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Rare-Earth Fe-B Powder Coating for Improvements in Corrosion Resistance, Flux Aging Loss, and Mechanical Strength of Bonded Magnets

机译:稀土Fe-B粉末涂料,可改善粘结磁体的耐蚀性,通量老化损耗和机械强度

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摘要

Coating formulations have been investigated for rare-earth Fe-B (RE Fe-B) type melt spun magnetic powders, to provide them with enhanced corrosion and oxidation resistance when exposed to aggressive environments. The coating formulations consist of an epoxy binder-based system and specialty additives. Results with two RE Fe-B powder types using these new formulations show between 19 ℃ and 26 ℃ enhancements in their operating temperatures for comparable flux aging loss, but now with better magnetic property retention at high temperatures and better adhesion between powder and organic coating. Optimal flux aging loss was found to result after curing the compacts within 180 ℃ to 200 ℃ for 30 to 60 min at a compaction pressure of 690 MPa (7 tons cm{sup}(-2)), although higher pressures resulted in more severe magnetic losses but higher bending strengths. The new formulations yield magnets whose magnetic properties are less affected by curing at these typical high temperatures.
机译:已对稀土Fe-B(RE Fe-B)型熔纺磁粉的涂料配方进行了研究,以使其在侵蚀性环境下具有增强的耐腐蚀和抗氧化性能。涂料配方由基于环氧粘合剂的体系和特种添加剂组成。使用这些新配方的两种RE Fe-B粉末类型的结果表明,它们的工作温度提高了19℃至26℃之间,可产生相似的磁通老化损耗,但现在在高温下具有更好的磁性,并且粉末与有机涂层之间的粘附性更好。发现在690 MPa(7吨cm {sup}(-2))的压实压力下,将压坯在180℃至200℃固化30至60分钟后,会产生最佳的助焊剂老化损失,尽管更高的压力会导致更严重的老化。磁损耗,但弯曲强度更高。新配方生产的磁体的磁性能在这些典型的高温下受固化的影响较小。

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