辽宁工程技术大学土木工程学院,辽宁 阜新 123000
殷志祥(1962-),男,教授,博士生导师。主要从事大跨度空间结构方面的研究。Email:lntuyzx@163.com
宁志扬(1992-),男,硕士研究生。主要从事大跨度空间结构方面的研究。Email:870648529@qq.com
收稿:2018-03-12,
修回:2018-07-02,
纸质出版:2020-10-15
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殷志祥,宁志扬.基于磁通量法的空间网架结构无损应力检测的试验方法研究[J].防灾减灾工程学报,2020,40(05):803-810.
YIN Zhixiang,NING Zhiyang.Study on the Test Method of Nondestructive Stress Test of Space Truss Structure by Magnetic Flux Method[J].Journal of Disaster Prevention and Mitigation Engineering,2020,40(05):803-810.
殷志祥,宁志扬.基于磁通量法的空间网架结构无损应力检测的试验方法研究[J].防灾减灾工程学报,2020,40(05):803-810. DOI: 10.13409/j.cnki.jdpme.2020.05.016.
YIN Zhixiang,NING Zhiyang.Study on the Test Method of Nondestructive Stress Test of Space Truss Structure by Magnetic Flux Method[J].Journal of Disaster Prevention and Mitigation Engineering,2020,40(05):803-810. DOI: 10.13409/j.cnki.jdpme.2020.05.016.
测试在役空间网架结构的轴力或应力是网架结构健康检测的核心内容之一,探究一种实用无损的应力检测方式对在役空间网架结构的健康状况进行合理的评估成为当前工程亟待解决的问题。磁通量法在桥梁索力检测的应用比较成熟,但没有应用于空间结构的杆件应力测试方面主要是由于网架结构杆件在长度、受力性质及约束的影响而使其杆件轴力的测试尚处于研究阶段。据此采用磁通量法对网架结构杆件轴力进行了试验研究。选取了可能影响轴力测试结果的感应线圈绕线匝数、激励线圈绕线匝数、激励电压、荷载工况四个因素开展了一系列的试验研究。结果表明:传感器的绕线匝数、激励电压都会直接影响到电磁感应响度的大小,实际工程中必须选择合适的绕线匝数和激励电压。磁通量传感器在套入杆件后对不同的荷载工况表现出了良好的敏感性,将其运用于杆件的轴力检测是可行的。
Measuring the axial force or stress of the long-span truss structure is one of the core contents of the health monitoring of the truss structure. Exploring a non-destructive health monitoring method to assess the health of the truss structure in a reasonable assessment of the current project is to be solved. The application of magnetic flux method in bridge cable force monitoring is relatively mature, but it is still in the research stage when it is applied to obtain bar axial force of truss structures. Because of the obvious differences in the length, material properties, mechanical properties and constraints of the lattice structure, it is necessary to carry out further experimental studies on the factors that may affect the test results to determine whether it is feasible. In this paper, the magnetic flux method is used to study the bar axial force of the truss structure. A series of experimental studies were carried out on four factors: the winding turns of the induction coil, the winding turns of the excitation coil, the excitation voltage and the load case, which could affect the test results. The results show that the winding number and the excitation voltage of the sensor will directly affect the loudness of the electromagnetic induction, and the number of turns and the excitation voltage must be selected in a certain engineering project. The magnetic flux sensor exhibits good sensitivity to the different load conditions after the bar is inserted, and it is feasible to apply it to axial force measurement of the bar.
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