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Experimental and numerical studies on the buckling and post-buckling behavior of single blade-stiffened CFRP panels

机译:单叶片加筋CFRP板屈曲和屈曲后行为的实验和数值研究

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The aim of this study is to experimentally investigate the stability behavior and failure characteristics of carbon fibre reinforced polymer (CFRP) composite panels with secondary bonded blade stiffener under compression. Various experimental techniques like 3D-digital image correlation (DIC), acoustic emission (AE), strain gaging and infrared thermography were employed together for capturing the buckling, post-buckling response and failure characteristics of test panels. The 3D-DIC technique was employed for determining the buckling and post-buckling displacement fields of the test panel. The strain gage data was used for accurate prediction of the onset of buckling phenomenon of the test panels. Parametric data obtained from the AE technique was analysed for identifying and classifying the various damage events encountered in the test panel. In addition, finite element simulation of the CFRP stiffened panel under compression was performed to validate the experimental postbuckling results. In this work, Hashin's failure criteria was used to study the initiation of various failure modes in the critical regions of the stiffened panel. The proposed unified experimental approach can provide more insights on the post-buckling behavior and failure characteristics of single blade stiffened CFRP panels, thereby helping engineers in designing damage tolerant composite structures.
机译:这项研究的目的是通过实验研究碳纤维增强聚合物(CFRP)复合板的二次粘结叶片加劲肋在压缩状态下的稳定性和破坏特性。各种实验技术(例如3D数字图像相关性(DIC),声发射(AE),应变计和红外热成像技术)一起用于捕获测试板的屈曲,屈曲后响应和失效特征。 3D-DIC技术用于确定测试面板的屈曲和屈曲后位移场。应变计数据用于准确预测测试面板的屈曲现象的发生。分析了从AE技术获得的参数数据,以识别和分类测试面板中遇到的各种损坏事件。此外,对CFRP加筋板在压缩状态下进行了有限元模拟,以验证屈曲后的实验结果。在这项工作中,使用了Hashin的破坏准则来研究加筋板关键区域中各种破坏模式的产生。提出的统一实验方法可以提供有关单叶片加劲CFRP面板的屈曲后行为和破坏特性的更多见解,从而帮助工程师设计耐损伤的复合结构。

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