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Microstructure and Mechanical Response of an Artificially Aged Al-Mg-Si Alloy: Experiments and Modeling

机译:人工老化Al-Mg-Si合金的微观结构和机械响应:实验与造型

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An extrusion of an Al-0.65Mg-0.92Si alloy (wt%) containing 0.2 wt% Cr was selected and its isothermal aging response at 170 °C was characterized. Tensile properties were measured in the T4 (6 months at room temperature) and T6 (170 °C/10 h) conditions and differences in the yield strength and the work-hardening response are attributed to the β" precipitates that result during artificial aging. Single crystal micropillars with [111] loading axis were milled from the alloy in the T6 condition, tested in uniaxial compression and the data were analyzed to obtain the critical resolved shear stress. Microstructure in the T4 and T6 conditions was investigated by transmission electron microscopy and disper-soids chemistry and precipitate type, morphology and size distribution were quantified; an analytical model for precipitation kinetics of β" precipitates by assuming a cylindrical morphology and an aspect ratio that changed with aging time, has been developed and precipitates size, distribution, volume fraction and residual Mg and Si content in solid solution are determined and compared to experimental results. The intent is to eventually extend the precipitation model to understand the effect of alloy composition on precipitation kinetics and then relate microstructure evolution to flow behavior through yield strength and work hardening.
机译:选择含有0.2wt%Cr的Al-0.65mg-0.92SI合金(WT%)的挤出,其表征在170℃下的等温老化响应。在T4(室温6个月)中测量拉伸性质,T6(170℃/ 10h)条件和屈服强度的差异,并且工作 - 硬化响应归因于人工老化期间导致的β“沉淀物。用[111]加载轴的单晶微粒从T6条件的合金研磨,在单轴压缩中进行测试,并分析数据以获得临界分辨的剪切应力。通过透射电子显微镜研究T4和T6条件中的微观结构。量化化学和沉淀型,形态和沉淀分布,β“通过假设圆柱形态和随老化时间变化的纵横比,析出β”沉淀的分析模型,已经开发并沉淀尺寸,分布,体积测定固体溶液中的级分和残留Mg和Si含量与实验结果进行比较。目的是最终扩展沉淀模型,以了解合金组合物对沉淀动力学的影响,然后通过产量强度和工作硬化相关的微观结构演化。

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