magnetic drive chemical process pump with 316L material

This pump is made possible through the use of advanced design techniques such as suspended construction, Hastelloy isolation sleeve, carbon fiber reinforced isolation sleeve, and impeller channel polishing technology.

Description

Magnetic drive chemical process pumps are designed to ISO2858 standards, with fluid-contact components made from 304, 316, 316L stainless steel, titanium, and other corrosion-resistant alloys. Featuring an intermediate coupling, maintenance is simple—just dismantle the coupling without removing the pipeline or motor.

Performance

  • Flow: 1.8 to 400 m³/h
  • Head: 15 to 125 m
  • Maximum operating temperature: 400°C
  • Withstand pressure: 1.6 MPa

Applications

  • Transportation of organic chemical media
  • High temperature liquid transfer (molten metal, hot oil, hot water)
  • Corrosive fluid handling (acids, alkalis, solvents)
  • Petrochemical, metallurgy, chemical, and food industries

Key Features

  • Suspended structure: Simplifies the pump design, reduces friction and wear, prolongs service life, and enables easy maintenance—ideal for large flow and high head applications.
  • No water cooling box required: Special cooling materials and improved sealing allow efficient, safe operation with high-temperature media.
  • Advanced hydraulic model: Optimized hydrodynamic performance for high efficiency, reduced energy consumption, and minimized vibration and noise.
  • Hastelloy isolation sleeve: Superior resistance to high temperature and corrosion, protecting key pump components when handling aggressive chemical or high-temperature fluids.
  • Carbon fiber filament reinforced non-metallic isolation sleeve: High strength, abrasion and chemical resistance, reduced weight, and improved pump efficiency—ideal for high temperature and corrosive media environments.
  • Impeller polishing technology: Polished impeller and runner surfaces minimize friction loss, reduce impurity accumulation, and enhance flow efficiency and operational stability.
  • Efficiency improvement: Hydraulic design and advanced materials optimize flow and head, reduce energy loss, and lower operating costs.

Comprehensive Application Areas

  • High-temperature liquid transportation
  • Corrosive media handling
  • Petrochemical and food industries requiring leak-free, contamination-free, high-efficiency pumps