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Investigation on the Quench Sensitivity of 7085 Aluminum Alloy with Different Contents of Main Alloying Elements

机译:7085铝合金与主要合金元素不同含量的淬火敏感性研究

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摘要

The quench sensitivity of 7085 aluminum alloy with different contents of the main alloying elements (Zn, Mg and Cu) was investigated using time-temperature-transformation (TTT) curves and end quenching experiments. Then, the quenching microstructure was analyzed using transmission electron microscopy. With increasing the contents of the main alloying elements, the transitions and nose temperatures of the TTT curves are obviously increased, while the incubation time of 0.5% η (MgZn2) phase precipitation content is decreased. In addition, as the contents of the main alloying elements decrease, the conductivity of the quenched samples is increased, but the hardness of the quenched samples is decreased. Moreover, the size and area fraction of the η phase are increased with increasing the contents of the main alloying elements. Based on the experimental results, the increase of Mg and Cu contents can decrease the stability of supersaturated solid solution and increase the lattice distortion energy, which can increase the quench sensitivity of 7085 aluminum alloy.
机译:使用时间温度转化(TTT)曲线和最终淬火实验,研究了7085铝合金具有不同内容物(Zn,Mg和Cu)的不同内容物的淬火敏感性。然后,使用透射电子显微镜分析淬火微观结构。随着主要合金元素的内容物,TTT曲线的过渡和鼻温明显增加,而0.5%η(MgZN2)相沉淀含量的孵育时间降低。另外,随着主要合金元素的含量降低,猝灭样品的电导率增加,但淬火样品的硬度降低。此外,利用增加主要合金元素的内容物,增加η相的尺寸和面积分数。基于实验结果,Mg和Cu含量的增加可以降低超饱和固溶体的稳定性,并增加晶格变形能量,这可以提高7085铝合金的淬火敏感性。

著录项

  • 作者

    Chengbo Li; Dongdong Chen;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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