The experimental research and numerical simulation analysis of steel structure reinforced with CFRP

Wang Jian-guo, Cao Jing
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Abstract

In experimental research, we first measure the exact thickness of the solidified carbon fiber-reinforced plastic (CFRP) with the three-coordinate measuring machine, then use Shimadzu testing machine to measure elastic modulus and shear modulus of the adhesive; We do static test on H-shaped steel girder reinforced by CFRP which has different thickness, and paste strain foil on the surface of CFRP to record the change of strain and place the displacement meter in the middle of the span to observe the deformation. Making use of the performance parameters of composite materials, we use finite element method for H-shaped steel girder reinforced by CFRP to make simulation analysis, put forward truss element simulation of bonding layer, “Shell element-Truss-Entity”of CFRP reinforced H-shaped steel girder simulation of composite component model to simulate experiments, and obtain load-deflection curve, ultimate strength and deformation of reinforced composite component. The test results agree well with numerical simulation results and the comparison of the results shows that the proposed modeling approach and the experimental program is feasible, so they will provide reference for CFRP reinforcement in steel structure in the future.
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碳纤维布加固钢结构的试验研究与数值模拟分析
在实验研究中,我们首先使用三坐标测量机测量固化碳纤维增强塑料(CFRP)的精确厚度,然后使用岛津试验机测量胶粘剂的弹性模量和剪切模量;我们对不同厚度的CFRP加固h型钢梁进行静力试验,在CFRP表面粘贴应变箔记录应变变化,并在跨度中间放置位移仪观察变形情况。利用复合材料的性能参数,采用有限元法对碳纤维增强h型钢梁进行了仿真分析,提出了粘结层桁架单元仿真,碳纤维增强h型钢梁复合构件仿真模型“壳单元-桁架-实体”进行了模拟实验,得到了增强复合构件的荷载-挠度曲线、极限强度和变形。试验结果与数值模拟结果吻合较好,结果对比表明所提出的建模方法和试验方案是可行的,为今后钢结构CFRP加固提供参考。
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