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Monitoring of bolt looseness using piezoelectric transducers: Three-dimensional numerical modeling with experimental verification

机译:使用压电换能器监测螺栓松动:带有实验验证的三维数值建模

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摘要

Across multiple industries, bolted connections have been widely used to hold different parts and components together, due to their advantages such as convenient use and low cost. However, bolt looseness may lead to disastrous consequences if not promptly detected. In this article, a novel numerical modeling is proposed to simulate the piezoelectrically enabled active sensing method that can monitor the looseness of bolted connection, and this investigation can help us better understand the mechanism of the active sensing of a bolted connection. Compared to prior investigations, the main contribution of this article is that we develop a new three-dimensional modeling method on microscopic roughness of bolted interface by using the fractal contact theory. The numerical results, backed by experimental verification from the testing on a bolted joint, reveal that the received signal peak amplitude is proportional to the bolt preload. This phenomenon can be attributed to the enlarging actual contact area with the increasing preload, since a larger contact surface can enhance stress wave propagation. Moreover, the proposed numerical modeling has better performance than similar research in the past, which can provide guidance for future investigations on bolt looseness monitoring.
机译:在多个行业中,螺栓连接由于其使用方便和成本低等优点而被广泛用于将不同的零件和组件保持在一起。但是,如果不及时发现,螺栓松动可能会导致灾难性后果。在本文中,提出了一种新颖的数值模型,以模拟可监控螺栓连接松动的压电激活主动感应方法,这项研究可以帮助我们更好地理解螺栓连接主动感应的机理。与以前的研究相比,本文的主要贡献是我们利用分形接触理论开发了一种新的三维模型,对螺栓接口的微观粗糙度进行建模。数值结果以螺栓连接的测试为基础进行了实验验证,结果表明,接收到的信号峰值幅度与螺栓的预紧力成正比。这种现象可以归因于随着预紧力的增加而增加的实际接触面积,因为更大的接触面可以增强应力波的传播。此外,所提出的数值模型比过去的类似研究具有更好的性能,可以为螺栓松动监测的未来研究提供指导。

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