首页> 外文期刊>Smart Materials & Structures >Real time bolt preload monitoring using piezoceramic transducers and time reversal technique-a numerical study with experimental verification
【24h】

Real time bolt preload monitoring using piezoceramic transducers and time reversal technique-a numerical study with experimental verification

机译:使用压电陶瓷换能器和时间反转技术实时监测螺栓预紧力-带有实验验证的数值研究

获取原文
获取原文并翻译 | 示例
       

摘要

Bolted joints are ubiquitous structural elements, and form critical connections in mechanical and civil structures. As such, loosened bolted joints may lead to catastrophic failures of these structures, thus inspiring a growing interest in monitoring of bolted joints. A novel energy based wave method is proposed in this study to monitor the axial load of bolted joint connections. In this method, the time reversal technique was used to focus the energy of a piezoelectric (PZT)-generated ultrasound wave from one side of the interface to be measured as a signal peak by another PZT transducer on the other side of the interface. A tightness index (TI) was defined and used to correlate the peak amplitude to the bolt axial load. The TI bypasses the need for more complex signal processing required in other energy-based methods. A coupled, electromechanical analysis with elasto-plastic finite element method was used to simulate and analyze the PZT based ultrasonic wave propagation through the interface of two steel plates connected by a single nut and bolt connection. Numerical results, backed by experimental results from testing on a bolted connection between two steel plates, revealed that the peak amplitude of the focused signal increases as the bolt preload (torque level) increases due to the enlarging true contact area of the steel plates. The amplitude of the focused peak saturates and the TI reaches unity as the bolt axial load reaches a threshold value. These conditions are associated with the maximum possible true contact area between the surfaces of the bolted connection.
机译:螺栓连接是普遍存在的结构元素,在机械和土木结构中形成关键的连接。因此,螺栓连接松动可能会导致这些结构的灾难性故障,因此激发了人们对螺栓连接监控的兴趣。在这项研究中提出了一种新的基于能量的波动方法,以监测螺栓连接的轴向载荷。在这种方法中,时间反转技术用于将压电(PZT)产生的超声波的能量从界面的一侧聚焦,以通过界面另一侧的另一个PZT换能器作为信号峰值进行测量。定义了密封性指数(TI),并将其用于将峰值振幅与螺栓轴向载荷相关联。 TI绕过了其他基于能量的方法所需的更复杂的信号处理需求。采用弹塑性有限元方法进行机电耦合分析,以模拟和分析基于PZT的超声波通过两个钢板的界面(通过单个螺母和螺栓连接)的传播。数值结果以两个钢板之间的螺栓连接测试的实验结果为依据,表明由于钢板的实际接触面积增大,聚焦信号的峰值幅度随螺栓预紧力(扭矩水平)的增加而增加。当螺栓轴向载荷达到阈值时,聚焦峰的振幅达到饱和,TI达到统一。这些条件与螺栓连接表面之间的最大可能的实际接触面积有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号