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Air-coupled detection of nonlinear Rayleigh surface waves to assess material nonlinearity
Sebastian Thiele
, Jin Yeon Kim
,
Jianmin Qu
, Laurence J. Jacobs
Department of Mechanical Engineering
Stevens Institute of Technology
Stevens Institute of Technology
Research output
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peer-review
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Keyphrases
Material Nonlinearity
100%
Nonlinear Parameter
100%
Rayleigh Surface Wave
100%
Air-coupled
100%
Second Harmonic
50%
Propagation Distance
50%
Harmonic Amplitude
50%
Relative Nonlinearity
50%
Experimental Validation
25%
Non-contact
25%
Laser Detection
25%
Surface Condition
25%
Propagation Path
25%
Longitudinal Wave
25%
Aluminum Alloy
25%
Non-contact Measurement
25%
AA2024
25%
Surface Wave Measurement
25%
Wedge Transducer
25%
Air-coupled Ultrasonic Transducer
25%
Capacitive Detection
25%
2024-T351
25%
AA7075-T651
25%
Engineering
Material Nonlinearity
100%
Nonlinearity
100%
Transducer
50%
Harmonics
50%
Capacitive
25%
Ultrasonics
25%
Propagation Path
25%
Surface Condition
25%
Measured Material
25%
Longitudinal Wave
25%
Physics
Surface Wave
100%
Harmonics
66%
Transducer
66%
Longitudinal Wave
33%
Alloy
33%
Ultrasound
33%
Material Science
Transducer
100%
Aluminum Alloy
50%