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首页> 外文期刊>Thin-Walled Structures >Structural analyses of extruded CFRP tendon-anchor system and applications in thin-walled aluminum/CFRP bridge
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Structural analyses of extruded CFRP tendon-anchor system and applications in thin-walled aluminum/CFRP bridge

机译:CFRP筋锚挤压体系的结构分析及其在薄壁铝/ CFRP桥中的应用。

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摘要

Pre-stressed carbon fiber reinforced polymer (CFRP) tendon system is developed. Extrusion method guarantees the strength of the CFRP tendon could be fully used in strengthening. The pre-stressed CFRP tendons are applied to strengthen aluminum beams and portable aluminum bridge to improve the flexural rigidity and load carrying capacity of these structures and the improvements are revealed by the experiments. Applying extruded CFRP tendon-anchor system, the load carrying ability of the pre-stressed aluminum bridge has an improvement of 25%. Structural models are proposed to investigate the pre-stressing effects, including the deflection and the load capacity under different design criteria. Finite element method (FEM) is applied to analyze the nonlinear behavior of the pre-stressed beam and reveal the plastic torsional buckling failure style. All these analyses agree well with the experiments and suggest accurate methods to design pre-stressed aluminum/CFRP structures.
机译:开发了预应力碳纤维增强聚合物(CFRP)肌腱系统。挤压方法保证了CFRP筋的强度可以被充分利用。将预应力CFRP筋用于加强铝梁和便携式铝桥,以提高这些结构的抗弯刚度和承载能力,并通过实验揭示了这种改进。采用挤压式CFRP筋锚系统,预应力铝桥的承载能力提高了25%。提出了结构模型以研究不同设计标准下的预应力效应,包括挠度和承载能力。运用有限元方法分析了预应力梁的非线性行为,揭示了塑性扭转屈曲破坏的形式。所有这些分析与实验吻合得很好,并提出了设计预应力铝/ CFRP结构的准确方法。

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