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Modifications of standard GFRP sections shape and proportions for improved stiffness and lateral-torsional stability

机译:修改标准GFRP截面的形状和比例,以改善刚度和横向扭转稳定性

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In this paper the results of a comprehensive numerical investigation regarding the axial-flexural-tor sional response of pultruded slender beams is presented. The goal is to propose GFRP standard cross-sections of such proportions and shapes that would possess improved strength, stability and deformational characteristics compared to the corresponding existing sections whose proportions are generally based on standard steel sections. As GFRP sections are thin-walled but are significantly less stiff than similar steel sections, the study focuses on enhancing their appropriate stiffness and buckling strength. The novel and efficient numerical model used in this investigation was developed by the writers and can be used to trace the complete pre-buckling geometrically nonlinear response of any GFRP or steel thin-walled member with open or closed cross-section. The bucking load is computed by the asymptotic value of the load-displacement curve. Members with I-, L-, T- and box sections are analyzed, considering different loading and boundary conditions. It is demonstrated that due to their unsuitable proportions, available standard GFRP sections do not have adequate stiffness and budding strength. Consequently, recommendations are made for new sectional proportions and modified shapes, and some graphical results are presented to demonstrate how the results of the proposed method could be utilized in practical design situations. The superiority of the proposed sections is quantified by an efficiency factor, defined in terms of ratio of strength gain to material volume increase. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了关于拉挤细长梁轴向-挠曲-扭转部分响应的综合数值研究的结果。目的是提出这样的比例和形状的GFRP标准截面,与相应比例的一般基于标准钢截面的现有截面相比,该截面具有更好的强度,稳定性和变形特性。由于GFRP截面是薄壁的,但比同类钢截面的刚度要小得多,因此研究重点在于提高其适当的刚度和屈曲强度。作者开发了新颖而有效的数值模型,该模型可用于追踪任何具有开放或封闭横截面的GFRP或钢薄壁构件的完整预屈曲几何非线性响应。屈曲载荷通过载荷-位移曲线的渐近值来计算。考虑不同的载荷和边界条件,对具有I,L,T和箱形截面的构件进行了分析。结果表明,由于比例不合适,可用的标准GFRP截面没有足够的刚度和萌芽强度。因此,对新的截面比例和修改后的形状提出了建议,并提供了一些图形结果来证明所提出的方法的结果可以在实际设计情况下使用。提议的部分的优越性由效率系数来量化,效率系数是根据强度增加与材料体积增加的比率来定义的。 (C)2015 Elsevier Ltd.保留所有权利。

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