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Automatic generation of 2D micromechanical finite element model of silicon-carbide/aluminum metal matrix composites: Effects of the boundary conditions

机译:碳化硅/铝金属基复合材料的二维微机械有限元模型的自动生成:边界条件的影响

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摘要

Two-dimensional finite element (FE) simulations of the deformation and damage evolution of Silicon-Carbide (SiC) particle reinforced aluminum alloy composite including interphase are carried out for different microstructures and particle volume fractions of the composites. A program is developed for the automatic generation of 2D micromechanical FE-models with randomly distributed SiC particles. In order to simulate the damage process in aluminum alloy matrix and SiC particles, a damage parameter based on the stress triaxial indicator and the maximum principal stress criterion based elastic brittle damage model are developed within Abaqus/Standard Subroutine USDFLD, respectively. An Abaqus/Standard Subroutine MPC, which allows defining multi-point constraints, is developed to realize the symmetric boundary condition (SBC) and periodic boundary condition (PBC). A series of computational experiments are performed to study the influence of boundary condition, particle number and volume fraction of the representative volume element (RVE) on composite stiffness and strength properties.
机译:针对不同组织和不同体积分数的碳化硅(SiC)颗粒增强铝合金复合材料包括相间的变形和损伤演化,进行了二维有限元模拟。开发了一个程序,用于自动生成具有随机分布的SiC颗粒的二维微机械有限元模型。为了模拟铝合金基体和SiC颗粒的损伤过程,分别在Abaqus / Standard子例程USDFLD中开发了基于应力三轴指示器和基于最大主应力准则的弹性脆性损伤模型的损伤参数。开发了允许定义多点约束的Abaqus / Standard子例程MPC,以实现对称边界条件(SBC)和周期性边界条件(PBC)。进行了一系列计算实验,以研究边界条件,代表体积元素的颗粒数和体积分数(RVE)对复合材料刚度和强度性能的影响。

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