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Effects of Steel Fibres on Fresh and Hardened Properties of Cement Concrete

机译:钢纤维对水泥混凝土清新和硬化性能的影响

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Concrete possesses distinct features that make it widely acceptable for use across the globe; however, along with its obvious benefits, it has numerous drawbacks i.e., it is brittle in nature and its production causes an adverse impact on the environment. To counter such problems, researchers around the world have introduced sustainable measures. Fibre addition is foremost among these solutions in that it prevents crack propagation and increases the overall strength of concrete. In the present age, civil engineering structures have their own structural and durability requirements and so, modification in traditional concrete has become a necessity. This research is targeted at steel fibre reinforced concrete (SFRC), which is a superior quality concrete because of its enhanced strength. The steel fibres are obtained from binding wire that is used to tie the steel reinforcement. By referring to past research, steel fibres with an aspect ratio (length to diameter ratio) of 30 were considered favourable. The controlled, mixed design of the concrete was prepared with a targeted strength of 4000 psi and, while mixing the concrete ingredients, fibres were added to allow uniform dispersion. The fresh and hardened properties of workability, compressive, and tensile strength were tested and the results of fibres at 0%, 1%, 2% and 3% concrete mass were compared and analysed. The results indicated that highest compressive and tensile strength values were achieved with 3% fibre addition. However, with further addition, it was observed that concrete loses its workability. Therefore, it is suggested that 1% addition of steel fibres produces good strength with sufficient workability.
机译:混凝土具有不同的特点,使其在全球范围内广泛接受;然而,随着其显而易见的益处,它具有许多缺点,即,它在自然界中是脆性的,其生产导致对环境的不利影响。为了解决这些问题,世界各地的研究人员介绍了可持续措施。在这些解决方案中最重要的是,它可以防止裂纹传播并增加混凝土的总体强度。在目前的时代,土木工程结构具有自己的结构和耐用性要求,因此,传统混凝土的修改已成为必需品。该研究旨在钢纤维钢筋混凝土(SFRC),这是一种优质的混凝土,因为其强度增强。钢纤维由用于系钢加固的粘合线获得。通过参考过去的研究,具有30的纵横比(长度为直径比的钢纤维,被认为是有利的。使用4000psi的目标强度制备混凝土的控制,混合设计,并在混合混凝土成分的同时,加入纤维以允许均匀的分散体。测试了可加工性,压缩和拉伸强度的新鲜和硬化性能,比较和分析了0%,1%,2%和3%混凝土质量的纤维的结果。结果表明,以3%纤维添加,实现了最高的压缩和拉伸强度值。然而,通过进一步添加,观察到混凝土失去其可加工性。因此,建议1%加入钢纤维产生良好的强度,具有足够的可加工性。

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