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Numerical modelling and parametric analysis of bond strength of masonry members retrofitted with FRP

机译:FRP加固砌体构件粘结强度的数值模拟与参数分析

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摘要

The paper discusses the bond between fibre-reinforced polymer (FRP) strips and brick masonry, using advanced non-linear simulations of experimental test results. The context of the research is the study of the interfacial behaviour of a brittle substrate (masonry) and a thin elastic addition (the FRP) used as a strengthening system for historical structures. Moreover, to further validate the numerical results, the problem is also approached analytically. In the numerical model, the interface is represented with zero-thickness finite elements, with inelastic behaviour fully formulated using the incremental plasticity theory. The mechanical characterization of the materials involved and the local interfacial behaviour allowed defining the main parameters and the constitutive law to be adopted. Based on the experimental results, the detailed finite element model is calibrated so that it is possible to describe the bond phenomenon at the local level up to failure, identifying the strain and slip distribution, the local bond stress peak and its migration along the bond length for flat and curved layers. Numerical results and analytical predictions show a good agreement with experimental data, allowing to provide a comprehensive discussion on the bond behaviour. Moreover some differences between interfacial behavior of FRP-masonry/con-crete joints are highlighted. Finally applications of the model to analyze strengthened structural components (such as masonry arches) are provided.
机译:本文使用实验测试结果的高级非线性模拟,讨论了纤维增强聚合物(FRP)条与砖石之间的粘结。研究的背景是对脆性基底(砖石)和薄弹性添加物(FRP)的界面行为进行研究,以作为历史结构的加固系统。此外,为了进一步验证数值结果,还通过分析来解决该问题。在数值模型中,界面用零厚度的有限元表示,并使用增量可塑性理论充分阐述了无弹性行为。所涉及材料的机械表征和局部界面行为允许定义主要参数和本构律。根据实验结果,对详细的有限元模型进行了校准,从而可以描述直至破坏的局部水平的粘结现象,识别应变和滑移分布,局部粘结应力峰值及其沿粘结长度的迁移用于平坦和弯曲的图层。数值结果和分析预测表明与实验数据吻合良好,从而可以对键的行为进行全面的讨论。此外,突出了玻璃钢/混凝土接头的界面行为之间的一些差异。最后,提供了该模型在分析加固结构构件(例如砌体拱)中的应用。

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