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Influence of Fiber-Reinforced Polymer Sheets on the Constitutive Relationships of Reinforced Concrete Elements

机译:纤维增强聚合物薄板对钢筋混凝土构件本构关系的影响

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摘要

Fiber-reinforced polymer (FRP) started to find its way as an economical alternative material in civil engineering in the early 1970s. The behavior and failure modes for FRP composite structures were studied through extensive experimental and analytical investigations. Although research related to the flexural behavior of FRP-strengthened elements has reached a mature phase, studies related to FRP shear strengthening are less advanced. In all proposed models to predict shear capacity, the constitutive behaviors of concrete and FRP are described independently. The true behavior, however, should account for the high level of interaction between the two materials. Constitutive relations for FRP-strengthened reinforced concrete (RC) elements should provide a better understanding of the shear behavior of the composite structure. To generate these relations, large-scale tests of a series of FRP-strengthened RC panel elements subjected to pure shear were conducted. This paper presents the results of the test program and the calibration of the parameters of the constitutive model. These constitutive laws could easily be implemented in finite-element models to predict the behavior of externally bonded FRP-strengthened beams. The focus in this work is on elements failing because of concrete crushing and not because of FRP debonding. The newly developed model provides a good level of accuracy when compared with experimental results.
机译:1970年代初,纤维增强聚合物(FRP)开始在土木工程中成为一种经济的替代材料。通过广泛的实验和分析研究,研究了FRP复合结构的行为和破坏模式。尽管与FRP增强元件的挠曲行为有关的研究已进入成熟阶段,但与FRP剪切增强有关的研究尚不成熟。在所有建议的预测剪切能力的模型中,混凝土和FRP的本构行为都是独立描述的。但是,真实的行为应该说明两种材料之间的高度交互作用。 FRP加固的钢筋混凝土(RC)单元的本构关系应能更好地理解复合结构的剪切特性。为了生成这些关系,对一系列经过纯玻璃纤维增​​强的FRP加固的RC面板元件进行了大规模测试。本文介绍了测试程序的结果以及本构模型参数的校准。这些本构定律可以轻松地在有限元模型中实施,以预测外部粘结的FRP加固梁的性能。这项工作的重点是由于混凝土压碎而不是由于FRP脱粘而导致元件失效。与实验结果相比,新开发的模型具有较高的准确性。

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