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Lateral-torsional buckling of laterally unsupported single angle sections loaded along geometric axis

机译:沿几何轴加载的侧向无支撑单角截面的侧向扭转屈曲

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摘要

Equal-leg single angle section (SAS) members were analyzed for flexural loading patterns along the geometric axis. Uniform, triangular, double-curvature and parabolic bending moment were produced using loading patterns over the span of member. Variations in orientation as well as in local and global slenderness ratio were considered to plot normalized moment rotation curves. Both material and geometrical nonlinearities with imperfections in member were also incorporated. These curves were compared with the existing provisions of AISC specification to verify the validity of the upper limit on C_b, which accounts for the effect of loading patterns on the elastic critical buckling moment of SAS members. Design specifications of Indian Standard (IS 800:2007) for lateral-torsional buckling (LTB) of doubly and mono-symmetric sections were used to develop the design guidelines for limit state of LTB of SAS members. Moment capacity curves from proposed guidelines were compared with the AISC specification and were found to be safe and conservtive.
机译:分析了等腿单角截面(SAS)构件沿几何轴的挠曲载荷模式。使用构件跨度上的载荷模式产生均匀的,三角形的,双曲率的和抛物线形的弯矩。取向的变化以及局部和整体细长比被认为可以绘制归一化的力矩旋转曲线。材料和几何非线性都存在缺陷。将这些曲线与AISC规范的现有规定进行比较,以验证C_b上限的有效性,该上限说明了加载方式对SAS构件的弹性临界屈曲力矩的影响。使用印度标准(IS 800:2007)的双对称截面和单对称截面的横向扭转屈曲(LTB)设计规范来制定SAS成员LTB极限状态的设计准则。将拟议指南中的弯矩能力曲线与AISC规范进行了比较,发现它们是安全且保守的。

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