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Nano-Indentation Properties of Tungsten Carbide-Cobalt Composites as a Function of Tungsten Carbide Crystal Orientation

机译:碳化钨-钴复合材料的纳米压痕性能与碳化钨晶体取向的关系

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摘要

Tungsten carbide-cobalt (WC-Co) composites are a class of advanced materials that have unique properties, such as wear resistance, hardness, strength, fracture-toughness and both high temperature and chemical stability. It is well known that the local indentation properties (i.e., nano- and micro-hardness) of the single crystal WC particles dispersed in such composite materials are highly anisotropic. In this paper, the nanoindentation response of the WC grains of a compact, full-density, sintered WC-10Co composite material has been investigated as a function of the crystal orientation. Our nanoindentation survey has shown that the nanohardness was distributed according to a bimodal function. This function was post-processed using the unique features of the finite mixture modelling theory. The combination of electron backscattered diffraction (EBSD) and statistical analysis has made it possible to identify the orientation of the WC crystal and the distinct association of the inherent nanoindentation properties, even for a small set (67) of nanoindentations. The proposed approach has proved to be faster than the already existing ones and just as reliable, and it has confirmed the previous findings concerning the relationship between crystal orientation and indentation properties, but with a significant reduction of the experimental data.
机译:碳化钨-钴(WC-Co)复合材料是一类具有独特性能的高级材料,例如耐磨性,硬度,强度,断裂韧性以及高温和化学稳定性。众所周知,分散在这种复合材料中的单晶WC颗粒的局部压痕特性(即,纳米和微米硬度)是高度各向异性的。在本文中,已经研究了紧密,全密度烧结WC-10Co复合材料的WC晶粒的纳米压痕响应随晶体取向的变化。我们的纳米压痕调查表明,纳米硬度是根据双峰函数分布的。使用有限混合建模理论的独特功能对该函数进行了后处理。电子背散射衍射(EBSD)和统计分析的结合,使得即使对于一小部分(67)纳米压痕,也可以确定WC晶体的取向以及固有的纳米压痕特性的独特关联。事实证明,所提出的方法比现有方法更快,并且同样可靠,并且它证实了有关晶体取向与压痕特性之间关系的先前发现,但实验数据却大大减少了。

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