On research of incipient gear pitting fault detection using optic fiber sensors

Yongzhi Qu, Haoliang Zhang, Liu Hong, Chongfeng Zhao, Yuegang Tan, Zude Zhou
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引用次数: 4

Abstract

Fiber Bragg grating has been widely used in structural health monitoring due to the following merits: robust to electromagnet interference, multipoint distributed measurements, easy to embed in limited space, and less wire compared with electric strain sensors. In this paper, optic fiber sensors — fiber Bragg gratings (FBGs), were studied for incipient gear pitting fault detection. Different levels of tooth surface wear were simulated and tested in the experimental test rig. The FBG sensors are bonded to the outside of the gearbox directly. It is shown that FBG can effectively reflect the gear meshing frequencies as well as the fault signatures. The diagnostic results indicate that FBG signals can effectively detect wear fault under heavy load conditions. However, the performance of FBGs can be limited by the relatively weak strain signals when the structure stiffness of the gearbox is high. Compared with vibration sensors, FBGs are less sensitive to faults under light load conditions. Vibration signals, on the other hand, are less sensitive to incipient wear fault under heavy load conditions. Therefore, under heavy load conditions, FBG strain sensors can be more suitable for incipient fault detection.
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基于光纤传感器的初齿点蚀故障检测研究
与电应变传感器相比,光纤光栅具有抗电磁干扰、多点分布测量、易于嵌入有限空间、布线少等优点,在结构健康监测中得到了广泛的应用。本文研究了光纤传感器——光纤布拉格光栅(fbg)在齿轮初端点蚀故障检测中的应用。在实验台上对不同程度的齿面磨损进行了模拟和测试。FBG传感器直接连接到变速箱的外部。结果表明,光纤光栅能有效地反映齿轮啮合频率和故障特征。诊断结果表明,光纤光栅信号能有效地检测出重载工况下的磨损故障。然而,当齿轮箱的结构刚度较高时,fbg的性能会受到相对较弱的应变信号的限制。与振动传感器相比,fbg在轻载条件下对故障的敏感性较低。另一方面,在重载条件下,振动信号对早期磨损故障的敏感性较低。因此,在重载条件下,FBG应变传感器可以更适合于早期故障检测。
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