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Microalloying of transition metal silicides by mechanical activation and field-activated reaction

机译:通过机械活化和场活化反应使过渡金属硅化物微合金化

摘要

Alloys of transition metal suicides that contain one or more alloying elements are fabricated by a two-stage process involving mechanical activation as the first stage and densification and field-activated reaction as the second stage. Mechanical activation, preferably performed by high-energy planetary milling, results in the incorporation of atoms of the alloying element(s) into the crystal lattice of the transition metal, while the densification and field-activated reaction, preferably performed by spark plasma sintering, result in the formation of the alloyed transition metal silicide. Among the many advantages of the process are its ability to accommodate materials that are incompatible in other alloying methods.
机译:包含一个或多个合金元素的过渡金属硅化物的合金是通过两阶段过程制造的,该过程包括第一阶段的机械活化和第二阶段的致密化和场活化反应。机械活化(最好通过高能行星铣削进行)会导致合金元素的原子掺入过渡金属的晶格中,而致密化和场活化反应(最好通过火花等离子体烧结进行)导致形成合金化的过渡金属硅化物。该方法的许多优点之一是它能够容纳在其他合金化方法中不兼容的材料。

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