EFFECT OF CRYOGENIC AND NATURAL AGING PROCESS APPLIED TO Al-Zn-Mg-Cu ALLOYS ON LIFE TIME CALCULATION

Gözde Altuntaş, O. Altuntaş, B. Bostan
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Abstract

In this study, life time calculation of aluminum 7075 alloy with cryogenic and natural aging processes was performed by thermal analysis. The aluminum alloy was quenched after solid solution treatment at 480°C and naturally aged for 10-100 days at room temperature (25°C). Other samples were cryogenically treated at -40°C and -80°C for 2 hours after solid solution treatment at 480°C. After the cryogenic treatment, natural aging was done at room temperature for 10-100 days. At the end of each period determined for the samples, the hardness values were measured. It was observed that there was no significant change in hardness values at the end of 10 and 100 days at -80 °C. Thus, it was determined that the natural aging process does not start after cryogenic treatment at -80 °C. It was observed that the hardness value of naturally aged samples after cryogenic treatment at -40 °C increased more than the natural aged samples only. This showed that -40 °C improved the mechanism by creating a driving force in the material. Life time calculations between 30 °C and 320 °C also showed that -40 °C cryogenic treatment + natural aging increased life time by approximately 20% compared to natural aging alone.
应用于铝锌镁铜合金的晶体生长和自然老化过程对寿命计算的影响
本研究通过热分析法计算了铝 7075 合金在低温和自然老化过程中的寿命。铝合金在 480°C 固溶处理后淬火,并在室温(25°C)下自然老化 10-100 天。其他样品在 480°C 固溶处理后,在 -40°C 和 -80°C 温度下低温处理 2 小时。低温处理后,在室温下自然老化 10-100 天。在确定的每个阶段结束时,测量样品的硬度值。结果表明,在-80°C 下 10 天和 100 天结束时,硬度值没有明显变化。因此可以确定,在-80 °C低温处理后,自然老化过程并没有开始。据观察,-40 °C低温处理后自然老化样品的硬度值比仅自然老化样品的硬度值增加得更多。这表明,-40 °C通过在材料中产生驱动力,改善了机理。30 °C 至 320 °C 之间的寿命计算也表明,-40 °C 低温处理+自然老化比单独自然老化的寿命延长了约 20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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