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分层的铺层方向和厚度方向位置对 GFRP 复合板结构中基本对称 S0 Lamb 模态反射的影响。

Effect of ply orientation and through-thickness position of delamination on the reflection of fundamental symmetric S0 Lamb mode in GFRP composite plate structures.

机构信息

Centre for Non-Destructive Evaluation and Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, T.N., India.

Centre for Non-Destructive Evaluation and Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, T.N., India.

出版信息

Ultrasonics. 2018 Nov;90:109-119. doi: 10.1016/j.ultras.2018.06.007. Epub 2018 Jun 15.

DOI:10.1016/j.ultras.2018.06.007
PMID:29940394
Abstract

This paper studies the interaction of the fundamental symmetric Lamb wave mode S0 with delaminations in 8-layered glass fibre reinforced polymer (GFRP) laminated composites, using numerical models validated against experiments. The validation is performed using experiments on the eight layer quasi-isotropic GFRP composite laminate [0/90/45/-45]. Further numerical studies were performed on the laminates [0/45/-45/90] [0/45/90/-45] [90/45/-45/0] [90/-45/0/45] [45/-45/0/90] and [45/90/-45/0] to study the effect of ply layups on the reflection of S0 Lamb waves. The reflection coefficients calculated for these laminates followed a similar trend as the laminate [0/90/45/-45]. Physical insight was obtained into the reflection behaviour, based on an analysis of wave dispersion in the sub-laminates. It was difficult to detect the delamination situated at the mid plane of the laminate, where the shear stress was found to be zero for all ply layups. The delaminations present at a depth greater than DL (>0.42 mm) from the source of excitation, were found to be accessible for the laminates [0/90/45/-45] [0/45/-45/90] and [0/45/90/-45]. The sensitivity of the S0 mode reflection depends upon the position of the delamination along the thickness direction and ply layup orientation of the composite laminate. The S0 mode showed higher sensitivity to DL and DL (0.42 mm to 1.26 mm) in all the laminates that were inspected.

摘要

本文研究了基本对称 Lamb 波模态 S0 与 8 层玻璃纤维增强聚合物(GFRP)层合复合材料分层的相互作用,使用数值模型进行了验证。验证是通过对[0/90/45/-45]八层层准各向同性 GFRP 复合材料层压板进行实验来完成的。进一步对[0/45/-45/90]、[0/45/90/-45]、[90/45/-45/0]、[90/-45/0/45]、[45/-45/0/90]和[45/90/-45/0]层压板进行了数值研究,以研究层压板铺设方式对 S0 Lamb 波反射的影响。这些层压板的反射系数呈现出与[0/90/45/-45]层压板相似的趋势。基于子层的波色散分析,获得了对反射行为的物理洞察力。对于所有层压板铺设方式,在中面位置处的分层很难被检测到,因为该处的剪切应力为零。对于激励源深度大于 DL(>0.42mm)处的分层,对于[0/90/45/-45]、[0/45/-45/90]和[0/45/90/-45]层压板,都可以检测到。S0 模式反射的灵敏度取决于分层在厚度方向上的位置和复合材料层压板的铺层方向。在所有被检测的层压板中,S0 模式对 DL 和 DL(0.42mm 至 1.26mm)的反射具有更高的灵敏度。

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