Progressive Cavity Pump
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  • SEEPEX 100% Interchangeable Progressive Cavity (PC) Pump
  • SEEPEX 100% Interchangeable Progressive Cavity (PC) Pump
  • SEEPEX 100% Interchangeable Progressive Cavity (PC) Pump
  • SEEPEX 100% Interchangeable Progressive Cavity (PC) Pump
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·Drop-in Replacement: Standardized connection sizes (Flange/Thread) and shaft dimensions for immediate "plug-and-play" installation.
·Optimized Rotor/Stator Geometry: Precision-machined rotors (SS304/SS316) and high-elasticity stators (NBR/EPDM/Viton) to match original performance curves.
·Handling various liquid: Proven excellence in transferring fluids with high solid content or extreme viscosities.
·Interchangeable Spare Parts: We provide a full range of compatible Rotors, Stators, Coupling Rods, and Mechanical Seals that fit perfectly into your current pump systems.

Jiangsu Sharp Pump Co., Ltd.
Jiangsu Sharp Pump Co., Ltd.
15+
Years of experience
Who We Are
Your Reliable Pump Manufacturing Partner

Jiangsu Sharp Pump Co., Ltd. is a specialized manufacturer of screw pumps and replacement spare parts, with strong expertise in rotor, stator, joint seal, coupling rod, and drive shaft production. Based in Jingjiang, China, we combine advanced equipment, technical know-how, and ISO-certified quality management to deliver reliable products for a wide range of industrial applications. Our products have been exported to more than 40 countries and regions worldwide.

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About Us
Jiangsu Sharp Pump Co., Ltd.
System Certification
Sharp Pump strictly complies with ISO quality management system standards. Through standardized production and full-process quality control, we ensure the stable quality and reliable performance of every screw pump.
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Jiangsu Sharp Pump Co., Ltd.
News & Insights
Stay updated with our latest company news, industry developments, and product-related updates.
Screw Pump Types and Applications
Screw Pump Types and Applications2026-04-24
Screw Pump Types and ApplicationsIndustry News
Screw Pump Types and Applications
Screw pumps are a family of positive-displacement rotary pumps that use one or more threaded rotors (screws) turning inside a stationary housing to move liquids. Instead of relying on high-speed impellers or gears, they trap fluid in the cavities between the screw threads and the casing, then push it smoothly forward as the screws rotate. This gives them excellent self-priming ability, low pulsation, and the capacity to handle a wide range of viscosity. Based on the number of screws, they are generally divided into single screw, twin-screw, and triple-screw pumps, each with distinct characteristics that suit different industrial needs. The single screw pump, also known as progressive cavity pump, consists of a metal rotor turning inside an elastomeric stator. The rotor and stator form a series of sealed cavities that move the fluid axially with a gentle, near pulsation-free action. It operates at low to medium speeds and delivers modest flow rates, typically handling pressures up to 20-30 bar (with special designs going higher). Its main strengths lie in handling difficult fluids: highly viscous materials like sludge and dough, abrasive slurries, or shear-sensitive products such as food pastes and paints. Because the cavities can pass small solids and fibers without clogging, it is a good choice for wastewater treatment plants, chemical dosing systems, food processing (fruit puree, chocolate, minced meat), mining tailings, and oilfield mud transfer. The pump’s simplicity also makes it easy to maintain, even in dirty environments. The twin-screw pump features two inter-meshing screws that rotate in opposite directions (or in the same direction in some designs) within a tight clearance casing. The screws push the fluid along the axis, delivering medium to high flow rates and pressures up to 50–80 bar, over a wide speed range. What sets it apart is its versatility: it can pump thin, non-lubricating fluids like water or solvents just as well as heavy crude oil or molasses, because the bearings can be separately lubricated. It also handles gas-liquid mixtures with less pulsation than gear pumps. This makes it extremely popular in oil and gas pipeline boosting, refinery feedstock transfer, shipboard cargo pumping, and the movement of industrial lubricants or edible oils. Its robust construction and ability to run dry for short periods (with proper design) add to its reliability in demanding continuous services. The triple-screw pump uses three screws--one powered main screw and two idler screws -- that mesh together to form a continuous sealing line. This design produces a remarkably steady, low-noise, and vibration-free flow, even at high rotational speeds. It achieves high volumetric efficiency and can generate very high pressures, often from 100 bar up to 200 bar or more. However, it works best with clean, lubricating fluids, as the screws rely on the fluid itself for internal lubrication and cooling. Its outstanding performance in terms of pressure stability and quiet operation makes it the preferred choice for hydraulic power units, fuel injection systems, turbine lubrication circuits, marine engine fuel supply, and high‑pressure industrial oil transfer. With minimal moving parts and excellent wear resistance, these pumps offer long service life and low maintenance when used within their intended clean-fluid applications. The three types listed above are the most common ones. In addition, there are also multi-screw pumps (such as four-screw and five-screw designs) used for special high-pressure and high-capacity applications. In short, selecting the right screw pump depends on your fluid’s viscosity, capacity, solid content, and the required pressure. Single screw pumps excel with thick and dirty media, twin-screw pumps cover the broadest viscosity range including non-lubricants, and triple-screw pumps are unbeatable for clean, high-pressure lubrication duties. All three designs share the core benefits of smooth flow, good self-priming, and reliable operation-- making screw pumps a trusted solution across countless industries.
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How a Progressive Cavity Pump Works
How a Progressive Cavity Pump Works2026-04-24
How a Progressive Cavity Pump WorksIndustry News
How a Progressive Cavity Pump Works
This is a single-screw transport pump, whose main working components are an eccentric helical screw (referred to as the rotor) and a screw sleeve (referred to as the stator) with a double-helix surface on its inner surface. The operating principle is as follows: when the electric motor drives the pump shaft to rotate, the screw rotates around its own axis while simultaneously rolling along the inner surface of the sleeve, thereby forming the pump’s sealed chambers. With each revolution of the screw, the liquid within the sealed chamber is advanced by one pitch. As the screw continues to rotate, the liquid is forced in a helical pattern from one sealed chamber to the next, eventually being discharged from the pump body. The screw pump is a new type of liquid transfer machinery that offers advantages such as simple structure, safe and reliable operation, ease of use and maintenance, continuous and uniform discharge, and stable pressure.
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Advantages of Progressive Cavity Pump
Advantages of Progressive Cavity Pump2026-04-24
Advantages of Progressive Cavity PumpIndustry News
Advantages of Progressive Cavity Pump
1) Wide range of pressure (0-24bar) and flow rate (from 1L/h to 200m3/h); 2) Capable of handling a wide variety of liquids and viscosity ranges; 3) Excellent suction performance with self-priming capability; 4) Uniform and continuous flow, with minimal vibration and low noise; 5) Compared to other rotary pumps, it is less sensitive to entrained air and contaminants; 6) Robust construction, with easy installation and maintenance.
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Progressive Cavity Pump Industry knowledge