Most chemical, PCB and pharmaceutical production lines maintain 24-hour uninterrupted operation all year round. The friction heat generated by the rotating magnetic rotor cannot be discharged efficiently in a sealed pump cavity. Excess heat will deform fluoroplastic isolation sleeves, reduce magnetic coupling efficiency and even cause permanent demagnetization of magnetic steel in severe cases. Poor heat dissipation becomes a common hidden danger for magnetic pumps operating under high-load continuous working conditions.
Yida adds circulating liquid cooling flow passages inside the pump chamber, guiding the conveyed medium to flow through the surface of magnetic components and take away operating heat synchronously. The wall thickness of the isolation sleeve is reasonably optimized to balance structural strength and thermal conductivity. Meanwhile, the outer shell of the pump body is designed with extended heat dissipation ribs to accelerate outward heat exchange with ambient air. All improved magnetic pumps pass high-temperature aging cycle testing before delivery to verify heat control performance under full-load continuous operation.
The upgraded heat dissipation structure effectively lowers the internal operating temperature of pumping equipment for global unmanned factory fluid systems, eliminates shutdown risks caused by overheating faults, and improves the long-term operational reliability of magnetic pump products in continuous production scenarios.

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