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首页> 外文期刊>Materials Characterization >Reinforcement of the Cube texture during recrystallization of a 1050 aluminum alloy partially recrystallized and 10% cold-rolled
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Reinforcement of the Cube texture during recrystallization of a 1050 aluminum alloy partially recrystallized and 10% cold-rolled

机译:1050铝合金的部分再结晶和10%冷轧再结晶过程中的立方织构强化

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摘要

In high purity Aluminum, very strong {100)<001> recrystallization texture is developed after 98% cold rolling and annealing at 500 °C. On the contrary, in Aluminum alloys of commercial purity, the Cube component hardly exceeds 30% after complete recrystallization. Parameters controlling Cube orientation development are mainly the solute dragging due to impurities in solid solution and the stored deformation energy. In the present study, besides the 85% cold rolling, two extra annealings and a slight cold rolling are introduced in the processing route to increase the Cube volume fraction. The Cube development was analyzed by X-ray diffraction and Electron BackScattered Diffraction (EBSD). The nucleation and growth mechanisms responsible for the large Cube growth were investigated using FEG/EBSD in-situ heating experiments. Continuous recrystallization was observed in Cube oriented grains and competed with SIBM (Strain Induced Boundary Migration) mechanism. This latter was favored by the stored energy gap introduced during the additional cold-rolling between the Cube grains and their neighbors. Finally, a Cube volume fraction of 65% was reached after final recrystallization.
机译:在高纯度铝中,经过98%的冷轧和500°C的退火后,会产生非常强的{100)<001>重结晶织构。相反,在商业纯度的铝合金中,完全重结晶后立方元素几乎不超过30%。控制立方体取向发展的参数主要是由于固溶体中的杂质和储存的变形能而引起的溶质拖动。在本研究中,除了85%的冷轧之外,在加工过程中还引入了两次额外的退火和轻微的冷轧,以增加立方体积分数。通过X射线衍射和电子背散射衍射(EBSD)分析了立方的发展。使用FEG / EBSD原位加热实验研究了负责大立方生长的成核和生长机理。在立方体取向的晶粒中观察到连续的再结晶,并且与SIBM(应变诱导的边界迁移)机制竞争。后者受立方晶粒及其相邻晶粒之间的额外冷轧过程中引入的储能缺口的支持。最终,在最终重结晶后,Cube体积分数达到65%。

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