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首页> 外文期刊>Journal of Composites for Construction >Three-Level Fire Resistance Design of FRP-Strengthened RC Beams
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Three-Level Fire Resistance Design of FRP-Strengthened RC Beams

机译:FRP加固RC梁的三级耐火设计

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The use of externally bonded fiber-reinforced polymer (FRP) systems in the strengthening of reinforced concrete (RC) members has become widely accepted in recent years. A significant concern with this technique is the fire resistance of the strengthened member, for which a systematic design procedure that can be easily implemented by practicing engineers is not yet available. This paper for the first time presents such a procedure for the fire resistance design of FRP-strengthened RC beams. The proposed procedure distinguishes three levels (Level I, Level II, and Level III) of fire insulation design to satisfy the specified fire resistance rating. In Level-I design, no fire insulation is provided and the FRP system is completely ignored; the RC beam itself is expected to survive the required fire resistance period. At the other extreme is Level-III design, in which the FRP system and the original RC beam need to be so insulated that they both remain effective during the required fire resistance period. Between the two extremes is Level-II design, in which a moderate level of fire insulation is provided to protect the RC beam rather than the FRP system. Level-I and Level-III design can be realized using appropriate methods proposed by the authors in previous studies. For Level-II design, a simple design method based on the so-called 500 degrees C isotherm method is presented and assessed using numerical data generated by finite-element (FE) analyses. Although the present paper is concerned only with FRP-strengthened RC beams governed by flexural failure, the general framework presented can be readily extended to other FRP-strengthened RC components as well as FRP-strengthened RC structural systems.
机译:近年来,在增强钢筋混凝土(RC)构件中使用外部粘结的纤维增强聚合物(FRP)系统已被广泛接受。这种技术的一个重要问题是加强构件的耐火性,目前尚不存在可以由实际工程师轻松实施的系统设计程序。本文首次提出了一种采用FRP加固RC梁的耐火设计程序。提议的程序将防火设计分为三个级别(I级,II级和III级),以满足指定的耐火等级。在I级设计中,没有提供防火隔离,并且FRP系统被完全忽略。预计RC梁本身将在要求的耐火期内生存。另一个极端是III级设计,其中FRP系统和原始RC梁需要进行绝缘,以使其在要求的耐火期内都保持有效。在两个极端之间是II级设计,其中提供了中等水平的防火隔热以保护RC梁而不是FRP系统。可以使用作者在先前研究中提出的适当方法来实现I级和III级设计。对于II级设计,提出了一种基于所谓的500摄氏度等温线方法的简单设计方法,并使用有限元(FE)分析生成的数值数据对其进行了评估。尽管本文只涉及受弯曲破坏支配的FRP加固的RC梁,但所介绍的一般框架可以轻松扩展到其他FRP加固的RC构件以及FRP加固的RC结构体系。

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