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High strength high electrical conductivity ultrafine-grained Al-Y alloy processed via cold drawing

机译:冷拔高强度高导电率超细晶Al-Y合金

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摘要

Strength and electrical conductivity are always mutually exclusive in Al conductor materials because most of the common strengthening method will inevitably increase their electrical resistance. In this work, an ultrafine-grained A1-7.5Y alloy with large amounts of stacking faults interior the Al grains was fabricated by multi-passes clod drawing. The results show that the cold drawing processed A1-7.5Y alloy shows a simultaneous increase in mechanical strength and conductivity compared to that of the as-cast alloy. After cold drawing, the ultimate tensile strength increases from 126 MPa to 232MPa; meanwhile, the conductivity increases from 49.94%IACS to 52.24%IACS. The potential strengthening mechanisms and conducting mechanism were explored based on the theoretical prediction and the experimental findings. The grain boundary strengthening and dislocation strengthening contribute a crucial part in the total strength. The increase of conductivity in Al-Y alloy is mainly attributed to the directionally aligned AI3Y particles along the drawing direction; meanwhile, the SFs play an essential role in maintaining high strength and high conductivity.
机译:强度和电导率在Al导体材料中始终是互斥的,因为大多数常用的加固方法都会不可避免地增加其电阻。在这项工作中,通过多道次凝块拉深加工制造了具有大量堆积缺陷的超细晶粒Al-7.5Y合金,该缺陷在Al晶粒内部。结果表明,与铸态合金相比,经冷拔加工的A1-7.5Y合金的机械强度和导电率同时提高。冷拔后,极限抗拉强度从126 MPa增加到232 MPa;同时,电导率从49.94%IACS增加到52.24%IACS。在理论预测和实验结果的基础上,探索了潜在的强化机理和传导机理。晶界强化和位错强化在总强度中起着至关重要的作用。 Al-Y合金中电导率的增加主要归因于沿拉伸方向定向排列的Al3Y颗粒。同时,SF在维持高强度和高导电性方面起着至关重要的作用。

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