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Dynamics of deformation band formation investigated by high-speed techniques during creep in an AlMg alloy

机译:AlMg合金蠕变过程中高速技术研究形变带形成的动力学

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Dynamics of the deformation band formation during creep in an Al-Mg alloy was investigated by simultaneous high-speed video recording of deformation bands with an extremely high time resolution of 40 μs and measurement of the concomitant acoustic emission. The results are consistent with the mechanism where the trigger of a strain step on the creep curve is the nucleation and rapid widening of a primary deformation band, generating an acoustic emission signal within 1 ms. Correlations between various stages of the deformation band formation, acoustic emission, and stress response are explored in detail. Notably, the stress drop rate and the amplitude of the acoustic emission signal are found to be linearly related. The mechanism of the acoustic emission associated with the initial rapid stage of the band development is discussed.
机译:通过同时高速记录变形带(具有40μs的极高时间分辨率)并测量伴随的声发射,研究了Al-Mg合金在蠕变过程中变形带形成的动力学。结果与机理一致,蠕变曲线上的应变阶跃的触发是主变形带的成核和快速展宽,从而在1 ms内产生声发射信号。详细探讨了变形带形成,声发射和应力响应各个阶段之间的相关性。值得注意的是,发现应力下降率和声发射信号的幅度是线性相关的。讨论了与声带发展的初始快速阶段有关的声发射机理。

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