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Effects of Deformation Parameters on Microstructural Evolution of 2219 Aluminum Alloy during Intermediate Thermo-Mechanical Treatment Process

机译:中间热处理工艺中变形参数对2219铝合金组织演变的影响

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摘要

To explore the effective way of grain refinement for 2219 aluminum alloy, the approach of ‘thermal compression tests + solid solution treatment experiments’ was applied to simulate the process of intermediate thermo-mechanical treatment. The effects of deformation parameters (i.e., temperature, strain, and strain rate) on microstructural evolution were also studied. The results show that the main softening mechanism of 2219 aluminum alloy during warm deformation process is dynamic recovery, during which the distribution of CuAl2 phase changes and the substructure content increases. Moreover, the storage energy is found to be decreased with the increase in temperature and/or the decrease in strain rate. In addition, complete static recrystallization occurs and substructures almost disappear during the solid solution treatment process. The average grain size obtained decreases with the decrease in deforming temperature, the increase in strain rate, and/or the increase in strain. The grain refinement mechanism is related to the amount of storage energy and the distribution of precipitated particles in the whole process of intermediate thermal-mechanical treatment. The previously existing dispersed fine precipitates are all redissolved into the matrix, however, the remaining precipitates exist mainly by the form of polymerization.
机译:为了探索2219铝合金晶粒细化的有效方法,采用“热压缩试验+固溶处理实验”的方法来模拟中间热机械处理的过程。还研究了变形参数(即温度,应变和应变速率)对微观结构演变的影响。结果表明,2219铝合金在热变形过程中的主要软化机理是动态恢复,在此过程中CuAl2相的分布发生变化,亚结构含量增加。此外,发现随着温度的升高和/或应变率的降低,储能减小。另外,在固溶体处理过程中会发生完全的静态重结晶,并且亚结构几乎消失。所获得的平均晶粒尺寸随着变形温度的降低,应变速率的增加和/或应变的增加而减小。晶粒细化机理与中间热处理整个过程中的储能量和沉淀颗粒的分布有关。先前存在的分散的细小沉淀物都重新溶解在基质中,但是,剩余的沉淀物主要以聚合形式存在。

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