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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhancement of mechanical and electrical properties of Al-RE alloys by optimizing rare-earth concentration and thermo-mechanical treatment
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Enhancement of mechanical and electrical properties of Al-RE alloys by optimizing rare-earth concentration and thermo-mechanical treatment

机译:通过优化稀土浓度和热机械处理来增强Al-Re合金的机械和电性能

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摘要

Al-based immiscible systems, such as Al-RE (rare earth), seem to be promising materials for high conductivity conductors as RE alloying elements have zero solubility in Al and thus are less detrimental for electrical conductivity. The intermetallic phases, precipitated as small particles and uniformly distributed in the alloy's volume, may significantly increase the mechanical strength and thermal stability of alloy. However, the immiscible element compound concentration should be controlled as an excessive amount might result in a loss of electrical conductivity. Therefore, the optimization of RE concentration to obtain the best combination of mechanical strength and electrical conductivity is considered in this research. It focuses also on the effect of high-pressure torsion (HPT) and post deformation annealing temperature on mechanical and electrical properties of Al-RE (La thorn Ce) alloy. Alloys with total Ce and La concentrations of 2.5, 4.5 and 8.5 wt % are subjected to HPT at room temperature and subsequent annealing in the range of temperatures 230-400 degrees C. The optimal concentration of RE and processing parameters for enhancement of both mechanical strength and electrical conductivity are defined. (c) 2018 Elsevier B.V. All rights reserved.
机译:基于Al-Re(稀土)的基于Al-Re(稀土),似乎是高电导导体的有希望的材料,因为重新合金元素在Al中具有零溶解度,因此对电导率不太有害。金属间相,沉淀为小颗粒并均匀地分布在合金的体积中,可以显着提高合金的机械强度和热稳定性。然而,应控制不混溶的元素化合物浓度,因为过量的量可能导致导电率的损失。因此,在该研究中考虑了RE浓度的优化以获得最佳机械强度和电导率的组合。它还侧重于高压扭转(HPT)和后变形退火温度对Al-Re(La Thorn Ce)合金的机械和电性能的影响。 2.5,4.5和8.5wt%的总Ce和La浓度的合金在室温下进行HPT,随后在温度范围内的退火,在230-400℃的温度范围内。用于提高机械强度的Re和加工参数的最佳浓度和导电性定义。 (c)2018年elestvier b.v.保留所有权利。

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