. Thus, operating as processes pumps, they cover a wide range of applications in the water, waste-water, pulp and paper, starch, mining, offshore, power, food, and chemical industry. Our single-stage centrifugal pumps can also be used in water supply, waste water treatment, and desalination plants. Our pumps are in the fields of applications like Water and waste water industries, Chemical, Metal, Starch & Food, Paper and Pulp, Power, Steel, etc
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Non-metallic Chemicals Pump

  • Application Handling Highly Corrosive And Aggressive Fluids In Chemical Industries
  • Material PVDF, PFA
  • Special Feature Lined With PVDF Or PFA For Corrosion Resistance
Our PVDF and PFA lined pumps are specialized pumps designed for handling highly corrosive and aggressive fluids. They are manufactured with materials like PVDF (Polyvinylidene Fluoride) or PFA (Perfluoroalkoxy) for their components, including the casing, impeller, and other wetted parts. These pumps are commonly used in industries dealing with chemicals, solvents, and other corrosive materials.
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Self Priming Non-Clog Mud Pumps (MP)

  • Number Of Flower Self Priming Pumps
  • Material Various Materials Such As Cast Iron, Stainless Steel
  • Packaging Usually Packaged Individually
  • Application Ideal For Applications Where Manual Priming Is Not Feasible
A self-priming pump is a specialized pump that can automatically draw liquid into its casing, eliminating the need for manual priming. This capability is crucial in situations where the pump is positioned above the liquid source, or when the liquid being pumped contains air or gas.
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Water Pumps (Wp)

  • Number Of Flower End Suction Pump
  • Material Typically Made Of Cast Iron Or Stainless Steel
  • Application Versatile - Can Handle Water, Chemicals, And Oils
  • Packaging Usually Comes In Standard Packaging For Industrial Pumps
An end suction pump, also known as a horizontal centrifugal pump, is a type of pump where the suction nozzle is located at one end of the pump casing, while the discharge nozzle is located at the side, perpendicular to the suction nozzle. These pumps are widely used for moving water and other clear liquids in various applications like irrigation, fire suppression, and HVAC systems. Versatile Applications: They can handle a variety of liquids, including water, chemicals, and oils. Efficiency: These pumps are known for their efficient fluid transfer, helping reduce energy waste.
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Multistage Pumps

  • Application Boiler Feed, Water Supply, Cleaning, High-pressure Fluid Transfer
  • Material Metal, Stainless Steel
  • Pressure Output High
A multistage pump is a type of centrifugal pump that uses multiple impellers to achieve higher pressure than a single-stage pump. Each impeller in a multistage pump sequentially boosts the fluids pressure, enabling the pump to deliver high-pressure output. Key Features: Multiple Impellers: The defining characteristic of a multistage pump is the presence of two or more impellers mounted on the same shaft. Sequential Pressure Increase: Each impeller adds kinetic energy to the fluid, which is then converted into pressure energy by the diffuser. High Pressure Output: The cumulative pressure increase from each stage allows multistage pumps to generate significantly higher pressure than single-stage pumps. Horizontal or Vertical Configurations: Multistage pumps can be designed horizontally (impellers and diffusers in series) or vertically (impellers stacked vertically). Wide Range of Applications: They are used in applications requiring high pressure, such as boiler feed pumps, water supply, and high-pressure cleaning.
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Vertical Submerged Pumps

  • Number Of Flower Vertical Submerged Pump
  • Application Water Supply, Irrigation, Industrial Processes
  • Material Stainless Steel Or Corrosion-Resistant Alloys
A vertical submerged pump, also known as a vertical sump pump, is a type of centrifugal pump designed to be installed in a sump or tank and submerged in the liquid its pumping. These pumps are characterized by their vertical orientation and are commonly used in applications like water supply, irrigation, and industrial processes. Key Features and Benefits: Space-Saving Design: The vertical orientation of the pump allows for efficient use of space, especially in deep sumps or wells. No Priming or Air Venting: Because the pump is submerged, it doesn 't require priming or air venting before operation. Versatile Applications: They can handle various liquids, including those with solid particles, making them suitable for diverse industrial and commercial applications. Durability and Reliability: Vertical submerged pumps are often made from durable materials like stainless steel or corrosion-resistant alloys, ensuring longevity and reliability in demanding environments. High Head and Flow Rates: They are designed to handle large flow rates and high head pressures, making them suitable for applications that require significant pumping capabilities
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Pressure Boosting System (Pbs)

  • Number Of Flower Hydropneumatics Water Pumping System
  • Material Mixed (Air-and-Water Tank)
  • Name Pressure Boosting System (Pbs)
  • Benefits Maintains Stable Pressure For Taps And Outlets
A hydropneumatics water pumping system uses a pressurized air-and-water tank to provide a constant water supply at a consistent pressure. It operates by pumping water into a tank containing compressed air, which acts as a cushion to maintain pressure and deliver water to taps and outlets. Benefits: Consistent Water Pressure: Maintains a stable pressure in the system. Automated Operation: The system operates automatically, reducing the need for manual intervention. Reduced Need for Overhead Tanks: Eliminates the need for large overhead tanks, saving space and cost. Energy Efficiency: Variable Frequency Drives (VFDs) can optimize pump performance and reduce energy consumption. Cost-Effective: The system can be more cost-effective than traditional water systems, especially in high-rise buildings
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Magnetic Drive Sealless Pumps

  • Number Of Flower Centrifugal Pump
  • Material Various Materials Such As Stainless Steel, Polypropylene, Or PTFE
  • Application Handling Hazardous Or Corrosive Fluids
  • Power Transmission Magnetic Coupling
Magnetic drive sealless pumps are centrifugal pumps that use a magnetic coupling to transmit power from the motor to the impeller, eliminating the need for mechanical seals. This sealless design offers several advantages, including enhanced safety, reduced maintenance, and improved corrosion resistance, making them ideal for handling hazardous or corrosive fluids.
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Industrial Valve

  • Flow Control Type Regulating
  • Industry Applications Chemical Processing, Oil And Gas, Water Treatment, Manufacturing
  • Flow Control Aspects Flow Rate, Pressure, Direction
  • Size Varies Based On Application
Industrial valves are mechanical devices used to control the flow of fluids (liquids, gases, or slurries) within a system. They are crucial components in various industries, including chemical processing, oil and gas, water treatment, and manufacturing, ensuring processes operate smoothly and safely. These valves regulate flow rate, pressure, and direction of the medium.
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Vertical Line Shaft Pumps

  • Power Up to 10, 000 KW
  • Head Up to 80 m (single-stage) Up to 120 m (multi-stage)
  • Industries Water, Power, Other Industries
  • Design Pull-Out or Non-Pull-Out
  • Impeller Radial, Mixed Flow or Axial; Adjustable or Fixed
  • Flow rate Up to 70, 000 m³/h
  • Efficiency Highest Efficiency Available
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Multi-Stage Axial Split Case Pump

  • Head Up to 1000 m
  • Power Up to 40 MW
  • Industries Water, Power, Other Industries
  • Design Multi-Stage Axial Split Case Pumps with Various Impeller Arrangements in Single- or Double-Flow Design
  • Efficiency Highest Efficiency Available
  • Flow rate Up to 10 m³/s
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Split Case Pumps Asp

  • Head Up to 275 m
  • Pressure Up to 25 bar
  • Temperature Up to 80° C
  • Power Up to 7, 000 KW
  • Industries Water, Pulp and Paper, Power, Other Industries
  • Design Single-Stage, Axial Split Case
  • Consistency (pulp and paper industry) Up to 2%
  • Flow rate Up to 28, 000 m³/h
  • Efficiency Up to 91%
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Sewage Pumps Dry Vp/CP Series

  • Head Up to 75 m
  • Pressure Up to 16 bar
  • Industries Water
  • Design Single-Stage, Single-Flow; Semi-Open, Vortex Impeller
  • Flow rate Up to 1, 500 m³/h
  • Free passage Up to 140 mm
  • Temperature Up to 120° C
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Sewage Pumps Wet Sw Series

  • Head Up to 80 m
  • Pressure Up to 10 bar
  • Industries Water
  • Design Single-Stage, Submersible, Close-Coupled
  • Flow rate Up to 2, 600 m³/h
  • Temperature Up to 40° C
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