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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Evolution of Recrystallization and Recrystallization Texture in Continuous-Cast AA 3015 Aluminum Alloy
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Evolution of Recrystallization and Recrystallization Texture in Continuous-Cast AA 3015 Aluminum Alloy

机译:连续铸造AA 3015铝合金中再结晶和再结晶织构的演变

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The evolution of recrystallization and recrystallization texture during annealing after cold rolling of a continuous-cast (CC) AA 3015 aluminum alloy with and without pretreatment was investigated in detail. It was found that the preheat treatment prior to cold rolling significantly affected the recrystallization kinetics, the shape and size of recrystallized grains, and the resulting texture of the CC AA 3015 aluminum alloy. In the case of the alloy without pretreatment, annealing at low temperatures resulted in coarse elongated recrystallized grains and a very strong P texture. As the annealing temperature increased, the size of the recrystallized grains dramatically decreased, the recrystallized grains became equiaxed, and the strength of the P texture decreased. The transition behavior could be attributed to the effect of Zener-particle pinning caused by concurrent precipitation. In contrast, the recrystallization texture of the CC AA 3015 aluminum alloy with pretreatment was characterized by a major cube component and a minor R component, and the annealing temperature did not affect the recrystallization texture. Moreover, concurrent precipitation retarded markedly the recrystallization of the CC AA 3015 aluminum alloy, decreased the Johnson-Mehl-Avrami-Kolmogorov (JMAK) exponent from 2.0 to 0.5, and increased the activation energy for recrystallization from 225 to 539 kJ/mol.
机译:详细研究了冷轧连续铸造(CC)AA 3015铝合金在有无预处理的情况下退火过程中的重结晶和重结晶织构。发现冷轧之前的预热处理显着影响了再结晶动力学,再结晶晶粒的形状和尺寸以及CC AA 3015铝合金的最终织构。对于未经预处理的合金,在低温下退火会导致粗大的拉长再结晶晶粒和非常强的P织构。随着退火温度的升高,再结晶晶粒的尺寸急剧减小,再结晶晶粒变得等轴,并且P织构的强度降低。过渡行为可归因于同时沉淀引起的齐纳粒子钉扎效应。相反,经预处理的CC AA 3015铝合金的再结晶织构的特征在于主要的立方组分和次要的R组分,并且退火温度不影响再结晶织构。此外,同时发生的析出显着延迟了CC AA 3015铝合金的重结晶,将Johnson-Mehl-Avrami-Kolmogorov(JMAK)指数从2.0降低到0.5,并将重结晶的活化能从225 kJ / mol提高到539 kJ / mol。

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