Yida Pumps Releases MP, MPH and CQF Series Magnetic Pumps for Zero‑Leakage Corrosive‑Media Transportation Across Worldwide Industrial Sites

2026-08-26

Tighter global industrial emission and workplace‑safety regulations push process plants to phase out traditional shaft‑seal centrifugal pumps prone to hazardous‑liquid fugitive leakage. Magnetic‑coupling sealless pumping technology has become a mainstream upgrade direction for modern chemical, electronics and surface‑treatment facilities across continents. Yida’s MP‑series compact magnetic pumps such as MP‑30R(M) and MP‑55R(M) adopt compact horizontal layout with full‑copper motors, featuring high energy efficiency and simplified footprint for small‑batch acid‑alkali circulation, lab‑scale chemical dosing and electroplating bath filtration tasks. The MPH‑series heavy‑duty magnetic pump models like MPH‑400, MPH‑401 and MPH‑422 upgrade hydraulic structures and reinforced corrosion‑resistant wetted components, handling higher‑flow, higher‑head working conditions for fertilizer production, fluoride‑chemical processing and waste‑acid regeneration loops. CQF‑series magnetic pumps balance material durability and cost‑effectiveness, widely deployed for circuit‑board etching electrolyte circulation and electrolyte‑capacitor manufacturing liquid delivery.

All these magnetic‑drive pump variants obtain CE certification to satisfy cross‑border project compliance requirements. Without mechanical shaft seals, the product family eliminates frequent seal‑replacement maintenance work, cutting overall operating expenses for end‑users. Global system integrators for electroplating lines, semiconductor wet‑process workshops and fine‑chemical plants are increasingly sourcing standardized sealless magnetic pump packages. Yida’s magnetic‑pump product matrix supports multiple material configurations, covering weak corrosive cleaning agents up to concentrated strong acid and alkali media, helping international customers select matched pump units according to local process parameters and chemical‑medium characteristics.

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