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Debonding Detection in Hidden Frame Supported Glass Curtain Walls Using the Nonlinear Ultrasonic Modulation Method with Piezoceramic Transducers

机译:压电陶瓷换能器非线性超声调制方法在隐框式玻璃幕墙中脱胶检测

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摘要

Debonding defects are common and they are the main reason for the failure of hidden frame supported glass curtain walls, which are widely used as an external enclosure and decorative structure. In this paper, a debonding detection method for hidden frame supported glass curtain walls is developed based on nonlinear ultrasonic modulation and piezoceramic transducers. First, the excitation frequency was determined according to the response characteristics. Then, empirical mode decomposition (EMD) was applied to extract the feature components. After discrete Fourier transform (DFT), the nonlinear coefficients were calculated to evaluate the debonding defect. Finally, the experimental setup was established and a series of experiments were carried out to verify the feasibility and effectiveness of the nonlinear ultrasonic modulation method. The nonlinear harmonics detection method was also investigated and it was compared with the nonlinear ultrasonic modulation method. The detection effect at different temperatures and impact were studied. The results showed that the nonlinear coefficient increases with the debonding length. The mean squared error (MSE) of the nonlinear ultrasonic modulation method was improved by 41% compared with the nonlinear harmonics method. The nonlinear ultrasonic modulation method can successfully detect debonding defects in hidden frame supported glass curtain walls at different temperatures and impact.
机译:脱胶缺陷很普遍,它们是隐藏框架支撑的玻璃幕墙失效的主要原因,该幕墙被广泛用作外壳和装饰结构。本文提出了一种基于非线性超声调制和压电陶瓷换能器的隐框式玻璃幕墙脱胶检测方法。首先,根据响应特性确定激励频率。然后,应用经验模式分解(EMD)提取特征分量。经过离散傅里叶变换(DFT),计算非线性系数以评估脱胶缺陷。最后,建立了实验装置,并进行了一系列实验,验证了非线性超声调制方法的可行性和有效性。还研究了非线性谐波检测方法,并将其与非线性超声调制方法进行了比较。研究了在不同温度和冲击下的检测效果。结果表明,非线性系数随剥离长度的增加而增大。与非线性谐波方法相比,非线性超声调制方法的均方误差(MSE)提高了41%。非线性超声调制方法可以成功地检测出隐藏框架支撑的玻璃幕墙在不同温度和冲击下的剥离缺陷。

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