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Hardness of WC-Co hard metals: Preparation, quantitative microstructure analysis, structure-property relationship and modelling

机译:WC-CO硬质金属硬度:制备,定量微观结构分析,结构性关系和建模

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摘要

Different commercial WC-Co hard metals with carbide grain sizes ranging from ultrafine to coarse and Co contents between 4.2 and 25 wt.% have been investigated with regard to their microstructural and mechanical properties. Therefore, novel preparation strategies - including specific etching reactions - and microscopic methods for the microstructural characterization were developed. Two sets of microscopic images were generated suitable for further semi-automatic determination of either the Co volume fraction phi(Co) or the mean maximum Feret diameter d(Fer) of the WC grains considering the irregular shape of the grains. Subsequently, the determined microstructural parameters and measured Vickers hardness values were used to develop a novel model calculating the hardness of WC-Co hard metals. The total hardness is mainly determined by the hard carbide whereby its influence is reduced by the soft Co binder phase. The current model is in good agreement with the measured values within almost the whole relevant hardness range of WC-Co hard metals (700 - 2300 HV 10) and do not require any statement of the existence of a carbide skeleton within the material and thus the Co binder mean free path which is essential for hardness models established so far but also hard to determined experimentally. So the current model is a significant simplification and improvement of the prediction of the hardness of WC-Co hard metals by means of microstructural parameters.
机译:不同的商业WC-Co硬质金属,碳化物粒度范围从超细到4.2和25重量%的粗糙,共含量为4.2和25重量%。在其微观结构和机械性能方面已经研究了%。因此,开发了新的制备策略 - 包括微观结构表征的特异性蚀刻反应和微观方法。产生两组微观图像,适用于考虑到晶粒的不规则形状的WC颗粒的CO体积分数PHI(CO)或平均最大火炉直径D(FER)的进一步半自动。随后,使用确定的微观结构参数和测量的维氏硬度值来开发一种计算WC-Co硬质金属硬度的新型模型。总硬度主要由硬碳化物决定,其中通过软CO粘合剂相减少其影响。目前模型与WC-Co硬质金属的几乎完整相关硬度范围内的测量值良好(700-2300 HV 10),并且不需要任何对材料内碳化物骨架存在的陈述,因此CO粘合剂意味着自由路径对于到目前为止建立的硬度模型至关重要,但也很难通过实验确定。因此,目前模型是通过微结构参数预测WC-Co硬质金属硬度的显着简化和改进。

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