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首页> 外文期刊>Entropy >Microstructure of Laser Re-Melted AlCoCrCuFeNi High Entropy Alloy Coatings Produced by Plasma Spraying
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Microstructure of Laser Re-Melted AlCoCrCuFeNi High Entropy Alloy Coatings Produced by Plasma Spraying

机译:等离子喷涂激光重熔AlCoCrCuFeNi高熵合金涂层的组织

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An AlCoCrCuFeNi high-entropy alloy (HEA) coating was fabricated on a pure magnesium substrate using a two-step method, involving plasma spray processing and laser re-melting. After laser re-melting, the microporosity present in the as-sprayed coating was eliminated, and a dense surface layer was obtained. The microstructure of the laser-remelted layer exhibits an epitaxial growth of columnar dendrites, which originate from the crystals of the spray coating. The presence of a continuous epitaxial growth of columnar HEA dendrites in the laser re-melted layer was analyzed based on the critical stability condition of a planar interface. The solidification of a columnar dendrite structure of the HEA alloy in the laser-remelted layer was analyzed based on the Kurz–Giovanola–Trivedi model and Hunt’s criterion, with modifications for a multi-component alloy.
机译:使用两步法在纯镁基材上制备AlCoCrCuFeNi高熵合金(HEA)涂层,包括等离子喷涂工艺和激光重熔。在激光重熔之后,消除了喷涂涂层中存在的微孔,并获得了致密的表面层。激光重熔层的微观结构表现出柱状树枝状晶体的外延生长,其起源于喷涂涂层的晶体。基于平面界面的临界稳定性条件,分析了激光重熔层中柱状HEA枝晶连续外延生长的存在。基于Kurz-Giovanola-Trivedi模型和Hunt准则,对HEA合金在激光重熔层中的柱状枝晶组织的凝固进行了分析,并对多组分合金进行了修改。

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