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Lateral-torsional buckling of singly symmetric web-tapered thin-walled I-beams: 1D model vs. shell FEA

机译:单对称腹板锥形薄壁工字梁的横向扭转屈曲:一维模型与壳体有限元分析

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摘要

This paper assesses the global performance and the underlying assumptions of a recently developed one-dimensional model characterising the elastic lateral-torsional buckling behaviour of singly symmetric tapered thin-walled open beams, which is able to account for the influence of the pre-buckling deflections. A comparative study involving the critical load factors and buckling modes yielded by (ⅰ) the one-dimensional model and (ⅱ) two-dimensional shell finite element analyses (reference results) is presented and discussed. The results concern I-section cantilevers and simply supported beams (ⅰ) with uniform or linearly tapered webs, (ⅱ) equal or unequal uniform flanges and (ⅲ) acted by point loads applied at the free end or mid-span sections, respectively. In general, the one-dimensional predictions are found to agree well with the shell finite element results. Some significant discrepancies are also recorded (for the shorter beams), which are due to the occurrence of relevant cross-section distortion or localised buckling phenomena.
机译:本文评估了最近开发的一维模型的整体性能和基本假设,该模型表征了单对称锥形薄壁敞开梁的弹性横向扭转屈曲行为,该模型能够解决预屈曲挠度的影响。提出并讨论了涉及由(factors)一维模型和(ⅱ)二维壳有限元分析(参考结果)产生的临界载荷因子和屈曲模式的比较研究。结果涉及工字型悬臂和简单支撑的梁(ⅰ),它们具有均匀或线性渐缩的腹板,(ⅱ)相等或不相等的均匀翼缘,以及(ⅲ)分别受作用于自由端或中跨段的点载荷作用。通常,发现一维预测与壳有限元结果非常吻合。还记录了一些重大差异(对于较短的光束),这是由于发生了相关的截面变形或局部屈曲现象所致。

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