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Finite element modelling of deformation characteristics of historical stone masonry shear walls

机译:历史石砌体剪力墙变形特征的有限元模拟

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摘要

Two dimensional nonlinear finite element analysis based on experimental test data has been carried out to model deformation characteristics, such as load-displacement envelope diagrams and failure modes of historical stone masonry shear walls subjected to combined axial compression and lateral shear loading. An experimental research work was carried out on three different types of historical stone masonry shear walls that can be considered representative of ancient stone masonry constructions. Those three types of masonry are: i) sawn dry-stack or dry-stone masonry without bonding mortar, ii) irregular stone masonry with bonding mortar, and iii) rubble masonry with irregular bonding mortar thickness. Plasticity theory based micro modelling techniques has been used to carry out the analysis. The stone units were modelled using an eight node continuum plane stress elements with full Gauss integration. The joints and unit-joint interfaces were modelled using a six node zero thickness line interface elements with Lobatto integration. This paper outlines the experimental research work, details of numerical modelling carried out and report the numerical lateral load-displacement diagrams and failure modes. The numerical analysis results were compared with the experimental test results and good agreement was found.
机译:进行了基于实验测试数据的二维非线性有限元分析,以模拟变形特征,例如荷载-位移包络线图以及历史石砌体剪力墙在轴向压缩和横向剪力共同作用下的破坏模式。对三种不同类型的历史石砌剪力墙进行了实验研究,可以认为这是古代石砌建筑的代表。这三种类型的砖石是:i)锯切的无粘结砂浆的干砌砖或干石砌石; ii)带有粘结砂浆的不规则石砌砖; iii)粘结砂浆厚度不规则的碎石砖砌。基于可塑性理论的微观建模技术已被用于进行分析。石材单元是使用具有完整高斯积分的八个节点的连续平面应力元素建模的。使用具有Lobatto集成的六节点零厚度线界面元素对关节和单元关节界面进行建模。本文概述了实验研究工作,进行了详细的数值建模,并报告了数值横向载荷-位移图和破坏模式。将数值分析结果与实验测试结果进行比较,发现吻合良好。

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