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Design Implications of Creep and Long-Term Deflections in FRP-RC Beam-Columns

机译:FRP-RC梁柱的蠕变和长期挠度的设计意义

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While most studies have focused on short term behavior of fiber reinforced polymer (FRP)-reinforced concrete (RC) members, it is important and necessary to study their time-dependent behavior, if FRP is to be used as a viable alternative reinforcement for the infrastructure. The present study provides an analytical tool to assess serviceability issues of FRP-RC beam-columns under sustained loads. The analytical model accounts for creep of FRP-RC beams and beam-columns. The model is based on age-adjusted effective modulus method for concrete and Findlay's model for FRP reinforcement. The model has been verified against the FRP-RC beam tests by the authors, as well as those from the literature. A detailed parametric study is then carried out to determine the effects of different types of FRP reinforcing bars on the creep of slender FRP-RC columns, and whether the ACI 318 design provisions for creep of slender RC columns is adequately safe for FRP-RC construction.
机译:尽管大多数研究都集中在纤维增强聚合物(FRP)增强混凝土(RC)构件的短期性能上,但如果将FRP用作混凝土的可行替代增强材料,则研究它们的时间依赖性行为是重要且必要的。基础设施。本研究提供了一种分析工具,以评估FRP-RC梁柱在持续荷载下的可使用性问题。该分析模型考虑了FRP-RC梁和梁柱的蠕变。该模型基于混凝土的时效调整有效模量法和FRP加固的Findlay模型。作者以及来自文献的作者已针对FRP-RC光束测试对模型进行了验证。然后进行了详细的参数研究,以确定不同类型的FRP钢筋对细长FRP-RC柱的蠕变的影响,以及ACI 318对细长RC柱的蠕变的设计规定对于FRP-RC结构是否足够安全。

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