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Hardness and Young's modulus distributions in atmospheric plasma sprayed WC-Co coatings using nanoindentation

机译:纳米压痕法在大气等离子喷涂WC-Co涂层中的硬度和杨氏模量分布

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摘要

A statistical indentation analysis of WC-Co coatings obtained by atmospheric plasma spray (APS) with two secondary plasma gases, H_2 and He, was investigated using an instrumented indentation technique with the aim of correlating the influence of the nanomechanical behaviour of each constituent phase with the micromechanical characteristics of these coatings.X-ray diffraction (XRD) and backscattered electron (BSE) analysis showed that H2 gas produced a greater decarburisation of the WC phase. The dissolution and decomposition of the WC phase during the process produced a Co+W+C solid solution as binder phase and the formation of W_2C and W as secondary phases. The nanohardness (H) and Young's modulus (E) resulting from a grid of 300 indentations performed at 50nm in depth identified the characteristics of each phase in the heterogeneous structure produced by decarburisation. Statistical study by a CDF fit and Gaussian simulated distributions showed that the mechanical properties of the coatings were governed by the binder phase content, which decreased the possible hardening effect of the arising hardest phases (W_2C and Co+W+C solid solution).
机译:使用仪器压痕技术研究了通过大气等离子喷涂(APS)和两种二次等离子气体H_2和He获得的WC-Co涂层的统计压痕分析,目的是将每个组成相的纳米力学行为的影响与X射线衍射(XRD)和背散射电子(BSE)分析表明,H 2气体对WC相产生了更大的脱碳作用。在此过程中,WC相的溶解和分解产生了Co + W + C固溶体作为粘合剂相,并形成了W_2C和W作为第二相。由深度为50nm的300个压痕网格形成的纳米硬度(H)和杨氏模量(E)识别了脱碳产生的非均质结构中各相的特性。通过CDF拟合和高斯模拟分布进行的统计研究表明,涂层的机械性能受粘结剂相含量的控制,这降低了所产生的最硬相(W_2C和Co + W + C固溶体)的可能的硬化作用。

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