首页> 外文会议>International conference on FRP composites in civil engineering >FRP-CONFINED RC COLUMNS UNDER COMBINED BENDING AND COMPRESSION: A COMPARATIVE STUDY OF CONCRETE STRESS-STRAIN MODELS
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FRP-CONFINED RC COLUMNS UNDER COMBINED BENDING AND COMPRESSION: A COMPARATIVE STUDY OF CONCRETE STRESS-STRAIN MODELS

机译:FRP限制RC柱下弯曲和压缩:混凝土应力 - 应变模型的比较研究

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Many stress-strain models have been proposed for FRP-confined concrete, but there is still a lack of consensus as to which model is the most suitable for use in the analysis of RC columns confined by FRP jackets. In this paper, different stress-strain models are compared in terms of their predictions of the ultimate strength and the flexural ductility of FRP-confined RC short columns subject to combined bending and axial compression. These comparisons show that the predicted ultimate strength depends mainly on the compressive strength of the confined concrete model while the predicted ultimate curvature depends mainly on the ultimate strain of the confined concrete model. For design use, a stress-strain model with a lower bound prediction of the ultimate strain of confined concrete should be used so that conservative predictions of flexural ductility can be expected, while the predictions of the ultimate strength are similar to those predicted using a best-fit value of the ultimate strain.
机译:已经提出了许多压力 - 应变模型用于FRP限制混凝土,但仍然缺乏共识,因为它的模型是最适合用于分析由FRP夹克限制的RC柱的使用。在本文中,在其预测的最终强度和FRP限制的RC短柱的预测方面比较不同的应力 - 应变模型,该抗FRP限制RC短柱进行组合弯曲和轴向压缩。这些比较表明,预测的最终强度主要取决于限制混凝土模型的抗压强度,而预测的最终曲率主要取决于密闭混凝土模型的终极应变。对于设计使用,应使用具有较低限制混凝土终极菌株的低应力模型的应力 - 应变模型,以便可以预期弯曲延展性的保守预测,而最终强度的预测类似于使用最佳预测的强度-Fit终极应变的值。

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