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Dynamic response of composite frames with different shear connection degree

机译:不同剪力连接度的组合框架的动力响应

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The influence of partial composite action between concrete slab and steel beam and of partial-strength connections on the seismic response of composite frames is evaluated. To this end, experimental tests were carried out at the Laboratory of the National Technical University of Athens. The specimens, one-story one-bay moment-resisting frames with steel-concrete composite beams, were tested under base acceleration on the shaking table. Experimental results demonstrated that for different degrees of partial interaction between the slab and the beam the response of the specimens varied significantly. Specimens with intermediate and low shear connection degree showed the most favourable performance, in terms of ductile behavior and energy dissipation. The slip between the slab and the beam interface contributed to the energy dissipated by the system and the ductility demands decreased on other parts like the beam ends and the joints. Then, finite element models simulating the behavior of the tested specimens were developed and, after validation, extended parametric studies were carried out. The main objective is to investigate the influence of the partial interaction and the employment of partially restrained beam-to-column joints on the dissipative capacities of composite frames under strong ground motions. Numerical results confirmed the experimental conclusions and revealed that the use of intermediate and low shear connection degrees with partial-strength joints results in an advantageous seismic design.
机译:评估了混凝土板和钢梁之间的部分复合作用以及部分强度连接对复合框架的地震响应的影响。为此,在雅典国立技术大学实验室进行了实验测试。在振动台的基础加速度下,对带有钢-混凝土组合梁的单层单托架抗弯框架的样品进行了测试。实验结果表明,对于平板和梁之间不同程度的局部相互作用,试样的响应差异很大。就延性行为和能量耗散而言,具有中等和低剪切连接度的试样表现出最有利的性能。平板和梁界面之间的滑移导致系统耗散了能量,并且延展性要求在其他部分(如梁端和节点)上降低了。然后,开发了模拟被测样品行为的有限元模型,并在验证后进行了扩展的参数研究。主要目的是研究在强地震动下部分相互作用和部分受约束的梁柱节点对复合框架耗散能力的影响。数值结果证实了实验结论,并揭示了使用具有部分强度接头的中,低剪力连接度可实现有利的抗震设计。

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