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Energy considerations regarding yield points during indentation

机译:压痕过程中关于屈服点的能量考虑

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TWo experiments that probe the nature of the rapid transition from elastic to plastic deformation are described. The load, and therefore stress, at which this yield point occurs is shown to be relatively independent of temperature in an iron alloy. When stresses lower than those required to generate a yield point during loading are applied for times between seconds and minutes, yielding occurs while the sample is under an applied stress. The time to generate a yield point increases as the applied stress is decreased. The possibilities of dislocation glide loop nucleation, double kink nucleation, and dislocation breakaway from pinning points are examined. Only glide loop nucleation appears to match the experimental observations. Criteria based on the stress-volume requirements of glide loop nucleation and the stress field underneath an indenter are presented which qualitatively describe the experimental data.
机译:描述了探究从弹性变形到塑性变形快速过渡的本质的两次实验。在该屈服点处发生的载荷以及因此的应力显示为相对独立于铁合金中的温度。如果施加的应力低于加载过程中产生屈服点所需的应力,持续时间介于数秒至数分钟之间,则在施加应力的情况下会发生屈服。随着施加应力的减小,产生屈服点的时间增加。研究了位错滑行环成核,双扭结成核和位错脱离钉扎点的可能性。只有滑环成核似乎与实验观察相符。提出了基于滑环成核的应力-体积要求和压头下方应力场的标准,定性描述了实验数据。

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