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Evaluation of Synthetic Fiber Reinforced Concrete Pipe Performance Using Three-Edge Bearing Test

机译:用三边轴承试验评估合成纤维混凝土管道的性能

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Synthetic fibers have recently been used in a concrete mix in an attempt to produce a new concrete pipe system that is cheaper, lighter, and more flexible than conventional steel reinforced concrete pipes. However, no structural design codes have been introduced for synthetic fiber reinforced concrete pipes evaluation. There is little in the literature regarding synthetic fiber applications in concrete pipes. This study focuses on the evaluation of the synthetic fiber reinforced concrete pipes in terms of ASTM requirements for strength, stiffness, and ductility. The performance of the synthetic fiber reinforced concrete pipes was evaluated using a three-edge bearing test in accordance with ASTM protocols and using three pipe diameters: 600, 1,200, and 1,500 mm. Fiber dosages ranged from 4.75 to 18 kg/m(3), and different areas of one steel cage layer were used to reinforce the concrete pipes. The results show that using synthetic fiber increased the cracking load (produces 0.3-mm crack width), ultimate load, stiffness, and ductility of tested pipes. Also, using synthetic fiber lowered the production cost, as the reduction in the steel cage area ranged from 51 to 100 %.
机译:合成纤维最近已用于混凝土混合物中,以试图生产一种新型的混凝土管道系统,该系统比传统的钢增强混凝土管道更便宜,更轻且更具挠性。但是,没有为合成纤维增强混凝土管道评估引入结构设计规范。关于合成纤维在混凝土管道中的应用的文献很少。这项研究的重点是根据ASTM对强度,刚度和延展性的要求评估合成纤维增强混凝土管。根据ASTM协议,使用三边缘轴承测试并使用三种直径的管道(600、1200和1,500 mm)对合成纤维增强混凝土管道的性能进行了评估。纤维用量范围为4.75至18 kg / m(3),并使用一层钢笼层的不同面积来加固混凝土管。结果表明,使用合成纤维可增加破裂载荷(产生0.3毫米的裂缝宽度),极限载荷,刚度和被测管道的延展性。另外,使用合成纤维降低了生产成本,因为钢笼面积的减少范围为51%至100%。

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