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Corrosion-induced changes on Hertzian contact damage in cemented carbides

机译:腐蚀造成的碳化碳碳化物接触损伤的变化

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In this study, the influence of corrosion on the mechanical response and damage induced under Hertzian indentation is assessed for three cemented carbides with metallic binders of different chemical nature. Corrosion degradation is introduced in a controlled way, before subsequent spherical indentation testing, by immersing specimens in a stirred acidic medium. Results reveal quite strong corrosion effects on indentation stress-strain response and contact damage scenario. Such detrimental influence is found to be dependent on both the ratio between indentation depth and thickness of the corroded layer as well as chemical nature of the binder. In this regard, critical loads for emergence and evolution of specific damage events (i.e. ring and radial cracks, and even specimen failure) are proposed as figures of merit for material selection under the combined action of corrosion and contact loads. Within this context, the hardmetal grade with Co-base binder and addition of Cr is found to be the best option, among the three cemented carbides studied in this investigation. It points out the consideration of the synergic interaction between corrosion resistance and hardness/toughness correlation for microstructural design optimization of hardmetals under service-like conditions. These statements are supported by the relevant corrosion-induced changes also observed, by means of advanced characterization techniques, in terms of deformation/failure micromechanisms at both surface and subsurface levels.
机译:在这项研究中,对三种粘结的碳化物的不同化学性质的金属粘合剂评估了腐蚀对机械响应和损伤的影响。通过在随后的球形压痕测试之前,通过将样品浸入搅拌的酸性介质中,以受控方式引入腐蚀降解。结果揭示了对压痕应力 - 应变响应和接触损伤情景的相当强烈的腐蚀效应。发现这种有害影响依赖于腐蚀层的压痕深度和厚度之间的比例以及粘合剂的化学性质。在这方面,提出了特定损伤事件(即环和径向裂缝,甚至试样失败)的临界载荷作为在腐蚀和接触载荷的组合作用下进行材料选择的数字。在这种情况下,发现具有副碱粘合剂的硬质合金等级并添加CR的添加是最佳选择,其中三种粘合的碳化物在本研究中研究。它指出了在类似施用的条件下耐腐蚀性和硬度/韧性相关性的协同相互作用。这些陈述是通过在表面和地下水平的变形/故障微观机构方面通过先进的表征技术观察到的相关腐蚀引起的变化。

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