首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part A. Defect and Diffusion Forum >Phase Transformations and Recrystallization in Cold-Rolled Al-Mn, Al-Sc-Zr and Al-Mn-Sc-Zr Alloy
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Phase Transformations and Recrystallization in Cold-Rolled Al-Mn, Al-Sc-Zr and Al-Mn-Sc-Zr Alloy

机译:冷轧Al-Mn,Al-Sc-Zr和Al-Mn-Sc-Zr合金的相变和再结晶

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摘要

The effect of cold-rolling on mechanical and electrical properties, microstructure and recrystallization behaviour of the AlMn, AlScZr and AlMnScZr alloys was studied. The materials were investigated during isothermal annealing at 300, 400, 500 and 550°C and during step-by-step quasilinear annealing from 200°C up to 600°C with a heating rate of 100 K/h followed by subsequent isothermal annealing at 600°C/5 h. Precipitation reactions were studied by electrical resistometry and (micro)hardness measurements. The microstructure development was investigated by electron microscopy and electron backscatter diffraction examinations. The hardening effect is due to uniformly distributed Al_3Sc and/or Al_3(Sc,Zr) particles. The distinct changes in resistivity of the alloys above ~ 300°C are mainly caused by precipitation of Mn-containing particles. It has a negligible effect on hardness. Phase transformations in the AlMn and AlMnScZr alloys are highly enhanced by cold rolling. The precipitation is dependent on the deformation degree - the more deformation the more intensive precipitation of the Mn-containing particles. The combination of Mn, Sc and Zr additions to Al substantially suppresses recrystallization at 550°C. A partial recrystallization was observed in the AlScZr alloy and AlMnScZr alloy after annealing 550°C/60 min and 550°C/760 min, respectively. The decomposition sequence of the supersaturated solid solution of the AlMnScZr alloy is compatible with the decomposition sequence of the AlScZr system accompanied and/or followed by the formation of Mn-containing particles.
机译:研究了冷轧对AlMn,AlScZr和AlMnScZr合金的力学性能,电性能,显微组织和再结晶行为的影响。在300、400、500和550°C等温退火过程中以及从200°C到600°C逐步升温准线性退火过程中对材料进行了研究,加热速率为100 K / h,随后在600°C / 5小时通过电阻法和(显微)硬度测量研究了沉淀反应。通过电子显微镜和电子反向散射衍射检查研究了微结构的发展。硬化效果归因于均匀分布的Al_3Sc和/或Al_3(Sc,Zr)颗粒。 〜300°C以上合金的电阻率发生明显变化主要是由于含Mn颗粒的沉淀所致。它对硬度的影响可忽略不计。通过冷轧可以大大增强AlMn和AlMnScZr合金中的相变。沉淀取决于变形程度-变形越多,含Mn颗粒的沉淀越强烈。向Al中添加Mn,Sc和Zr的组合基本上抑制了在550℃下的重结晶。分别在550°C / 60分钟和550°C / 760分钟进行退火之后,在AlScZr合金和AlMnScZr合金中观察到部分重结晶。 AlMnScZr合金的过饱和固溶体的分解顺序与伴随和/或随后形成含锰颗粒的AlScZr系统的分解顺序兼容。

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