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Nonlinear analysis of contemporary and historic masonry vaulted elements externally strengthened by FRP

机译:玻璃钢外部加强的当代和历史砌筑拱形元素的非线性分析

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This paper addresses numerical modeling and nonlinear analysis of unreinforced masonry walls and vaults externally strengthened using fiber reinforced polymers (FRP). The aim of the research is to provide a simple method for design of strengthening interventions for masonry arched structures while considering the nonlinear behavior. Several brick masonry walls and vaults externally strengthened by FRP which have been previously tested experimentally are modeled using finite elements. Numerical modeling and nonlinear analysis are performed using commercial software. Description of the modeling, material characterization and solution parameters are given. The obtained numerical results demonstrate that externally applied FRP strengthening increased the ultimate capacity of the walls and vaults and improved their failure mode. The numerical results are in good agreement with the experimentally obtained ultimate failure load, maximum displacement and crack pattern; which demonstrates the capability of the proposed modeling scheme to simulate efficiently the actual behavior of FRP-strengthened masonry elements. Application is made on a historic masonry dome and the numerical analysis managed to explain its structural behavior before and after strengthening. The modeling approach may thus be regarded a practical and valid tool for design of strengthening interventions for contemporary or historic unreinforced masonry elements using externally bonded FRP.
机译:本文研究了使用纤维增强聚合物(FRP)外部加固的未加固砌体墙和拱顶的数值建模和非线性分析。该研究的目的是提供一种简单的方法来设计砌体拱结构,同时考虑非线性行为,以加强干预措施。使用有限元模拟了先前已通过实验测试的,由FRP外部加固的数个砖砌墙和拱顶。使用商业软件进行数值建模和非线性分析。给出了建模,材料表征和解决方案参数的描述。所得数值结果表明,外加FRP加固可增加墙和拱顶的极限承载力,并改善其破坏模式。数值结果与实验获得的极限破坏载荷,最大位移和裂纹模式吻合良好。这证明了所提出的建模方案能够有效地模拟FRP加固的砖石构件的实际行为。在一个历史悠久的砌体圆顶上进行了应用,数值分析成功地解释了加固前后的结构行为。因此,建模方法可以被视为一种实用有效的工具,用于设计使用外部粘合FRP加固当代或历史未加固砌体元素的干预措施。

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