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Correlating r-value and through thickness texture in Al-Mg-Si alloy sheets

机译:Al-Mg-Si合金薄板的r值和贯穿厚度的相关性

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摘要

The r-value or Lankford constant is commonly used to evaluate the plastic anisotropy of rolled sheet. Computational methods based on crystal plasticity models have been developed to calculate the r-value profile from crysfallographic texture. In aluminium alloys mid-thickness textures, either measured or calculated, are usually used as input and they are assumed to represent the entire through thickness texture. This paper aims to verify the validity of this assumption using two commercially produced cold rolled and annealed alloys, EN AW-6016 and EN AW-6061, having the typical cube dominated texture. The r-value profiles were calculated with both the full constraints Taylor and the viscb-plastic self-consistent models, using either the measured mid-thickness or through thickness texture as input. Comparison with the experimentally measured r-value profile shows that due to the presence of a subtle through thickness gradient of the Goss orientation, the use of the precise thickness averaged texture is required for an accurate estimation of the r-value profile in cold rolled and annealed 6xxx aluminium alloys.
机译:r值或Lankford常数通常用于评估压延板的塑性各向异性。已经开发了基于晶体可塑性模型的计算方法,以根据冰晶成像纹理来计算r值分布。在铝合金中,通常将测量或计算的中等厚度纹理用作输入,并假定它们代表整个厚度贯穿纹理。本文旨在使用两种具有典型立方晶为主的织构的商用冷轧和退火合金EN AW-6016和EN AW-6061验证该假设的有效性。 r值轮廓是使用完全约束泰勒模型和viscb-塑性自洽模型计算的,其中使用测得的中间厚度或通过厚度纹理作为输入。与实验测量的r值分布图的比较表明,由于存在高斯取向的细微贯穿厚度梯度,因此需要使用精确的厚度平均织构来准确估计冷轧和轧制过程中的r值分布图。退火的6xxx铝合金。

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