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Buckling of built-up columns of pultruded fiber-reinforced polymer C-sections

机译:拉挤纤维增强聚合物C型材组合柱的屈曲

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摘要

This paper presents the test results of an experimental investigation to evaluate the buckling behavior of built-up columns of pultruded profiles, subjected to axial compression. Specimens are assembled by using four (off the shelf) channel shaped profiles of E-glass fiber-reinforced polymer (FRP), having similar detailing to strut members in a large FRP structure that was executed in 2009 to start the restoration of the Santa Maria Paganica church in L’Aquila, Italy. This church had partially collapsed walls and no roof after the April 6, 2009, earthquake of 6.3 magnitude. A total of six columns are characterized with two different configurations for the bolted connections joining the channel sections into a built-up strut. Test results are discussed and a comparison is made with closed-form equation predictions for flexural buckling resistance, with buckling resistance values established from both eigenvalue and geometric nonlinear finite element analyses. Results show that there is a significant role played by the end loading condition, the composite action, and imperfections. Simple closed-form equations overestimate the flexural buckling strength, whereas the resistance provided by the nonlinear analysis provides a reasonably reliable numerical approach to establishing the actual buckling behavior.
机译:本文介绍了一个实验研究的测试结果,以评估拉挤型材的组合柱在轴向压缩下的屈曲性能。通过使用四个(现成的)E型玻璃纤维增​​强聚合物(FRP)槽形型材来组装样品,其细节与大型FRP结构中的支杆构件相似,该结构于2009年开始执行,以恢复圣玛丽亚Paganica教会在拉奎拉,意大利。 2009年4月6日发生6.3级地震后,这座教堂的墙壁部分塌陷,没有屋顶。总共六根色谱柱的特征是采用两种不同的螺栓连接配置,以将通道部分连接到组合式支柱中。讨论了测试结果,并通过闭合形式方程预测挠曲屈曲阻力进行了比较,并通过特征值和几何非线性有限元分析建立了屈曲阻力值。结果表明,最终载荷条件,复合作用和缺陷会发挥重要作用。简单的闭合形式方程式高估了弯曲屈曲强度,而非线性分析提供的阻力为建立实际的屈曲行为提供了合理可靠的数值方法。

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