首页> 外文期刊>Materials science forum >Microstructures and Wear Resistance of AI_(1.5)Crfeniti_(0.5)and AI_(1.5)Crfeniti_(0.5)W_(0.5) High Entropy Alloy Coatings Manufactured by Laser Cladding
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Microstructures and Wear Resistance of AI_(1.5)Crfeniti_(0.5)and AI_(1.5)Crfeniti_(0.5)W_(0.5) High Entropy Alloy Coatings Manufactured by Laser Cladding

机译:激光熔覆Al_(1.5)Crfeniti_(0.5)和AI_(1.5)Crfeniti_(0.5)W_(0.5)高熵合金涂层的组织和耐磨性

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摘要

For the purpose of expanding the application scope of HEA coating manufactured on the surface modification of materials, in this work, the Al_(1.5)CrFeNiTi_(0.5) and Al_(1.5)CrFeNiTi_(0.5)W_(0.5) HEA coatings were successfully manufactured using laser cladding method on SUS304. The microstructures and wear resistance of coatings are researched systematically. It is found that the W0 and W0.5 HEA coatings all exhibit the dendritic structure, which are constituted by BCC phases and Laves phases. With W element addition, the phase structures of W0.5 coating remain unchanged. W is dissolved in both two phases, but the solid solubility in Laves phase is higher compared to that in BCC phase. W0.5 coating with the highest microhardness of 848.34 HV, and the W0 coating with the microhardness of 811.45 HV, both of whose microhardness are four times more than that of SUS304 substrate. Among all samples, the W0.5 coating shows the optimal wear performance because of its larger content of hard second phase ( Laves phase).
机译:为了扩大在材料表面改性上制造的HEA涂层的应用范围,在这项工作中,成功制造了Al_(1.5)CrFeNiTi_(0.5)和Al_(1.5)CrFeNiTi_(0.5)W_(0.5)HEA涂层在SUS304上使用激光熔覆方法。系统地研究了涂层的微观结构和耐磨性。发现W0和W0.5 HEA涂层均表现出由BCC相和Laves相构成的树枝状结构。通过添加W元素,W0.5涂层的相结构保持不变。 W溶解在两个相中,但是在Laves相中的固溶度比在BCC相中的固溶度高。 W0.5涂层的最高显微硬度为848.34 HV,W0涂层的显微硬度为811.45 HV,两者的显微硬度均是SUS304基材的四倍。在所有样品中,W0.5涂层由于具有较高的硬质第二相(Laves相)含量而显示出最佳的磨损性能。

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