Soleilhet François, Quiertant Marc, Benzarti Karim
EDF Lab Les Renardières, F-77250 Moret-Loing-et-Orvanne, France.
Matériaux et Structures (MAST) Department, Expérimentation et Modélisation pour le Génie Civil et Urbain (EMGCU), University Gustave Eiffel, F-77447 Marne-la-Vallé, France.
Materials (Basel). 2023 Jan 13;16(2):801. doi: 10.3390/ma16020801.
This paper presents a numerical investigation of the shear creep behavior of the adhesive joint in concrete structures strengthened by externally bonded fibre-reinforced polymers (FRP) composites. Based on experimental data collected in a previous study, creep constitutive equations were developed for the adhesive layer and implemented into a finite element code. The proposed model extends the classical one-dimensional formulation of Burgers creep model to a fully 3D model and introduces the nonlinearity of the model parameters. This numerical approach was first used to simulate the nonlinear creep behavior of bulk epoxy samples; it was then extended to predict the nonlinear creep response of the FRP-concrete interface in double lap shear specimens. Globally, a fair agreement was obtained between numerical results and experimental evidences. As a main result, it was found that creep induces a redistribution of the interfacial shear stress along the FRP-concrete lap joint, leading both to a stress relaxation near the loaded end of the adhesive joint and to an increase in the effective transfer length.
本文对外部粘贴纤维增强聚合物(FRP)复合材料加固的混凝土结构中粘结接头的剪切徐变行为进行了数值研究。基于先前研究中收集的实验数据,开发了粘结层的徐变本构方程,并将其应用于有限元程序中。所提出的模型将经典的一维伯格斯蠕变模型公式扩展为全三维模型,并引入了模型参数的非线性。这种数值方法首先用于模拟块状环氧树脂样品的非线性蠕变行为;然后将其扩展以预测双搭接剪切试件中FRP-混凝土界面的非线性蠕变响应。总体而言,数值结果与实验证据之间取得了较好的一致性。主要结果表明,徐变会导致界面剪应力沿FRP-混凝土搭接接头重新分布,从而导致粘结接头加载端附近的应力松弛以及有效传递长度增加。