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Mechanics of structure genome applied in the homogenization of masonry reinforced by FRP repointing technique

机译:FRP掺入技术加固砌体均质结构的结构基因组的力学

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摘要

This paper presents the newly developed Mechanics of structure genome (MSG) technique as an alternative for homogenizing masonry without reinforcement or reinforced by the FRP repointing technique. In the numerical examples analyzed, the results obtained with MSG were compared to those presented by Barbieri and Cecchi (2007), as well as with the finite element method (FEM). For unreinforced masonry, it is observed that the results obtained with MSG are closer to those of the FEM than those presented by Barbieri and Cecchi (2007). For the reinforced masonry, three values were considered for the FRP Young's modulus. The analyses performed show an increase in the stiffness of the reinforced masonry, but the increase in FRP Young's modulus only showed respective growth in the stiffness of the masonry in the horizontal direction. Finally, it is added that the MSG technique has advantages over the solution of a boundary value problem by the FEM, which is the classic and referential formulation for the masonry homogenization process. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了结构基因组(MSG)技术的新开发的机制,作为均匀化砌体而不加强或通过FRP延流技术加固的替代方案。在分析的数值实例中,将用MSG获得的结果与Barbieri和Cecchi(2007)所提出的结果以及有限元方法(FEM)。对于未粘合的砌体,观察到使用MSG获得的结果比Barbieri和Cecchi(2007)所呈现的那些。对于加强砌体,考虑了FRP杨氏模量的三个值。进行的分析显示增强砌体的刚度的增加,但FRP杨氏模量的增加仅显示了水平方向上砌体的刚度的相应生长。最后,添加了MSG技术通过FEM对边界值问题的解决方案具有优势,这是砖石均质化过程的经典和参照制剂。 (c)2021 elestvier有限公司保留所有权利。

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