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Identification of buckling modes in generalized spline finite strip analysis of cold-formed steel members

机译:冷弯型钢构件广义花键有限条分析中屈曲模式的识别

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摘要

In this paper, a mode identification technique in the context of spline finite strip method (SFSM) is presented to compute the contribution of primary (global, distortional and local) and secondary (shear/transverse extension) buckling modes. The base vectors corresponding to individual buckling modes are developed based on the principles of generalized beam theory. The buckling mode shape in SFSM is approximated as a linear combination of these orthonormal base vectors to evaluate the participation of individual buckling mode. The proposed mode identification technique is able to successfully quantify the participation of different buckling modes and the mode participation is comparable with mode identification using finite strip method (FSM) and generalized beam theory (GBT). Illustrative examples are presented to calculate the participation of individual modes in cold-formed steel sections under different loading and boundary conditions. Also the specific application of mode identification in SFSM is demonstrated.
机译:在本文中,提出了一种在样条有限带方法(SFSM)的背景下的模式识别技术,用于计算主(整体,变形和局部)和次(剪切/横向扩展)屈曲模式的贡献。基于广义梁理论的原理,开发了与各个屈曲模式相对应的基向量。 SFSM中的屈曲模式形状近似为这些正交基向量的线性组合,以评估各个屈曲模式的参与。所提出的模式识别技术能够成功地量化不同屈曲模式的参与,并且该模式参与与使用有限条带法(FSM)和广义梁理论(GBT)的模式识别具有可比性。给出了说明性示例,以计算在不同载荷和边界条件下冷弯型钢截面中各个模式的参与。还演示了模式识别在SFSM中的具体应用。

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