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Dynamic Recrystallization of AA5083 at 450 °C: the Effects of Strain Rate and Particle Size

机译:AA5083在450°C时的动态重结晶:应变速率和粒径的影响

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摘要

This article presents a study of the dynamic recrystallization that occurs when AA5083 is deformed at elevated temperatures and strain rates typical of those observed in quick plastic forming (QPF). Strain rates between 0.0005 and 0.3/s were used for these tests, which were performed with the samples at 450 °C. The results showed that for strain rates at or below 0.01/s, no recrystallization occurred. At higher strain rates, recrystallization did occur in the most highly strained regions of the sample. The recrystallized grain size was smallest at the highly-strained fracture point and increased in size as one moved away from the fracture end toward the grip of the sample. Below a critical strain, no further recrystallization was observed. This critical strain decreased with increasing strain rate and with an increase in the diameter of the largest constituent particles in the sample. Analysis of the results showed that both a critical strain rate and critical strain were required to achieve dynamic recrystallization. Humphrey’s model for critical strain rate gave qualitative agreement with experimental results, but the fact that the strain rate in the necked region of the sample increases above the nominal strain rate made a more detailed comparison with the model difficult.
机译:本文介绍了动态再结晶的研究,该现象发生在AA5083在升高的温度和较高的应变速率下变形时,而这种应变速率是快速塑性成型(QPF)中常见的现象。这些测试使用的应变率为0.0005至0.3 / s,这些测试是在450°C的温度下进行的。结果表明,当应变速率为0.01 / s或更低时,不会发生重结晶。在较高的应变速率下,重结晶确实发生在样品的最高应变区域。重结晶的晶粒尺寸在高应变断裂点处最小,并且随着晶粒从断裂端移向样品的抓地力而增大。低于临界应变,未观察到进一步的重结晶。该临界应变随着应变速率的增加和样品中最大组成颗粒直径的增加而降低。结果分析表明,达到动态再结晶既需要临界应变率,又需要临界应变。汉弗莱(Hemphrey)的临界应变速率模型与实验结果在质量上吻合,但是样品颈部区域的应变速率增加到标称应变速率以上这一事实使得与该模型进行更详细的比较变得困难。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第6期|1277-1289|共13页
  • 作者单位

    Division of Engineering Brown University Providence RI 02912 USA;

    Research and Development Center General Motors Corporation Warren MI 48090-9056 USA;

    Division of Engineering Brown University Providence RI 02912 USA;

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  • 正文语种 eng
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