首页> 外文期刊>The Journal of Adhesion >Mixed-mode failure of interfaces studied by the 2D linear elastic–brittle interface model: Macro- and micro-mechanical finite-element applications in composites
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Mixed-mode failure of interfaces studied by the 2D linear elastic–brittle interface model: Macro- and micro-mechanical finite-element applications in composites

机译:由2D线性弹性脆性接口模型研究的混合模式故障:复合材料中的宏观和微机械有限元应用

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摘要

Macro-scale delamination and micro-scale fiber–matrix debonding events may notably affect the mechanical performance of fibrous composite elements. This article presents a two-dimensional finite-element (FE)-based formulation of interface of a small but finite thickness relying on the so-called linear elastic-brittle interface model (LEBIM) to be applied for simulation of an adhesive interface debonding and fiber–matrix decohesion failures. This modeling strategy is implemented in the commercial FE package ABAQUS by means of the user-defined subroutine UMAT. The practicability of the developed interface model is assessed through the comparison of the computational results with experimental data and with previous boundary element method (BEM) analyses using the LEBIM formulation. Specifically, LEBIM results for the interlaminar fracture toughness test showed an excellent agreement with experimental results (adhesive saw-tooth post-peak response was captured). Besides, studies of several micro-mechanical fiber–matrix configurations showed that fiber–matrix debonding events are the predominant failure mechanisms for moderate transverse loading values. The developed tool will certainly contribute to elucidate several open aspects regarding the interface crack behavior in fiber-reinforced composite materials.
机译:宏观分层和微尺度光纤矩阵剥离事件可能尤其影响纤维复合元件的机械性能。本文介绍了基于依赖于所谓的线性弹性 - 脆性接口模型(Lebim)的小但有限厚度的界面的二维有限元(Fe)的配方,以应用于剥离粘接界面的模拟和纤维矩阵衰竭失败。该建模策略通过用户定义的子程序UMAT在商业FE包ABAQUS中实现。通过使用实验数据的计算结果与使用Lebim制剂的先前边界元方法(BEM)分析来评估开发界面模型的可行性。具体而言,对Interlaminar裂缝韧性试验的Lebim结果显示出与实验结果的良好协议(捕获粘合锯齿响应后峰值响应)。此外,对几种微机械纤维矩阵配置的研究表明,光纤矩阵剥离事件是适用于中等横向负载值的主要失效机制。开发工具肯定有助于阐明关于纤维增强复合材料中的界面裂纹行为的几个开放方面。

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