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Correlation of Surface Roping with Through-Thickness Microtextures in an AA6xxx Sheet

机译:AA6xxx薄板中表面起皱与全厚度微织构的相关性

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Strain-induced surface roughness was quantitatively correlated with microtexture spatial distributions from the surface to the midthickness of a strongly roping AA6016 sheet. The microtexture variations through the sheet were measured by acquiring a series of large area electron backscatter diffraction (EBSD) scans at intervals of about the grain size. The orientations of the different layers were translated into out-of-plane strains using a crystal plasticity model for comparison with the surface roping. The spatial distributions (particularly the characteristic wavelengths) of the microtexture layers were determined by areal auto-correlation functions, and quantitatively compared to the surface appearance by correlation coefficients. The results show that texture banding of Cube/Goss components along the rolling direction is present from the surface to midthickness but with significant variations from one grain layer to another. The wavelength correlation coefficient exhibits a maximum at about 55 μm, or 2 grain thicknesses, below the surface. It is shown that the spatial distribution of Cube/Goss components of the first three or four surface grain layers plays an important role in strong roping of AA6016 sheets.
机译:应变引起的表面粗糙度与从表面到强拉紧的AA6016板材的中厚度的微观纹理空间分布定量相关。通过以大约晶粒尺寸的间隔获取一系列大面积电子背散射衍射(EBSD)扫描来测量整个片材的微观纹理变化。使用晶体可塑性模型将不同层的取向转换为面外应变,以与表面绕线进行比较。通过面自相关函数确定微纹理层的空间分布(特别是特征波长),并通过相关系数将其与表面外观定量比较。结果表明,从表面到中厚,Cube / Goss组分沿轧制方向出现了织构带,但从一个晶粒层到另一个晶粒层却存在显着变化。波长相关系数在表面下方最大约55μm或2个晶粒厚度处表现出来。结果表明,前三个或四个表面晶粒层的立方/高斯成分的空间分布在AA6016板材的强力成卷中起重要作用。

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