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A fast modeling approach for numerical analysis of unreinforced and FRCM reinforced masonry walls under out-of-plane loading

机译:平面外荷载下无筋和FRCM砌体墙数值分析的快速建模方法

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摘要

A new discretized homogenization approach is proposed in this study in order to predict the behavior of unre-inforced and FRCM reinforced masonry structures. The proposed approach allows overcoming the common disadvantages of the existing homogenization approaches: (a) being difficult to implement and (b) not allowing to couple the in-plane and out-of-plane actions. Reference experimental results and detailed numerical modeling are used for validation of the proposed modeling strategy. In the proposed model, the elastic cells are linked by homogenized interfaces. The mechanical properties coming from the homogenization procedures are lumped at the interfaces by means of the generic Concrete Damage Plasticity model, allowing easy implementation and avoiding computational issues peculiar to other approaches available in the literature. The new approach shows accurate results in predicting the global behavior and the damage pattern for both unreinforced and FRCM strengthened masonry walls. The results are promising also with a view to be applied for more complex reinforced applications as double curvature masonry structures.
机译:本研究提出了一种新的离散均质化方法,以预测未加固和FRCM加固砌体结构的行为。所提出的方法可以克服现有同质化方法的共同缺点:(a)难以实施,并且(b)不允许耦合平面内和平面外动作。参考实验结果和详细的数值建模用于验证所提出的建模策略。在提出的模型中,弹性单元通过均质的界面链接。来自均质化程序的机械性能通过通用的混凝土损伤可塑性模型集中在界面处,从而易于实现并避免了文献中其他方法所特有的计算问题。新方法在预测未加固和FRCM加固砌体墙的整体行为和破坏模式方面显示出准确的结果。该结果也是有希望的,有望应用于双曲率砖石结构的更复杂的加固应用中。

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