用 EB-CFRP 复合材料加固的 RC T 型梁在弯曲和剪切效应下的行为数值模拟

IF 1.7 Q2 ENGINEERING, MULTIDISCIPLINARY Journal of Engineering Pub Date : 2024-07-01 DOI:10.31026/j.eng.2024.07.04
Hasan Ehssan Alobaidi, A. H. Al-Zuhairi
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引用次数: 0

摘要

本文介绍了使用 ABAQUS/CAE 2019 版进行数值模拟的结果。研究旨在评估使用外部粘接碳纤维增强聚合物复合材料(EB)(CFRP)加固的钢筋混凝土(RC)T 型梁的结构完整性,尤其是其对弯曲力和剪切力的响应。通过比较八根 RC T 型梁的数值结果和实验结果,验证了该数值模型。然后对数值分析进行了扩展,纳入了各种因素,包括 U-CFRP 外壳的倾斜角度对剪切强度的影响。这一数值扩展的目标是建立一个能够准确模拟这些梁的非线性行为的数值模型。此外,还对实验模型和计算模型进行了对比分析,重点关注破坏模式及其荷载引起的变形特征。结果表明双方的一致性令人满意。数值模型模拟和实验梁测试的极限荷载与挠度的平均比值分别为 1.004 和 1.046。主要发现是,在保持 CFRP 面板间距不变的情况下,以 45° 角变形的倾斜 U-CFRP 比以 90° 角嵌入垂直 CFRP 面板的梁具有更大的剪切刚度。
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Numerical Simulation of the Behaviour of RC T-Beams Strengthened by EB-CFRP Composites Under Bending and Shear Effects
This article presents the results of numerical simulations performed using ABAQUS/CAE version 2019. The study aims to evaluate the structural integrity of reinforced concrete (RC) T-beams strengthened with externally bonded carbon fiber reinforcements polymer composite materials (EB) (CFRP), especially their response to bending and shear forces. The numerical model was validated by comparing the numerical and experimental results of eight RC T-beams. The numerical analysis was then extended to include various factors, including the impact of the tilt angle of the U-CFRP shell on the shear strength. The goal of this numerical extension is to implement a numerical model capable of simulating the nonlinear behavior of these beams accurately. A comparative analysis is also performed on the experimental and computational models, focusing on the damage modes and their load-induced deformation characteristics. The results showed a satisfactory level of agreement between the two sides. The average ratio of ultimate load to deflection in the numerical model simulation and experimental beam test is 1.004 and 1.046, respectively. The main finding is that inclined U-CFRP deformed at a 45° angle exhibits greater shear stiffness than beams embedded with vertical CFRP panels at a 90° angle, maintaining a constant  CFRP panel spacing.
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来源期刊
Journal of Engineering
Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
0.00%
发文量
68
期刊介绍: Journal of Engineering is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in several areas of engineering. The subject areas covered by the journal are: - Chemical Engineering - Civil Engineering - Computer Engineering - Electrical Engineering - Industrial Engineering - Mechanical Engineering
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