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Kinematic FE limit analysis homogenization model for masonry walls reinforced with continuous FRP grids

机译:连续FRP格栅加固砌体墙的运动极限分析均质模型。

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摘要

A homogenization model for periodic masonry structures reinforced with continuous FRP grids is presented.\udStarting from the observation that a continuous grid preserves the periodicity of the internal masonry layer, rigid-plastic homogenization is applied directly on a multi-layer heterogeneous representative element of volume (REV) constituted by bricks, finite thickness mortar joints and external FRP grids. In particular, reinforced masonry homogenized failure surfaces are obtained by means of a compatible identification procedure, where each brick is supposed interacting with its six neighbors by means of finite thickness mortar joints and the FRP grid is applied on the external surfaces of the REV. In the framework of the kinematic theorem of limit analysis, a simple constrained minimization problem is obtained on the unit cell, suitable to estimate – with a very limited computational effort – reinforced masonry homogenized failure surfaces.\udA FE strategy is adopted at a cell level, modeling joints and bricks with six-noded wedge shaped elements and the FRP grid through rigid infinitely resistant truss elements connected node by node with bricks and mortar. A possible jump of velocities is assumed at the interfaces between contiguous wedge and truss elements, where plastic dissipation occurs. For mortar and bricks interfaces, a frictional behavior with possible limited tensile and compressive strength is assumed, whereas for FRP bars some formulas available in the literature are adopted to reproduce the delamination of the truss from the support.\udTwo meaningful structural examples are considered to show the capabilities of the procedure proposed, namely a reinforced masonry deep beam (0/90 continuous reinforcement) and a masonry beam in simple flexion for which experimental data are available. Good agreement is found between present model and alternative numerical approaches.
机译:提出了一种采用连续FRP网格加固的周期性砖石结构的均质模型。\ ud从观察到连续网格保留内部砌体层的周期性开始,将刚塑性均质化直接应用于体积的多层异质代表元素(REV)由砖,有限厚度的砂浆缝和外部FRP网格组成。特别是,通过兼容的识别程序获得增强的砖石结构均质破坏面,其中假定每块砖都通过有限厚度的灰浆接缝与其六个邻域相互作用,并且将FRP网格应用于REV的外表面。在极限分析运动定理的框架内,在单位单元上获得了一个简单的约束最小化问题,适用于以非常有限的计算量来估计增强的砌体均质破坏面。\ udA FE策略在单元级采用,用六节点楔形元素和FRP网格通过刚性无限抗性的桁架元素对节点和砖块进行建模,节点之间用砖块和砂浆连接。假定在可能发生塑性耗散的连续楔形单元和桁架单元之间的界面处,速度可能会发生跳跃。对于砂浆和砖的界面,假定具有可能有限的拉伸和压缩强度的摩擦性能,而对于FRP筋,则采用文献中可用的一些公式来再现桁架与支撑件的分层。展示了所提出程序的功能,即加固的砌体深梁(0/90连续加固)和简单屈曲的砌体梁,可提供实验数据。在当前模型和替代数值方法之间找到了很好的一致性。

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    G. MILANI;

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  • 年度 2011
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  • 正文语种 eng
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