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首页> 外文期刊>Journal of Failure Analysis and Prevention >Finite Element Analysis of Single-Leg Bending Delamination of Composite Laminates Using a Nonlinear Cohesive Model
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Finite Element Analysis of Single-Leg Bending Delamination of Composite Laminates Using a Nonlinear Cohesive Model

机译:复合材料层合板单腿弯曲分层的有限元分析

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Delamination is a dominating failure mechanism in composites. Deep insight into mixed-mode delamination failure mechanism requires advanced numerical methods. Currently, the cohesive zone model (CZM) by combining with the finite element analysis has become a powerful tool for modeling the delamination initiation and growth of composites. Based on the middle-plane interpolation technique, this paper first develops a 3D finite element technique for implementing exponential CZM using ABAQUS-UEL (User element subroutine). Then, the effects of the cohesive strength, mesh size and initial delamination crack length on the delamination behavior and load response for two single-leg bending composite specimens with mixed-mode I/II delamination modes are studied by comparison with the experimental results. In addition, the viscous effect on the load-displacement curves for two specimens is also studied.
机译:分层是复合材料中主要的失效机制。对混合模式分层破坏机制的深入了解需要先进的数值方法。当前,结合有限元分析的内聚区模型(CZM)已成为建模复合材料分层起始和生长的强大工具。本文基于中平面插值技术,首先开发了一种3D有限元技术,用于使用ABAQUS-UEL(用户元素子程序)实现指数CZM。然后,通过与实验结果进行比较,研究了内聚强度,筛孔尺寸和初始分层裂纹长度对两个单模弯曲的I / II混合分层单腿弯曲复合材料样品的分层行为和载荷响应的影响。另外,还研究了粘性对两个试样载荷-位移曲线的影响。

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