首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigation of the hardening behavior during recrystallization annealing in Al-Mg-Sc alloy
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Investigation of the hardening behavior during recrystallization annealing in Al-Mg-Sc alloy

机译:Al-Mg-Sc合金中再结晶退火过程中的硬化行为研究

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In this work, Al-3Mg-0.2Sc alloy with a single pass friction stir processing (FSP) was cold rolled, followed by recrystallization annealing. Hardening behavior was observed in cold rolled alloy after annealing treatment at 330 degrees C and 400 degrees C. The hardening phenomenon can be rationalized by a calculation between the Zener pinning (P-Z) and the driving force of recrystallization (P-D(Rex)). The result of contrastive calculation accords with the hardness change in the early stage of annealing, while the characteristics about coherency of Al3Sc particles determine that the contrastive calculation is inapplicable to later period of annealing. Specifically, the destruction of coherency between Al3Sc particles and matrix after annealing time exceeds 75 min makes that the actual value of P-Z is much less than the predicted value of calculation. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,采用单道次搅拌摩擦工艺(FSP)对Al-3Mg-0.2Sc合金进行冷轧,然后进行再结晶退火。冷轧合金在330°C和400°C退火后观察到硬化行为。通过计算齐纳钉扎(P-Z)和再结晶驱动力(P-D(Rex))可以合理解释硬化现象。对比计算结果与退火初期的硬度变化一致,而Al3Sc颗粒的相干性特征决定了对比计算不适用于退火后期。具体来说,退火时间超过75分钟后,Al3Sc颗粒与基体之间的相干性破坏,使得P-Z的实际值远小于计算的预测值。(C) 2020爱思唯尔B.V.版权所有。

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