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Retrogression and Reaging Applied to Warm Forming of High-Strength Aluminum Alloy AA7075-T6 Sheet

机译:倒置和牵引适用于高强度铝合金AA7075-T6板材的热成型

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摘要

This study introduces retrogression forming, a new warm-forming methodology for high-strength aluminum alloys such as AA7075-T6. Retrogression forming combines a retrogression heat treatment with simultaneous warm forming at approximately 200 degrees C to improve upon the room-temperature ductility of AA7075-T6, approximately 10pct in tension, and can then use the automotive paint-bake cycle to restore nearly peak-aged strength. Experimental data indicate that retrogression forming at 200 degrees C provides a tensile ductility of 20pct, approximately double that of room temperature, and that subsequent reaging by a simulated paint bake restores hardness to within 10pct of the original peak-aged (T6) hardness. To explore the retrogression-forming concept, the retrogression behaviors of two AA7075-T6 sheet materials from different suppliers are characterized between 200 degrees C and 350 degrees C. The times and temperatures of retrogression treatments suitable for simultaneous warm forming are determined, and tensile ductilities under these conditions are measured. Tensile ductilities during high-temperature deformation (up to 520 degrees C) are measured and compared to those possible under retrogression-forming conditions. Plastic flow at temperatures of 460 degrees C to 520 degrees C is governed by dislocation-climb-controlled creep, a mechanism different from the behaviors observed under retrogression-forming conditions.
机译:本研究介绍了倒带形成,一种用于高强度铝合金的新型恒温方法,如AA7075-T6。倒置形成结合了倒退热处理,在约200摄氏度下同时温热成型,以改善AA7075-T6的室温延展性,张力约为10℃,然后可以使用汽车涂料烘烤循环恢复近峰值力量。实验数据表明,在200摄氏度下形成的倒置形成20PCT的拉伸延展性,室温的大约两倍,并且随后通过模拟涂料烘焙恢复硬度在原始峰值(T6)硬度的10Pct内。为了探索倒退形成概念,来自不同供应商的两个AA7075-T6板材的倒置行为在200摄氏度之间的特征在于200摄氏度之间,确定适用于同时热成形的倒退治疗的时间和温度,并拉伸试剂在这些条件下测量。测量高温变形(高达520℃)的拉伸扩展,并与倒置形成条件下的那些相​​比。 460℃至520℃温度的塑料流动由位错攀爬控制的蠕变控制,一种不同于在倒置形成条件下观察到的行为的机制。

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