4.7 Article

Kinetics of high temperature oxidation of end-of-life Ni/Cu/Ni coated NdFeB rare earth permanent magnets

期刊

CORROSION SCIENCE
卷 189, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.corsci.2021.109560

关键词

Rare earth elements; Permanent magnets; High temperature oxidation; Kinetics rate equation; Recycling processes

资金

  1. Swinburne-Automotive Engineering Graduate Program (AEGP) scholarship - Australian Government through the Department of Industry, Science, Energy and Resources
  2. Commonwealth Scientific and Industrial Research Organisation (CSIRO), Australia

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The study evaluated the high temperature oxidation kinetics of end-of-life NdFeB rare earth permanent magnets with Ni/Cu/Ni coating, showing a diffusion-controlled mechanism and an activation energy of 168 kJ/mol. The presence of the coating was found to reduce overall kinetic rates by ten times.
The oxidation behaviour of rare earth permanent magnets contributes significantly to the understanding and efficiency of their high temperature recycling processes. The current paper evaluated the high temperature oxidation kinetics of end-of-life Ni/Cu/Ni coated NdFeB rare earth permanent magnets at 973-1473 K under ambient air conditions. The general microstructure observations and kinetics measurements showed that the oxidation was controlled by a diffusion mechanism that followed the Ginstling-Brounshtein model. The overall activation energy was calculated to be 168 kJ/mol. Results suggest that the presence of a Ni/Cu/Ni coating has a negative effect, reducing the overall kinetic rates by ten times.

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