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Experimental analysis of CFRP laminates subjected to compression after edge impact

机译:边缘冲击后受压的CFRP层压板的实验分析

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摘要

Composite structures are particularly vulnerable to impact which lowers drastically theirs residual strength. In particular, the edge impact on composite stiffener is known as a critical factor on the loss of residual compression strength. At the same time, manufacturing of stiffened panels and achievement of experimental tests, of edge impact and compression after edge impact (CAEI) with stiffened panel, are particularly complex and costly. Then an experimental test set up has been designed to easily study the edge impact and the CAEI without complex specimen. It avoids the complex manufacturing of stiffener panels and avoids the use of high capacity machine. The mean goal is to define a new design method to improve the edge impact damage tolerance.udThen experimental analysis of CAEI has been carried out on carbon fibre reinforced plastic (CFRP) laminates. This paper presents these results in order to determine the residual properties of the structure and to elaborate the failure scenario. It seems that a propagation of a compressive fibre failure plays a major role in the mechanisms that drives the laminate residual strength after edge impact. The good agreement of an open hole model with point stress approach seems to confirm the major role of the compressive fibre failure in the final failure.
机译:复合结构特别容易受到冲击,从而大大降低了其残余强度。特别是,边缘对复合材料加劲肋的冲击被认为是残余抗压强度损失的关键因素。同时,加劲板的制造和通过加劲板的边缘冲击(CAEI)后的边缘冲击和压缩的实验测试的完成是特别复杂和昂贵的。然后设计了一个实验测试装置,可以轻松地研究边缘冲击和没有复杂标本的CAEI。它避免了加劲肋板的复杂制造,并且避免了使用大容量机器。平均目标是定义一种新的设计方法来提高边缘冲击损伤的耐受性。 ud然后对碳纤维增强塑料(CFRP)层压板进行了CAEI的实验分析。本文介绍了这些结果,以便确定结构的剩余特性并详细阐述破坏情况。压缩纤维破坏的传播似乎在边缘冲击后驱动层压体残余强度的机制中起着重要作用。裸眼模型与点应力方法的良好一致性似乎证实了压缩纤维破坏在最终破坏中的主要作用。

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