Modification of the Euler load for the stiffened compressive members and determination of the optimal stiffening for the maximum buckling load

Q3 Engineering
M. K. Sichani, A. Keramati, F. Behzadinia
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Abstract

The potential of buckling in compressive members has been considered as a disadvantage when using steel members in the construction industry. In spite of the progress made in this regard, buckling is still considered as a challenge in the analysis and design of compressive steel structural members. Such a challenging phenomenon can be controlled by strengthening of compressive members. Stiffened compressive members can control the weakness of steel members in the global buckling. In this paper, elastic buckling behavior of three-segment symmetric steel members with pinned ends is investigated. The differential stability equation for non-prismatic three-segment members is solved numerically. Critical load parameter for stiffened members is calculated considering different stiffened length and moment of inertia ratios. Based on a wide range of the calculated data, the buckling load could be accounted as a safe measure to be used in the design formulas. Evaluation of the effects of various parameters on the buckling load shows that the desired buckling load value can be achieved by a partially stiffened member. By constant increase of a member’s weight, the shorter the length of the variation in the cross-section, the higher moment of inertia is essential in the stiffened segment; and the maximum critical load parameter is achieved by a stiffened length ratio between 0.4 and 0.6.
对加筋压缩构件欧拉载荷的修正及最大屈曲载荷下最优加筋的确定
受压构件屈曲的可能性一直被认为是在建筑行业中使用钢构件时的一个缺点。尽管在这方面取得了一些进展,但屈曲仍然是受压钢结构构件分析和设计中的一个挑战。这种具有挑战性的现象可以通过加强抗压构件来控制。加筋抗压构件可以控制钢构件在整体屈曲中的弱点。本文研究了端部固定的三段对称钢构件的弹性屈曲行为。对非棱镜三段构件的微分稳定性方程进行了数值求解。考虑不同加筋长度和惯性矩比,计算了加筋构件的临界荷载参数。基于广泛的计算数据,屈曲载荷可作为一种安全措施纳入设计公式。计算了各参数对屈曲载荷的影响,结果表明,部分加筋构件可以达到期望的屈曲载荷值。随着构件自重的不断增加,截面变化长度越短,加劲段所需的惯性矩越大;当加筋长度比为0.4 ~ 0.6时,达到最大临界荷载参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Rehabilitation in Civil Engineering
Journal of Rehabilitation in Civil Engineering Engineering-Building and Construction
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
12 weeks
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