光纤光栅传感器在线监测齿轮传动系统的可行性研究

Shenghao Shi, Yongzhi Qu, Jinglin Wang, Liu Hong, J. Dhupia, Zude Zhou
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引用次数: 2

摘要

变速箱是传动系统中最常见和最重要的部件之一。因此,在线监测齿轮传动系统的动态行为对传动系统的优化、诊断和预测具有重要意义。传统的齿轮箱在线监测系统是采用安装在齿轮箱上的振动传感器。然而,在被测壳体振动信号中,被监测齿轮副的动态响应通常是扭曲的,这是由于振动的复杂传递路径造成的。因此,为了推进齿轮箱的在线监测技术,本工作提出采用光纤布拉格光栅作为应变传感器安装在齿轮啮合区域附近。在实验室定轴直齿齿轮箱中对基于光纤布拉格光栅的在线监测系统的可行性进行了实验评估。为了验证和分析光纤光栅系统的测量结果,采用有限元法建立了齿轮网格模型。实测结果与理论仿真结果的对比表明,基于光纤布拉格光栅的在线监测系统能够捕捉到齿轮啮合过程中根应变的变化。这一结果证明了该技术在开发商业在线监测系统以测量齿轮箱的细微动态行为方面具有很大的潜力。
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Feasibility Study of Online Monitoring Using the Fiber Bragg Grating Sensor for Geared System
The gearbox is one of the most common and important components in the drivetrains. Thus, the online monitoring of the dynamic behavior of geared system is crucial for the optimization, diagnosis and prognosis of the drivetrains. The conventional online monitoring system for gearboxes is to use the vibration sensor mounted on the gear housing. However, in the measured housing vibration signal, the dynamic response of the monitored geared pair is usually distorted, which is caused by the complex transfer path of the vibration. Therefore, to advance the art of online monitoring of gearboxes, this work proposes to employ the fiber Bragg grating as the strain sensor to mount near the gear mesh region. The experimental assessment of the feasibility of the fiber Bragg grating based online monitoring system is conducted in a laboratory fixed-axis spur gearbox. To validate and analyze the measurement from the fiber Bragg grating system, a gear mesh model is developed using the finite element method. The comparison between the measurement and theoretical simulation show the proposed fiber Bragg grating based online monitoring system is capable to capture the variation of the root strain during the gear mesh process. This result proves the proposed technique has a promising potential in developing a commercial online monitoring system to measure the subtle dynamic behavior of gearboxes.
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