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Load Deflection Characteristics of Sustainable Infilled Concrete Wall Panels

机译:可持续潜入混凝土墙板的负载挠度特性

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Development of sustainable concrete has now become a mandatory requirement today due to environmental problems posed by the production of conventional concrete. Many researchers focused their research toward finding alternatematerials for cement, sand, steel, etc., and came out with good results. This paper focuses on feasibility of developing sustainable concrete using bamboo as infill, stiffener, and combination of infill and reinforcement in the wall panels. In addition, low-density polyethylene waste also tried as infill material with bamboo as diagonal member. The structural property of bamboo was studied for replacing the conventional steel by designing the wall panels with lower stiffness and weight to avoid the catastrophic effect. The strength and behavior of infill wall panels for different infill cases were studied under uniaxial in-plane loading. Parameters such as maximum load carrying capacity, load-deflection characteristics, and cost effectiveness of bamboo-based wall panel system were considered in the present study. From the experimental results, it was understood that bamboo-based wall panel behaved as a ductile member and failed after due to the formation ofmicro-cracks.Wall panel specimens were failed with an out-plan buckling and resisted the force such that the sudden collapse was avoided. It was concluded that an infill wall reduced lateral and vertical deflection, thereby decreasing the probability of collapse. Hence, an infill wall panel could be used as a substitute for conventional wall panel.
机译:由于常规混凝土生产所带来的环境问题,今日,可持续混凝土的发展现已成为强制性要求。许多研究人员专注于寻找水泥,沙,钢等的替代物品的研究,并出现了良好的效果。本文侧重于使用竹子开发可持续混凝土的可行性,作为墙板中的填充,加强件和填充和加固的组合。此外,低密度的聚乙烯废物也试图用竹子作为对角构件的填充材料。研究了竹子的结构特性,通过设计具有较低刚度和重量的壁板来更换传统钢,以避免灾难性效果。在单轴内载荷下,研究了不同筛选病例的填充壁板的强度和行为。在本研究中考虑了竹制墙板系统的最大负荷承载能力,负载偏转特性和成本效益的参数。从实验结果来看,据了解,竹子壁板表现为延展构件,并且由于Micro-Cracks的形成,失败后失败。壁板样品失效,突然屈曲并抵抗突然崩溃的力避免了。结论是填充壁减小横向和垂直偏转,从而降低了塌陷的概率。因此,填充壁板可以用作传统墙板的替代品。

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