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A new test method for evaluating the long-term performance of fiber-reinforced concrete pipes

机译:一种评估纤维混凝土管长期性能的新测试方法

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Synthetic fibers have been used recently to minimize the need for steel reinforcement in the concrete pipe to enhance their ductility. However, synthetic fiber has properties that may change over time due to its viscoelastic behavior. The objective of this study is to investigate the long-term performance of fiber-reinforced concrete pipes using a new test frame. A three-dimensional finite element model was created for the long-term testing frame to ensure its compliance with the American Society for Testing and Materials requirement. The finite element results showed that the testing frame successfully transferred the load to the concrete as the pipe cracked at the location where high flexural stresses are expected. Concrete pipe reinforced with synthetic fiber dosage of 9 kg/m~(3)along the steel reinforcement area of 5.7 cm~(2)/m was tested to evaluate the concrete pipe system performance. The pipe was tested under two load stages for 120 days each. Load stages 1 and 2 included applying 40% and 70% of the ultimate load obtained by the authors in a previous study, respectively. The strain and deflection increased linearly within 5 days of applying the load and then leveled off. The pipe showed a slight increase in the crack width and deflection, indicating that fiber creep did not have a significant impact on the long-term performance of the concrete pipe. Also, it was observed that strain values surpassed those for plain concrete material, suggesting that including synthetic fiber in the concrete pipe mix enhanced the pipe ductility.
机译:近来已经使用合成纤维来最小化混凝土管中的钢加强以增强其延展性的需求。然而,合成纤维由于其粘弹性行为而具有随时间变化的性质。这项研究的目的是使用新的测试框架来研究纤维增强混凝土管的长期性能。为长期测试框架创建了三维有限元模型,以确保其符合美国材料试验学会的要求。有限元结果表明,当管道在预期有高弯曲应力的位置开裂时,测试框架成功地将载荷转移到混凝土上。测试了合成纤维剂量为9 kg / m〜(3)的混凝土管以及钢筋加固面积为5.7 cm〜(2)/ m的混凝土管的性能。在两个负载阶段对管道进行了120天的测试。载荷阶段1和2分别包括作者在先前研究中获得的最终载荷的40%和70%。施加载荷后5天内,应变和挠度线性增加,然后趋于平稳。该管的裂缝宽度和挠度略有增加,表明纤维蠕变对混凝土管的长期性能没有显着影响。此外,还观察到应变值超过了普通混凝土材料的应变值,这表明在混凝土管道混合物中包含合成纤维可增强管道的延展性。

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