首页> 外文期刊>International Journal of Solids and Structures >A 3D phenomenological yield function with both in and out-of-plane mechanical anisotropy using full-field crystal plasticity spectral method for modelling sheet metal forming of strong textured aluminum alloy
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A 3D phenomenological yield function with both in and out-of-plane mechanical anisotropy using full-field crystal plasticity spectral method for modelling sheet metal forming of strong textured aluminum alloy

机译:一种使用全场晶体塑性光谱法与平面外机械各向异性的3D现象率函数,用于塑性强纹理铝合金的钣金成型薄板形成

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摘要

In this paper, a multi-scale model for AA3104-H19 and AA2024-T3 aluminium alloy with strong cold rolled crystallographic texture is proposed. This model consists of two components: (i) a full-field crystal plasticity spectral method using fast Fourier transformation (CPFFT) that can be used to predict anisotropic mechanical properties in both the in and out-of-plane uniaxial and multi-axial stress states and (ii) a 3D new phenomenological anisotropic yield function with enough flexibility to describe the in and out-of-plane mechanical anisotropies of strongly textured aluminium alloy sheet. This multi-scale model was implemented into a commercial finite element (FE) software Abaqus via a user-defined material subroutine UMAT to predict the anisotropic plastic deformation in a multi-step forming process (deep drawing). Results showed that this new modelling approach is able to accurately predict earing profiles with multiple ears in deep drawn cups based on the crystallographic texture information data obtained from orientation density functions (ODFs). Crown Copyright (C) 2020 Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种具有强冷轧晶体纹理的AA3104-H19和AA2024-T3铝合金的多尺度模型。该模型由两个组件组成:(i)一种使用快速傅里叶变换(CPFFT)的全场晶体塑性光谱法,其可用于预测平面内和外轴和多轴应力的各向异性机械性能州和(ii)3D新现象学各向异性产量功能,具有足够的灵活性,以描述强织地用铝合金板的平面内和外平面机械各向异性。该多尺度模型通过用户定义的材料子程序UMAT实现到商业有限元(FE)软件ABAQUS中,以预测多步骤成形过程(深图)中的各向异性塑性变形。结果表明,这种新的建模方法能够基于从取向密度函数(ODF)获得的晶体纹理信息数据,准确地预测具有深拔杯中的多个耳朵的耳廓曲线。 Crown版权所有(c)2020由elestvier有限公司发布的所有权利保留。

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