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Modeling of the Effect of Temperature, Frequency, and Phase Transformations on the Viscoelastic Properties of AA 7075-T6 and AA 2024-T3 Aluminum Alloys

机译:温度,频率和相变对AA 7075-T6和AA 2024-T3铝合金粘弹性的影响的建模

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摘要

The viscoelastic response of commercial aluminum alloys 7075-T6 and 2024-T3 as a function of temperature is presented. Experimental data are obtained with a dynamic-mechanical analyzer (DMA) at different loading frequencies and compared with the available transmission electron microscopy (TEM) and differential scanning calorimetry (DSC) data. The effect of successive microstructural transformations (particle precipitation and redissolution) is revealed. An analytical model is developed, which fits the mechanical response up to 573 K (300 °C). The model takes into account the concentration of Guinier-Preston Zones (GPZ) and metastable precipitates (η′ in AA 7075-T6 and θ′/S′ in AA 2024-T3), allowing us to determine the kinetic parameters of these transformations. The activation energies were previously obtained by several authors from DSC measurements and other techniques, showing considerable dispersion. The presented data, obtained with a completely different technique, allow us to reduce the uncertainty on these data and show the potential of DMA measurements in the study of microstructural transformations.
机译:介绍了商用铝合金7075-T6和2024-T3的粘弹性响应随温度的变化。使用动态机械分析仪(DMA)在不同的加载频率下获得实验数据,并将其与可用的透射电子显微镜(TEM)和差示扫描量热法(DSC)数据进行比较。揭示了连续的微观结构转变(颗粒沉淀和再溶解)的影响。开发了一个分析模型,该模型适合高达573 K(300°C)的机械响应。该模型考虑了吉尼尔-普雷斯顿区(GPZ)和亚稳态沉淀物(AA 7075-T6中的η'和AA 2024-T3中的θ'/ S')的浓度,从而使我们能够确定这些转化的动力学参数。活化能以前是由多位作者通过DSC测量和其他技术获得的,显示出相当大的分散性。使用完全不同的技术获得的呈现数据使我们能够减少这些数据的不确定性,并显示DMA测量在微结构转变研究中的潜力。

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