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Computational material modeling of masonry walls strengthened with fiber reinforced polymers

机译:纤维增强聚合物加固的砌体墙的计算材料建模

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摘要

This paper aims to develop a practical approach to modeling of fiber reinforced polymers (FRP) strengthened masonry panels. The main objective is to provide suitable relations for the material characterization of the masonry constituents so that the finite element applications of elasto-plastic theory achieves a close fit to the experimental load-displacement diagrams of the walls subjected to in-plane shear and compression. Two relations proposed for masonry columns confined with FRP are adjusted for the cohesion and the internal friction angle of both units and mortar. Relating the mechanical parameters to the uniaxial compression strength and the hydrostatic pressure acting over the wall surface, the effects of major and intermediate principal stresses σ_1 and σ_2 on the yielding and the shape of the deviatoric section are then reflected into the analyses. Performing nonlinear finite element analyses (NLFEA) for the three walls tested in two different studies, their stress-strain response and failure modes are eventually evaluated through the comparisons with the experimental behavior.
机译:本文旨在开发一种实用的方法来对纤维增强聚合物(FRP)增强的砖石面板进行建模。主要目的是为砌体成分的材料表征提供合适的关系,以使弹塑性理论的有限元应用实现与平面内受剪和压缩的壁的实验荷载-位移图的紧密拟合。针对单元和砂浆的内聚力和内摩擦角,对建议用FRP限制的砖石柱的两个关系进行了调整。将机械参数与作用在壁面上的单轴抗压强度和静水压力联系起来,然后将主,中间主应力σ_1和σ_2对变形截面的屈服和形状的影响反映出来。通过在两个不同研究中对三个墙体进行非线性有限元分析(NLFEA),最终通过与实验行为的比较来评估它们的应力应变响应和破坏模式。

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