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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Modelling the temperature rise effect through high-pressure torsion
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Modelling the temperature rise effect through high-pressure torsion

机译:通过高压扭转模拟温升效应

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摘要

An approach composed of the thermodynamics-based dislocation model and the Taylor theory is used to investigate the evolution of microstructure and flow stress during high-pressure torsion (HPT). The incremental temperature rise is considered through the modelling of HPT. The temperature can affect the annihilation of dislocations and thus the dislocation density. The model predicts the dislocation density, sub-grain size and flow stress during HPT. The modelling results are compared with the experimental data and the modelling results without considering the incremental temperature rise. A remarkable agreement is observed between the modelling results with considering the temperature rise effect and the experimental data.
机译:采用基于热力学的位错模型和泰勒理论组成的方法,研究高压扭转(HPT)过程中微观结构和流变应力的演变。通过HPT建模可以考虑温度的增量升高。温度会影响位错的the灭,进而影响位错密度。该模型可预测HPT期间的位错密度,亚晶粒尺寸和流动应力。将建模结果与实验数据和建模结果进行比较,而无需考虑增量温度升高。在考虑温度升高效应的模型结果与实验数据之间观察到了显着的一致性。

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