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首页> 外文期刊>Journal of Composites for Construction >Predicting Flange Local Buckling Capacity of Pultruded GFRP I-Sections Subject to Flexure
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Predicting Flange Local Buckling Capacity of Pultruded GFRP I-Sections Subject to Flexure

机译:预测拉挤GFRP I段受弯曲的凸缘局部屈曲容量

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Flange local buckling (FLB) of pultruded glass fiber-reinforced polymer (pGFRP) I-sections subject to flexure is investigated in this study. An experimental program, consisting of 62 four-point bending tests that had various constant moment region and shear span lengths, was conducted. It was shown that critical FLB moment capacities increased as the flange slenderness ratios decreased and FLB was the dominant buckling mode for sections that had large flange slenderness ratios. Using classic plate theory and the energy method, an analytical study was carried out and an explicit equation for predicting the critical FLB moments of pGFRP I-sections was proposed. The elastic rotational restraint at the flange-web junction was studied and a modified spring constant,k, was proposed. In addition, the buckling stiffening effect of the test geometry was described through a numerical study. The proposed predictive FLB equation was validated using experimental results from this study and others and was compared with two commonly accepted design guides, Kollar's numeric solution, and finite strip method (FSM) solutions. A good agreement was found between the proposed equation and experimental results and FSM. The proposed equation showed improved predictive accuracy over existing design guides and numeric solutions.
机译:在本研究中研究了Pultruded玻璃纤维增​​强聚合物(PGFRP)I段的法兰局部屈曲(FLB)。由具有各种恒定矩区域和剪切跨度长度的62个四点弯曲试验组成的实验程序。结果表明,随着法兰细长比减小而FLB的临界FLB矩容量是具有大法兰细长比的部分的主要屈曲模式。采用经典板理论和能量方法,进行了分析研究,提出了一种预测PGFRP I-Sections临界FLB矩的显式方程。研究了凸缘纤维网结处的弹性旋转约束,提出了改性的弹簧常数K。另外,通过数值研究描述了测试几何形状的屈曲加强效果。使用本研究和其他实验结果验证了所提出的预测FLB方程,并与两种常用的设计指南,凯拉尔的数字解决方案(FSM)解决方案进行了验证。在提出的公式和实验结果和FSM之间发现了一个良好的一致。所提出的方程显示出在现有的设计指南和数字解决方案上提高了预测精度。

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