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首页> 外文期刊>Engineering Fracture Mechanics >On the ability of the notch fracture mechanics in predicting the last-ply-failure of blunt V-notched laminated composite specimens: A hard problem can be easily solved by conventional methods
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On the ability of the notch fracture mechanics in predicting the last-ply-failure of blunt V-notched laminated composite specimens: A hard problem can be easily solved by conventional methods

机译:凹口骨折力学在预测钝型型层压复合标本的最后底裂损失的能力:常规方法可以容易地解决了硬质问题

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摘要

Fracture evaluation of V-notched laminated glass/epoxy composite specimens is performed under mode I loading conditions experimentally and theoretically. Rectangular laminates with different numbers of ply and lay-up configurations containing central rhombic holes are utilized for conducting fracture tests. The V-notched laminated composite samples are loaded under tension and their last-ply-failure (LPF) loads are measured. The novel Virtual Isotropic Material Concept (VIMC) is proposed and utilized to predict the experimental results. For this aim, the maximum tangential stress (MTS) and the mean stress (MS) criteria, which both are based on the linear elastic notch fracture mechanics (LENFM), are combined with VIMC. It is shown that both VIMC-MTS and VIMC-MS criteria can predict the LPF loads well. Thanks to VIMC, it is possible to simply predict the LPF loads of round-tip V-notched laminated composites with orthotropic behavior without performing the layer-by-layer analysis, using the progressive damage models, and writing rather complex subroutines.
机译:V型缺口层压玻璃/环氧复合标本的断裂评估在实验和理论上的模式I加载条件下进行。具有不同数量的层和含有中央菱形孔的矩形层压板用于进行裂缝试验。在张力下加载V型缺口层压复合样品,测量它们的最后一层损失(LPF)载荷。提出了新的虚拟各向同性材料概念(VIMC),并利用来预测实验结果。为此目的,最大切向应力(MTS)和平均应力(MS)标准,两者都基于线性弹性凹口骨折力学(LENFM),与VIMC相结合。结果表明,ViMC-MTS和VIMC-MS标准都可以良好地预测LPF负载。由于VIMC,可以简单地预测具有正交行为的圆尖V-缺口层叠复合材料的LPF载荷,而不使用逐层分析,使用渐进式损坏模型,并编写相当复杂的子程序。

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