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  • Cite this article:

    Zhong-Cun Guo, Shou-Guo Yan, Bi-Xing Zhang. Simulation of acoustic fields emitted by ultrasonic phased array in austenitic steel weldJ. Chin. Phys. B, 2019, 28(11): 114302.
    Zhong-Cun Guo, Shou-Guo Yan, Bi-Xing Zhang. Simulation of acoustic fields emitted by ultrasonic phased array in austenitic steel weldJ. Chin. Phys. B, 2019, 28(11): 114302.
  • Simulation of acoustic fields emitted by ultrasonic phased array in austenitic steel weld

    • Ultrasonic inspection of austenitic steel weld is a great challenge due to skewed and distorted beam in such a highly anisotropic and inhomogeneous material. To improve the ultrasonic measurement in this situation, it is essential to have an in-depth understanding of ultrasound characteristics in austenitic steel weld. To meet such a need, in the present study we propose a method which combines the weld model, Dijkstra's path-finding algorithm and Gaussian beam equivalent point source model to calculate the acoustic fields from ultrasonic phased array in such a weld. With this method, the acoustic field in a steel-austenitic weld-steel three-layered structure for a linear phase array transducer is calculated and the propagation characteristics of ultrasound in weld are studied. The research results show that the method proposed here is capable of calculating the acoustic field in austenitic weld. Additionally, beam steering and focusing can be still realized in the austenitic steel weld and the beam distortion is more severe in the middle of weld than at other positions.
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