Marković Nemanja, Grdić Dušan, Stojković Nenad, Topličić-Ćurčić Gordana, Živković Darko
Department for Materials and Structures, Faculty of Civil Engineering and Architecture, University of Niš, 18000 Niš, Serbia.
The Academy of Applied Technical and Educational Studies, University of Niš, 18000 Niš, Serbia.
Materials (Basel). 2023 Dec 30;17(1):218. doi: 10.3390/ma17010218.
This paper presents the application of a hybrid approach for damage localization in concrete plates of arbitrary geometric shapes and a constant thickness. The hybrid algorithm utilizes fast discrete wavelet transformation, energy approach and time of flight criteria for the purpose of the localization of single- and multi-damage problems inside or on the periphery of concrete plates. A brief theoretical background of the hybrid method as well as numerical procedures for modeling the piezoelectric smart aggregate and ultrasonic wave propagation are presented. Experimental and numerical verification of the damage localization were performed on square samples/models with one or two damages and with 16 positions of piezoelectric smart actuator/sensor aggregates. After the verification of the hybrid method, a numerical simulation was performed on models with one or two damages for plates of arbitrary geometric shapes. Based on the obtained results, it was concluded that the proposed method can be applied to damage localization in concrete plates of arbitrary geometric shapes. The presented method and numerical procedure can be further used in research through varying the geometry, number and position of damages as well as the number and position of piezoelectric smart aggregates.
本文介绍了一种混合方法在任意几何形状且厚度恒定的混凝土板损伤定位中的应用。该混合算法利用快速离散小波变换、能量法和飞行时间准则,用于定位混凝土板内部或周边的单损伤和多损伤问题。文中给出了混合方法的简要理论背景以及用于模拟压电智能骨料和超声波传播的数值程序。在具有一个或两个损伤以及16个压电智能 actuator/sensor 骨料位置的方形样本/模型上进行了损伤定位的实验和数值验证。在验证了混合方法之后,对具有一个或两个损伤的任意几何形状板的模型进行了数值模拟。基于所得结果,得出所提出的方法可应用于任意几何形状混凝土板损伤定位的结论。通过改变损伤的几何形状、数量和位置以及压电智能骨料的数量和位置,所提出的方法和数值程序可进一步用于研究。