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Microstructural characteristics and properties of CoCrFeNiNb_x high-entropy alloy coatings on pure titanium substrate by pulsed laser cladding

机译:脉冲激光覆层CACOCRFENINB_X高熵合金涂层高熵合金涂层的微观结构特征及性能

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摘要

CoCrFeNiNbx (x = 0 or 1 at.%) high-entropy alloy (HEA) coatings with good metallurgical bonding were successfully prepared on surfaces of pure titanium sheets by pulsed laser cladding. Phase constitutions and microstructural characteristics of the HEA coatings were characterized and analyzed by combined use of X-ray diffraction, electron channeling contrast imaging, energy dispersive spectroscopy and electron backscatter diffraction techniques. Results show that the HEA coating without Nb is consisted of BCC solid-solution phase with equiaxed bulk grain morphology and Cr2Ti Laves phase (C14-type hexagonal structure) with fine interdendritic lamellar morphology. After adding 1 at.% Nb, in addition to the BCC solid-solution phase and the Cr2Ti Laves phase, Cr2Nb Laves phase with C15-type cubic structure also appears in the interdendritic region in the HEA coating. Hardness tests reveal that the CoCrFeNiNbx HEA coatings are significantly harder than the pure titanium substrate (similar to 122 HV). The hardness value of the HEA coating with 1 at.% Nb reaches 1008 HV, which is similar to 8.3 times that of the substrate and considerably higher than that of bulk HEAs with similar compositions. Such high hardness can be attributed to the combined contribution from solid-solution hardening, and hardening from grain refinement and Laves phases with fine lamellar morphologies.
机译:COCRFENINBX(X = 0或1。%)通过脉冲激光包层在纯钛板表面上成功制备具有良好冶金键合的高熵合金(HEA)涂层。通过组合使用X射线衍射,电子通道对比度成像,能量分散光谱和电子反向散射衍射技术,表征和分析了HEA涂层的相位构成和微观结构特性。结果表明,没有Nb的HEA涂层由具有等轴散粒形态和CR2TI疏浚相(C14型六方结构)的BCC固溶体(C14型六边形结构)组成。在加入1时加入。%NB之外,除了BCC固溶体相和Cr2Ti疏水液相之外,Cr2NB Laves相对于C15型立方体结构也出现在HEA涂层中的Interdendritic区中。硬度测试表明,COCRFENINBX HEA涂层显着比纯钛基材(类似于122HV)。 HEA涂层的硬度值与1at。%NB达到1008HV,其类似于基材的8.3倍,并且大于具有相似组合物的散装HEA的8.3倍。这种高硬度可归因于固溶硬化的组合贡献,以及用细层状形态的晶粒细化和熔化阶段硬化。

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