Experimental investigation of trans-scale displacement responses of wrinkle defects in fiber reinforced composite laminates

Fuente: arXiv
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Main Authors: Ma, Li, Wang, Shoulong, Liu, Changchen, Wen, Ange, Ying, Kaidi, Guo, Jing
Format: Preprint
Published: 2024
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_version_ 1866913357882195968
author Ma, Li
Wang, Shoulong
Liu, Changchen
Wen, Ange
Ying, Kaidi
Guo, Jing
author_facet Ma, Li
Wang, Shoulong
Liu, Changchen
Wen, Ange
Ying, Kaidi
Guo, Jing
contents Wrinkle defects were found widely exist in the field of industrial products, i.e. wind turbine blades and filament-wound composite pressure vessels. The magnitude of wrinkle wavelength varies from several millimeters to over one hundred millimeters. Locating the wrinkle defects and measuring their responses are very important to the assessment of the structures that containing wrinkle defects. A meso-mechanical modeling is presented based on the homogenization method to obtain the effective stiffness of a graded wrinkle. The finite element simulation predicts the trans-scale response of out-of-plane displacement of wrinkled laminates, where the maximum displacement ranges from nanoscale to millimeter scale. Such trans-scale effect requires different measurement approaches to observe the displacement responses. Here we employed Shearography (Speckle Pattern Shearing Interferometry) and fringe projection profilometry (FPP) method respectively according to the different magnitude of displacement. In FPP method, a displacement extraction algorithm was presented to obtain the out-of-plane displacement. The measurement sensitivity and accuracy of Shearography and FPP are compared, which provides a quantitative reference for industrial non-destructive test.
format Preprint
id arxiv_https___arxiv_org_abs_2405_12676
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Experimental investigation of trans-scale displacement responses of wrinkle defects in fiber reinforced composite laminates
Ma, Li
Wang, Shoulong
Liu, Changchen
Wen, Ange
Ying, Kaidi
Guo, Jing
Computer Vision and Pattern Recognition
Numerical Analysis
Wrinkle defects were found widely exist in the field of industrial products, i.e. wind turbine blades and filament-wound composite pressure vessels. The magnitude of wrinkle wavelength varies from several millimeters to over one hundred millimeters. Locating the wrinkle defects and measuring their responses are very important to the assessment of the structures that containing wrinkle defects. A meso-mechanical modeling is presented based on the homogenization method to obtain the effective stiffness of a graded wrinkle. The finite element simulation predicts the trans-scale response of out-of-plane displacement of wrinkled laminates, where the maximum displacement ranges from nanoscale to millimeter scale. Such trans-scale effect requires different measurement approaches to observe the displacement responses. Here we employed Shearography (Speckle Pattern Shearing Interferometry) and fringe projection profilometry (FPP) method respectively according to the different magnitude of displacement. In FPP method, a displacement extraction algorithm was presented to obtain the out-of-plane displacement. The measurement sensitivity and accuracy of Shearography and FPP are compared, which provides a quantitative reference for industrial non-destructive test.
title Experimental investigation of trans-scale displacement responses of wrinkle defects in fiber reinforced composite laminates
topic Computer Vision and Pattern Recognition
Numerical Analysis
url https://arxiv.org/abs/2405.12676