Finite element analysis of unreinforced masonry walls with different bond patterns

Faisal Mehraj, Ruthviz Kodali, Devireddy Sowmya, Abhishek Kumar, S. Reddy, Jayaprakash Vemuri, M. A. Khan
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Abstract

Masonry is the oldest building material, yet it is also the least understood due to the non-linear and composite nature of masonry, which consists of brick units, mortar, and unit-mortar contact. In this paper, the response of a two-dimensional masonry wall with a window opening subjected to an in-plane lateral pushover loading is simulated by varying the interface properties of brick such as crushing, elastic, cracking, and shear properties. The simplified micro-modeling technique with the Engineering Masonry model for bricks and linear stiffness properties for the interfaces in the bed and head joints is employed to investigate the geometric nonlinear behavior of the masonry wall. The pushover curves obtained from the numerical simulations indicate that there is a significant influence on the lateral load response of the wall due to elastic, crushing, and shear parameters while the cracking parameters have less impact on the ductile capacity of the structure. Moreover, the study is also extended to examine the effect of bond patterns such as English, Stretcher, Flemish, and Header bond with varied aspect ratios of 1,1.5 and 0.75. In all four bond patterns, it was observed that the walls with lower aspect ratios exhibited higher strength. Further, in comparison to the other bond patterns, walls with the Flemish bond pattern demonstrated higher strengths at both lower and higher aspect ratios.
不同粘结方式的无筋砌体墙体有限元分析
砌体是最古老的建筑材料,但由于砌体的非线性和复合性质,它也是最不为人所知的,它由砖单元、砂浆单元和砂浆单元接触组成。在本文中,通过改变砖的界面特性,如破碎、弹性、开裂和剪切特性,模拟了具有开窗的二维砌体墙在面内侧向推覆荷载作用下的响应。采用工程砌体模型对砌块进行简化微观建模,结合床端和头端接缝界面的线性刚度特性对砌体墙体的几何非线性行为进行了研究。数值模拟得到的推覆曲线表明,弹性、破碎和剪切参数对墙体的侧向荷载响应有显著影响,而开裂参数对结构的延性能力影响较小。此外,该研究还扩展到检查不同纵横比(1,1.5和0.75)下的键模式(如英语键、担架键、佛兰德键和头键)的影响。在所有四种粘结模式中,观察到低纵横比的壁面表现出更高的强度。此外,与其他键模式相比,具有佛兰德键模式的墙壁在低长宽比和高长宽比下都表现出更高的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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