Bolt loosening monitoring with passive wireless-based smart washers

Tang Yuqi, Guo Keke, Chonglin Zhao, Wenlian Wang
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Abstract

Ensuring sufficient preload of bolted connections is crucial for maintaining the safety of railway operations. Accidents resulting from loose bolts caused by inadequate preload are a recurring concern. Traditional bolt preload detection methods suffer from reliability issues and bulky equipment requirements. To address these challenges, this study proposes a novel solution utilising passive wireless measurement systems. However, the communication effectiveness of these systems can be significantly impacted by the surrounding metal environment. This research introduces an intelligent clover washer design to mitigate the adverse effects of eddy currents induced by the metal environment. The design incorporates a new clover antenna and washer structure, effectively reducing the influence of the metal environment and improving the communication quality. The proposed design has undergone comprehensive prototyping, simulation and experimental verification. The results demonstrate a significant improvement over the traditional circular antenna and washer combination under similar conditions. Specifically, the sensing distance of the new clover washer is enhanced by 60% and the stable communication distance is improved by 75%. The experimental results highlight the ability of the new clover smart washer to generate a stronger spatial magnetic field and exhibit reduced susceptibility to the metal washer, thereby enhancing communication effectiveness.
利用无源无线智能垫圈监测螺栓松动情况
确保螺栓连接有足够的预紧力对于维护铁路运营安全至关重要。因预紧力不足导致螺栓松动而引发的事故是经常出现的问题。传统的螺栓预紧力检测方法存在可靠性问题和设备要求高的问题。为应对这些挑战,本研究提出了一种利用无源无线测量系统的新型解决方案。然而,这些系统的通信效果会受到周围金属环境的严重影响。这项研究引入了一种智能三叶草垫圈设计,以减轻金属环境引起的涡流的不利影响。该设计采用了新型三叶草天线和垫圈结构,有效降低了金属环境的影响,提高了通信质量。所提出的设计经过了全面的原型制作、模拟和实验验证。结果表明,在类似条件下,与传统的圆形天线和垫圈组合相比,该设计有明显改善。具体而言,新型三叶草垫圈的感应距离提高了 60%,稳定通信距离提高了 75%。实验结果突出表明,新型三叶草智能垫圈能产生更强的空间磁场,并能降低对金属垫圈的易感性,从而提高通信效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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