Real time NDE of laser shock processing with time-of-flight of laser induced plasma shock wave in air by acoustic emission sensor |
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Authors: | Fei Wang Yongkang Zhang Hongbing Yao Bei Yuan |
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Affiliation: | School of Mechanical Engineering, Jiangsu University, No. 301, Xuefu Road, Zhenjiang 212013, China |
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Abstract: | Acoustic emission sensor is used to research the time-of-flight of the shock wave induced by laser-plasma in air for real time nondestructive evaluation (NDE) of laser shock processing. The time-of-flight of the shock wave propagating from the source to the sensor declines nonlinearly and similarly at the different distances for different laser energies. The velocity of the shock wave at the distance of 30 mm increases faster than that of the distance of 35 mm. The relationship between the laser energy and the distance is almost linearly when the signal with distortion is measured by acoustic emission sensor. Finally, Taylor solution is used to analyze the experimental results, and the empirical formula between the energy of the shock wave and the laser energy is established, which will provide a theoretical basis for real time NDE of laser shock processing. |
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Keywords: | NDE Laser induced plasma shock wave Time-of-flight Acoustic emission sensor Laser shock processing |
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