Strength properties of coconut fibre reinforced concrete

M. Ranjitham, S. Mohanraj, K. Ajithpandi, S. Akileswaran, S. Sree
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引用次数: 4

Abstract

The fiber obtained from the dry outer covering of the coconut fiber is termed as “coir”. This fiber has the best toughness among all natural fibres. These coir fibres have the tendency to be used as reinforcement in low cost concrete structures particularly in earthquake regions because of their property of toughness and sturdiness. Some advantages of coir fibers include insect proof, resistant to fungi and decay, provide good insulation against temperature and sound. They remain unaffected by external factors like humidity. They act as reinforcement substance by giving strength to the composite. To the brittle material concrete, a standard stresses or impact load is applied; the durability is 1/10th of its compressive strength. Thus, reinforcing bars are used with concrete in order that they face upto tensile stresses and replace the shortage of malleability and strength. For the preparation of fiber concrete solid cube M20 grade cement is employed. The fiber is mixed with cement, fine aggregate (Msand), coarse aggregate (gravel) and needed quantity no f water that forms the concrete mix. A layer of oil is applied evenly within the cube mould to prevent the concrete from sticking to the mould. This concrete mix is then crammed fully within the solid cube mould. This is then left to dry for 24hrs. This is taken out from the mould and immersed curing is to be done for 3-7 days. The comparison of fiber concrete cubes with the conventional concrete cubes was the main aim of this study. Various tests were conducted to determine its compressive strength, density and crushing load.The fiber obtained from the dry outer covering of the coconut fiber is termed as “coir”. This fiber has the best toughness among all natural fibres. These coir fibres have the tendency to be used as reinforcement in low cost concrete structures particularly in earthquake regions because of their property of toughness and sturdiness. Some advantages of coir fibers include insect proof, resistant to fungi and decay, provide good insulation against temperature and sound. They remain unaffected by external factors like humidity. They act as reinforcement substance by giving strength to the composite. To the brittle material concrete, a standard stresses or impact load is applied; the durability is 1/10th of its compressive strength. Thus, reinforcing bars are used with concrete in order that they face upto tensile stresses and replace the shortage of malleability and strength. For the preparation of fiber concrete solid cube M20 grade cement is employed. The fiber is mixed with cement, fine aggregate (Msand),...
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椰子纤维增强混凝土的强度特性
从椰子纤维干燥的外层获得的纤维被称为“椰子纤维”。这种纤维在所有天然纤维中韧性最好。由于这些纤维的韧性和坚固性,它们有被用作低成本混凝土结构的加固的趋势,特别是在地震地区。椰子纤维的一些优点包括防虫,抗真菌和腐烂,提供良好的隔热和隔音。它们不受湿度等外部因素的影响。它们通过增强复合材料的强度而起到增强物质的作用。对于脆性材料混凝土,施加标准应力或冲击载荷;耐久性为其抗压强度的十分之一。因此,钢筋与混凝土一起使用,以便它们面对拉应力并取代延展性和强度的不足。纤维混凝土的制备采用M20级固体立方体水泥。纤维与水泥、细骨料(m砂)、粗骨料(砾石)和所需数量的水混合,形成混凝土混合物。在立方体模具内均匀涂上一层油,防止混凝土粘在模具上。然后将混凝土混合物完全塞进固体立方体模具中。然后晾干24小时。将其从模具中取出,浸泡固化3-7天。纤维混凝土立方体与常规混凝土立方体的比较是本研究的主要目的。进行了各种试验,以确定其抗压强度,密度和破碎载荷。从椰子纤维干燥的外层获得的纤维被称为“椰子纤维”。这种纤维在所有天然纤维中韧性最好。由于这些纤维的韧性和坚固性,它们有被用作低成本混凝土结构的加固的趋势,特别是在地震地区。椰子纤维的一些优点包括防虫,抗真菌和腐烂,提供良好的隔热和隔音。它们不受湿度等外部因素的影响。它们通过增强复合材料的强度而起到增强物质的作用。对于脆性材料混凝土,施加标准应力或冲击载荷;耐久性为其抗压强度的十分之一。因此,钢筋与混凝土一起使用,以便它们面对拉应力并取代延展性和强度的不足。纤维混凝土的制备采用M20级固体立方体水泥。纤维与水泥、细骨料(Msand)、…
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