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The influence of inter-module connections on the effective length of columns in multi-story modular steel frames

机译:模块间连接对多层模块化钢框架中柱有效长度的影响

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In stability analysis of steel frames, the effective length method requires the calculation of the K-factors, which can be difficult and subject to error in many moment frame configurations and requires significant engineering judgment for some frame types. This is of crucial importance for the design of modular prefabricated buildings, made of volumetric frames, and connected through corner inter-module connections, where the K-factors account for the contribution of complex boundary conditions to the axial load carrying capacity of a column. The direct use of effective lengths, provided by the conventional buildings' standards for the stability analysis and design of modular buildings may lead to either unsafe or conservative results, depending on the performance of inter-modular connections as an important roleplaying boundary condition. This paper studies the effective length factors (K-factors) of columns in both sway and non-sway frames, in corner-supported steel modular buildings. For each case, first, the governing equations for the elastic buckling load of a typical column in an assemblage of a corner-supported modular frame are derived and solved numerically to obtain the effective length factors for two different systems: vertically connected and horizontally connected modular frames. Alignment charts are provided for different relative bending stiffness ratios of joints. Then, parametric studies are conducted to investigate the influence of relative stiffness ratios of inter-modular connections and their type on the effective length factors. Finally, modified formulas based on American Institute of Steel Construction (AISC) standard codes are proposed to obtain the effective length factor of columns in both sway and non-sway modular frames. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在钢帧的稳定性分析中,有效的长度方法需要计算k因素,这可能困难,并且在许多时刻帧配置中误差,并且需要对某些帧类型的重要工程判断。这对模块化预制建筑物的设计至关重要,由体积帧制成,并通过角落间连接连接,其中k因素占复杂边界条件对列的轴向承载能力的贡献。由传统建筑物的稳定性分析标准提供的有效长度提供的有效长度可能导致不安全或保守的结果,这取决于模块间连接作为重要的角色扮演边界条件的性能。本文研究了摇摆和非摇摆框架中的柱子的有效长度因子(K系列),在角支撑的钢模形建筑中。对于每种情况,首先,在数值上导出和解决典型柱的弹性屈曲负荷的控制方程,以实现和解决两个不同系统的有效长度因子:垂直连接和水平连接的模块化框架。为关节的不同相对弯曲刚度比提供对准图。然后,进行参数研究以研究模块间连接间和其类型对有效长度因子的相对刚度比的影响。最后,提出了基于美国钢结构(AISC)标准码的改进式公式,以获得摇摆和非摇摆模块框架中的柱的有效长度因子。 (c)2020 elestvier有限公司保留所有权利。

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