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首页> 外文期刊>Composite Structures >Influence of initial geometric imperfections in the lateral buckling problem of thin walled pultruded GFRP Ⅰ-profiles
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Influence of initial geometric imperfections in the lateral buckling problem of thin walled pultruded GFRP Ⅰ-profiles

机译:初始几何缺陷对薄壁拉挤GFRPⅠ型材的横向屈曲问题的影响

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This paper aims at investigating the influence of some typical manufacturing geometric imperfections on the pre-buckling behavior of transversally loaded GFRP I-beam. One dimensional mechanical approach is proposed by modelling each panel of the cross section as a Timoshenko rectangular beam. In addition to the usual displacement and rotational degrees of freedom used in conventional beam models, few extra degrees of freedom are introduced in order to account for sectional distortions. The model is based on the common assumptions of linear elasticity with small strains and moderate rotations. Two kinds of manufacturing imperfection are taken into account: minor axis out-of-straightness and web/flange planes non-orthogonality the latter representing a particular feature of the present model. Numerical analyses, developed via finite elements, show that such kind of imperfections can significantly influence the pre-buckling behavior making deformability requirements a fundamental design rule.
机译:本文旨在研究一些典型的制造几何缺陷对横向加载的GFRP工字梁的预屈曲行为的影响。通过将横截面的每个面板建模为Timoshenko矩形梁,提出了一种一维机械方法。除了常规梁模型中通常使用的位移和旋转自由度以外,几乎没有引入额外的自由度以解决截面变形问题。该模型基于具有小应变和适度旋转的线性弹性的一般假设。考虑了两种制造缺陷:短轴不平直度和腹板/法兰平面非正交,后者代表了本模型的特定功能。通过有限元进行的数值分析表明,这种缺陷会显着影响预屈曲性能,从而使可变形性要求成为基本的设计规则。

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