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首页> 外文期刊>Journal of Materials Science >Long-term self-annealing of copper and aluminium processed by high-pressure torsion
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Long-term self-annealing of copper and aluminium processed by high-pressure torsion

机译:高压扭转处理的铜和铝的长期自退火

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摘要

High-pressure torsion (HPT) is recognized as the most effective method for producing ultrafine-grained and even nanocrystalline structures in metallic systems. Although there are many reports on microstructural refinement of pure metals and metallic alloys, several important problems remain unresolved. For example, more information is needed on the homogeneity of the processed microstructure and on the heat release and temperature rise during HPT processing. Recently, there were reports of hardening in HPT-processed pure metals under conditions of self-annealing. This report presents new experimental data on the relaxation processes in HPT copper and aluminium processed at room temperature under loads of 6.0 and 1.0 GPa for zero and one turn. The experimental results were obtained using X-ray diffraction and by measuring the average Vickers microhardness after ageing.
机译:高压扭转(HPT)被认为是在金属系统中生产超细晶粒甚至纳米晶结构的最有效方法。尽管有许多关于纯金属和金属合金的微结构细化的报道,但仍未解决几个重要的问题。例如,需要更多有关加工微结构的均匀性以及HPT加工过程中的热量释放和温度上升的信息。最近,有报道称在自退火条件下,经HPT处理的纯金属会发生硬化。该报告提供了有关在室温和零和一圈负荷下在6.0和1.0 GPa负荷下加工的HPT铜和铝的弛豫过程的新实验数据。使用X射线衍射并通过测量老化后的平均维氏显微硬度获得了实验结果。

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