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Effects of heat-treatment on the plastic anisotropy of extruded aluminium alloy AA6063

机译:热处理对挤压铝合金aa6063塑性各向异性的影响

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摘要

The plastic anisotropy of aluminium alloys is known to depend not only on the crystallographic texture but also on the heat-treatment, and this effect has been studied on various alloys both experimentally and numerically. However, the 6000 series of aluminium alloys is not broadly represented in these studies. In this work, an extruded profile of the AA6063 alloy was investigated. Electron backscatter diffraction (EBSD) measurements revealed a strong cube crystallographic texture with a minor Goss component, which is typical for recrystallized aluminium alloys. The plastic anisotropy was studied by uniaxial tension tests in different material directions, using digital image correlation to measure the displacement field and thus to calculate the strain field. The tensile specimens were heat-treated to three different tempers: T6, T7 and O, in addition to the as-received T1 condition. Transmission electronic microscopy (TEM) was used to characterize the precipitate structure of the heat-treated material. A crystal plasticity finite element model of the tensile test was created and calibrated using some of the experimental data. The comparison of the experimental stress-strain curves, strain ratios and flow stress ratios with their simulated counterparts revealed that the crystallographic texture is dominating the anisotropy in all tempers. The accuracy of the CP-FEM predictions varies for different material orientations, and, in general, the simulated material exhibits a sharper anisotropy than the real material. The effect of the heat treatment on the anisotropy is found to be minor compared with the texture effect.
机译:众所周知,铝合金的塑性各向异性不仅取决于晶体织构,而且取决于热处理,并且已经通过实验和数值研究了对各种合金的这种影响。但是,在这些研究中并未广泛代表6000系列铝合金。在这项工作中,研究了AA6063合金的挤压型材。电子背散射衍射(EBSD)测量显示出具有强Goss成分的强立方晶体织构,这是重结晶铝合金的典型特征。通过单轴拉伸试验在不同材料方向上研究塑性各向异性,并使用数字图像相关性测量位移场,从而计算出应变场。除了按原样接受的T1条件外,还对拉伸试样进行了三种不同的回火热处理:T6,T7和O。使用透射电子显微镜(TEM)表征热处理材料的沉淀结构。使用一些实验数据创建并校准了拉伸试验的晶体可塑性有限元模型。将实验应力-应变曲线,应变比和流动应力比与模拟对应物进行比较,结果表明,在所有回火态下,晶体织构主导着各向异性。 CP-FEM预测的精度随不同的材料方向而变化,并且通常而言,模拟材料显示出比真实材料更尖锐的各向异性。与纹理效应相比,发现热处理对各向异性的影响很小。

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