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首页> 外文期刊>Journal of Nondestructive Evaluation >A Novel Nonlinear Acoustic Health Monitoring Approach for Detecting Loose Bolts
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A Novel Nonlinear Acoustic Health Monitoring Approach for Detecting Loose Bolts

机译:一种用于检测松动螺栓的新型非线性声学健康监测方法

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摘要

To date, sensors have been the inevitable component of structural health monitoring (SHM) systems. Typically, sensory signals are digitized, processed by computers, and then the information is presented to the operator with plots or warnings depending on the sophistication of the system. This study proposes a novel nonlinear acoustic health monitoring (NAHM) approach for detection of loose bolts, which can work with and without any sensors. The structure is excited with bitonal excitations, which their difference is in the audible range. When the bolts are well tightened, the structure remains silent. But, the structure creates audible sound or verbal warnings in the presence of one or more loose bolts. There is no need for sensor(s), A/D converters or computers between the operator and the structure. However, it is also possible to attach a piezoelectric sensor or to use a microphone/sound level meter for further analysis of the structure's response. The feasibility of the concept was demonstrated by detecting the loose bolt in a bolted plate system. For demonstrating the industrial potential of the proposed NAHM system, the concept was implemented for two simple washers held with nuts and bolts. Additionally, the intensities of the audible alarms were studied at different torque levels. The proposed NAHM may be used as a low-cost sensor-free SHM or as a backup for conventional nonlinear SHM systems.
机译:迄今为止,传感器是结构健康监测(SHM)系统的必然组成部分。通常,由计算机处理的感觉信号被数字化,然后根据系统的复杂性地将信息呈现给运营商或警告。本研究提出了一种用于检测松动螺栓的新型非线性声学健康监测(NAHM)方法,其可以与任何传感器一起使用。这种结构令人振奋,以沥青刺激,它们的差异在可听范围内。当螺栓拧紧时,该结构保持沉默。但是,结构在存在一个或多个松动螺栓的情况下创造了可听声音或口头警告。不需要传感器,A / D转换器或操作员和结构之间的计算机。然而,还可以连接压电传感器或使用麦克风/声级仪表以进一步分析结构的响应。通过检测螺栓板系统中的松动螺栓来证明该概念的可行性。为了展示所提出的NaHM系统的工业潜力,该概念是为两个用螺母和螺栓固定的简单垫圈实施的概念。另外,在不同的扭矩水平上研究了可听警报的强度。所提出的NaHM可以用作无成本的无传感器SHM或作为常规非线性SHM系统的备用。

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