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Mechanics and mechanisms of fatigue in a WC-Ni hardmetal and a comparative study with respect to WC-Co hardmetals

机译:WC-Ni硬质合金疲劳的力学和机理以及WC-Co硬质合金的对比研究

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摘要

There is a major interest in replacing cobalt binder in hardmetals (cemented carbides) aiming for materials with similar or even improved properties at a lower price. Nickel is one of the materials most commonly used as a binder alternative to cobalt in these metal-ceramic composites. However, knowledge on mechanical properties and particularly on fatigue behavior of Ni-base cemented carbides is relatively scarce. In this study, the fatigue mechanics and mechanisms of a fine grained WC-Ni grade is assessed. In doing so, fatigue crack growth (FCG) behavior and fatigue limit are determined, and the attained results are compared to corresponding fracture toughness and flexural strength. An analysis of the results within a fatigue mechanics framework permits to validate FCG threshold as the effective fracture toughness under cyclic loading. Experimentally determined data are then used to analyze the fatigue susceptibility of the studied material. It is found that the fatigue sensitivity of the WC-Ni hardmetal investigated is close to that previously reported for Co-base cemented carbides with alike binder mean free path. Additionally, fracture modes under stable and unstable crack growth conditions are inspected. It is evidenced that stable crack growth under cyclic loading within the nickel binder exhibit faceted, crystallographic features. This microscopic failure mode is rationalized on the basis of the comparable sizes of the cyclic plastic zone ahead of the crack tip and the characteristic microstructure length scale where fatigue degradation phenomena take place in hardmetals, i.e. the binder mean free path. (C) 2014 Elsevier Ltd. All rights reserved.
机译:人们对以硬质合金(硬质合金)替代钴粘合剂的目标是,以较低的价格获得具有相似甚至改善性能的材料。镍是这些金属陶瓷复合材料中最常用的钴替代材料之一。但是,关于机械性能,特别是关于镍基硬质合金的疲劳行为的知识相对较少。在这项研究中,评估了细晶粒WC-Ni级的疲劳力学和机理。在此过程中,确定疲劳裂纹扩展(FCG)行为和疲劳极限,并将获得的结果与相应的断裂韧性和抗弯强度进行比较。在疲劳力学框架内对结果进行的分析允许验证FCG阈值作为循环载荷下的有效断裂韧性。然后将实验确定的数据用于分析研究材料的疲劳敏感性。结果发现,所研究的WC-Ni硬质合金的疲劳敏感性接近于先前报道的具有相同粘结剂平均自由程的Co基硬质合金。另外,检查在稳定和不稳定的裂纹扩展条件下的断裂模式。有证据表明,在镍粘结剂中循环载荷下稳定的裂纹扩展表现出多面的晶体学特征。基于裂纹尖端之前的环状塑料区域的可比尺寸以及在硬质金属中会发生疲劳降解现象的特征微观结构长度尺度(即粘结剂平均自由程),可以合理地确定这种微观破坏模式。 (C)2014 Elsevier Ltd.保留所有权利。

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