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Ancient masonry arches and vaults strengthened with TRM, SRG and FRP composites: Numerical analyses

机译:TRM,SRG和FRP复合材料增强了古代石砌拱顶和拱顶:数值分析

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摘要

The two arches and the three vaults experimentally described in Carozzi et al. (2017) are here analyzed with a novel robust FE lower bound limit analysis code, suitable to predict active failure mechanisms, lines of thrust and collapse loads in absence and presence of TRM, SRG and FRP reinforcement. The approach relies into a discretization into rigid-infinitely resistant quadrilateral elements for masonry, interfaces between contiguous elements exhibiting limited strength and perfectly bonded rigid-plastic trusses representing the reinforcement. For masonry, a No Tension Material NTM model can be adopted to compare with classic Heyman's results, but also a limited compressive and tensile strength with a cohesive frictional behavior in shear may be accounted for in a relatively simple fashion, i.e. in principle with the possibility to model shear sliding and compression crushing. Debonding and delamination of the reinforcement are considered in a conventional way, assuming trusses with a limited tensile strength derived from either experimental data available or consolidated formulas from the literature. With the knowledge of the exact position of the hinges provided by limit analysis, 2D FE static analyses with non-linearity and softening concentrated exclusively on hinges are carried out, to simply extend the knowledge beyond collapse loads estimation towards a prediction of initial stiffness and ultimate displacements. In all cases, promising agreement with experiments is observed.
机译:Carozzi等人在实验中描述了两个拱门和三个拱顶。 (2017)使用新颖的鲁棒有限元下限分析代码进行分析,适用于预测主动故障机制,在没有TRM,SRG和FRP加固的情况下的推力和坍塌荷载线。该方法依赖于离散化为用于砌体的刚度-无限抵抗四边形单元,显示有限强度的连续单元之间的界面以及代表钢筋的完美粘结的刚塑性桁架。对于砖石建筑,可以采用无拉伸材料NTM模型与经典Heyman的结果进行比较,但是可以以相对简单的方式解释有限的压缩和拉伸强度以及剪切中的内聚摩擦行为,即原则上可以为剪切滑动和压缩破碎建模。考虑到可用的实验数据或文献中的固结公式得出的抗拉强度有限的桁架,以常规方式考虑了钢筋的脱粘和分层。借助极限分析提供的铰链确切位置的知识,进行了非线性和软化仅集中在铰链上的二维有限元静态分析,以将知识从坍塌载荷估计中简单地扩展到初始刚度和极限的预测位移。在所有情况下,均观察到与实验有希望的协议。

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