Long-distance pipeline transportation is widely adopted in centralized chemical raw material distribution and cross-regional waste liquid collection networks. Traditional magnetic drive structures have unreasonable gap settings between inner and outer magnetic rotors, resulting in obvious magnetic eddy current loss during high-speed operation. A large amount of electric energy is consumed in ineffective magnetic friction instead of liquid conveying, raising long-term operating costs for global chemical enterprises.
Yida adopts finite element simulation to calibrate the optimal assembly clearance of magnetic components. High-performance permanent magnetic blocks are arranged in a dense symmetrical layout to enhance magnetic field uniformity. The upgraded magnetic coupling system delivers higher torque output under the same motor power, cutting eddy current heat generation and energy waste inside the pump cavity.
The improved transmission efficiency directly reduces the unit power consumption per cubic meter of conveyed liquid. For global chemical parks with long circulating pipeline networks, this upgrade brings tangible electricity expenditure savings while ensuring stable medium transportation pressure in long-distance pipelines.

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