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Health Monitoring of Bolted Spherical Joint Connection Based on Active Sensing Technique Using Piezoceramic Transducers

机译:基于主动传感技术的压电陶瓷换能器螺栓连接球形接头健康监测

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摘要

Bolted spherical joints are widely used to form space steel structures. The stiffness and load capacity of the structures are affected by the looseness of bolted spherical joint connections in the structures. The looseness of the connections, which can be caused by fabrication error, low modeling accuracy, and “false twist” in the installation process, may negatively impact the load capacity of the structure and even lead to severe accidents. Furthermore, it is difficult to detect bolted spherical joint connection looseness from the outside since the bolts connect spheres with rods together from the inside. Active sensing methods are proposed in this paper to monitor the tightness status of the bolted spherical connection using piezoceramic transducers. A triangle-on-triangle offset grid composed of bolted spherical joints and steel tube bars was fabricated as the specimen and was used to validate the active sensing methods. Lead Zirconate Titanate (PZT) patches were used as sensors and actuators to monitor the bolted spherical joint tightness status. One PZT patch mounted on the central bolted sphere at the upper chord was used as an actuator to generate a stress wave. Another PZT patch mounted on the bar was used as a sensor to detect the propagated waves through the bolted spherical connection. The looseness of the connection can impact the energy of the stress wave propagated through the connection. The wavelet packet analysis and time reversal (TR) method were used to quantify the energy of the transmitted signal between the PZT patches by which the tightness status of the connection can be detected. In order to verify the effectiveness, repeatability, and consistency of the proposed methods, the experiments were repeated six times in different bolted spherical connection positions. The experimental results showed that the wavelet packet analysis and TR method are effective in detecting the tightness status of the connections. The proposed active monitoring method using PZT transducers can monitor the tightness levels of bolted spherical joint connections efficiently and shows its potential to guarantee the safety of space steel structures in construction and service.
机译:螺栓球形接头被广泛用于形成空间钢结构。结构的刚度和承载能力受结构中螺栓球形接头连接的松动影响。连接的松动(可能由制造错误,建模精度低以及安装过程中的“错误扭曲”引起)可能会对结构的承载能力产生负面影响,甚至导致严重事故。此外,由于螺栓从内部将球体和杆连接在一起,因此很难从外部检测螺栓连接的球形接头的连接松动。本文提出了一种主动感测方法,以使用压电陶瓷换能器监控螺栓球形连接的紧密状态。制作了一个由螺栓球形接头和钢管组成的三角形对三角形偏移网格作为标本,并用于验证主动传感方法。锆钛酸铅(PZT)贴片用作传感器和执行器,以监测螺栓球形接头的密封状态。安装在上弦中央螺栓球体上的一个PZT贴片用作致动器,以产生应力波。安装在杆上的另一个PZT贴片用作传感器,以检测通过螺栓球形连接传播的波。连接的松动会影响通过连接传播的应力波的能量。小波包分析和时间反转(TR)方法用于量化PZT补丁之间传输信号的能量,通过该能量可以检测连接的紧密状态。为了验证所提出方法的有效性,可重复性和一致性,在不同的螺栓球形连接位置重复了六次实验。实验结果表明,小波包分析和TR方法可以有效地检测连接的紧密度状态。所提出的使用PZT传感器的主动监测方法可以有效地监测螺栓球形接头连接的紧密度,并显示出其在保证空间钢结构在施工和服务中的安全性的潜力。

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