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Development of novel ferrocement light weight wall panels

机译:新型轻质轻质墙板的研制

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The development of technologies has changed the growth of human lives which made the shortage of shelter. The natural and artificial disasters are the huge threat in the current scenario which needs to develop a structural system to serve the purpose. The advent of research made wider alternatives with many options to overcome these demands in terms of structurally light weight, stronger and cheaper, more ductile, durable and easy to construct / install. Innovative and cost effective methods are required to achieve affordable housing. Proper use of appropriate innovative technologies can enhance the quality of life, thereby enabling the community to move towards sustainable development. With the aim of developing affordable technologies and disseminating the appropriate and affordable technologies to the rural people, a study has been performed on developing a novel light weight and cost effective ferrocement wall panel. This technology reduces the usage of conventional building materials and it reduces the cost and the overall structural weight in turn. The objective of the study is to evolve a wall panel made of ferrocement with required stiffness and strength. Novel wall panels consisting of ferrocement skin and ribs were introduced to achieve the structural adequacy and constructability. Two types of ferrocement wall panels of size 1m ×1m were cast. One panel is cast with ribs around and the other panel is cast with reduced thickness and cross ribs. Nonlinear finite element analytical study was conducted on these panels. The results obtained from the experimental and analytical studies are presented and compared in this paper.
机译:技术的发展改变了人类生活的增长,这使得住房短缺。在当前情况下,自然灾害和人为灾害是巨大的威胁,需要开发一种结构系统来达到目的。研究的出现为结构上的重量轻,坚固,便宜,延展性强,耐用且易于构造/安装提供了更多选择,从而克服了这些要求。需要创新和具有成本效益的方法来实现经济适用房。适当使用适当的创新技术可以提高生活质量,从而使社区朝着可持续发展迈进。为了开发负担得起的技术并将适当的负担得起的技术传播给农村人民,已经进行了一项研究,以开发一种新型的轻质,高成本效益的钢筋混凝土墙板。该技术减少了传统建筑材料的使用,从而降低了成本和总体结构重量。该研究的目的是要开发一种具有所需刚度和强度的,由钢筋混凝土制成的墙板。引入了由铁皮和肋骨组成的新型墙板,以实现结构上的充分性和可施工性。铸造了两种类型的尺寸为1m×1m的钢筋混凝土墙。一个面板浇铸有肋,而另一块面板浇铸有减小的厚度和横肋。在这些面板上进行了非线性有限元分析研究。本文介绍了从实验和分析研究获得的结果,并进行了比较。

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