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变温和运行条件下加筋复合板中超声导波与界面脱粘的相互作用

Interaction of ultrasonic guided waves with interfacial debonding in a stiffened composite plate under variable temperature and operational conditions.

作者信息

Prakash Kalgutkar Akshay, Banerjee Sauvik

机构信息

Department of Civil Engineering, Indian Institute of Technology Bombay, Mumbai 400 076, India.

出版信息

Ultrasonics. 2024 Aug;142:107378. doi: 10.1016/j.ultras.2024.107378. Epub 2024 Jun 9.

Abstract

Stiffeners play a vital role in strengthening thin panels in a wide range of engineering constructions by reducing additional structural weight. However, these structures are vulnerable to issues such as interlayer delamination or skin-stiffener interfacial debonding due to high stress levels developed from external environmental conditions and operational loadings. In contrast, ultrasonic-guided wave (UGW) techniques exhibit an efficient and precise approach for monitoring discontinuities or damages in composite structures. There is a lack of research on understanding the characteristics of the interaction between UGW and interfacial debonding when in-plane edge loading and environmental factors are simultaneously taken into account. Therefore, this study is motivated by the need to develop a multiphysics numerical model which employs a commercially available finite element software, COMSOL Multiphysics®, to simulate UGW propagation in a stiffened composite plate with debonding at the plate-stiffener interface through a piezoelectric transducer under the combined influence of in-plane edge load and hygrothermal environment. The stiffened plate and piezoelectric patches are modelled with the tetrahedral element, and the bottom surface of the attached stiffener has a through-width 0.1 mm deep groove simulated for debonding. The developed FE model is validated against the results of the conducted experiments and those found in the available literature through the correlation coefficient. Further, the study conducts a comprehensive parametric investigation on stiffened cross-ply (0/90/0) laminated plates, considering variations in debonding size, in-plane load, and hygrothermal load intensity through the excitation of A0 mode. The acquired response is processed to compare the peak amplitude of various modes and energy of the waveform. Additionally, statistical indices such as normalised correlation moment (NCM) and variance of the continuous wavelet transform (CWT) peak are estimated to understand the impact of various parameters on waveform. The results show that the presence of a 90° lamina in the cross-ply laminate generates a low amplitude S0 mode in the scattered response. Moreover, a mode conversion from A0 to S0 mode is observed due to perfect bonding between the plate and the stiffener, providing insights into the bonding state in the panel. Furthermore, it is found that the magnitude of the in-plane loading marginally affects the peak amplitude of various modes in the scattered response. Additionally, when temperature intensity rises, the energy and amplitude of the UGW signals acquired through piezoelectric patches positioned in a direct line with the actuator gradually increase. The NCM value enhances with debonding regardless of exposed hygrothermal condition and reduces with increasing temperature intensity. In addition, the variance of the CWT peak reduces with debonding. The findings of this research are expected to be helpful for the development of efficient algorithms for detecting damages for structural health monitoring of stiffened composite panels.

摘要

加强筋在众多工程结构中通过减轻额外的结构重量,对增强薄板起着至关重要的作用。然而,由于外部环境条件和运行载荷产生的高应力水平,这些结构容易出现诸如层间分层或蒙皮 - 加强筋界面脱粘等问题。相比之下,超声导波(UGW)技术为监测复合材料结构中的不连续性或损伤提供了一种高效且精确的方法。当同时考虑面内边缘载荷和环境因素时,对于理解UGW与界面脱粘之间相互作用的特性,目前还缺乏相关研究。因此,本研究旨在开发一个多物理场数值模型,该模型使用商业有限元软件COMSOL Multiphysics®,来模拟在面内边缘载荷和湿热环境的联合影响下,通过压电换能器在板 - 加强筋界面存在脱粘的加筋复合板中UGW的传播。加筋板和压电贴片采用四面体单元进行建模,附着加强筋的底面有一个宽度贯穿且深度为0.1毫米的凹槽用于模拟脱粘。通过相关系数,将所开发的有限元模型与所进行的实验结果以及现有文献中的结果进行验证。此外,该研究对加筋正交铺层(0/90/0)层合板进行了全面的参数研究,通过激发A0模式,考虑脱粘尺寸、面内载荷和湿热载荷强度的变化。对获取的响应进行处理,以比较各种模式的峰值幅度和波形能量。此外,估计诸如归一化相关矩(NCM)和连续小波变换(CWT)峰值方差等统计指标,以了解各种参数对波形的影响。结果表明,正交铺层层合板中90°层的存在会在散射响应中产生低幅度的S0模式。此外,由于板与加强筋之间的完美粘结,观察到从A0模式到S0模式的模式转换,这为面板中的粘结状态提供了见解。此外,发现面内载荷的大小对散射响应中各种模式的峰值幅度影响较小。此外,当温度强度升高时,通过与激励器成直线放置的压电贴片获取的UGW信号的能量和幅度会逐渐增加。无论暴露的湿热条件如何,NCM值都会随着脱粘而增大,并随着温度强度的增加而减小。此外,CWT峰值的方差会随着脱粘而减小。本研究的结果有望有助于开发用于检测加筋复合板结构健康监测损伤的高效算法。

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