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Tensile behavior and deformation mechanisms of ultrafine-grained aluminum processed using equal-channel angular pressing

机译:等径角挤压超细晶粒铝的拉伸行为和变形机理

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The structure and deformation behavior of ultrafine-grained aluminum processed by equal channel angular pressing through plastic flow at room temperature in a strain rate interval of 1.0 × 10~(-5)-8.6 × 10~(-3) s~(-1) have been studied. The contribution of grain boundary sliding to the overall deformation (η) was calculated using displacement of grains relative to each other in local areas of a gage length. The strength characteristics and tendency toward necking diminish when decreasing the strain rate, while elongation up to failure and η increase. Improving the ductility at low strain rates should be related to the increase in strain rate sensitivity caused by enhancing η, reaching 45% in the local areas of the neck and totaling 72% in the local areas of uniformly elongated portion. The relatively low value of the strain rate sensitivity (m=0.08) is due to the heterogeneity of grain structure in UFG aluminum.
机译:室温下以塑性流经等通道角挤压在应变率区间为1.0×10〜(-5)-8.6×10〜(-3)s〜(-1)下处理的超细晶粒铝的结构和变形行为)已进行了研究。晶粒边界滑动对整体变形(η)的贡献是使用晶粒长在局部区域相对于彼此的位移来计算的。当减小应变速率时,强度特性和颈缩趋势减小,而直至破坏的伸长率和η增加。在低应变率下提高延展性应与因η增强而引起的应变率敏感性增加有关,在颈部局部区域达到45%,在均匀伸长部分的局部区域总计达到72%。应变速率灵敏度的相对较低的值(m = 0.08)是由于UFG铝中晶粒结构的异质性。

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