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首页> 外文期刊>Journal of Constructional Steel Research >Application of the finite strip method in cold-formed steel member design
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Application of the finite strip method in cold-formed steel member design

机译:有限条法在冷弯型钢构件设计中的应用

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摘要

The objective of this paper is to explore solutions and provide design recommendations for two practical issues that develop when integrating computational member analysis with the conventional finite strip method (FSM) into cold-formed steel member design utilizing the direct strength method (DSM). First, FSM often fails to uniquely identify the relevant local and distortional member buckling modes. These elastic buckling loads (or moments) are required inputs for predicting the design strength. Second, the recently developed constrained finite strip method (cFSM) which can uniquely identify local and distortional buckling in all cases suffers from its own limitations, specifically (a) cFSM does not yield the same exact solution as FSM even when unique minima exists in the FSM solution, and (b) cFSM cannot include rounded corners in the model of the cross-section. Two methods are examined herein for overcoming these limitations, both of which utilize cFSM in an augmented form. The proposed methods are explored for lipped channel cross-sections both for elastic buckling and for ultimate strength prediction via DSM. Particular attention is paid to methods for handling cross-sections with rounded corners (in both elastic buckling and strength) since cFSM cannot include rounded corners and still meaningfully identify the modes. Finally, based on the study of lipped channel members a recommendation is provided for a methodology that enables automated analysis of cold-formed steel member elastic buckling modes for use in DSM.
机译:本文的目的是探索解决方案并提供针对两个实际问题的设计建议,这些问题在将计算构件分析与常规有限条法(FSM)集成到利用直接强度法(DSM)的冷弯钢构件设计时出现。首先,FSM通常无法唯一地识别相关的局部和变形成员屈曲模式。这些弹性屈曲载荷(或力矩)是预测设计强度所需的输入。其次,最近开发的约束有限条带法(cFSM)可以在所有情况下唯一地识别局部屈曲和变形屈曲,但有其自身的局限性,特别是(a)即使cFSM中存在唯一的最小值,cFSM也无法提供与FSM相同的精确解。 FSM解决方案,以及(b)cFSM不能在横截面模型中包含圆角。本文研究了两种克服这些限制的方法,两种方法都以增强形式使用cFSM。探究了所提出的方法,以分析唇形通道的横截面,以进行弹性屈曲和通过DSM预测极限强度。特别要注意处理带有圆角的横截面的方法(在弹性屈曲和强度方面),因为cFSM不能包括圆角并且仍然有意义地识别模式。最后,基于对唇形槽钢构件的研究,提出了一种方法的建议,该方法能够自动分析用于DSM的冷弯型钢构件的弹性屈曲模式。

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