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首页> 外文期刊>Journal of Sandwich Structures and Materials >Efficient composite bridge deck consisting of GFRP, steel, and concrete
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Efficient composite bridge deck consisting of GFRP, steel, and concrete

机译:高效的复合桥甲板,包括GFRP,钢和混凝土

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摘要

In this paper, a new cost-effective composite bridge deck consisting of multiple steel box cells, concrete slab, and glass fiber-reinforced polymer layer is investigated. First, the structural performance of the deck under static loading is evaluated experimentally. Then the results are validated by a finite element program. Results of the numerical analysis are in good agreement with those of the experiments. The load-displacement relationship, ultimate flexural resistance, failure mode, neutral axis, and strain distribution on glass fiber-reinforced polymer layer and concrete slab are examined during the test. Final results revealed that the ultimate failure of the composite deck initiates by longitudinal cracking on the top surface of the concrete slab. No debonding occurs at the interface between concrete slab and steel boxes which indicates that perfobond ribs could be effectively used for shear connection. The results of experimental and numerical analysis demonstrated that the bridge deck possesses desirable strength and meets the stiffness requirements.
机译:本文研究了一种由多钢箱电池,混凝土板和玻璃纤维增​​强聚合物层组成的新的经济高效的复合桥甲板。首先,通过实验评估静态载荷下甲板的结构性能。然后由有限元程序验证结果。数值分析的结果与实验的符合良好。在试验期间,检查了玻璃纤维增​​强聚合物层和混凝土板上的载荷 - 位移关系,极限抗弯曲性,故障模式,中性轴和应变分布。最终结果表明,复合甲板的最终失效通过纵向开裂在混凝土板的顶部表面上发起。在混凝土板和钢盒之间的界面中没有发生剥离,这表明可以有效地用于剪切连接的穿孔肋。实验和数值分析的结果表明,桥甲板具有所需的强度并满足刚度要求。

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