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Experimental investigation on the flexural-torsional buckling behavior of pultruded GFRP angle columns

机译:拉挤GFRP角柱的弯扭屈曲行为的试验研究

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In this paper, the findings from an experimental investigation on the flexural-torsional buckling behavior of pultruded glass-fiber reinforced polymer (GFRP) angle columns are reported and discussed. The program included the study of two sizes of equal-leg angles made with different resins (polyester and vinylester). Prior to testing, a detailed material characterization was carried out and signature curves (critical load x length) were obtained using a generalized beam theory (GBT) software for predicting critical loads. Lengths were selected in order to ensure 'pure' flexural-torsional buckling, in a range of slenderness not studied in previous works. Twenty-two members with fixed ends and clamped walls were tested in concentric compression and had their motions measured during loading. Load-deflection curves are presented and the influences of post-buckling reserve of strength, damage and differential rotation of legs are discussed. Experimental critical loads obtained using Koiter's method are reported and shown to be in good agreement with GBT predictions. Finally, a design recommendation through the use of a Winter-type equation accounting for the plate-like behavior is made.
机译:在本文中,对拉挤玻璃纤维增​​强聚合物(GFRP)角柱的挠曲-屈曲屈曲行为的实验研究结果进行了报道和讨论。该程序包括研究用不同树脂(聚酯和乙烯基酯)制成的两种等边角尺寸。在测试之前,进行了详细的材料表征,并使用广义梁理论(GBT)软件获得了预测临界载荷的特征曲线(临界载荷x长度)。选择长度以确保“纯的”弯曲扭转屈曲,并且在先前研究中未研究的细长范围内。对22个固定端部和夹紧壁的构件进行了同心压缩测试,并在加载过程中测量了它们的运动。给出了载荷-挠度曲线,并讨论了屈曲后储备强度,损伤和支腿差速旋转的影响。报告了使用Koiter方法获得的实验临界载荷,并表明与GBT预测非常吻合。最后,通过使用温特型方程来解释板状行为,从而提出设计建议。

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