Paper
3 June 2024 Quantitative measurement of interlaminar stress in CFRP laminates using fiber Bragg Gratings
Dong Liu, Dejiang Zhao, Ning Jiang
Author Affiliations +
Proceedings Volume 13182, 2024 International Conference on Optoelectronic Information and Optical Engineering (OIOE 2024); 1318217 (2024) https://doi.org/10.1117/12.3030521
Event: 2024 International Conference on Optoelectronic Information and Optical Engineering (OIOE 2024), 2024, Kunming, China
Abstract
CFRP materials are widely used in aircraft manufacturing, and ensuring the safety and reliability of these materials is crucial for flight safety. The acquisition of interlaminar stress can effectively evaluate material performance. This article introduces a CFRP interlaminar stress quantitative measurement method based on the stress birefringence effect of Fiber Bragg Gratings. This sensor converts the refractive index change of fiber stress birefringence into the bandwidth and peak splitting changes of the grating spectrum, simplifying the experimental setup and achieving real-time monitoring of CFRP interlaminar stress. The interlaminar stress of the CFRP laminate in this article significantly increases during the cooling stage of thermal curing and ultimately remains at a stable level of 17.6 N/cm. Sensitivity of the interlaminar stress sensor is 9.61 pm/(N/cm). This article provides an effective method for real-time monitoring of CFRP interlaminar stress throughout the entire curing cycle. It also demonstrates the feasibility of providing data support for CFRP manufacturing process improvement through experimental verification.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Dong Liu, Dejiang Zhao, and Ning Jiang "Quantitative measurement of interlaminar stress in CFRP laminates using fiber Bragg Gratings", Proc. SPIE 13182, 2024 International Conference on Optoelectronic Information and Optical Engineering (OIOE 2024), 1318217 (3 June 2024); https://doi.org/10.1117/12.3030521
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KEYWORDS
Fiber Bragg gratings

Birefringence

Sensors

Composites

Optical fibers

Refractive index

Calibration

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