Strength of Thin-Walled Lipped Channel Section Columns with Shell-Shaped Curved Grooves

K. Hoshide, M. Ohga, P. Chun, T. Shigematsu, S. Kawamura
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Abstract

Thin-walled member is structurally superior to a construction member. However, by reason of complexity in structure the stress and the deformation to yield the cross section are complicated. Specially, in case thin-walled members, such as thin-walled channel section columns, which are subjected to compressive force, these members produce the local buckling, distortional buckling and overall buckling. A number of experimental and theoretical investigations subjected to axial compressive force are generated for thin-walled channel section columns with triangle-shaped folded groove by Hancock [1] and with complex edge stiffeners and web stiffeners by Wang [2]. In case thin-walled channel section column with folded groove which is subjected to axial compressive force, it is cleared that the buckling mode shapes are ordinarily generated for local buckling mode shape of plate-panel composing cross section of member in short member aspect ratio and overall buckling mode shape as column and distortional buckling mode shape interacting between local buckling and overall buckling similarly normal thin-walled member. It is cleared analytically and experimentally that buckling strength and critical strength of thin-walled channel section column with folded groove can increase sharply in comparison with that of normal thin-walled member composing only plate-panel. In this paper a new cross section of shell-shaped curved groove [3] was proposed instead of the thin-walled lipped channel section column with triangle- and rectangle-shaped folded grooves used ordinarily, and therefore the comparison and the examination of buckling strength and buckling behavior were generated in the case of preparing triangle-shaped folded and shell-shaped curved grooves to web and flange of thin-walled channel section column. And then in order to investigate the buckling behavior on the thin-walled channel section column with folded and curved grooves, exact buckling strength and the buckling mode shapes are generated by using the transfer matrix method. The analytical local distortional and overall elastic buckling loads of thin-walled channel section column with folded and curved grooves can be obtained simultaneously by use of the transfer matrix method. Furthermore, a technique to estimate the buckling mode shapes of these members is also shown.
壳形弯槽薄壁唇形槽截面柱的强度
薄壁构件在结构上优于结构件。然而,由于结构的复杂性,应力和屈服截面的变形是复杂的。特别是薄壁构件,如薄壁槽形截面柱,在受压作用下,会产生局部屈曲、变形屈曲和整体屈曲。Hancock[1]和Wang[2]对带三角形折叠槽的薄壁槽体截面柱进行了轴向压缩力作用下的实验和理论研究。对于受轴向压缩力作用的折槽薄壁槽体截面柱,明确了屈曲模态通常为短构件长径比板板组成构件截面的局部屈曲模态和柱的整体屈曲模态,以及类似普通薄壁构件局部屈曲与整体屈曲相互作用的畸变屈曲模态。分析和实验表明,与仅由板-板组成的普通薄壁构件相比,带折叠槽的薄壁槽体截面柱的屈曲强度和临界强度有明显提高。本文提出了一种新的壳型弯曲槽截面[3],取代了通常使用的三角形和矩形折叠槽的薄壁唇形槽截面柱,从而对薄壁槽截面柱腹板和翼缘制备三角形折叠槽和壳型弯曲槽的情况进行了屈曲强度和屈曲性能的比较和校核。然后,为了研究带折槽和弯曲槽的薄壁槽截面柱的屈曲行为,采用传递矩阵法生成了精确的屈曲强度和屈曲模态振型。采用传递矩阵法,可以同时计算具有折槽和弯曲槽的薄壁槽体截面柱的局部解析变形和整体弹性屈曲载荷。此外,还介绍了一种估算这些构件屈曲模态振型的方法。
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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