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A Smart Washer for Bolt Looseness Monitoring Based on Piezoelectric Active Sensing Method

机译:基于压电主动传感方法的螺栓松动监测智能清洗机

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Piezoceramic based active sensing methods have been researched to monitor preload on bolt connections. However, there is a saturation problem involved with this type of method. The transmitted energy is sometimes saturated before the maximum preload which is due to it coming into contact with flat surfaces. When it comes to flat contact surfaces, the true contact area will easily saturate with the preload. The design of a new type of bolt looseness monitoring sensor, a smart washer, is to mitigate the saturation problem. The smart washer is composed of two annular disks with contact surfaces that are machined into convex and concave respectively, to eliminate the complete flat contact surfaces and to reduce the saturation effect. One piezoelectric patch is bonded on the non-contact surface of each annular disk. These two mating annular disks form a smart washer. One of the two piezoelectric patches serves as an actuator to generate an ultrasonic wave that propagates through the contact surface; the other one serves as a sensor to detect the propagated waves. The wave energy propagated through the contact surface is proportional to the true contact area which is determined by the bolt preload. The time reversal method is used to extract the peak of the focused signal as the index of the transmission wave energy; then, the relationship between the signal peak and bolt preload is obtained. Experimental results show that the focused signal peak value changes with the bolt preload and presents an approximate linear relationship when the saturation problem is experienced. The proposed smart washer can monitor the full range of the rated preload.
机译:已经研究了基于压电陶瓷的主动感应方法来监视螺栓连接上的预紧力。但是,这种方法存在饱和问题。传输的能量有时会在最大预紧力之前饱和,这是由于它与平面接触。当涉及平坦的接触表面时,真正的接触面积将容易因预紧力而饱和。一种新型的螺栓松动监测传感器(一种智能垫圈)的设计旨在减轻饱和度问题。智能垫圈由两个环形盘组成,两个环形盘的接触面分别加工成凸面和凹面,以消除完整的平面接触面并降低饱和效果。一个压电贴片粘结在每个环形盘的非接触表面上。这两个配对的环形盘形成一个智能垫圈。两个压电贴片之一用作致动器,以产生传播通过接触面的超声波。另一个用作检测传播波的传感器。通过接触面传播的波能与由螺栓预紧力确定的实际接触面积成正比。时间反转法用于提取聚焦信号的峰值作为传输波能量的指标。然后,获得信号峰值与螺栓预紧力之间的关系。实验结果表明,当遇到饱和问题时,聚焦信号的峰值随螺栓的预紧力而变化,并呈现出近似的线性关系。建议的智能洗衣机可以监控额定预紧力的整个范围。

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