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温度和徐变作用下CFRP加固钢梁界面力学性能分析

Analysis of Interfacial Mechanical Properties of Steel Beams Strengthened with CFRP Sheets under Temperature and Creep.

作者信息

Zhang Ni, Gu Xuetian, Hou Wenyu

机构信息

School of Civil Engineering, Liaoning Technical University, Fuxin 123000, China.

School of Transportation Engineering, Shenyang Jianzhu University, Shenyang 110168, China.

出版信息

Polymers (Basel). 2022 Jun 12;14(12):2384. doi: 10.3390/polym14122384.

Abstract

Under the combined action of temperature and creep of CFRP (Carbon Fiber Reinforced Polymer) sheet, the interface between CFRP sheet and steel beams which are strengthened with CFRP sheet will produce relative slip. This slip will affect the interface interaction, reduce the bearing capacity and stiffness of members as well as increase the deformation. In this paper, the elastic method is used to introduce the creep effect of CFRP sheet and the temperature effect of steel beam. The calculation formulas of interface slip between CFRP sheet and steel beam, CFRP sheet tension and steel beam deformation under the combined action of temperature and CFRP creep are established. The accuracy of the analytical formula is verified by finite element analysis using the software ABAQUS. The results show that the CFRP sheet tension is smallest at the beam end while largest at the middle of the span. When the stiffness reaches about 3 ka, CFRP sheet tension basically does not change. When the temperature increases by 5 °C, the tensile force of CFRP sheet increases by about 3.7 kN, 1.8 kN and 2.3 kN, respectively. The increase of stiffness under creep has little effect on the change of CFRP sheet tension. The deformation is largest in the middle of the span while smallest at the beam end. Stiffness, temperature (5-25 °C), CFRP thickness and stiffness under creep have little effect on deformation. When the load increases by 5 kN under creep, the deformation increases by about 2.2 × 10 mm, 1.8 × 10 mm and 9.4 × 10 mm, respectively.

摘要

在碳纤维增强复合材料(CFRP)板温度和徐变的共同作用下,粘贴CFRP板加固的钢梁与CFRP板之间的界面会产生相对滑移。这种滑移会影响界面相互作用,降低构件的承载力和刚度,并增大变形。本文采用弹性方法引入CFRP板的徐变效应和钢梁的温度效应。建立了温度与CFRP徐变共同作用下CFRP板与钢梁界面滑移、CFRP板拉力及钢梁变形的计算公式。利用ABAQUS软件通过有限元分析验证了解析公式的准确性。结果表明,CFRP板拉力在梁端最小,跨中最大。当刚度达到约3ka时,CFRP板拉力基本不变。温度升高5℃时,CFRP板拉力分别增大约3.7kN、1.8kN和2.3kN。徐变作用下刚度的增加对CFRP板拉力变化影响较小。变形在跨中最大,梁端最小。刚度、温度(5 - 25℃)、CFRP厚度和徐变作用下的刚度对变形影响较小。徐变作用下荷载增加5kN时,变形分别增大约2.2×10mm、1.8×10mm和9.4×10mm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e0e/9230788/a0cc7a291bf4/polymers-14-02384-g001.jpg

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