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首页> 外文期刊>Journal of Constructional Steel Research >Steel beam-to-column RBS connections with European profiles: I. Static optimization
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Steel beam-to-column RBS connections with European profiles: I. Static optimization

机译:具有欧洲轮廓的钢制梁柱RBS连接:I.静态优化

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摘要

In this work we present an optimization procedure for achieving best beam-to-column reduced beam section connections in steel moment frames under static loading. The whole scheme is based on selecting European I profiles for beams and columns, using the component method of Eurocode 3 for evaluating the design moment resistance of the joint, regression analysis to correlate the geometrical and inertial characteristics of the various components and elementary principles of Mechanics. In doing this, were are led to a constraint optimization problem, which is formed according to the design restrictions of European and North American Standards for RBS connections, regarding expected seismic behavior. Adopting advanced numerical procedures, optimum results are obtained, regarding either combinations of connection components or existing steel frames, a fact validating the flexibility and applicability of the proposed method. The calibration, verification and validation of the excellent seismic performance of the results obtained will be demonstrated in a companion paper, via FE analyses under cyclic loading. Hopefully, this work will contribute in adopting RBS connections in the design of steel moment frames in European engineering practice, as well as in the relevant codes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们提出了一种优化程序,以在静态荷载下在钢制弯矩框架中实现最佳的梁到柱减小梁截面连接。整个方案基于选择梁和柱的欧洲I型材,使用Eurocode 3的构件方法评估接头的设计抗力矩性,进行回归分析以关联各个构件的几何和惯性特性以及力学的基本原理。为此,导致了约束优化问题,该问题是根据欧洲和北美RBS连接标准关于预期地震行为的设计限制而形成的。通过采用先进的数值程序,无论是连接构件的组合还是现有钢框架的组合,都可获得最佳结果,这一事实证实了所提出方法的灵活性和适用性。通过循环荷载作用下的有限元分析,将在随附的论文中论证所获得结果的优异抗震性能的校准,验证和确认。希望这项工作将有助于在欧洲工程实践以及相关法规的设计中,在钢制弯矩框架的设计中采用RBS连接。 (C)2017 Elsevier Ltd.保留所有权利。

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