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Simple Homogenized Model for the Nonlinear Analysis of FRP-Strengthened Masonry Structures. II: Structural Applications

机译:FRP加固砌体结构非线性分析的简单均质模型。二:结构应用

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摘要

The homogenized masonry nonlinear stress-strain curves obtained through the simple micromechanical model developed in the first part of the paper are here used for the analysis of strengthened masonry walls under various loading conditions. In particular, a deep beam and a shear wall strengthened with fiber-reinforced polymer (FRP) strips are analyzed for masonry loaded in-plane. Additionally, single and double curvature masonry structures strengthened in various ways, namely a circular arch with buttresses and a ribbed cross vault, are considered. For all the examples presented, both the nonstrengthened and FRPestrengthened cases are discussed. Additional nonlinear finite-element analyses are performed, modeling masonry through an equivalent macroscopic material with softening to assess the present model predictions. Detailed comparisons between the experimental data, where available, and numerical results are also presented. The examples show the efficiency of the homogenized technique with respect to (1) accuracy of the results; (2) low number of finite elements required; and (3) independence of the mesh at a structural level from the actual texture of masonry.
机译:通过本文第一部分中开发的简单微机械模型获得的均质砖石非线性应力-应变曲线用于分析各种荷载条件下的砌体墙。特别是,分析了用纤维增强聚合物(FRP)条加固的深梁和剪力墙的砌体面承载力。另外,考虑了以各种方式加强的单曲率和双曲率砖石结构,即带有拱顶的圆拱和带肋的十字拱顶。对于给出的所有示例,都讨论了未加强和FRPestrengthened的情况。进行附加的非线性有限元分析,通过等效的宏观材料对砖石进行建模并进行软化处理,以评估当前的模型预测。还提供了实验数据(如果有)和数值结果之间的详细比较。实例显示了均质化技术相对于(1)结果准确性的效率; (2)所需的有限元数量少; (3)网格在结构水平上与实际砖石结构的独立性。

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