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Numerical Investigation on the Cyclic Behavior of Post-tensioned Steel Moment Connections with Bolted Angles

机译:用螺栓角度张紧钢矩连接循环行为的数值研究

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摘要

Post-tensioned (PT) steel frames have recently been introduced to resist lateral load and to provide self-centering capability. In these frames, high strength steel strands that run parallel to the beam web, have been used to provide moment resisting and restoring force. Also, the top and seat angles have been used to provide suitable energy dissipation capacity. In this paper, ten interior connections of these frames are designed such that we could numerically investigate the effects of angle and strand parameters on their stiffness, moment and energy dissipation capacity, as well as on their self-centering capability. Also, it is aimed to determine the effects of angle parameters on the amount and distribution of plastic deformation in the column and beams. To validate the numerical results, two of these specimens are considered to be the same as experimentally tested PT connections that are available in the literature. The results showed that our numerical results are in good agreement with the experimental ones. Also, PT connections will have appropriate strength and stiffness along with excellent energy dissipation capacity and ductility, if the number of strands and angle thickness be chosen properly. In story drifts corresponding to the design based earthquake, the column and beams are remain elastic and the PT connection returns to its plump position after unloading (self-centering capability). Upon applying a story drift corresponding to the maximum considerable earthquake, these connections are able to retain their special characteristics (such as self-centering capability and ductility). At this story drift, minor yielding occurs in the column panel zone and in the beams at the end of reinforcing plates.
机译:最近引入后张紧(PT)钢框架以抵抗横向载荷并提供自定心能力。在这些框架中,已经使用与梁网平行的高强度钢绞线,用于提供抵抗力和恢复力的力矩。而且,顶部和座椅角度已经用于提供合适的能量耗散能力。在本文中,设计了十个内部连接,使得我们可以在数值上研究角度和股线参数对其刚度,力矩和能量耗散能力的影响,以及它们的自定心能力。此外,旨在确定角参数对柱子和梁塑性变形量和分布的影响。为了验证数值结果,其中两个样本被认为是与文献中可用的实验测试的PT连接相同。结果表明,我们的数值结果与实验结果吻合良好。此外,如果正确选择的股线和角度厚度,PT连接将具有适当的强度和刚度以及优异的能量耗散能力和延展性。在与基于设计的地震相对应的故事中,柱子和梁保持弹性,并且PT连接在卸载(自定心能力)之后返回其丰满位置。在应用与最大相当大地震相对应的故事漂移时,这些连接能够保留其特殊特性(例如自定心能力和延展性)。在这个故事漂移处,柱面板区域和加强板末端的梁中发生轻微的屈服。

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