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A fractal contact theory based model for bolted connection looseness monitoring using piezoceramic transducers

机译:压电陶瓷传感器的螺栓连接松动监测的分形接触理论模型

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摘要

In this paper, based on the fractal contact theory, a new analytical model for bolted joints is proposed to monitor bolt looseness by using a pair of piezoceramic transducers for ultrasonic wave generation and detection. The time reversal method is used to obtain the focused signal peak amplitude during ultrasonic wave propagation through bolt connection surface. The influence of bolt load on the actual contact area of the bolted joint surface is determined by the fractal contact theory, and the finite element method is applied to obtain the relationship between the actual contact area and the focused signal peak amplitude. The focused signal peak obtained through the time reversal method increases with the increase of applied axial load before saturation. The investigation proposed in this paper is based on the inherent contact mechanism between the two contact surfaces, and achieves more accurate quantitative monitoring of bolt looseness. Finally, a comparison of the predicted and experimental results shown validates the proposed model in this paper.
机译:本文基于分形接触理论,提出了一种新的螺栓接头分析模型,用于通过使用用于超声波产生和检测的一对压电陶瓷换能器来监测螺栓松动。时间反转方法用于通过螺栓连接表面在超声波传播期间获得聚焦信号峰值幅度。螺栓载荷对螺栓接头表面的实际接触面积的影响由分形接触理论确定,并且应用有限元方法以获得实际接触面积与聚焦信号峰值幅度之间的关系。通过时间反转方法获得的聚焦信号峰随着饱和前的施加轴向载荷的增加而增加。本文提出的调查基于两个接触表面之间的固有接触机构,并实现了更准确的螺栓松动定量监测。最后,预测和实验结果的比较显示在本文中验证了所提出的模型。

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