An Engineering Approach to Analyze Damage Initiation Modes in Tapered Composite Structures

P. Rao, U. Palliyaguru, M. Gurvich, W. Seneviratne
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引用次数: 1

Abstract

In this work an engineering approach is demonstrated for analyzing damage initiation modes in tapered composite structures. The analysis methodology includes simulation of the non-linear static response of tapered composite structures under static tension loads to predict the location of interfacial delamination initiation. Furthermore, the developed methodology provides a strength-based criterion to assess whether damage initiation will occur in the inter-laminar delamination or intra-laminar matrix cracking mode. Based on the results of the analysis, a tapered composite structure is fabricated and tested under displacement-controlled quasi-static tension loading. The damage initiation location captured experimentally is compared with the analysis towards achieving preliminary qualitative validation. The linear stiffness of the tapered composite structure is predicted within 15% of the experimental average thereby achieving preliminary quantitative validation.
锥形复合材料结构损伤起裂模式分析的工程方法
本文提出了一种分析锥形复合材料结构损伤起裂模式的工程方法。分析方法包括模拟静力拉载荷作用下锥形复合材料结构的非线性静力响应,预测界面分层起始位置。此外,所开发的方法提供了一个基于强度的标准来评估是否会在层间剥离或层内基体开裂模式下发生损伤起裂。在分析结果的基础上,制作了锥形复合材料结构,并在位移控制的准静态张力加载下进行了试验。将实验捕获的损伤起爆位置与分析结果进行了比较,初步得到了定性验证。锥形复合材料结构的线性刚度预测值在实验平均值的15%以内,从而实现了初步的定量验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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