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Influence of V and Heat Treatment on Characteristics of WMoNbTaV Refractory High-Entropy Alloy Coatings by Mechanical Alloying

机译:V和热处理对机械合金化耐温耐火材料高熵合金涂层特性的影响

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Refractory high-entropy alloy (RHEA) is one of the most promising materials for use in high-temperature structural materials. In this study, the WMoNbTaV coatings on 304 stainless steel substrates has been prepared by mechanical alloying (MA). Effects of V addition and subsequent heat treatment on properties of the WMoNbTaV coatings were investigated. The results show that the RHEA coatings with nanocrystalline body-centered cubic (BCC) solid-solution phase were generated by the mechanical alloying process. The presence of the V element promotes a uniform microstructure and homogeneous distribution of composition in the RHEA coatings due to improving alloying efficiency, resulting in an increase of hardness. After the annealing treatment of the RHEA coatings, microstructure homogeneity was further enhanced; however, the high affinity of Ta for oxygen causes the formation of Ta-rich oxides. Annealing also removes strain hardening generated by high-energy ball milling and thus decreases the hardness of the RHEA coating and alters microstructure evolution and mechanical properties.
机译:耐火材料高熵合金(RHEA)是高温结构材料中最有希望的材料之一。在本研究中,通过机械合金化(MA)制备了304个不锈钢基材上的WMONTAV涂层。研究了V添加和随后的热处理对湿涂层涂层性能的影响。结果表明,采用机械合金化方法产生具有纳米晶体为中心的立方(BCC)固溶体的rhea涂层。由于提高了合金化效率,v元素的存在促进了耳膜涂层中的组合物的均匀微观结构和均匀分布,导致硬度增加。在退火处理耳膜涂层后,进一步增强了微观结构均匀性;然而,TA用于氧的高亲和力导致形成富含TA的氧化物。退火还除去高能球磨产生的应变硬化,从而降低锐涂的硬度,并改变微观结构演化和机械性能。

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