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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Investigation of Heterogeneous Joule Heating as the Explanation for the Transient Electroplastic Stress Drop in Pulsed Tension of 7075-T6 Aluminum
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Investigation of Heterogeneous Joule Heating as the Explanation for the Transient Electroplastic Stress Drop in Pulsed Tension of 7075-T6 Aluminum

机译:7075-T6铝脉冲张力瞬态电压应力下降的异质焦耳加热调查

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摘要

The electroplastic effect can be predicted and modeled as a 100% bulk heating/softening phenomenon in the quasi-steady-state; however, these same models do not accurately predict flow stress in transient cases. In this work, heterogeneous Joule heating is examined as the possible cause for the transient stress drop during quasi-static pulsed tension of 7075-T6 aluminum. A multiscale finite element model is constructed where heterogeneous thermal softening is explored through the representation of grains, grain boundaries, and precipitates. Electrical resistivity is modeled as a function of temperature and dislocation density. In order to drive the model to predict the observed stress drop, the bulk temperature of the specimen exceeds experiment, while the dislocation density and grain boundary electrical resistivity exceed published values, thereby suggesting that microscale heterogeneous heating theory is not the full explanation for the transient electroplastic effect. A new theory for explaining the electroplastic effect based on dissolution of bonds is proposed called the Electron Stagnation Theory.
机译:电压效果可以预测和建模为在准稳态中100%散装加热/软化现象;然而,这些相同的型号在瞬态案例中不准确地预测流量应力。在这项工作中,通过在7075-T6铝的准静态脉冲张力期间检查异质焦耳加热作为瞬态应力下降的可能原因。构造了多尺度有限元模型,其中通过谷物,晶界和沉淀物的表示来探索异质热软化。电阻率被建模为温度和位错密度的函数。为了驱动模型预测观察到的应力下降,样本的体积温度超过实验,而脱位密度和晶界电阻率超过公开值,从而暗示微观异构加热理论不是瞬态的完整解释电熨斗效果。提出了一种新的解释基于键溶解的电镀效果的理论称为电子停滞理论。

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