基于光纤光栅的紧凑型高频振动传感器的设计与应用
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TN253 TH825

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国家自然科学基金(51874064)项目资助


Design and application of compact high-frequency vibration sensor based on fiber Bragg grating
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    摘要:

    设计了一种六边形的紧凑型光纤光栅振动传感器,其结构包括弹性体、质量块、光纤光栅和外壳。 首先对六边形弹性体 结构进行理论分析和仿真,通过设计发夹弯结构改变灵敏度和频率测量范围,使设计的光纤光栅振动传感器能够满足不同机械 设备的振动监测需求。 在激振台上测试了传感器的性能,并在真空泵振动监测中应用。 实验结果表明,设计的光纤光栅振动传 感器具有良好的响应,普通六边形弹性体结构传感器的 1 阶固有频率高达 1 481 Hz,在 100 Hz 振动时的灵敏度为 4. 93 pm/ g;含 发夹弯的六边形弹性体结构传感器的 1 阶固有频率为 185 Hz,在 100 Hz 振动时的灵敏度为 105. 73 pm/ g,两种传感器的横向干 扰均小于 5% ,具有很好的抗横向干扰能力。

    Abstract:

    A vibration sensor based on hexagonal and compact fiber Bragg grating is designed, which consists of elastomer, mass block, fiber Bragg grating (FBG) and shell. Firstly, the hexagonal elastomer structure is analyzed and simulated theoretically. The measurement ranges of sensitivity and frequency are changed by designing hairpin turns structure, so that the designed FBG sensor can meet the vibration monitoring requirements of different mechanical equipment. The performance of sensor is tested with the vibration exciter and the application in vacuum pump vibration monitoring is also demonstrated. The experimental results show that the designed FBG vibration sensor possesses good responses. The first-order natural frequency of conventional hexagonal elastomer FBG sensor is as high as 1 481 Hz, and the sensitivity is 4. 93 pm/ g at the vibration frequency of 100 Hz. For comparison, the first-order natural frequency of hexagonal elastomer FBG sensor with hairpin turns structure is only 185 Hz, and the sensitivity is 105. 73 pm/ g when the vibration frequency is 100 Hz. The transverse interference of both sensors is less than 5% , which possesses a good ability to resist lateral interference.

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蒋宇飞,陶传义,李梦影,王靖霆,陈 悦.基于光纤光栅的紧凑型高频振动传感器的设计与应用[J].仪器仪表学报,2023,44(12):252-260

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  • 在线发布日期: 2024-02-27
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