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Design strategy of hybrid stay cable system using CFRP and steel materials

机译:CFRP与钢混合动力斜拉索系统设计策略

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摘要

To enhance cable stiffness, this paper proposed a combined application of carbon fiber reinforced polymers (CFRP) and steel materials, resulting in a novel type of hybrid stay cable system especially for the cable-stayed bridges with main span lengths of 1400-2800 m. In this combination, CFRP materials can conserve all their advantages such as light weight and high strength;;while steel materials help increase the equivalent stiffness to compensate for the low elastic modulus of CFRP materials. An increase of the equivalent stiffness of the hybrid stay cable system could be further obtained with a reasonable increase of its safety factor. Following this concept, a series of parametric studies for the hybrid stay cable system with the consideration of stiffness and cost were carried out. Three design strategies/criteria, namely, best equivalent stiffness with a given safety factor, highest ratio of equivalent stiffness to material cost with a given safety factor, and best equivalent stiffness under a given cost were proposed from the stiffness and cost viewpoints. Finally, a comprehensive design procedure following the proposed design strategies was suggested. It was shown that the proposed hybrid stay cable system could be a good alternative to the pure CFRP or traditional steel stay cables in the future applications of super long span bridges.
机译:为了提高电缆的刚度,本文提出了碳纤维增强聚合物(CFRP)和钢材的组合应用,从而形成了一种新型的混合拉索系统,特别是用于主跨长度为1400-2800 m的斜拉桥。通过这种组合,CFRP材料可以保留其所有优点,例如重量轻,强度高;而钢材有助于增加等效刚度,以补偿CFRP材料的低弹性模量。通过合理增加安全系数,可以进一步提高混合拉索系统的等效刚度。遵循这个概念,在考虑了刚度和成本的情况下,对混合拉索系统进行了一系列参数研究。从刚度和成本的观点出发,提出了三种设计策略/准则,即具有给定安全系数的最佳等效刚度,具有给定安全系数的等效刚度与材料成本的最高比率以及在给定成本下的最佳等效刚度。最后,提出了遵循所提出的设计策略的综合设计程序。结果表明,在超大跨度桥梁的未来应用中,所提出的混合斜拉索系统可以很好地替代纯CFRP或传统的钢斜拉索。

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