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首页> 外文期刊>Journal of Composites for Construction >Experimental Analysis of Shear Resisting Mechanisms in FRP RC Beams with Shear Reinforcement
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Experimental Analysis of Shear Resisting Mechanisms in FRP RC Beams with Shear Reinforcement

机译:剪切钢筋FRP RC梁剪切抗性机制的实验分析

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Owing to the unique mechanical characteristics and lack of plasticity of fiber-reinforced polymers (FRPs), relatively large strains can develop in FRP reinforced concrete (RC) elements at ultimate limit states and this can lead to different relative contributions of concrete and shear reinforcement to the total element's shear capacity. This paper examines the development and relative contribution of the main shear resisting mechanisms in concrete beams with different overall depths and reinforced with longitudinal and transversal FRP reinforcement. Complementary strain measurements obtained from digital image correlation (DIC) and strain gauges are presented and discussed thoroughly. Although current FRP shear design approaches rely on the assumption that the contributions of concrete and shear reinforcement are constant up to failure, their relative magnitude is found to vary with increasing crack width. The experimental results indicate that, when minimum shear reinforcement is provided, current shear models based on a fixed truss angle approach tend to overestimate the contribution of concrete and underestimate the contribution of shear reinforcement. The use of a variable angle truss model, along with an appropriate reduction in the contribution of concrete, would lead to a more reliable estimate of the main shear resisting mechanisms and optimal design of the required amount of shear reinforcement.
机译:由于纤维增强聚合物(FRPS)的独特机械特性和缺乏可塑性,相对大的菌株可以在极限极限状态下在FRP钢筋混凝土(RC)元件中产生,这导致混凝土和剪切钢筋的不同相对贡献总元素的剪切容量。本文介绍了具有不同整体深度和纵向和横向FRP加固的混凝土梁主剪抗力机制的开发和相对贡献。从数字图像相关(DIC)和应变计中获得的互补应变测量并彻底讨论并讨论。虽然目前的FRP剪切设计方法依赖于假设混凝土和剪切钢筋的贡献恒定达到故障,但发现它们的相对幅度随着裂缝宽度的增加而变化。实验结果表明,当提供最小剪切增强时,基于固定桁架角度的电流剪切模型倾向于高估混凝土的贡献,低估了剪切钢筋的贡献。使用可变角度桁架模型以及适当的混凝土贡献的适当降低将导致对剪切抗蚀机构的主要剪切抗性机构和所需量的剪切增强量的最佳设计。

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