Study on Flexural Behavior of Corroded I-Shaped Steel Beams Strengthened with Hybrid CFRP/GFRP Sheets

Author:

Han Yiming1,Li Nan12,Zhang Guangxi3

Affiliation:

1. College of Resources, Shandong University of Science and Technology, Tai’an 271019, China

2. Shandong Geotechnical Engineering Big Data Intelligent Analysis Technology Characteristic Laboratory, Tai’an 271019, China

3. School of Architectural and Engineering, Weifang University of Science and Technology, Shouguang 262700, China

Abstract

How to effectively reinforce steel structures with rust and damage is an important research topic in the engineering field. This article takes the rusted I-beam as the research object and analyzes the effects of different CFRP/GFRP reinforcement methods on the bending performance of rusted I-beams through experimental research with a total of 1 unreinforced beam and 7 CFRP/GFRP-reinforced beams. The results show that when the number of CFRP/GFRP-reinforced layers is the same, replacing some of the CFRP with GFRP and using different interlayer mixed laying sequences have little effect on the bending bearing capacity of rusted I-beams. The number of CFRP/GFRP-reinforced layers is the key factor affecting the bending bearing capacity. At the same time, numerical simulation was conducted using finite element software to study the stress distribution and stress development law of the reinforced beam, and the numerical simulation results were consistent with the experimental results.

Funder

provincial key research projects in educational science of The Shandong Institute of Youth Education Sciences

Science and Technology Development Program on Housing and urban-rural construction in Shandong Province

Taian science and technology Plan

Publisher

MDPI AG

Subject

General Materials Science

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