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FSB fluoroplastic alloy centrifugal pump

    FSB fluoroplastic alloy centrifugal pump

    The FSB fluoroplastic alloy centrifugal pump is a high-performance chemical pump designed for the safe and efficient transfer of highly corrosive fluids. Constructed with advanced fluoroplastic alloy materials, it offers excellent chemical resistance, long service life, and minimal maintenance. Ideal for industries such as chemical processing, pharmaceuticals, and petrochemicals, the FSB pump ensures stable flow, low energy consumption, and reliable operation even under harsh conditions, making it a trusted choice for industrial corrosive fluid handling.
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1. Product introduction

FSB type fluoroplastic alloy centrifugal pump (fluoroplastic chemical pump) is designed according to international standard size. The pump body is organically combined with metal and poly (perfluoroethylene propylene) (F46). The pump cover, impeller and shaft sleeve are all wrapped with metal inserts and molded by computer controlled sintering. The shaft seal is externally mounted corrugated pipe mechanical seal. The static ring is 99% alumina ceramic or silicon nitride. The dynamic ring is made of tetrafluoroethylene filling material, which is corrosion resistant and wear-resistant.

2. Product pictures

FSB-fluoroplastic-alloy-centrifugal-pump

3. Scope of application

FSB fluoroplastic alloy centrifugal pump (fluoroplastic chemical pump) is widely used in petrochemical industry, acid and alkali production, non-ferrous metal smelting, automobile manufacturing pickling process, rare earth separation, pesticides, dyes, medicine, paper making, electroplating, radio and other industries, and is suitable for transporting clear liquid or corrosive media containing a small amount of particles (solid content ≤ 5%).

4. Product Features

FSB type fluoroplastic alloy centrifugal pump (fluoroplastic chemical pump) is composed of pump body, impeller, pump cover, seal, support, pump shaft, coupling, lifting bolt, nut, base plate, etc.

1. Pump body: one steel flange ring embedded in the left and right connection departments is molded into plastic alloy. It has the advantages of compact and reasonable structure, strong corrosion resistance, tight and reliable sealing function, stable operation, low noise, high mechanical strength, no aging, no toxin decomposition, convenient maintenance, smooth flow passage, high efficiency, energy conservation, etc.

2. A stainless steel (1Cr18Ni9Ti) pressed plastic alloy is embedded on the right side of the gland.

3. Impeller: the shaft connection method is adopted. The metal shaft is made of high-quality steel and then wrapped with fluoroplastic for high temperature compression molding, so that the impeller and the metal shaft are firmly integrated to ensure that the shaft root and the rear of the impeller bear the torque force when rotating, so that the flow passage part of the medium is plastic alloy.

4. Mechanical seal: WB2 type, ST type adjustable single end mechanical seal technology without cooling water is adopted, which is made of silicon carbide, high-purity alumina ceramics, filled with tetrafluoro, graphite and other materials.

5. Model Meaning

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6. Specifications

Note: 1. If the parameters are different from those in the table during the model selection process, our factory can improve the model selection through technology.

7. Installation method

(1) The pump shall be installed and fixed on a stable foundation. It is better to lay a cushion between the base and the foundation. Ensure that the pump will not affect the vibration of the pipeline when it is started. The pump is not affected by other mechanical vibration.

(2) When installing the pipeline, it shall be noted that the inlet and outlet pipelines of the pump shall not exert force on the pump and shall be equipped with corresponding supports.

(3) Valves shall be installed on the inlet and outlet pipelines of the pump when the pump is installed under the condition of reverse flow, and it is better to install pipeline compensator. When the pump is under suction working condition, it is required to install valves at the inlet and outlet of the pump.

(4) Sufficient maintenance space shall be reserved for the pump during installation to facilitate equipment maintenance in the later period.

8. Precautions

(1) It cannot be used when there is no liquid inside FSB fluoroplastic alloy centrifugal pump

(2) When the filling seal of FSB fluoroplastic alloy centrifugal pump is used and the filling box leaks, the leaking filler cannot be used again, and it can only be used after all of them are replaced.

(3) If FSB fluoroplastic alloy centrifugal pump uses mechanical seal, it is necessary to ensure that there is enough liquid inside for mechanical seal flushing.

9. Frequently Asked Questions

(1) If the water pump does not discharge water, it may be that there is air in the pump chamber.

(2) Insufficient pump flow may be caused by partial blockage of pipes and impeller of pump flow passage, insufficient valve opening, etc.

(3) Excessive pump power may be used beyond the rated flow.

(4) Noise and vibration may be caused by unstable pipeline support, gas mixed with liquid, bearing damage, etc.

10. Need to know

(1) The FSB fluoroplastic alloy centrifugal pump is prohibited from idling, and the minimum flow during pump operation is 35% of the design point.

(2) If cavitation occurs when the pump is running, it must be stopped within 1 minute.

(3) The medium temperature change shall be controlled within 40 ℃. Excessive temperature rise/drop may cause damage to pump parts.

(4) If the power is cut off suddenly when the pump is running, the power must be turned off immediately and the outlet valve must be closed.

(5) The noise of the pump is ≤ 95dB. In case of vibration and noise, the pump should be shut down for inspection and troubleshooting before operation.

(6) Grease lubricated bearings shall be selected for the pump, and additional oil shall not be added to the bearing box.

FSB Fluoroplastic Alloy Centrifugal Pump: Complete User Guide and Maintenance Instructions

The FSB fluoroplastic alloy centrifugal pump is engineered for reliable chemical fluid handling in industrial environments. Known for its high corrosion resistance, long service life, and stable performance, this pump is ideal for applications in chemical processing, petrochemical plants, pharmaceuticals, and other industries handling aggressive fluids.


H2: Overview of FSB Fluoroplastic Alloy Centrifugal Pump

The FSB centrifugal pump is constructed with premium fluoroplastic alloy materials, offering exceptional resistance to acids, alkalis, and solvents. Its design ensures efficient fluid transfer with minimal energy consumption, while its compact and modular structure facilitates easy installation and maintenance.

Key Features:

  • Corrosion resistance: Fluoroplastic alloy casing and impeller for maximum durability.

  • Energy efficiency: Optimized hydraulic design for low power consumption.

  • Low maintenance: Modular design simplifies component replacement.

  • Industrial applications: Suitable for aggressive chemicals, including acids, alkalis, and solvents.


H2: Technical Specifications

ParameterSpecification
Pump TypeCentrifugal, single-stage
MaterialFluoroplastic alloy
Max Flow Rate50–500 m3/h
Max Head20–80 m
Temperature Range-20°C to 150°C
Pressure RatingUp to 16 bar
Motor Options0.75–15 kW, AC or explosion-proof
Seal TypePTFE mechanical seal

These specifications make the FSB pump highly versatile for various chemical and industrial applications.


FSB-fluoroplastic-alloy-centrifugal-pump

H2: Applications of FSB Fluoroplastic Alloy Pump

The FSB pump is widely used in industries that require reliable handling of corrosive or aggressive fluids:

H3: Chemical Industry

  • Acid and alkali transfer: Safe pumping of hydrochloric acid, sulfuric acid, nitric acid, and caustic soda.

  • Solvent handling: Resistant to organic solvents used in chemical synthesis.

H3: Pharmaceutical Industry

  • Safe and hygienic design: Ensures contamination-free transfer of sensitive chemicals and solutions.

H3: Petrochemical Industry

  • Corrosion-resistant handling: Ideal for aggressive petrochemical liquids and intermediates.

H3: Water Treatment Plants

  • Chemical dosing: Efficiently pumps chlorine, sodium hypochlorite, and other water treatment chemicals.


H2: User Guide and Operating Instructions

To ensure optimal performance and safety, users must follow proper operating procedures:

H3: Installation Instructions

  1. Foundation: Install on a flat, stable base to reduce vibration.

  2. Alignment: Ensure proper alignment between pump and motor.

  3. Piping: Avoid stress on the pump casing; use flexible connections if needed.

  4. Priming: Fill the pump casing with the fluid to prevent dry running.

H3: Start-Up Procedure

  1. Check all valves are open.

  2. Confirm proper electrical connections and grounding.

  3. Start the motor at low speed and gradually increase to the desired flow rate.

  4. Monitor pressure and flow for normal operation.

H3: Operating Conditions

  • Do not exceed the recommended temperature and pressure limits.

  • Avoid running the pump dry to prevent damage to the mechanical seal.

  • Ensure proper chemical compatibility for all pumped fluids.


H2: Maintenance and Cleaning Methods

Regular maintenance ensures long-term performance and prevents unexpected downtime.

H3: Routine Maintenance

  • Weekly: Inspect for leaks, unusual noise, and vibration.

  • Monthly: Check and lubricate bearings if applicable.

  • Quarterly: Inspect the mechanical seal and replace if worn.

  • Annually: Full disassembly, inspection, and replacement of worn parts.

H3: Cleaning Procedures

  1. Flush the pump with compatible neutral fluid after each use.

  2. Avoid abrasive materials that may damage fluoroplastic surfaces.

  3. Ensure all chemical residues are fully removed before storage.


H2: Common Issues and Troubleshooting

IssuePossible CauseRecommended Solution
Low flow rateBlocked impeller or suction lineInspect and clean
Excessive vibrationMisalignment or worn bearingsRe-align or replace bearings
Leakage around sealWorn mechanical sealReplace mechanical seal
Motor overheatingOverload or voltage fluctuationCheck motor load and electrical supply

H2: Customer Feedback and Reviews

Customers praise the FSB fluoroplastic alloy centrifugal pump for its:

  • Durability: Long-term resistance to highly corrosive chemicals.

  • Efficiency: Stable flow rates and low energy consumption.

  • Ease of maintenance: Modular components simplify repairs.

  • Reliability: Minimal downtime in continuous chemical operations.

“The FSB pump has greatly improved our chemical handling process. Its corrosion resistance and reliability are unmatched.” — Chemical Plant Operator

“We installed multiple FSB pumps in our pharmaceutical facility. They deliver stable performance and require very little maintenance.” — Plant Engineer


H2: Safety Considerations

  • Always wear protective gear when handling aggressive chemicals.

  • Follow local regulations for chemical handling and pump operation.

  • Avoid opening the pump while it is under pressure.

  • Ensure proper grounding to prevent electrical hazards.


H2: Conclusion

The FSB fluoroplastic alloy centrifugal pump is a highly reliable solution for chemical fluid transfer, combining corrosion resistance, durability, and energy efficiency. Its modular design, wide applications, and low maintenance requirements make it ideal for chemical processing, pharmaceuticals, petrochemicals, and water treatment plants. Following the user guide, maintenance instructions, and safety precautions ensures optimal performance and long-term service life.

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