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Behavior of Retrofitted UHPC Beams Using Carbon Fiber Composites under Impact Loads

机译:碳纤维复合材料在冲击载荷下改型的UHPC梁的性能

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In recent years, considerable attention has been focused on the use of ultra-high performance concrete (UHPC) in highway construction for its superior properties such as significantly higher compressive strength and tensile strength than conventional concrete, minimal long-term creep or shrinkage, and exceptional durability, which helps to reduce joint cracking and enhance load transfer in the structures. A 3-D finite element model for understanding the influence of impact loading is somewhat lacking. The response of a beam under impact loading might depend largely on the extent of the local damage experienced due to impact loads. This paper investigates the global structural response of UHPC beams strengthened using CFRP (carbon fiber reinforced polymers) under impact loads. Due to the lack of experimental and numerical research on this topic, the study is conducted using the explicit finite element computer program ABAQUS. The numerical study is verified using the results of strengthened reinforced concrete beams under static loads. Four beams were considered in this study; two conventional and two UHPC beams. Two of the four cases were analyzed without CFRP strengthening and the other two were with CFRP. The impact load was considered equivalent to initial velocity of 100 in/sec. acting at the midspan of all beams. It is concluded that modeling UHPC is feasible in ABAQUS however the lack of the UHPC stress-strain relationship. As anticipated, UHPC showed less deflection, more energy absorption and less concrete damage compared to conventional concrete.
机译:近年来,在公路建设中使用超高性能混凝土(UHPC)具有卓越的性能,例如比常规混凝土具有显着更高的抗压强度和抗拉强度,最小的长期蠕变或收缩以及出色的耐用性,有助于减少接头开裂并增强结构中的载荷传递。某种程度上缺乏用于理解冲击载荷影响的3D有限元模型。梁在冲击载荷下的响应可能很大程度上取决于由于冲击载荷而遭受的局部损坏的程度。本文研究了在冲击载荷下使用CFRP(碳纤维增强聚合物)增强的UHPC梁的整体结构响应。由于缺乏有关此主题的实验和数值研究,因此使用显式有限元计算机程序ABAQUS进行了研究。利用钢筋混凝土梁在静载荷作用下的结果对数值研究进行了验证。在这项研究中考虑了四束光。两个常规光束和两个UHPC光束。分析了4例中的2例未使用CFRP加强的情况,另外2例使用了CFRP。冲击载荷被认为等于100 in / sec的初始速度。作用于所有横梁的中跨。结论是,在ABAQUS中对UHPC建模是可行的,但是缺乏UHPC应力-应变关系。正如预期的那样,与传统混凝土相比,UHPC的挠度较小,吸收的能量更多,对混凝土的破坏也较小。

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