回归温度对Al-Zn-Mg-Sc-Zr合金组织和性能的影响

    Effects of Retrogression Temperature on Microstructure and Properties of Al-Zn-Mg-Sc-Zr Alloy

    • 摘要: 通过硬度、导电率、剥落腐蚀性能测试和透射电镜观察,研究了在不同回归温度下Al-Zn-Mg-Sc-Zr合金经回归和回归再时效(RRA)处理的微观组织和性能演变。结果表明,随着回归温度的增加,回归态和RRA态样品的析出相尺寸和间距逐渐增大,析出相数量逐渐减少,无沉淀析出带(PFZ)变宽,硬度逐渐下降,导电率逐渐增加;在同一回归温度下,与回归态样品相比,RRA态样品的晶内析出相(尤其是η'相)数量有所增加,晶界析出相尺寸和PFZ无明显差异,硬度和导电率提高。当回归温度为160℃时,RRA态样品的硬度(167.5 HV)几乎没有下降,而导电率(34.3%IACS)和抗剥落腐蚀能力得到提高。综合比较,160℃是Al-Zn-Mg-Sc-Zr合金最佳的回归温度。

       

      Abstract: The evolution of the microstructure and properties of Al-Zn-Mg-Sc-Zr alloy treated by retrogression,retrogression and re-aging(RRA) at different retrogression temperatures was studied by hardness, electrical conductivity,exfoliation corrosion tests and transmission electron microscope observation. The results show that with the increase of the retrogression temperature, the size and spacing of the precipitates of the retrogression and RRA samples gradually increase and the number decreases, and the precipitate free zone(PFZ) becomes wider, leading to a decrease in hardness and an increase in electrical conductivity. At the same retrogression temperature, compared with the retrogression sample, the number of intragranular precipitates of RRA sample(especially η’ phase) increases, and there is no significant difference in the grain boundary precipitates and PFZ, resulting in the increase of hardness and conductivity. At the retrogression temperature of 160 ℃,the hardness(167.5 HV) of the RRA sample shows little decrease, while the electrical conductivity(34.3%IACS) and resistance to exfoliation corrosion are improved. On balance, 160℃ is the best retrogression temperature for the Al-Zn-Mg-Sc-Zr alloy.

       

    /

    返回文章
    返回