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首页> 外文期刊>Journal of nanoscience and nanotechnology >Analysis of Microstructure and Electric Conductivity in Al-RE Alloy by Heat-Treatment Condition
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Analysis of Microstructure and Electric Conductivity in Al-RE Alloy by Heat-Treatment Condition

机译:通过热处理条件分析Al-Re合金中的微观结构和电导率

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摘要

In this study, we investigate the microstructure and mechanical properties of as-extruded Al-1.0RE alloys. The molten Aluminum alloy was maintained at 800 degrees C and then poured into a mould at 200 degrees C. Aluminum alloys were hot-extruded into a rod measuring 12 mm thick with a reduction ratio of 38: 1. The microstructure and electric conductivity properties of as-extruded Al-1.0RE alloy under different annealing processes were investigated and compared. After extrusion, the intermetallic compound having a needle shape in the cast state was finely decomposed based on the direction of extrusion. Significant changes in the microstructure were detected after annealing at 500 degrees C with fragmentation and sphering of eutectic particles. The annealing temperature of Al-1.0RE alloy increased proportionally to the electrical conductivity. The formation of Al-RE intermetallic compounds increases the electrical conductivity and improves the mechanical properties of the alloy through precipitation hardening.
机译:在这项研究中,我们研究了用挤出的Al-1.0re合金的微观结构和机械性能。熔融铝合金保持在800℃,然后将铝合金倒入模具中,将铝合金热挤出成12mm厚的杆,减少38:1。微观结构和电导率研究并比较了不同退火过程下的AL-1.0RE合金。在挤出之后,基于挤出方向细细地分解具有在铸造状态下的金属间化合物。在用500℃下以碎裂和光学颗粒的碎裂和球形来输掉微观结构的显着变化。 Al-1.0re合金的退火温度与电导率成比例地增加。 Al-Re金属间化合物的形成增加了导电性并通过沉淀硬化提高了合金的机械性能。

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