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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Homogenization towards a mechanistic Rigid Body and Spring Model (HRBSM) for the non-linear dynamic analysis of 3D masonry structures
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Homogenization towards a mechanistic Rigid Body and Spring Model (HRBSM) for the non-linear dynamic analysis of 3D masonry structures

机译:均匀化对机械刚体和弹簧模型(HRBSM)的非线性动力学分析3D砌体结构

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摘要

Abstract A mechanistic model with rigid elements and interfaces suitable for the non-linear dynamic analysis of full scale 3D masonry buildings is presented. The model relies into two steps: in the first step, a simplified homogenization is performed at the meso-scale to deduce the mechanical properties of a macroscopic material, to be used in structural applications; the second step relies into the implementation of a Rigid Body and Spring Model (RBSM) constituted by rigid elements linked with homogenized interfaces. In the homogenization step, a running bond elementary cell is discretized with 24 three-node plane-stress elastic triangular elements and non-linear interfaces representing mortar joints. It is shown how the mechanical problem in the unit cell is characterized by few displacement variables and how homogenized stress–strain curves can be evaluated by means of a semi-analytical approach. The second step relies on the implementation of the homogenized curves into a RBSM, where an entire masonry structure can be analyzed in the non-linear dynamic range through a discretization with rigid elements and inelastic interfaces. Non-linear structural analyses are conducted on a church fa?ade interconnected with a portion of the perpendicular walls and on a small masonry building, for which experimental and numerical data are available in the literature, in order to show how quite reliable results may be obtained with a limited computational effort.
机译:摘要提出了一种机制模型,具有适用于全尺度3D砌体建筑物的非线性动态分析的刚性元素和界面。该模型依赖于两个步骤:在第一步中,在中间尺度下进行简化的均质化以推导宏观材料的机械性能,以用于结构应用;第二步骤依赖于由与均质接口连接的刚性元件构成的刚体和弹簧模型(RBSM)的实施方式。在均匀化步骤中,使用24个三节点平面应力弹性三角形元件和表示砂浆接头的非线性接口离散化键元。示出了单位电池的机械问题的特征在于少量位移变量以及如何通过半分析方法评估均质的应力 - 应变曲线。第二步依赖于将均匀化曲线的实现成RBSM,其中通过具有刚性元件和无弹性接口的离散化,可以在非线性动态范围内分析整个砖结构。非线性结构分析在教堂FA中进行了与垂直墙的一部分和小型砌体建筑物相互连接的ADE,在文献中可以获得实验和数值数据,以表明结果可以获得相当可靠的结果获得有限的计算努力。

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