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Evaluation of the Mechanical Properties of Steel and Polypropylene Fibre-Reinforced Concrete Used in Beam Column Joints

机译:梁柱节点用钢和聚丙烯纤维增强混凝土的力学性能评估

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Investigations on improving characteristics of concrete structures utilizing Fibre Reinforced Concrete (FRC) have gained momentum in the last few decades. Using suitable fibres and additives in concrete to advance its performance is an important consideration in the construction industry. With regards to structural aspects of concrete, the important goal of this project is to improve the ductility of the concrete beam column joints, which helps eliminate or reduce the need for steel reinforcement. Fibres within the matrix, can bridge the cracks, which improves the performance of concrete matrix and results in a better stress bearing concrete material. This research project aims to investigative the effect of polypropylene (PP) and steel fibre volume percentage within the concrete on its mechanical properties. Concrete fresh properties as well as hardened properties have been tested and evaluated to work out the best fibre percentage to be added to concrete structure. From among the trial mix designs, five sets of FRC have been fully tested for the mechanical properties and also evaluated for the beam column concrete joint behaviour. Slump, mass per unit volume and air content have been tested to work out the fresh properties of concrete. 7 and 28-day compressive strength and also indirect tensile tests have been performed on the hardened concrete the results of which are presented in this paper. By using 0.5% by volume fraction of 30mm steel fibre, the indirect tensile strength of concrete has increased by 21%; however, when 1% of steel fibre has been utilized, about 45% increase has been observed. Furthermore, a sample of the joint test conducted will be presented in this work to illustrate the finite goal of this project.
机译:在过去的几十年中,使用纤维增强混凝土(FRC)改善混凝土结构特性的研究势头强劲。在混凝土中使用合适的纤维和添加剂来提高其性能是建筑行业的重要考虑因素。关于混凝土的结构方面,该项目的重要目标是提高混凝土梁柱节点的延展性,这有助于消除或减少对钢筋的需要。基体中的纤维可以弥合裂缝,从而改善混凝土基体的性能,并产生更好的承压混凝土材料。该研究项目旨在研究聚丙烯(PP)和混凝土中钢纤维体积百分比对其机械性能的影响。已对混凝土的新鲜性能和硬化性能进行了测试和评估,以求出添加到混凝土结构中的最佳纤维百分比。从试验混合料设计中,已经对五套FRC的力学性能进行了全面测试,并评估了梁柱混凝土接头的性能。测试了坍落度,每单位体积的质量和空气含量,以求出混凝土的新鲜性能。已经对硬化混凝土进行了7天和28天的抗压强度以及间接拉伸试验,其结果在本文中进行了介绍。通过使用体积分数为0.5%的30毫米钢纤维,混凝土的间接抗拉强度提高了21%。但是,当使用1%的钢纤维时,观察到增加了约45%。此外,将在这项工作中提供一个联合测试的样本,以说明该项目的有限目标。

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