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首页> 外文期刊>International journal of steel structures >Comprehensive stability Design of Planar Steel Members and Framing Systems via Inelastic Buckling Analysis
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Comprehensive stability Design of Planar Steel Members and Framing Systems via Inelastic Buckling Analysis

机译:平面钢构件和框架系统的非弹性屈曲综合稳定性设计

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This paper presents a comprehensive approach for the design of planar structural steel members and framing systems using a direct computational buckling analysis configured with appropriate column, beam and beam-column inelastic stiffness reduction factors. The stiffness reduction factors are derived from the ANSI/AISC 360-16 Specification column, beam and beam-column strength provisions. The resulting procedure provides a rigorous check of all member in-plane and out-of-plane design resistances accounting for continuity effects across braced points as well as lateral and/or rotational restraint from other framing. The method allows for the consideration of any type and configuration of stability bracing. With this approach, no member effective length (K) or moment gradient and/or load height (C-b) factors are required. The buckling analysis rigorously captures the stability behavior commonly approximated by these factors. A pre-buckling analysis is conducted using the AISC Direct Analysis Method (the DM) to account for second-order effects on the in-plane internal forces. The buckling analysis is combined with cross-section strength checks based on the AISC Specification resistance equations to fully capture all the member strength limit states. This approach provides a particularly powerful mechanism for the design of frames utilizing general stepped and/or tapered I-section members.
机译:本文提出了一种采用直接计算屈曲分析设计平面结构钢构件和框架系统的综合方法,该分析方法配置有适当的柱,梁和梁-柱非弹性刚度折减系数。刚度降低系数来自ANSI / AISC 360-16规范列,梁和梁柱强度规定。生成的过程对所有成员的平面内和平面外设计阻力进行了严格的检查,以考虑跨支撑点的连续性影响以及来自其他框架的横向和/或旋转约束。该方法允许考虑任何类型和配置的稳定性支撑。使用这种方法,不需要成员有效长度(K)或力矩梯度和/或载荷高度(C-b)因子。屈曲分析严格地捕获了通常由这些因素近似的稳定性行为。使用AISC直接分析方法(DM)进行预屈曲分析,以考虑对平面内力的二阶影响。屈曲分析与基于AISC规范阻力方程的横截面强度检查相结合,以完全捕获所有构件强度极限状态。该方法为利用通用的阶梯形和/或锥形I形截面构件设计框架提供了特别强大的机制。

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