研究目的
To research on and demonstrate the feasibility of Fibre Bragg Grating (FBG) sensors for structural health monitoring (SHM) of composite structures.
研究成果
FBG sensors are feasible for SHM of composite structures, providing accurate and less noisy strain data compared to strain gauges. Embedded sensors are more durable. FEA with geometric non-linearity better represents strain values. Future work could involve damage detection studies.
研究不足
Material nonlinearity was not included in FEA, which may cause discrepancies at higher loads. Misalignment of sensors could affect accuracy. FBG sensors embedded between layers are more durable, but surface-bonded ones may fail under fatigue.
1:Experimental Design and Method Selection:
The study involved designing experiments to test FBG sensors on composite beams under static tension, static torsion, and fatigue torsion loads. Finite element analyses (FEA) using ABAQUS? software were conducted to compare with experimental results.
2:Sample Selection and Data Sources:
Composite beams made from glass-epoxy prepreg materials with specific layup sequences were manufactured. FBG sensors and strain gauges were embedded or surface-bonded on these beams.
3:List of Experimental Equipment and Materials:
Equipment included MTS Axial Test System, MTS 809 Axial/Torsional Test System, SmartScan Aero Interrogator, FBG sensors from Smart Fibres, strain gauges, and materials like glass-epoxy prepreg and Te?on tubes.
4:Experimental Procedures and Operational Workflow:
Beams were manufactured with embedded sensors, cured in an autoclave, and tested under controlled loads. Data on strain, force, torque, and displacement were collected. Tests were repeated for reliability.
5:Data Analysis Methods:
Strain data from FBG sensors and strain gauges were compared, including noise analysis using moving average method. FEA results were validated against experimental data.
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SmartScan Aero Interrogator
Smart Fibres
Device which beams laser light into the ?bre optic cable and measures the change in the Bragg wavelength of a FBG sensor, then transforms the wavelength data into strain data.
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FBG sensor
Single FBG recorded on Single Mode ?bre optic cables
Smart Fibres
Optical strain sensor based on the re?ection of light with a precise wavelength called Bragg wavelength, used for strain measurement in structural health monitoring.
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MTS Axial Test System
MTS
Test system used to apply static tensile load to composite beams, measuring axial force and displacements.
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MTS 809 Axial/Torsional Test System
MTS
Test system used to apply tension and torsional loads simultaneously, measuring torque, axial force, and axial displacement.
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ABAQUS
Dassault Systèmes
Commercial ?nite element code used for finite element analyses of composite beams under tension and torsional loads.
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Strain gauge
Sensor used for strain measurement, compared with FBG sensors for noise content and accuracy.
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