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Mechanical Performance of Steel-Concrete Composite Beams Subjected to a Hogging Moment

机译:弯矩作用下钢-混凝土组合梁的力学性能

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摘要

Limited experimental results have been reported in the literature on the fatigue and ultimate static loading behavior of composite beams subjected to negative bending moment. This paper examines experimentally the behavior of composite steel-concrete beams. Eight composite specimens were tested to study the various aspects of composite beams under a negative bending moment, including the effects of repeated loading, shear connectors (studs and PBLs), rubber-latex mortar coating, and steel fiber-reinforced concrete (SFRC) on their structural performance. Load versus midspan deflection, crack formation and its developing process, slip distribution on the steel-slab interface, and the flexural strain results of shear connectors were measured and studied. The test results show that the initial cracking-level repeated load did not show obvious effects, while the stabilized cracking-level repeated load can reduce the rigidity and loading capacity of composite beams. The experimental results indicate that the plastic bending moment criteria in the current AASHTO load and resistance factor design specifications are typically conservative for composite beams under a negative bending moment. In addition, the effects of SFRC on crack width control and adhesion bonding effects of rubber latex on the steel-slab interface were confirmed in the testing.
机译:关于负弯矩的复合梁的疲劳和极限静载荷性能的文献报道了有限的实验结果。本文通过实验检查了复合钢-混凝土梁的性能。测试了八个复合材料样本,以研究复合梁在负弯矩下的各个方面,包括反复荷载,剪力连接件(螺柱和PBL),橡胶乳胶砂浆涂层和钢纤维增强混凝土(SFRC)的影响。其结构性能。测量并研究了载荷与中跨挠度,裂纹形成及其发展过程,钢-平板界面上的滑移分布以及剪切连接器的弯曲应变结果。试验结果表明,初始开裂水平反复荷载作用不明显,而稳定的开裂水平反复荷载会降低组合梁的刚度和承载能力。实验结果表明,在目前的AASHTO荷载和阻力系数设计规范中,塑料弯矩准则对于负弯矩下的复合梁通常较为保守。另外,在试验中证实了SFRC对裂缝宽度控制的影响以及橡胶胶乳对钢-板界面的粘合作用。

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