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A Nonlinear Homogenization Procedure For Periodic Masonry

机译:砌体的非线性均质化程序

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The present paper deals with the problem of the determination of the in-plane behavior of masonry material. The masonry is considered as a composite material composed by a regular distribution of blocks connected by horizontal and vertical mortar joints. The overall constitutive relationships of the regular masonry are derived by a rational micromechanical and homogenization procedure. Linear elastic constitutive relationship is considered for the blocks, while a new special nonlinear constitutive law is proposed for the mortar joints. In particular, a mortar constitutive law, which accounts for the coupling of the damage and friction phenomena occurring during the loading history, is proposed; the developed model is based on an original micromechanical analysis of the damage process of the mortar joint. Then, an effective nonlinear homogenization procedure, representing the main novelty of the paper, is proposed; it is based on the transformation field analysis, using the technique of the superposition of the effects and the finite element method. The presented methodology is implemented in a numerical code. Finally, numerical applications are performed in order to assess the performances of the proposed procedure in reproducing the mechanical behavior of masonry material.
机译:本文涉及确定砌体材料的面内行为的问题。砌体被认为是由水平和垂直砂浆缝连接的规则分布的块组成的复合材料。普通砌体的整体本构关系是通过合理的微机械和均质化程序得出的。砌块考虑了线性弹性本构关系,而砂浆缝则提出了一种新的特殊非线性本构律。尤其是,提出了砂浆本构法,该法则考虑了载荷历史期间发生的损伤和摩擦现象的耦合。所开发的模型基于对灰浆接头损坏过程的原始微观力学分析。然后,提出了一种有效的非线性均化程序,该程序代表了本文的主要新颖性;它基于变换场分析,使用效果叠加技术和有限元方法。所提出的方法以数字代码实现。最后,为了评估所提出的程序在再现砌体材料的机械性能方面的性能,进行了数值应用。

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