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Theory-based approaches and microstructural analysis to evaluate the service life-retention of stressed carbon fiber composite strands for concrete bridge applications

机译:基于理论的方法和微观结构分析,以评估混凝土桥梁应用中应力碳纤维复合材料线的使用寿命

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摘要

Prestressed concrete girders and piles with steel strands are used in construction of bridges in North America, due to their economy of design, fabrication, and installation. However, they are often exposed to harsh environments, which results in rapid degradation. Therefore, carbon fiber reinforced polymer (CFRP) tendons have successfully been introduced as prestressing reinforcement for pile applications. This paper presents a study on the physical characterization, microstructural analysis, and durability performance of unstressed and stressed carbon-fiber composite cables (CFCCs) for prestressing applications. This is achieved through testing 120 CFCC specimens, subjected to stress levels of about 40% and 65% of their guaranteed strength, and 51 specimens without sustained load under tension. Moreover, prediction models were introduced to assess the long-term performance and retentions of CFCC strands. The models included Arrhenius model, Fick's law, Fib Bulletin (40) model, and a developed approach that incorporates the effects of temperature, design life, and relative humidity of exposure into the environmental reduction factor. Based on the predication model, the tensile strength retention (C-E) for CFCC strands, is predicted to retain over 0.95 and 0.84 of ultimate tensile strength for a relative humidity (RH) 90% and a moisture saturated environment (RH = 100%), respectively, after 100 years of service life with elevated temperature and sustained load.
机译:预应力混凝土梁和钢绞线桩由于其设计,制造和安装的经济性,在北美的桥梁建设中被使用。但是,它们经常暴露于恶劣的环境中,这会导致其快速退化。因此,碳纤维增强聚合物(CFRP)腱已成功引入桩应用中作为预应力增强。本文介绍了用于预应力应用的无应力和受应力碳纤维复合电缆(CFCC)的物理特性,微观结构分析和耐久性能的研究。这是通过测试120个CFCC试样(承受其保证强度的40%和65%的应力水平)和51个在拉伸下没有持续载荷的试样来实现的。此外,引入了预测模型以评估CFCC链的长期性能和保留率。这些模型包括Arrhenius模型,菲克定律,Fib公告(40)模型,以及将温度,设计寿命和暴露相对湿度的影响纳入环境降低因子的开发方法。根据预测模型,在相对湿度(RH)<90%和湿度饱和的环境(RH = 100%)下,CFCC股的抗张强度保持率(CE)预计将保持0.95和0.84以上的极限抗张强度。分别在高温和持续负载下100年使用寿命后。

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