首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Properties enhancement of Al-Zn-Mg alloy by retrogression and re-aging heat treatment
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Properties enhancement of Al-Zn-Mg alloy by retrogression and re-aging heat treatment

机译:回归和时效热处理提高Al-Zn-Mg合金的性能

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The higher strength 7xxx aluminum alloys exhibited low resistance to stress corrosion cracking (SCC) when aged to the peak hardness (T6 temper). The overaged alloys (T7 temper) developed to enhance the SCC with loss in the strength of the alloy. Recently, retrogression and re-aging (RRA) heat treatments are used for improving the SCC behavior for alloys in T6 tempers such as 7075, 7475 and 8090. In this study, an application of retrogression and re-aging heat treatment processes are carried out to enhance toughness properties of the 7079-T651 aluminum alloy, while maintaining the higher strength of T651-temper. The results of charpy impact energy and electrical conductivity tests show a significantly increases in absorbed energy and electrical conductivity values, when the alloys are exposed to various retrogression temperatures (190, 200, 210°C) and times (20, 40, 60 minutes), and then re-aged at 160°C for 18 hours.
机译:时效至峰值硬度(T6回火)时,较高强度的7xxx铝合金对应力腐蚀开裂(SCC)的抵抗力较低。过时效合金(T7回火)的发展是为了增强SCC,同时降低了合金强度。最近,回归和再时效(RRA)热处理用于改善T6钢(例如7075、7475和8090)中合金的SCC行为。在这项研究中,进行了回归和时效热处理工艺的应用。增强7079-T651铝合金的韧性,同时保持较高的T651-回火强度。夏比冲击能和电导率测试的结果表明,当合金暴露于各种回归温度(190、200、210°C)和时间(20、40、60分钟)时,吸收能和电导率值显着增加。 ,然后在160°C下老化18小时。

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