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Comprehensive local buckling equations for FRP I-sections in pure bending or compression

机译:纯弯曲或压缩状态下FRP I型截面的综合局部屈曲方程

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In this work, explicit equations to determine local buckling critical stress of thin-walled fiber reinforced polymer (FRP) profiles in pure bending or compression are proposed. Interaction between flange and web is considered and the expressions allow for different orthotropy ratios and ranges of flange-to-web widths and thicknesses. To obtain the equations, Rayleigh Quotient energy method is adopted for assumed approximate buckled shapes. As quality of selected functions affects the accuracy, different shapes are investigated and the results are compared with those obtained with Generalized Beam Theory (GBT) for typical I-section dimensions and material properties. A comparison is made to the solutions based on discrete plate with simplified support conditions as well as to a recently proposed equation for major-axis bending. Finally, a general form for the local buckling critical coefficient is also presented along with tabulated parameters for prompt assessment of critical stresses, consisting in a simple and reliable alternative for design approach.
机译:在这项工作中,提出了确定纯弯曲或压缩状态下薄壁纤维增强聚合物(FRP)型材局部屈曲临界应力的显式方程。考虑了凸缘和腹板之间的相互作用,并且该表达式考虑了不同的正交各向异性比率以及凸缘对腹板的宽度和厚度的范围。为了获得方程,对假定的近似弯曲形状采用瑞利商能量方法。由于所选函数的质量会影响精度,因此将研究不同的形状,并将结果与​​使用广义梁理论(GBT)获得的典型I截面尺寸和材料特性进行比较。比较了基于离散板和简化支撑条件的解决方案,以及最近提出的主轴弯曲方程。最后,还提出了局部屈曲临界系数的一般形式,以及用于迅速评估临界应力的列表参数,包括一种简单可靠的设计方法。

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