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Study on performance of infilled wall in RC framed structure using basalt fibre in cement mortar

机译:水泥砂浆玄武岩纤维在RC框架结构中填充壁的性能研究

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摘要

Normally, Reinforced Concrete (RC) framed structure is built by combination of structural and non-structural elements that may satisfy the design and architectural purpose. When RC framed structures are subjected to the static lateral loading, infilled wall and RC frame elements does not react together. At this time, infilled wall is subjected only compressive forces and does not support the tensile force. So, failure is happened due to lacking of ductility and poor interaction between frame elements and infilled wall. Therefore, the objective of this study is to improve the ductility and interaction between RC frame elements and infilled wall through suitable method of strengthening of infilled wall. In this research work, the two types of specimens such as infilled RC framed structure and infilled RC framed structure strengthened by reinforced cement mortar using basalt fibre were cast and tested under experimental and analytical investigation. One-fifth scale model of single-bay, two-storey plane RC framed structure were prepared and tested under cyclic loading with the help of 1000 kN capacity loading frame and foundation block. This study focuses the significant parameters such as load-deflection curve, ductility, energy dissipation capacity, initial stiffness and failure mechanism of infilled RC frame and infilled RC frame with basalt fibre in cement mortar. The result proves that basalt fibre reinforced cement mortar improves the strength, stiffness and ductility of infilled RC framed structure and make infilled wall as integral unit in RC framed structure.
机译:通常,钢筋混凝土(RC)框架结构是通过结构和非结构元素的组合来构建的,可以满足设计和建筑目的。当RC框架结构经受静态横向装载时,填充壁和RC框架元件不会在一起反应。此时,填充壁仅受压缩力并且不支持拉力。因此,由于缺乏延展性和框架元素之间的相互作用和夹心壁之间的差异,发生故障。因此,本研究的目的是通过合适的加强填充壁改善RC框架元件和Infilled壁之间的延展性和相互作用。在该研究工作中,在实验和分析调查下,施放并在使用玄武岩纤维的增强水泥砂浆加强的两种类型的样本,例如infilled的RC框架结构和加强的RC框架结构。单架,双层平面RC框架结构的一级模型,并在1000 kN容量装载框架和基础块下进行循环载荷测试。该研究将诸如载荷RC架和含有玄武岩砂浆中碱性RC框架和Infilled RC框架的载荷偏转曲线,延展性,能量耗散能力,初始刚度和失效机理等显着参数。结果证明,玄武岩纤维增强水泥砂浆提高了缺陷的RC框架结构的强度,刚度和延展性,并使infiled壁为RC框架结构中的整体单元。

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