首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Cu and Mn content on solidification microstructure, T-phase formation and mechanical property of Al-Cu-Mn alloys
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Effect of Cu and Mn content on solidification microstructure, T-phase formation and mechanical property of Al-Cu-Mn alloys

机译:Cu和Mn含量对Al-Cu-Mn合金凝固微观结构,T相形成和力学性能的影响

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摘要

Solidification microstructure of two AlCuMn alloys (Alloy-1: Al-1.6Cu-0.3Mn, Alloy-2: Al-2.2Cu-0.8Mn) and their precipitation behavior during solutionizing and aging treatments were investigated by optical microscopy, X-ray diffraction, Scanning and Transmission Electron Microscopies. The influence of Cu/Mn content and ratio on mechanical properties was also discussed in this study. Results reveal that Cu/Mn content and ratio have considerable influence on the solidification microstructure of these alloys. In Alloy-1 with low Cu/Mn content and ratio, only small amount of theta-CuAl2 and T-phase (Al20Cu2Mn3) are formed within the interdendritic regions and grains boundaries during solidification. But in Alloy-2 with high Cu/Mn content and ratio, a great amount of bone-like and round multiphase structure is observed in interdendritic regions, which consists of alpha-Al, theta-CuAl2 and Al13Cu4Mn3 phases. The Al13Cu4Mn3 phase in multiphase structure is demonstrated to be an icosahedral quasicrystalline phase (I-phase). The formation of I-phase in a conventional casting of AlCuMn alloy is related to the stabilizing effect of Fe. Cu/Mn content and ratio also have considerable influence on precipitation behavior of AlCuMn alloy during solutionizing and aging treatment. In Alloy-2, two morphologies of T-phase are formed: large particulate one is transformed from the instability decomposition of I-phase at high temperature and the fine rod-like is precipitated from supersaturated Al solid solution. And further aging does not lead to new precipitates. At each test temperature, both the YS and UTS of Alloy-2 are higher than that of Alloy-1 which is related to the formation of a great amount of T-phase particles during solution treatment. (C) 2018 Published by Elsevier B.V.
机译:通过光学显微镜研究了两种Alcumn合金(合金-1:Al-1.6Cu-0.3Mn,合金-2:Al-2.2Cu-0.8Mn)及其在溶血化处理过程中的沉淀行为的凝固微观结构及其沉淀行为。X射线衍射,扫描和透射电子显微镜。该研究还讨论了Cu / Mn含量和比率对机械性能的影响。结果表明,Cu / Mn含量和比率对这些合金的凝固微观结构具有相当大的影响。在具有低Cu / Mn含量和比率的合金-1中,仅在凝固过程中仅形成少量的THETA-Cual2和T相(Al20cu2MN3)和晶粒界限。但是在具有高Cu / Mn含量和比率的合金-2中,在进行中,观察到大量的骨状和圆形的多相结构,其由α-Al,Theta-Cual2和Al13Cu4MN3相组成。将Al13Cu4MN3相对于icosaheDral喹啉相(I相)进行证明。在胃柱合金的常规浇铸中形成I相与Fe的稳定效果有关。 Cu / Mn含量和比率在溶解和老化处理过程中也对血柱合金的沉淀行为相当影响。在合金-2中,形成T相的两种形态:从高温下的I相的不稳定性分解转化大颗粒,从超饱和Al固溶体沉淀出细棒状物质。进一步的老龄化不会导致新的沉淀物。在每个测试温度下,合金-2的Ys和UTs都高于合金-1的ys和UTs,其与在溶液处理期间形成大量T相块的形成。 (c)2018由elestvier b.v出版。

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