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Synchrotron X-ray microbeam diffraction measurements of full elastic long range internal strain and stress tensors in commercial-purity aluminum processed by multiple passes of equal-channel angular pressing

机译:同步加速器X射线微束衍射测量全弹性长程内应变和应力张量在商业纯度铝通过多道等通道角挤压加工

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摘要

Synchrotron X-ray microbeam diffraction was used to measure the full elastic long range internal strain and stress tensors of low dislocation density regions within the submicrometer grain/subgrain structure of equal-channel angular pressed (ECAP) aluminum alloy AA1050 after 1, 2, and 8 passes using route BC. This is the first time that full tensors were measured in plastically deformed metals at this length scale. The maximum (most tensile or least compressive) principal elastic strain directions for the unloaded 1 pass sample for the grain/subgrain interiors align well with the pressing direction, and are more random for the 2 and 8 pass samples. The measurements reported here indicate that the local stresses and strains become increasingly isotropic (homogenized) with increasing ECAP passes using route BC. The average maximum (in magnitude) LRISs are ?0.43 ?a for 1 pass, ?0.44 ?a for 2 pass, and 0.14 ?a for the 8 pass sample. These LRISs are larger than those reported previously because those earlier measurements were unable to measure the full stress tensor. Significantly, the measured stresses are inconsistent with the two-component composite model.
机译:用同步辐射X射线微束衍射法测量了等通道角挤压(ECAP)铝合金A1050的亚微米晶粒/亚晶粒结构中1,2,和3之后的低位错密度区域的全弹性长程内部应变和应力张量。使用路线BC,经过8次。这是第一次在这种长度尺度上对塑性变形金属进行全张量测量。谷物/亚晶粒内部的未通过1次通过样品的最大(最大拉伸或最小压缩)主弹性应变方向与压制方向很好地对齐,而对于2次和8次通过样品则更为随机。此处报告的测量结果表明,随着使用BC路线的ECAP通过次数的增加,局部应力和应变变得各向同性(均质)。 1次通过的平均最大LRISs为0.43Ωa,2次通过的为0.44Ωa,8次通过的为0.14Ωa。这些LRIS大于先前报告的LRIS,因为这些早期的测量无法测量完整的应力张量。值得注意的是,测得的应力与两组分复合模型不一致。

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