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An anti-noise real-time cross-correlation method for bolted joint monitoring using piezoceramic transducers

机译:利用压电陶瓷换能器监测螺栓连接的抗噪实时互相关方法

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Bolted joint connection is the most commonly used connection element in structures and devices. The loosening due to external dynamic loads cannot be observed and measured easily and may cause catastrophic loss especially in an extreme requirement and/or environment. In this paper, an innovative Real-time Cross-Correlation Method (RCCM) for monitoring of the bolted joint loosening was proposed. We apply time reversal process on stress wave propagation to obtain correlation signal. The correlation signal's peak amplitude represents the cross-correlation between the loosening state and the baseline working state; therefore, it can detect the state of loosening. Since the bolt states are uncorrelated with noise, the peak amplitude will not be affected by noise and disturbance while it increases SNR level and increases the measured signals' reliability. The correlation process is carried out online through physical wave propagation without any other post offline complicated analyses and calculations. We implemented the proposed RCCM on a single boltut joint experimental device to quantitatively detect the loosening states successfully. After that we implemented the proposed method on a real large structure (reaction wall) with multiple bolted joint connections. Loosening indexes were built for both experiments to indicate the loosening states. Finally, we demonstrated the proposed method's great anti-noise and/or disturbance ability. In the instrumentation, we simply mounted Lead Zirconium Titanate (PZT) patches on the device/structure surface without any modifications of the bolted connection. The low-cost PZTs used as actuators and sensors for active sensing are easily extended to a sensing network for large scale bolted joint network monitoring.
机译:螺栓连接是结构和设备中最常用的连接元件。外部动态载荷引起的松动不易观察和测量,并且可能导致灾难性损失,尤其是在极端要求和/或环境中。在本文中,提出了一种新颖的实时互相关方法(RCCM),用于监控螺栓连接的松动。我们将时间逆过程应用于应力波传播以获得相关信号。相关信号的峰值幅度表示松弛状态与基线工作状态之间的互相关;因此,它可以检测到松动状态。由于螺栓状态与噪声无关,因此峰值幅度将不受噪声和干扰的影响,同时可提高SNR级别并提高测量信号的可靠性。相关过程是通过物理波传播在线进行的,而无需进行任何其他离线后复杂的分析和计算。我们在单个螺栓/螺母接头实验装置上实施了建议的RCCM,以成功地定量检测松动状态。之后,我们在具有多个螺栓连接的真实大型结构(反应墙)上实施了该方法。为这两个实验建立了松动指数以指示松动状态。最后,我们证明了所提出的方法具有很大的抗噪和/或干扰能力。在仪器中,我们仅将钛酸铅锆(PZT)贴片安装在设备/结构表面上,而无需修改螺栓连接。用作主动感应的执行器和传感器的低成本PZT可以轻松扩展到用于大规模螺栓连接网络监控的感应网络。

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