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Evolution of texture and microstructure in AA3004 sheets during continuous confined strip shearing deformation and subsequent annealing

机译:连续限制条剪切变形及随后退火期间AA3004床单纹理和微观结构的演变

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A new deformation process termed "continuous confined strip shearing" (CCSS) has been developed for shear deformation of metallic sheets. The tools of CCSS were designed to provide a constant shear deformation of the order of 0.5 per pass while preserving the original sheet shape. In order to clarify the evolution of texture and microstructure during CCSS, strips of the aluminum alloy AA3004 were deformed by CCSS in up to three passes. FEM results indicated that CCSS provides a quite uniform shear deformation at thickness layers close to the strip center, although the deformation is not homogeneous in the die channel, in particular at the surface layers. The rolling texture of the initial sheet decreased during CCSS, and preferred orientations along two fibers developed. However, with an increasing namber of CCSS passes the deformation texture did not develop further. The evolution of annealing textures depended on the number of CCSS passes. A strong {112}<110> component in the deformation texture led to the formation of a strong {111}<112> orientation in the annealing texture. Observations by TEM and EBSD revealed the formation of very fine grains of ~1.0 μm after CCSS.
机译:已经开发出一种新的变形过程,被开发出“连续限制带剪切”(CCS)以剪切金属片的变形。 CCSS的工具被设计为在保持原始床单时提供0.5的0.5级恒定的剪切变形。为了阐明CCSS期间纹理和微观结构的演变,铝合金AA3004的条带的CCSS最多可变。 FEM结果表明CCSS在靠近条带中心的厚度层提供相当均匀的剪切变形,但是变形在模具通道中不是均匀的,特别是在表面层。在CCSS期间初始纸张的滚动纹理降低,并且沿两根纤维的优选取向。然而,随着CCS的增加,通过变形纹理并未进一步发展。退火纹理的演变取决于CCSS的数量。变形纹理中的强{112} <110>组件导致在退火纹理中形成强的{111} <112>方向。 TEM和EBSD的观察显示CCSS后的非常细粒〜1.0μm的形成。

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