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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Effects of Nb additions on structure and mechanical properties evolution of CoCrNi medium-entropy alloy
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Effects of Nb additions on structure and mechanical properties evolution of CoCrNi medium-entropy alloy

机译:Nb添加对COCRNI中熵合金结构和力学性能的影响

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摘要

A serious medium-entropy alloys (MEAs), CrCoNiNbx (x = 0-0.5 mole ratio), was designed by adding Nb element into CrCoNi matrix to investigate alloying effects of large atom Nb on the phase evolution, microstructurel and their impacts on the subsequent mechanical properties. It was found that Nb element addition into the CoCrNi MEAs changed the original phase constitution and led to the formation of an ordered Nb-riched Laves phase with HCP structure embedded in the FCC matrix. The current alloy system structure evolved from hypoeutectic (x < 0.4), to eutectic (x = 0.4), then to hypereutectic (x > 0.4) with Nb content increases. Laves phase volume fraction increase is mainly responsible for the increment in the hardness and compression yield strength, and the decrement in the fracture strain. This strategy to obtain the balance of strength and ductility by adding a certain element will provide a new design idea for FCC type MEAs engineering applications.
机译:通过将Nb元素添加到CrconI基质中,设计了一种严重的中等熵合金(MEAS),CRCONINBX(X = 0-0.5摩尔比),以研究大型原子NB对相进程,微观尿浆及其对随后的影响的合金影响 机械性能。 结果发现,Nb元素加入CORCRNI MEAS改变了原始相体构造,并导致形成有序的NB富含血液阶段,其中HCP结构嵌入FCC基质中。 当前合金系统结构从低植物(X <0.4)中的速度蒸煮,向共晶(x = 0.4),然后用Nb含量增加(x> 0.4)。 Laves相体积馏分增加主要负责硬度和压缩屈服强度的增量,以及断裂菌株的减量。 通过添加某个元素获得强度和延展性平衡的这种策略将为FCC型测量工程应用提供新的设计理念。

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