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Application of a Dy3Co0.6Cu0.4Hx Addition for Controlling the Microstructure and Magnetic Properties of Sintered Nd-Fe-B Magnets

机译:Dy3Co0.6Cu0.4Hx添加剂在控制Nd-Fe-B烧结磁体的组织和磁性能中的应用

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摘要

The focus of new technologies on the formation of inhomogeneous distributions of heavy rare-earth metals (REMs) in hard magnetic Nd–Fe–B materials is of scientific importance to increase their functional properties, along with preserving existing sources of heavy REMs. This paper focused on the coercivity enhancement of Nd Fe B-based magnets by optimizing the microstructure, which includes the processes of grain boundary structuring via the application of a Dy Co Cu H alloy added to the initial Nd–Fe–B-based powder mixtures in the course of their mechanical activation. We have studied the role of alloying elements in the formation of phase composition, microstructure, the fine structure of grains, and the hysteretic properties of hard magnetic Nd(R) Fe B-based materials. It was shown that the Dy introduction via the two-component blending process (the hydrogenated Dy Co Cu compound is added to a powder mixture) resulted in the formation of the core-shell structure of 2–14–1 phase grains. The efficient improvement of the coercivity of Nd(RE)–Fe–B magnets, with a slight sacrifice of remanence, was demonstrated.
机译:在硬磁Nd-Fe-B材料中形成重稀土金属(REM)的不均匀分布方面,新技术的重点对提高其功能性能以及保留现有的重REM来源具有科学重要性。本文着重于通过优化显微组织来增强Nd Fe B基磁体的矫顽力,其中包括通过在初始Nd–Fe–B基粉末混合物中添加Dy Co Cu H合金来进行晶界结构化的过程。在它们的机械激活过程中。我们研究了合金元素在相组成,微观结构,晶粒的精细结构以及硬磁Nd(R)Fe B基材料的磁滞特性中的作用。结果表明,通过两组分共混过程引入的Dy(将氢化的Dy Co Cu化合物添加到粉末混合物中)导致形成2-14-1相晶粒的核-壳结构。证明了Nd(RE)-Fe-B磁体矫顽力的有效提高,而剩磁略有下降。

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