Liu Peipei, Nazirah Ab Wahab, Sohn Hoon
Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-338, Republic of Korea.
Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 305-338, Republic of Korea.
Ultrasonics. 2016 Jul;69:248-58. doi: 10.1016/j.ultras.2016.03.013. Epub 2016 Apr 6.
Laser ultrasonic techniques have been widely investigated due to its high spatial resolution and capacity for remote and noncontact measurement. In this study, the laser induced ultrasonic wave on an aluminum plate is simulated, and a nonlinear feature is used to detect a micro crack introduced in the plate model. A multi-physics simulation is conducted and optimized considering the effect of thermal diffusion. A nonlinear feature, called Bhattacharyya Distance (BD), is calculated to show the crack-induced geometric difference among the state space attractors obtained from closely spaced measurement points near the crack. First, a 3D model is built, and its simulation result is compared with an experiment performed using a noncontact laser ultrasonic measurement system. Then, by creating a micro crack in the model, BD is extracted and the crack is successfully detected and visualized. Finally, the effects of BD parameters, such as embedding dimension and frequency band, on damage visualization are investigated.
激光超声技术因其高空间分辨率以及远程和非接触测量能力而受到广泛研究。在本研究中,对铝板上的激光诱导超声波进行了模拟,并利用非线性特征检测板模型中引入的微裂纹。考虑热扩散的影响进行了多物理场模拟并进行了优化。计算了一种名为 Bhattacharyya 距离(BD)的非线性特征,以显示从裂纹附近紧密间隔的测量点获得的状态空间吸引子之间由裂纹引起的几何差异。首先,建立了一个三维模型,并将其模拟结果与使用非接触激光超声测量系统进行的实验结果进行了比较。然后,通过在模型中创建一个微裂纹,提取了 BD 并成功检测到裂纹并进行了可视化。最后,研究了 BD 参数(如嵌入维数和频带)对损伤可视化的影响。