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Synergistic effects of corrosion and slow strain rate loading on the mechanical and electrochemical response of an aluminium alloy

机译:腐蚀和慢应变速率加载对铝合金的机械和电化学响应的协同效应

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摘要

Tensile specimens of an aluminium alloy, AA7075, with grains aligned parallel to the tensile axis are subjected to a range of slow strain rate tensile loading in a very low pH corrosive environment. The degradation in mechanical response together with the emerging electrochemical characteristics of the material using electrochemical impedance spectroscopy (EIS) are characterized. The EIS measurements coupled with the post-mortem microscopic characterization of the specimens provide an unprecedented view of all the interfacial phenomena affecting the mechanical response of the material. A failure mechanism of the material under consideration is proposed and rationalized by a qualitative fracture mechanics analysis.
机译:晶粒与拉伸轴平行排列的铝合金拉伸试样(AA7075)在非常低的pH腐蚀性环境中经受一系列缓慢应变速率的拉伸载荷。使用电化学阻抗谱(EIS)对材料的机械响应性能下降以及新兴的电化学特性进行了表征。 EIS测量与标本的事后显微表征相结合,为影响材料机械响应的所有界面现象提供了前所未有的视角。提出了所考虑材料的失效机理,并通过定性断裂力学分析使其合理化。

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