Fluoroplastic Pump

Fluoroplastic Pump

Because of its innovative energy-saving design, CQF series magnetic pumps can make the magnetic pumps exert the maximum efficiency and greatly improve the durability of the products.The plastic components adopt an optimized structure and are reinforced by glass fiber. The impellers and magnetic rotors adopt the plastic injection molding method, which reduces the volume of the pump components and increases its efficiency.The flow passage components are made of reinforced polypropylene plastic. Pump shafts, bearings, and end rings are made of the latest corrosion resistant materials. Together with the leakage-free structure without shaft seals, the safe passage of most chemical fluids can be ensured.The pump uses modular main components,which can be easily disassembled and examined. It's easy to maintain.

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Product Description

CQF Specification

Model In/out (diameter) Hose connection Maximum output Standard output Motor
Inlet Outlet Inlet Outlet Flow Head Flow Head Power Voltage
(mm) (mm) (mm) (mm) (L/min) (m) (L/min) (m) (KW) (V)
CQF25-25-115 25X25 33 33 200 17 140 12 0.75 380

*Union interface and flanged interface are available upon request. Liquid temperature range: 0-80℃(PP) 0-100℃ (PVDF). Suitable for specific gravity below 1.3 (specify when ordering, should the gravity be higher).

 

Installing Dimensions

Fluoroplastic Pump

 

Performance Chart

Fluoroplastic Pump

 

Engineered for aggressive media, the CQF25-25-115 acid/alkali-resistant magnetic drive pump delivers leak-free transfer of corrosive fluids up to 90°C. Its sealless design eliminates shaft seal failures while reinforced polypropylene wetted parts withstand concentrated acids and solvents.

Key features:

25m max head performance

Zero leakage guaranteed

Energy-efficient operation

Modular maintenance (no pipe disconnection)

Ideal for chemical processing, electroplating, and wastewater applications. The CQF25-25-115 reduces downtime with corrosion-proof internals and tool-free component access. Achieve reliable chemical transfer with 30% lower lifecycle costs versus traditional pumps.

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