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Initiation of Dynamic Recrystallization in Constant Strain Rate Hot Deformation

机译:恒定应变速率热变形中动态再结晶的启动

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In constant strain rate tests, the occurrence of dynamic recrystallization (DRX) is traditionally identified from the presence of stress peaks in flow curves. However, not all materials display well-defined peaks when tested under these conditions. Using plain carbon, Nb-bearing and 321 austenitic stainless steels, it is shown that the onset of DRX can also be detected from inflections in plots of the strain hardening rate θ against stress σ or, equivalently, from inflections in In θ-ln σ and In θ-ε plots regardless the presence of stress peaks in the flow curves. These observations are verified by means of metallography. A unified description of the flow curve is introduced based on normalization of the stress and strain by the respective peak or steady state values. This approach reveals that, in a given material, the ratio of DRX critical stress to the peak or steady state stress is constant, as is that of the critical strain to the corresponding strain values. Furthermore, it is shown that the present technique can be used to establish the occurrence of DRX when this cannot be determined unambiguously from the shape of the flow curve.
机译:在恒定应变率测试中,动态重结晶(DRX)的发生传统上是根据流动曲线中应力峰值的存在来确定的。但是,在这些条件下进行测试时,并非所有材料都显示明确定义的峰。使用普通碳钢,含Nb的奥氏体和321奥氏体不锈钢,结果表明,还可以从应变硬化率θ对应力σ的曲线中的拐点或等效地从Inθ-lnσ的拐点检测DRX的开始。和在θ-ε图中,无论流量曲线中是否存在应力峰值。这些观察结果通过金相学证实。基于通过相应的峰值或稳态值对应力和应变的归一化,引入了流量曲线的统一描述。这种方法表明,在给定的材料中,DRX临界应力与峰值应力或稳态应力之比是恒定的,临界应变与相应应变值的比率也是如此。此外,示出了当不能根据流动曲线的形状明确地确定DRX时,可以使用本技术来建立DRX的发生。

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