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Changes in Crystallographic Orientation Distribution during Superplastic Deformation in Aluminum Alloys

机译:铝合金超塑性变形过程中晶体取向分布的变化

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Changes in crystallographic orientation distribution during superplastic deformation in a fine-grained Al-Zn-Mg-Cu alloy and an Al-Mg-Mn alloy consisting of the coarse-grained surface and the fine-grained center layers have been reviewed in order to reveal contribution of dislocation slips to deformation. The strain rate and grain size dependences of the deformation behavior were examined by EBSD (electron back scatter diffraction) analysis. Intragranular misorientation increases after deformation at high strain rates, presumably due to dislocation activity, while it was low in the specimen deformed at a low strain rate in the early stage of 35% strain. Progressive randomization of the initial texture was also found during deformation at the low strain rate. Further, grain structure and grain boundary character are analyzed in detail to discuss the deformation mechanism.
机译:在细粒al-Zn-Mg-Cu合金中的超塑性变形期间的晶体取向分布的变化和由粗粒表面组成的Al-Mg-Mn合金和细粒度中心层,以揭示脱位单的贡献变形变形。通过EBSD(电子背面散射衍射衍射)分析检查变形行为的应变率和粒度依赖性。在高应变率下变形后的鞘内错误化增加,可能是由于位错活性,而在35%菌株的早期以低应变率下变形的样品中较低。在低应变率的变形期间也发现了初始质地的渐进随机化。此外,详细分析晶粒结构和晶界特征以讨论变形机制。

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