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Steel moment resisting frames with both joint and beam dissipation zones

机译:具有关节和梁耗散区的抗钢力矩框架

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Normally, the design of steel moment resisting frames in seismic areas encourages the formation of plastic zones in the beams. This paper investigates numerically the performance of moment resisting frames designed to dissipate hysteretic energy in joints and beams together. Joints can be a stable source of hysteresis, provided they are designed with ductility requirements. The commonly used bolted end-plate connection is adopted here. In order to provide spacing between the expected plastic zones in the connection and the beam, a reinforcement scheme with cover plates is employed. Appropriate methodologies are provided for the design of connections and cover plates. The proposed joint and beam dissipative frames are evaluated through parametric push-over and time-history analyses. Comparison is performed with frames designed with rigid joints that dissipate energy mainly in beams. The results show that the proposed frames not only don't suffer in terms of drifts or capacity, due to the added joint flexibility but they provide superior performance in many aspects, while they can offer economical advantages, due to their reduced bending moment requirements. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通常,在地震区域中抗钢矩框架的设计会鼓励在梁中形成塑性区。本文从数值上研究了用于将节点和梁中的滞回能量一起耗散的抗弯框架的性能。如果关节设计具有延展性要求,则可以成为稳定的磁滞源。这里采用常用的螺栓端板连接。为了在连接件和横梁中的预期塑料区域之间提供间隔,采用了带盖板的加固方案。提供了用于连接和盖板设计的适当方法。通过参数推覆和时程分析来评估所提出的关节和梁耗散框架。比较是通过设计有刚性接头的框架进行的,这些接头主要在梁中耗散能量。结果表明,所提出的框架不仅由于增加了接头的柔韧性而不受漂移或承载能力的影响,而且在许多方面均具有优越的性能,同时由于其弯矩要求的降低而具有经济优势。 (C)2018 Elsevier Ltd.保留所有权利。

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