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The structural behaviour of precast lightweight foamed concrete sandwich panel as a load bearing wall

机译:预制轻质泡沫混凝土夹芯板作为承重墙的结构性能

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摘要

Affordable quality housing is vital in developing countries to meet its growing population. Development of a new cost effective system is crucial to fulfill these demands. In view of this, a study is carried out to develope a Precast Lightweight Foamed Concrete Sandwich Panel (PLFP), as a new affordable building system. Experimental investigation and finite element analysis to study the structural behaviour of the PLFP panel under axial load is undertaken. The panel consists of two foamed concrete wythes and a polystyrene insulation layer in between the wythes. The wythes are reinforced with high tensile steel bars and tied up to each other through the polystyrene layer by steel shear connectors bent at an angle of 45º. The panels are loaded with axial load until failure. The ultimate load carrying capacity, load-lateral deflection profile, strain distributions, and the failure mode are recorded. Partial composite behaviour is observed in all specimens when the cracking load is achieved. Finite element analysis is also carried out to study the effect of slenderness ratio and shear connectors which are the major parameters that affect the strength and behaviour of the panels. An empirical equation to predict the maximum load carrying capacity of the panels is proposed. The PLFP system proposed in this research is able to achieve the intended strength for use in low rise building. Considering its lightweight and precast construction method, it is feasible to be developed further as a competitive IBS building system.
机译:负担得起的优质住房对于发展中国家满足日益增长的人口至关重要。开发新的具有成本效益的系统对于满足这些需求至关重要。有鉴于此,进行了研究以开发预制的轻质泡沫混凝土夹心板(PLFP),作为一种新的可负担的建筑系统。进行了实验研究和有限元分析,以研究PLFP面板在轴向载荷下的结构行为。面板由两个泡沫混凝土Wythes和位于Wythes之间的聚苯乙烯绝缘层组成。 Wythes用高强度钢筋加固,并通过以45º角弯曲的钢剪连接器通过聚苯乙烯层彼此绑在一起。面板承受轴向载荷直至失效。记录极限承载力,荷载-侧向挠度分布,应变分布和破坏模式。当达到破裂载荷时,在所有试样中观察到部分复合行为。还进行了有限元分析,以研究细长比和剪切连接器的影响,这是影响面板强度和性能的主要参数。提出了一个经验公式来预测面板的最大承载能力。在这项研究中提出的PLFP系统能够达到用于低层建筑的预期强度。考虑到其轻巧和预制的建造方法,将其进一步发展为具有竞争力的IBS建造系统是可行的。

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  • 作者

    Mohamad Noridah;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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