Textures of Sheet in AA3003 Aluminum Alloy Under Biaxial Stretching

X. Wen, W. Lee
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引用次数: 4

Abstract

In this paper, the textures are determined under plane strain tension, nonequi-biaxial stretching and equi-biaxial stretching. The changes of the major texture components in the sheet are analyzed and discussed. It is found that under plane strain tension, the strength of the {110}〈112〉 component increases by more than four times followed by the {110}〈111〉, whereas the fraction of {112}〈111〉 component falls gradually. In the sample deformed with a strain ratio intermediate between these of plane strain tension and equibiaxial stretching, the textural change is relatively small. Under equi-biaxial stretching, there is a big increase in the {110} rolling plane components with the peak at {110}〈111〉 orientation. The strength of the other components falls rapidly (e.g. {110}〈112〉) or remains low (e.g. {112}〈111〉).
双轴拉伸下AA3003铝合金薄板织构的研究
本文对平面应变拉伸、非等双轴拉伸和等双轴拉伸下的织构进行了测定。对板材主要织构成分的变化进行了分析和讨论。结果表明:在平面应变拉伸作用下,{110}< 112 >组分强度增加4倍以上,其次是{110}< 111 >组分,而{112}< 111 >组分强度逐渐减小;当应变比介于平面应变拉伸和等双轴拉伸之间时,试样的织构变化较小。在等双轴拉伸下,{110}轧制平面分量增加较多,且在{110}< 111 >取向处达到峰值。其他组分的强度迅速下降(例如{110}< 112 >)或保持较低(例如{112}< 111 >)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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