Key Laboratory of Metallurgical Equipment and Control Technology, Ministry of Education, Wuhan University of Science and Technology, Wuhan 430081, China.
Hubei Key Laboratory of Mechanical Transmission and Manufacturing Engineering, Wuhan University of Science and Technology, Wuhan 430081, China.
Sensors (Basel). 2018 Jun 11;18(6):1899. doi: 10.3390/s18061899.
This paper presents a fiber Bragg grating (FBG) displacement sensor with high abrasion resistance for displacement monitoring of a steel spring floating slab damping track. A wedge-shaped sliding block and an equal-strength beam form a conversion mechanism to transfer displacement to the deflection of the beam, and the deflection-induced strain is exerted on two FBGs. A special linear guide rail-slider and a precision rolling bearing have been adopted onto the conversion mechanism, which turned sliding friction into rolling friction and thus significantly reduced the friction during frequent alternating displacement measuring. Sensing principle and the corresponding theoretical derivation have been demonstrated. Experiment results show that the sensor has a sensitivity of 34.32 pm/mm and a high resolution of 0.0029 mm within a measurement range of 090 mm. Besides, the sensor has also a good measurement capability for micro-displacement within a range of 03 mm. The repeatability error and hysteresis error are 1.416% and 0.323%, respectively. Good creep resistance and high abrasion resistance for alternating displacement measurement have also been presented by a performance test. These excellent performances satisfy the requirements of high precision and long-term stability in structural health monitoring for machinery equipment and civil engineering, especially in the displacement monitoring of a floating slab damping track.
本文提出了一种具有高耐磨性的光纤布拉格光栅(FBG)位移传感器,用于监测钢弹簧浮置板阻尼轨道的位移。楔形滑块和等强度梁形成一个转换机构,将位移转换为梁的挠度,而挠度引起的应变作用于两个 FBG 上。转换机构采用了特殊的线性导轨-滑块和精密滚动轴承,将滑动摩擦转化为滚动摩擦,从而显著减少了频繁交替位移测量过程中的摩擦力。本文展示了传感原理和相应的理论推导。实验结果表明,该传感器在 090mm 的测量范围内具有 34.32pm/mm 的灵敏度和 0.0029mm 的高分辨率。此外,该传感器在 03mm 的微位移范围内也具有良好的测量能力。重复性误差和滞后误差分别为 1.416%和 0.323%。通过性能测试还展示了该传感器对交替位移测量的良好抗蠕变性和高耐磨性。这些优异的性能满足了机械设备和土木工程结构健康监测对高精度和长期稳定性的要求,特别是在浮置板阻尼轨道的位移监测中。