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Application of inelastic buckling analysis for design assessment of frames using nonprismatic I-section members

机译:非全文I形段成员设计评估内部屈曲分析的应用

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This paper presents an innovative approach for design of planar steel frames composed of prismatic and/or nonprismatic members. The method uses an inelastic eigenvalue buckling analysis configured with column, beam and beam-column inelastic stiffness reduction factors derived from the ANSI/AISC 360-16 Specification provisions to evaluate the member overall buckling resistances. The resulting procedure provides a relatively rigorous evaluation of all member strength limit states accounting for moment and axial force variations along the member lengths, nonprismatic geometry effects, general out-of-plane bracing conditions, and beneficial end restraint from less critical adjacent unbraced lengths and/or from end boundary conditions. The approach uses a pre-buckling analysis based on the AISC Direct Analysis Method to estimate the in-plane internal forces, including second-order effects. Given these forces, a buckling solution is conducted to evaluate the overall member stability. Other limit states are addressed by cross-section strength checks given the computed internal second-order analysis forces. Calculations from this approach are compared with results from recent experimental tests.
机译:本文提出了棱柱和/或变截面件构成的平面钢框架的设计的创新方法。该方法使用与柱,梁和梁柱从ANSI / AISC 360-16规范规定衍生来评价整体压曲阻力的构件非弹性刚度降低系数构成的非弹性特征值屈曲分析。将得到的程序提供了所有构件强度极限状态的相对严格的评估占力矩和轴向力的变化沿着构件的长度,变截面几何形状的影响,一般外的平面支撑的条件下,和有益的端部约束从不太关键的相邻无支撑长度和/或从端部的边界条件。该方法使用基于AISC直接分析方法预先屈曲分析估计平面内力,包括二阶效应。考虑到这些因素,纵向弯曲解决方案进行评估整体成员的稳定性。其他限制状态由给定所计算的内部二阶分析力的横截面强度检查处理。从这一方法计算结果与最近的实验测试结果进行比较。

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