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Research on reasonable position of FRP tendons in concrete beams prestressed with bonded and/or unbonded FRP tendons

机译:FRP筋在粘结和/或未粘结FRP筋预应力混凝土梁中的合理位置研究

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Fiber reinforcement polymers (FRPs) have high strength; they are well suited for prestressing tendons in corrosive environment. Concrete structures prestressed with FRP tendons usually exhibit brittle failure models due to the brittle nature of the FRP composites. Based on different mechanical properties of prestressed concrete structures, a combination of bonded and/or unbonded prestressing tendons was used in order to improve the ductility. This paper presents a nonlinear analysis method of concrete beams prestressed with FRP tendons based on ANSYS software, the reasonable position of FRP tendons are detailed discussed. The results of nonlinear finite element analysis showed that if the reinforcement of prestressed beam was the same, the carrying capacity of concrete beam prestressed with bonded FRP tendons was highest; the capacity of unbonded prestressed beam was secondly, and the external unbonded prestressed beam without deviators was lowest. By combination of different FRP tendons, or different tension ratio, or different placement, the properties and failure models of concrete beams prestressed with FRP tendons can be improved.
机译:纤维增强聚合物(FRP)具有高强度;它们非常适用于腐蚀性环境中的预应力筋。由于FRP复合材料的脆性,用FRP筋预应力的混凝土结构通常表现出脆性破坏模型。基于预应力混凝土结构的不同机械性能,结合使用粘结和/或未粘结预应力筋以提高延展性。提出了一种基于ANSYS软件的预应力FRP筋混凝土梁非线性分析方法,详细讨论了FRP筋的合理位置。非线性有限元分析结果表明,如果预应力梁的钢筋相同,则FRP粘结预应力混凝土梁的承载力最高。其次是无粘结预应力梁的承载能力,无偏斜的外部无粘结预应力梁的承载能力最低。通过组合不同的FRP筋,不同的拉伸比或不同的布置,可以改善FRP筋预应力混凝土梁的性能和破坏模型。

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