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Relationship among Elongation, Work Hardening Behavior and Dislocation Characteristics of Al-Mg-Si Series Alloys

机译:伸长率之间的关系,Al-Mg-Si系列合金的工作淬火行为和位错特征

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Dislocation multiplication and dynamic recovery in the tensile deformed Al-Mg-Si-Cu alloys were characterized by transmission electron microscope (TEM), to reveal the correlation between the dislocation characteristics and the elongation behaviors. 6016 (Al-0.4% Mg-1.0% Si-0.2% Cu (mass%)) and 6014 (Al-0.6% Mg-0.7% Si-0.1% Cu) alloys were aged at 363K for 18 ks after solution treated and quenched into water. The maximum n-value of 6016 alloy was found higher than that in the 6014 alloy. The n-value reduction rate after reaching its maximum of 6016 alloy was found smaller than that of 6014 alloy. Furthermore, the dislocation multiplication on {111} plane and the formation of dislocation band were formed in 6016 alloy with more than 10% of tensile deformation. Therefore, the slip lines observed by scanning electron microscope (SEM) are finely formed. The homogeneous dispersion of slip lines are probably the cause of higher elongation of 6016 alloy than that of 6014 alloy. It is believed that suppression of the cross slip dislocation may contribute to a higher elongation.
机译:通过透射电子显微镜(TEM)表征张开变形的Al-Mg-Si-Cu合金中脱位倍增和动态恢复,揭示位错特征与伸长行为之间的相关性。 6016(Al-0.4%Mg-1.0%Si-0.2%Cu(质量%)和6014(Al-0.6%Mg-0.7%Si-0.1%Cu)合金在溶液处理并淬火后在363K时在363K℃下老化18 ks进水。发现6016合金的最大N值高于6014合金中的N值。达到其最大6016合金的N值降低速率小于6014合金。此外,在6016合金中形成{111}平面上的脱位倍增和位错频带的形成,其具有超过10%的拉伸变形。因此,通过扫描电子显微镜(SEM)观察到的滑动线被精细地形成。滑动线的均匀分散可能是6016合金伸长率高于6014合金的原因。据信,抑制交叉滑移位错可能有助于更高的伸长率。

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