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Compression Behaviour of Polypropylene Fibre Reinforced Cellular Light Weight Concrete Masonry Prism

机译:聚丙烯纤维增强蜂窝轻重强度混凝土砌体棱镜的压缩性能

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Sustainable development of the built environment in developing countries is a major challenge in the 21st century. The use of local materials in the construction of buildings is one of the potential ways to support sustainable development in both urban and rural areas where burnt clay bricks are used predominantly. This work focuses mainly on the use of polypropylene micro fibers in ordinary Cellular Lightweight Concrete blocks. The main objective is to develop a high-performance fibre reinforced cellular concrete to provide a better alternative than clay bricks for structural applications of masonry. This paper presents the stress-strain behaviour of polypropylene fibre reinforced Cellular Lightweight Concrete stack bonded prisms under axial compression. Masonry compressive strength is typically obtained by testing stack bonded prisms under compression normal to its bed joint. Use of micro-fibres enhances the pre-cracking behaviour of masonry by arresting cracks at micro-scale in the post-peak region. These efforts are necessary to ensure that CLC blocks become more accepted in the world of building materials and considered as a reliable option for providing low-cost housing.
机译:发展中国家建造环境的可持续发展是21世纪的主要挑战。在建筑物建设中使用本地材料是支持主要用于烧焦粘土砖的城市和农村地区可持续发展的潜在方式之一。这项工作主要集中在普通蜂窝轻质混凝土砌块中的聚丙烯微纤维上的使用。主要目的是开发一种高性能纤维增强蜂窝混凝土,以提供比砖石结构应用的粘土砖更好的替代品。本文介绍了轴向压缩下聚丙烯纤维增强蜂窝轻质混凝土堆叠棱镜的应力 - 应变行为。砌体抗压强度通常通过将堆叠稳定的棱镜测试在正常的床接头上来获得。微纤维的使用通过在后峰区域中的微尺度下抑制裂缝来增强砌体的预开裂行为。这些努力有必要确保CLC块在建筑材料世界中更加接受,并被视为提供低成本住房的可靠选择。

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