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An experimental study on static behavior of a GFRP bridge deck filled with a polyurethane foam

机译:填充聚氨酯泡沫的GFRP桥面板静力性能试验研究。

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The static behavior of an orthotropic bridge deck made of glass fiber reinforced polymer (GFRP) and polyurethane foam was investigated experimentally. The bridge deck consisted of GFRP unit modules with rectangular holes filled with foam to improve the structural behavior in the transverse direction. It was found that, although the elastic modulus of the foam compared to the homogenized modulus of the GFRP deck was about the order of 10~(-3), the structural behaviors in the transverse direction such as the nominal strength, stiffness, etc. were greatly improved when the GFRP bridge deck was filled with foam. Because of the low mass density of the foam used in this study, the bridge deck was still light enough while the structural properties were improved significantly. Webs of the foam-filled modules did not significantly contribute to strength development of the deck. However, propagation of a crack initiated in a module was caught by the webs so as to limit the crack to the inside of that cell only. This made the load-displacement behavior of the foam-filled GFRP deck less brittle. The longitudinal response of the GFRP deck was improved with the foam. The strength was increased about 20% but the elastic modulus was not improved.
机译:实验研究了玻璃纤维增​​强聚合物(GFRP)和聚氨酯泡沫制成的正交异性桥面板的静态性能。桥面板由GFRP单元模块组成,这些模块带有填充泡沫的矩形孔,以改善横向结构性能。结果发现,尽管泡沫的弹性模量与GFRP甲板的均质模量相比约为10〜(-3),但在横向方向上的结构行为如标称强度,刚度等。当GFRP桥面甲板填充泡沫时,性能大大改善。由于本研究中使用的泡沫的质量密度较低,因此桥面板仍然足够轻,同时结构性能得到了显着改善。泡沫填充模块的网对甲板的强度发展没有显着贡献。然而,在模块中引发的裂纹的传播被腹板捕获,从而仅将裂纹限制在该单元的内部。这使得泡沫填充的GFRP甲板的载荷-位移行为变脆。泡沫改善了GFRP甲板的纵向响应。强度增加了约20%,但是弹性模量没有改善。

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