拱桥圆钢吊杆拉力监测的磁弹传感技术研究
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TP212. 13 TH823

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广西科学院高端装备制造创新团队启动经费项目(CQD2412)资助


Study on magneto-elastic tensile monitoring of round steel suspender in arch bridge
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    摘要:

    磁弹传感技术在柔性钢缆索的拉力测量中体现出诸多优势,但在面对刚性的实心圆钢吊杆时,却面临励磁线圈难以充 分磁化圆钢吊杆的难题。 针对圆钢吊杆的结构与力学特性,通过建模与仿真,对圆钢吊杆的磁化过程进行了深入分析,并优化 设计励磁线圈,对直径 Φ85 mm/ Φ120 mm 的常规/ 超大直径圆钢吊杆研制了传感器样件,进行了静载加载实验,并与常规的振 弦应变计对比。 试验结果表明,优化的励磁线圈能够充分磁化 Φ85 mm 的圆钢吊杆;且传感器测量结果的线性度与重复性好, 满量程误差均值小于 2% (均值- 0. 15% ),明显优于振弦应变计结果(均值- 1. 95% ),满足拉力监测的应用需求;但是对于 Φ120 mm 的超大直径圆钢吊杆,则需进一步优化励磁线圈,以获得更好的效果。

    Abstract:

    Elasto-magnetic(EM) tension sensing technology has many advantages in the tensile monitoring of flexible cable. However, the problem excites that the component under test cannot be fully magnetized by the excitation coils when this method is used to the solid round steel suspender. Herein, we analyze the magnetization process of the round steel hanger, according to its structure and mechanical characteristics. Then, the excitation coils of the sensors are optimized by modeling and simulation. Two kinds of sensors are developed for the conventional round steel suspender with a diameter of Φ85 mm, and a larger one with a diameter of Φ120 mm. The performance of two sensors are tested thought the static loading experiments. And the conventional strain gauges are used for comparation. Experimental results show that the optimized excitation coil can fully magnetize the Φ85 mm round steel suspender. The full-scale error of EM-sensors is less than 2% (average value -0. 15% ), which is significantly better than the result of the strain gauge (average value -1. 95% ). Experimental results demonstrate the superiors of EM sensors in linearity and repeatability, which meets requirements of the tension measurement of the conventional diameter solid round steel. The excitation coil for Φ120 mm round steel suspender should be further optimized for the guarantee of the accuracy and robustness of the sensor.

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王晓琳,朱茂华,章 鹏,杨圣洁,陈伟民.拱桥圆钢吊杆拉力监测的磁弹传感技术研究[J].仪器仪表学报,2022,43(9):140-148

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  • 在线发布日期: 2023-02-06
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