Deng Nianchun, Zhang Haitang, Ning Feng, Tang Zhiyu
College of Civil Engineering and Architecture, Guangxi University, Nanning 530004, China.
Key Laboratory of Disaster Prevention and Structural Safety of Ministry of Education, Guangxi University, Nanning 530004, China.
Sensors (Basel). 2023 Dec 6;23(24):9648. doi: 10.3390/s23249648.
As an important component connecting the upper and lower structures of a bridge, bridge bearings can reliably transfer vertical and horizontal loads to a foundation. Bearing capacity needs to be monitored during construction and maintenance. To create an intelligent pot bearing, a portable small spot welding machine is used to weld pipe-type welding strain gauges to the pot bearing to measure strain and force values. The research contents of this paper include the finite element analysis of a basin bearing, optimal arrangement of welding strain gauges, calibration testing, and temperature compensation testing of the intelligent basin bearing of the welding strain gauges. Polynomial fitting is used for the fitting and analysis of test data. The results indicate that the developed intelligent pot bearing has a high-precision force measurement function and that after temperature compensation, the measurement error is within 1.8%. The intelligent pot bearing has a low production cost, and the pipe-type welding strain gauges can be conveniently replaced. The novelty is that the bearing adopts a robust pipe-type welding strain gauge and that automatic temperature compensation is used. Therefore, the research results have excellent engineering application value.
作为连接桥梁上下部结构的重要部件,桥梁支座能够将垂直和水平荷载可靠地传递至基础。在施工和维护期间需要对承载能力进行监测。为制作智能盆式支座,使用便携式小型点焊机将管式焊接应变片焊接到盆式支座上,以测量应变和力值。本文的研究内容包括盆式支座的有限元分析、焊接应变片的优化布置、标定测试以及智能盆式支座焊接应变片的温度补偿测试。采用多项式拟合对测试数据进行拟合和分析。结果表明,所研制的智能盆式支座具有高精度测力功能,温度补偿后测量误差在1.8%以内。该智能盆式支座生产成本低,管式焊接应变片可方便更换。其新颖之处在于支座采用了坚固的管式焊接应变片并采用了自动温度补偿。因此,研究成果具有优异的工程应用价值。