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Monitoring of pin connection loosening using eletromechanical impedance: Numerical simulation with experimental verification

机译:使用机电阻抗监测引脚连接松动:带有实验验证的数值模拟

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摘要

Pin connection, as an important structural connection mechanism, is widely used in various structures, especially spatial structures. In this article, numerical and experimental investigations are performed for monitoring the loosening of pin-connected structures using the electromechanical impedance technique. For this purpose, a finite element model for a pin-connected structure considering the contact interfaces between the pin and the support base is proposed to study the effect of pin connection loosening on the electromechanical impedance signatures. A multi-physics analysis is conducted to simulate the electromechanical behavior of lead zirconate titanate transducers bonded on the pin head and the steel base. The relationship between the force applied on the pin connection and the variation in electromechanical impedance signatures is established. Experiments are carried out to verify the accuracy of the proposed finite element model. The results show that the changes in the electromechanical impedance signatures consist of frequency shifts and peak splitting. The contact condition of the pin connection can be assessed by observing the changes in the electromechanical impedance signatures. The location of the piezoelectric patch has significant effect on the sensitivity of the electromechanical impedance signatures. The numerical study in this research helps to optimize the design of sensor placement and improve the detection accuracy of the electromechanical impedance method in practical applications of detecting the loosening of pin-connected structures.
机译:销连接作为一种重要的结构连接机制,已广泛用于各种结构中,尤其是空间结构中。在本文中,进行了数值和实验研究,以使用机电阻抗技术监视针式连接结构的松动。为此,提出了一种考虑销和支撑座之间接触界面的销连接结构的有限元模型,以研究销连接松动对机电阻抗特征的影响。进行了多物理场分析,以模拟结合在销头和钢座上的钛酸锆钛酸铅传感器的机电性能。建立了施加在插针连接上的力与机电阻抗信号变化之间的关系。进行实验以验证所提出的有限元模型的准确性。结果表明,机电阻抗特征的变化包括频移和峰值分裂。引脚连接的接触条件可以通过观察机电阻抗信号的变化来评估。压电贴片的位置对机电阻抗签名的灵敏度有重要影响。这项研究的数值研究有助于优化传感器布置的设计,并在实际检测针连接结构松动的应用中提高机电阻抗方法的检测精度。

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