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An experimental and numerical study on masonry triplets subjected to monotonic and cyclic shear loadings

机译:单调和循环剪切载荷对砌体三联体的实验与数值研究

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This paper presents an experimental and numerical study on the mechanical behaviour of masonry triplets subjected to monotonic and cyclic shear loadings. Masonry triplets were constructed with fired bricks bonded together with three different in composition (i.e. cement-to-sand ratios) mortars. Shear tests on triplets show that cyclic loading significantly reduces the peak shear strength (typically around 18%) with respect to monotonic loads, regardless of the mortar composition. The shearing behaviour of the triplets obtained from the experiments were successfully reproduced using an innovative discrete element modelling strategy in which masonry units and mortar were represented by a series of irregular particles (i.e. through Voronoi-shaped particles) with a fictitious random microstructure. Numerical results highlight that cyclic shear strength reduction can be attributed to the progressive formation of cracks in the mortar layers along with the cyclic loading. These observations provide new insight into behaviour of structural masonry and lead to suggestions for improving assessment techniques for masonry structures subjected to combined actions of compression and shear. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了对单调和循环剪切载荷的砌体三联体的力学行为的实验性和数值研究。砌体三联体由粘合的砖块与三种不同的组成(即水泥 - 砂比)砂浆组成。无论砂浆组合物如何,三联网上的剪切测试表明,无论砂浆组合物如何,循环负载显着降低了单调载荷的峰值剪切强度(通常为18%)。使用创新的离散元素建模策略成功地再现了从实验中获得的三元组的剪切行为,其中砌体单元和砂浆由一系列不规则的颗粒(即通过Voronoi形颗粒)表示,具有虚拟的无规微观结构。数值突出显示循环剪切强度减小可以归因于砂浆层中裂缝的渐进形成以及循环载荷。这些观察结果为结构砌体的行为提供了新的洞察力,并导致提高用于改进砖石结构的评估技术的建议,这些结构受到压缩和剪切组合的组合作用。 (c)2020 elestvier有限公司保留所有权利。

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