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Shear buckling of channel sections with simply supported ends using the Semi-Analytical Finite Strip Method

机译:使用半分析有限条形法对具有简单支撑端部的通道截面进行剪切屈曲

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Buckling of thin-walled sections in pure shear has been recently investigated using the Semi-Analytical Finite Strip Method (SAFSM) to develop the "signature curve" for sections in shear. The method assumes that the buckle is part of an infinitely long section unrestrained against distortion at its ends. For sections restrained at finite lengths by transverse stiffeners or other similar constraints, the Spline Finite Strip Method (SFSM) has been used to determine the elastic buckling loads in pure shear. These loads are higher than those from the SAFSM due to the constraints. The SFSM requires considerable computation to achieve the buckling loads due to the large numbers of degrees of freedom of the system. In the 1980s, Anderson and Williams developed a shear buckling analysis for sections in shear where the ends are simply supported based on the exact finite strip method. The current paper further develops the SAFSM buckling theory of Y.K. Cheung for sections in pure shear accounting for simply supported ends using the methodology of Anderson and Williams. The theory is applied to the buckling of plates of increasing length and channel sections in pure shear also for increasing length. The method requires increasing numbers of series terms as the sections become longer. Convergence studies with strip subdivision and number of series terms is provided in the paper.
机译:最近已经使用半分析有限条法(SAFSM)研究了纯剪切中薄壁截面的屈曲,以得出剪切截面的“特征曲线”。该方法假定带扣是一个无限长的部分的一部分,在其端部不受约束。对于受横向加劲肋或其他类似约束限制在有限长度的截面,已使用样条有限条法(SFSM)确定纯剪切中的弹性屈曲载荷。由于这些限制,这些负载高于SAFSM的负载。由于系统的大量自由度,SFSM需要大量计算才能实现屈曲载荷。在1980年代,安德森(Anderson)和威廉姆斯(Williams)对剪切机中的截面进行了剪切屈曲分析,在这些截面中,仅基于精确的有限条带法简单地支撑了端部。本文进一步发展了Y.K.的SAFSM屈曲理论。 Cheung用Anderson和Williams的方法对纯剪力断面的截面进行了简单支撑。该理论适用于增加长度的板的屈曲,并且在纯剪切中也用于增加长度的通道截面。随着部分的变长,该方法需要增加系列术语的数量。本文提供了带条细分和系列项数的收敛性研究。

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