研究目的
Investigating the behaviors of apodized FBG (AFBG) and uniform FBG (UFBG) sensors for structural crack propagation monitoring based on the FBG reflection spectra.
研究成果
UFBG sensors are more sensitive than AFBG sensors for monitoring crack propagation in aluminum alloy plates. The reflection spectra of UFBGs show significant distortion under non-uniform strain, making them suitable for crack propagation monitoring.
研究不足
The study focuses on aluminum alloy plates with pre-cracks, and the findings may not be directly applicable to other materials or crack types without further research.
1:Experimental Design and Method Selection:
The study involves simulation and experimental comparison of AFBG and UFBG sensors under crack-generated non-uniform strain. The transmission matrix method is used for simulation.
2:Sample Selection and Data Sources:
Aluminum alloy plates with pre-cracks at the edge of a hole are used as specimens. Reflection spectra are acquired and recorded after every 1 mm crack growth.
3:List of Experimental Equipment and Materials:
SANS890 electro-hydraulic fatigue test bench, Bayspec MWLS-B-1550-080 broadband light source, YOKOGAWA AQ6370D optical spectrum analyzer, and an optical fiber coupler.
4:Experimental Procedures and Operational Workflow:
Fatigue tests are conducted on specimens with FBG sensors. Reflection spectra are recorded at different crack propagation lengths.
5:Data Analysis Methods:
Three spectra indices (central wavelength shift, ratio of side lobe to main lobe, and information entropy) are extracted to monitor crack propagation.
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Bayspec MWLS-B-1550-080 broadband light source
MWLS-B-1550-080
Bayspec
Providing broadband light for optical measurements
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YOKOGAWA AQ6370D optical spectrum analyzer
AQ6370D
YOKOGAWA
Analyzing optical spectra
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SANS890 electro-hydraulic fatigue test bench
Applying loads on specimens for fatigue testing
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Optical fiber coupler
Coupling optical signals
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