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Microstructural inhomogeneity and biaxial stretching limits in aluminium alloy AA6016

机译:铝合金AA6016中的微观结构不均匀性和双轴拉伸限制

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The ductility of sheet metals in the regime where both principal in-plane strains are positive is strongly dependent on macroscopic inhomogeneity of the sheet. This can be clearly seen when the grain size becomes large compared with the sheet thickness. However, even with quite small grain sizes there is a tendency in aluminium alloys for grains of similar orientation to occur in colonies, and this complicates any simple correlation between grain size and limit strains in stretching. Sheets of the alloy AA6016 Al-Mg-Si were heat treated to give a wide difference in grain size, and the microstructure characterised using electron back scattered diffraction (EBSD) electron microscopy, which can reveal the presence of orientation colonies. Marciniak driving blank tests were used to reveal the development of dimensional inhomogeneity and the limit strains in balanced biaxial tension. An approach using the Marciniak-Kuczynski model with yield functions derived from texture data and the 'defect' associated with the measured inhomogeneity of crystallographic texture gives first-order predictions of the limit strains in this material, although issues of texture evolution and adequate quantification of inhomogeneity need further consideration.
机译:薄板金属的延展性在内部内部菌株两种阳性阳性的阳性依赖性依赖于片材的宏观偏置性。当与板厚度相比,当晶粒尺寸变大时,可以清楚地看到。然而,即使具有相当小的晶粒尺寸,含有相似取向的谷物的铝合金的趋势即使在菌落中发生,这种情况也使晶粒尺寸与拉伸中的限位菌株之间的任何简单相关性复杂化。将含合金AA6016 Al-Mg-Si的薄片进行热处理,得到晶粒尺寸的宽差异,并且使用电子背散射衍射(EBSD)电子显微镜的微观结构可以揭示取向菌落的存在。 Marciniak驾驶空白试验用于揭示尺寸不均匀性的发展和平衡双轴张力的极限菌株。使用Marciniak-kuczynski模型的方法具有源自纹理数据的产量函数和与晶体纹理的测量的不均匀性相关的“缺陷”提供了本材料中限位菌株的一级预测,尽管质地演化的问题和足够的量化不均匀性需要进一步考虑。

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