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Automatic generation of random distribution of fibers in long-fiber-reinforced composites and mesomechanical simulation

机译:长纤维增强复合材料中纤维随机分布的自动生成和细观力学模拟

摘要

An algorithm for the automatic generation of 2D representative volume element (RVE) of unidirectional long-fiber-reinforced composites (LFRCs) is presented in this paper. Both high fiber volume fraction and random fiber distribution are considered in the RVE. Two procedures which are named as global crisscrossing and local disturbing are included in this algorithm. Based on the model generated, mesomechanical analysis is carried out by using general finite element method (FEM) software ABAQUS. Firstly, the effect of the randomness of fiber distribution on the transverse modulus is investigated. Secondly, user subroutine to redefine field variables at a material point (USDFLD) in ABAQUS is used to simulate the damage behavior. A series of computational experiments are performed to evaluate the influence of mesh size on the ultimate load of the composites. The obtained results prove that the algorithm is capable of capturing the random distribution nature of these materials and the RVE produced could be used for predicting the damage onset and propagation of LFRCs.
机译:本文提出了一种自动生成单向长纤维增强复合材料(LFRC)的二维代表体积元(RVE)的算法。 RVE中考虑了高纤维体积分数和随机纤维分布。该算法包括两个程序,称为全局交叉和局部干扰。基于生成的模型,使用通用有限元方法(FEM)软件ABAQUS进行细观力学分析。首先,研究了纤维分布的随机性对横向模量的影响。其次,使用用户子例程在ABAQUS中的材料点(USDFLD)重新定义字段变量,以模拟损伤行为。进行了一系列计算实验,以评估筛孔尺寸对复合材料极限载荷的影响。获得的结果证明该算法能够捕获这些材料的随机分布特性,并且所产生的RVE可用于预测LFRC的损伤发作和传播。

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