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光纤法测量冷弯中空玻璃板应力分布试验研究

617    2023-01-05

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作者:徐自林1, 张二毛2, 张喜德1,3, 江佳霖1

作者单位:1. 广西大学土木建筑工程学院,广西 南宁 530004;
2. 南宁高速公路建设发展有限公司, 广西 南宁 530023;
3. 工程防灾与结构安全教育部重点实验室,广西 南宁 530004


关键词:分布式光纤;中空玻璃;冷弯;应力分布


摘要:

为研究冷弯中空玻璃板的应力分布,对中空玻璃板进行单向冷弯试验,采用分布式光纤测量玻璃板长边边缘处的应力,考虑不同玻璃厚度、空腔厚度和冷弯半径对应力分布的影响,并在玻璃板上布设电阻应变片进行应力测量对比。试验结果表明,分布式光纤能够较准确地测量冷弯中空玻璃板的应力分布,其与应变片所测应力的相对误差平均值为4.74%,在应力测量精度上能较好地满足试验要求,而且可以得到更完善的实验数据,采用该方法测量冷弯中空玻璃板的应力分布更为方便和实用;冷弯半径对冷弯应力的影响远大于玻璃厚度和空腔厚度,后两者对冷弯应力的影响很小。


Experimental study on measuring stress distribution of cold bending insulating glass plates by optical fiber method
XU Zilin1, ZHANG Ermao2, ZHANG Xide1,3, JIANG Jialin1
1. School of Civil Engineering and Architecture, Guangxi University, Nanning 530004, China;
2. Nanning Expressway Construction Development Co., Ltd., Nanning 530023, China;
3. Key Laboratory of Disaster Prevention and Structural Safety of Ministry of Education, Nanning 530004, China
Abstract: In order to study the stress distribution of cold bending insulating glass plates, a single-curved cold bending test was carried out on the insulating glass plates. A distributed optical fiber was used to measure the stress at the edge of the long side of the glass plates. The influence of different glass thickness, cavity thickness and cold bending radius on the stress distribution was considered, and the resistance strain gauges were arranged on the glass plates for stress measurement and comparison. The test results show that the distributed optical fiber can accurately measure the stress distribution of cold bending insulating glass plates, and the average relative error between it and the stress measured by the strain gauge is 4.74%, which can better meet the test requirements in terms of stress measurement accuracy. In addition, more perfect experimental data can be obtained, and it is more convenient and practical to use this method to measure the stress distribution of the cold bending insulating glass plates. The influence of the cold bending radius on the cold bending stress is much greater than that of the glass thickness and cavity thickness, and the latter two have little effect on cold bending stress.
Keywords: distributed optical fiber;insulating glass;cold bending;stress distribution
2022, 48(12):29-34  收稿日期: 2022-05-20;收到修改稿日期: 2022-08-16
基金项目: 国家自然科学基金面上项目(52178123);广西自然科学基金面上项目(2018GXNSFAA138204)
作者简介: 徐自林(1998-),男,广西贵港市人,硕士研究生,专业方向为玻璃幕墙方面的研究
参考文献
[1] VÁKÁR L I, GAAL M. Cold bendable, laminated glass–new possibilities in design[J]. Structural Engineering International, 2004, 14(2): 95-97
[2] QUAGLINI V, CATTANEO S, PETTORRUSO C, et al. Cold bending of vertical glass plates: Wind loads and geometrical instabilities[J]. Engineering Structures, 2020, 220: 110983
[3] 张喜德, 蒙芷萩, 应敬伟. 中空玻璃密封间隔材料剪切模量测试方法[J/OL]. 中国测试: 1-5[2022-01-11]. http://kns.cnki.net/kcms/detail/51.1714.TB.20211130.1107.009.html.
[4] BESSERUD K, BERGERS M, BLACK A J, et al. Durability of cold-bent insulating-glass units[J]. Journal of ASTM International, 2012, 9(3): 1-26
[5] PÖLZL F. Mechanical behavior of cold-bent insulating glass units[D]. Graz: Graz University of Technology, 2017.
[6] ZHANG X D, LIANG J Z, HUANG D. Study on the mechanical response of anticlastic cold bending insulating glass and its coupling effect with uniform load[J]. PLoS ONE, 2021, 16(4): e0250463
[7] 王洋. 基于光纤传感的管道和容器压力测量方法研究[J]. 中国测试, 2022, 48(2): 41-48
[8] ZHANG D Q, HE J P, XUE Y, et al. Investigation of settlement monitoring method based on distributed Brillouin fiber optical sensor[J]. Measurement, 2019, 134: 118-122
[9] 冯其瑞, 王彦鹏, 王怀锋. 分布式传感技术在高强筋活性粉末混凝土裂缝监测中的应用研究[J]. 传感技术学报, 2021, 34(4): 562-568
[10] 张峰, 裴华富. 一种用于滑坡位移监测的OFDR测斜仪研发[J/OL]. 中国测试: 1-8[2022-04-13]. http://kns.cnki.net/kcms/detail/51.1714.TB.20211130.1845.021.html.
[11] FILDHUTH T, KNIPPERS J. Dehnungsmessung in gekrümmten glaslaminaten mit faseroptischen sensoren[J]. Stahlbau, 2014, 83(S1): 289-300
[12] 闫继送, 袁明, 张志辉, 等. 基于拉伸装置的光纤应变系数标定及误差分析[J]. 光电工程, 2014, 41(1): 23-28