In-situ laser-ultrasonic visualization with the use of regenerated fiber Bragg grating sensors at elevated temperatures
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Fengming Yu | Y. Okabe | O. Saito | Zixuan Li
[1] Fengming Yu,et al. Application of a remotely bonded fiber-optic Bragg grating sensor to acoustic emission testing for a carbon-carbon composite at a temperature of 1000 °C , 2022, Measurement.
[2] K. Peters,et al. Optical Fiber Sensors for Ultrasonic Structural Health Monitoring: A Review , 2021, Sensors.
[3] Franz J. Dutz,et al. Regenerated Fibre Bragg Gratings: A critical assessment of more than 20 years of investigations , 2021 .
[4] Fengming Yu,et al. An ultrasonic visualization system using a fiber-optic Bragg grating sensor and its application to damage detection at a temperature of 1000 °C , 2021 .
[5] Fengming Yu,et al. Laser ultrasonic visualization technique using a fiber-optic Bragg grating ultrasonic sensor with an improved adhesion configuration , 2020 .
[6] Lae-Hyong Kang,et al. Defect Visualization of a Steel Structure Using a Piezoelectric Line Sensor Based on Laser Ultrasonic Guided Wave , 2019, Materials.
[7] Qi Wu,et al. Phase-Shifted Fiber Bragg Grating Sensing Network and its Ultrasonic Sensing Application , 2019, IEEE Sensors Journal.
[8] Fengming Yu,et al. Regenerated Fiber Bragg Grating Sensing System for Ultrasonic Detection in a 900 °C Environment , 2019, Journal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems.
[9] Qi Wu,et al. Ultrasonic Structural Health Monitoring Using Fiber Bragg Grating , 2018, Sensors.
[10] Yoji Okabe,et al. Fiber-Optic Sensor-Based Remote Acoustic Emission Measurement in a 1000 °C Environment , 2017, Sensors.
[11] Shaoping Zhou,et al. An Improved Metal-Packaged Strain Sensor Based on A Regenerated Fiber Bragg Grating in Hydrogen-Loaded Boron–Germanium Co-Doped Photosensitive Fiber for High-Temperature Applications , 2017, Sensors.
[12] Yoji Okabe,et al. Fiber-optic sensor-based remote acoustic emission measurement of composites , 2016 .
[13] Fredrik Laurell,et al. Influence of pre-annealing on the thermal regeneration of fiber Bragg gratings in standard optical fibers. , 2015, Optics express.
[14] D. Guo,et al. Low-cost (0.1BiYbO3-0.9PbTiO3)-PbZrO3-xMn high Curie temperature piezoelectric ceramics with improved high-temperature performance , 2015 .
[15] Salvador Sales,et al. Evaluation of new regenerated fiber Bragg grating high-temperature sensors in an ISO 834 fire test , 2015 .
[16] Shan-Tung Tu,et al. Fabrication and characterization of a metal-packaged regenerated fiber Bragg grating strain sensor for structural integrity monitoring of high-temperature components , 2014 .
[17] Joseph Johnson,et al. High-Temperature Piezoelectric Sensing , 2013, Sensors.
[18] Jung-Ryul Lee,et al. Structural imaging through local wavenumber estimation of guided waves , 2013 .
[19] Guillaume Laffont,et al. 9000 hours-long high temperature annealing of regenerated fiber Bragg gratings , 2013, Other Conferences.
[20] Qi Wu,et al. High-sensitivity ultrasonic phase-shifted fiber Bragg grating balanced sensing system. , 2012, Optics express.
[21] Jung-Ryul Lee,et al. Composite aircraft debonding visualization by laser ultrasonic scanning excitation and integrated piezoelectric sensing , 2012 .
[22] Guillaume Laffont,et al. Multiplexed regenerated fiber Bragg gratings for high-temperature measurement , 2012, Other Conferences.
[23] S. Sales,et al. Packaged Optical Sensors Based on Regenerated Fiber Bragg Gratings for High Temperature Applications , 2012, IEEE Sensors Journal.
[24] Jung-Ryul Lee,et al. Long distance laser ultrasonic propagation imaging system for damage visualization , 2011 .
[25] John Canning,et al. Thermally regenerated fiber Bragg gratings in twin-air-hole microstructured fibers for high temperature pressure sensing , 2011, Defense + Commercial Sensing.
[26] Jung-Ryul Lee,et al. Application of ultrasonic wave propagation imaging method to automatic damage visualization of nuclear power plant pipeline , 2010 .
[27] John Canning,et al. Extreme Silica Optical Fibre Gratings , 2008, Sensors.
[28] John Canning,et al. Ultrahigh-temperature regenerated gratings in boron-codoped germanosilicate optical fiber using 193 nm. , 2008, Optics letters.
[29] Michael Fokine,et al. Thermal stability of oxygen-modulated chemical-composition gratings in standard telecommunication fiber. , 2004, Optics letters.
[30] Michael Fokine,et al. Growth dynamics of chemical composition gratings in fluorine-doped silica optical fibers. , 2002, Optics letters.
[31] Michael Fokine,et al. Formation of thermally stable chemical composition gratings in optical fibers , 2002 .
[32] M. Fokine,et al. A Novel Approach to Fabricate High-Temperature Resistant Fiber Bragg Gratings , 1997, Bragg Gratings, Photosensitivity, and Poling in Glass Fibers and Waveguides: Applications and Fundamentals.