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Modelling of the in-plane behaviour of masonry walls strengthened with polymeric grids embedded in cementitious mortar layers

机译:嵌在水泥砂浆层中的聚合物网格加强的砌体墙的面内行为建模

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摘要

The seismic reinforcement of masonry walls needs to be carried out through appropriate and effective techniques aiming at providing both adequate strength and displacement capacity. The present research concerns experimental results about the in-plane behaviour of masonry walls strengthened through an innovative technique employing polymeric grids embedded in cementitious mortar layers applied on the wall surface. The behaviour of strengthened masonry walls subjected to cyclic shear-compression tests is examined in order to quantify the strength and displacement capacity increment provided by the reinforcement. A Finite Element Model of the unreinforced and reinforced panels has been developed and parameters defining masonry and strengthening materials have been calibrated by means of comparisons with the experimental results. The effectiveness of the strengthening system has been then numerically investigated through a wide parametric analysis varying the masonry strength, the wall shape, the axial stiffness of the strengthening grid and the strength of the mortar. Finally, a comparison of the effectiveness of the polymeric grid with a traditional steel one embedded in the same mortar layer is also reported. (C) 2015 Elsevier Ltd. All rights reserved.
机译:砌体墙的抗震加固需要通过适当有效的技术来实现,以提供足够的强度和位移能力。本研究涉及有关砌石墙面内行为的实验结果,该成果通过创新技术得以增强,该技术采用嵌在墙体表面胶结砂浆层中的聚合物网格。检查了经过循环剪切压缩试验的加固砌体墙的性能,以量化加固提供的强度和位移能力增量。已开发了无筋板和钢筋板的有限元模型,并且通过与实验结果进行比较,对定义砌体和加固材料的参数进行了校准。然后,通过改变砌体强度,墙体形状,增强格栅的轴向刚度和砂浆强度的广泛参数分析,对增强系统的有效性进行了数值研究。最后,还报道了聚合物网格与嵌入相同砂浆层中的传统钢的有效性的比较。 (C)2015 Elsevier Ltd.保留所有权利。

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