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Effectiveness of plasters and textile reinforced mortars for strengthening clay masonry infill walls subjected to combined in-plane/out-of-plane actions

机译:石膏和纺织品增强砂浆在平面/平面外共同作用下对粘土砖砌体填充墙的加固效果

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This work presents the results of experimental tests on full-scale one-bay, one-storey reinforced concrete (RC) frames, filled with non-load-bearing clay masonry walls. The infill walls were made with clay masonry units characterized by a high percentage of voids and low strength. Such 'light'infill walls have shown fragile behaviour during recent earthquakes, due to the combined effects of damage produced by out-of-plane seismic action, together with in-plane deformation of the RC frame. In this context, various solutions to the problems involved in external reinforcement of 'light' infill walls, typically found in existing RC buildings but still used in common construction practice, have recently been developed. These solutions are: ⅰ) special lime-based plaster with geo-polymer binder; ⅱ) bidirectional composite meshes applied with inorganic matrices, i.e., Textile Reinforced Mortars (TRM); ⅲ) TRM improved by anchorage of the mesh to the RC frame. For these construction elements, a special set-up for combined in-plane/out-of-plane cyclic testing, already used for other infill wall types at the University of Padova, was used. In particular, this work describes: a) materials and systems for strengthening infill walls; b) experimental results of infill walls under in-plane loads; c) effects of out-of-plane loads on previously in-plane damaged infill walls. The final aim was to achieve complete mechanical characterization of infill walls in both original and strengthened conditions, and to validate the effectiveness of the proposed strengthening systems.
机译:这项工作介绍了在装有无承重粘土砌体墙的全尺寸单湾,一层高钢筋混凝土(RC)框架上进行实验测试的结果。填充墙用粘土砖石单元制成,其特征是空隙率高且强度低。这种“轻”填充墙在近期地震中表现出脆弱的行为,这归因于平面外地震作用产生的破坏以及RC框架的平面内变形的综合作用。在这种情况下,最近已经开发出各种解决方案,这些方案通常在现有的RC建筑物中使用,但仍在常见的建筑实践中使用,从而对“轻型”填充墙的外部加固产生了问题。这些解决方案是:ⅰ)特殊的石灰石膏与土工聚合物粘合剂; ⅱ)双向复合网布与无机基质即纺织增强砂浆(TRM)一起使用; ⅲ)通过将网格锚固到RC框架而改进了TRM。对于这些结构元件,使用了一种用于平面内/平面外循环测试的特殊设置,该设置已经在帕多瓦大学用于其他填充墙类型。特别是,这项工作描述了:a)用于加固填充墙的材料和系统; b)平面荷载作用下填充墙的实验结果; c)平面外载荷对先前在平面内损坏的填充壁的影响。最终目的是要在原始和加固条件下实现填充墙的完整机械特性,并验证所提出的加固系统的有效性。

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