首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of High Configuration Entropy and Rare Earth Addition on Boride Precipitation and Mechanical Properties of Multi-principal-Element Alloys
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Effect of High Configuration Entropy and Rare Earth Addition on Boride Precipitation and Mechanical Properties of Multi-principal-Element Alloys

机译:高型熵和稀土添加对多主元合金硼化物沉淀和力学性能的影响

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摘要

A series of multi-principal-element (MPE) alloys have been prepared by adding Ni, Mn, Al, Cu and Y into the reference CoCrFe-B alloy. The microstructure and mechanical properties of these MPE alloys have been investigated thoroughly. It is found that the addition of the elements can inhibit boride precipitation in the designed alloys and the solid solution strengthening effect induced by interstitial boron atoms is more significant than that by boride precipitation. The MPE alloys with the fcc phase as the main solid solution phase have a higher boron solubility and hence less boride precipitation, than those with the bcc phase as the main solid solution phase. The addition of yttrium can improve the boron solubility, decrease boride precipitation, control the boride morphology and, importantly, simultaneously improve the compressive strength and ductility of boron-containing MPE alloys.
机译:通过将Ni,Mn,Al,Cu和Y加入参考COCRFE-B合金中,制备了一系列多主元素(MPE)合金。 已经彻底研究了这些MPE合金的微观结构和机械性能。 发现添加元素可以抑制所设计的合金中的硼化物沉淀,并且间质硼原子诱导的固溶强化效果比硼化物沉淀更显着。 具有FCC阶段的MPE合金作为主要固体溶液相具有较高的硼溶解度,因此少于硼化物沉淀,而不是具有BCC阶段作为主要固体溶液相的沉淀。 添加钇可以改善硼溶解度,降低硼化物沉淀,控制硼化物形态,重要的是同时提高含硼MPE合金的抗压强度和延展性。

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