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Numerical study on the influence of crystallographic texture and grain shape on the yield surface of textured aluminum sheet material

机译:晶体纹理与晶粒形状对纹理铝板材料屈服表面影响的数值研究

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The paper investigates by numerical modeling the effects of crystallographic texture and grain shape on the shape of the yield surface of aluminum sheet material at small strains. Different representative volume elements (RVEs) of the material are considered. Plane stress state is assumed in the sheet. A rate-dependent model of crystal plasticity (CP) is used in combination with either the full-constraint (FC) Taylor model or the finite element method (FEM) to compute the volume averaged stress of the material. The effect of different crystallographic textures observed in aluminum alloys on the shape of the yield surface is firstly investigated. An analytical yield function is used to generate yield surfaces for the different crystallographic textures. The deviation between the stress states at yielding computed by FC-Taylor model and the analytical yield surface is used to evaluate the capability of the yield function to fit the anisotropic yield surfaces representing different strong crystallographic textures. Two different shapes of the grains are introduced in the RVEs of CP-FEM in order to study the effect of the grain morphology. Small effects of grain shape are found at small strain compared with the marked influence of crystallographic texture.
机译:本文通过数值模拟晶体纹理和晶粒形状对小菌株铝板材料屈服表面形状的影响研究。考虑了材料的不同代表体积元素(圆顶)。在纸张中假设平面应力状态。晶体塑性(CP)的速率依赖模型与全约束(FC)泰勒模型或有限元方法(FEM)结合使用以计算材料的体积平均应力。首先研究了铝合金在铝合金上观察到的不同晶体纹理的效果。分析率函数用于为不同的晶体纹理产生屈服表面。应力状态在由Fc-Taylor模型的屈服和分析率表面计算的应力状态和分析率表面之间的偏差来评估屈服函数以适应表示不同强晶体纹理的各向异性屈服表面的能力。在CP-FEM的圆顶中引入了两种不同的晶粒,以研究晶粒形态的效果。与晶体纹理的显着影响相比,晶粒形状的小效果在小菌株中发现。

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