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Experimental investigation on shear behavior of FRP post-tensioned concrete beams without stirrups

机译:没有马刺的FRP后张紧混凝土梁剪切行为的实验研究

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To investigate the shear behavior of post-tensioned concrete beams with longitudinal fiber-reinforced polymer (FRP) reinforcements and without stirrups, seven large-scale beams, with a shear span-to-effective depth ratio of approximately 3.0, were tested. The test variables included the prestressing level, type of flexural reinforcement, and tendon profile. The shear crack width and slip were tracked using digital image correlation technique. It was found that the post-tensioned concrete beams failed in shear-compression or shear-tension, while the non prestressed concrete beam failed in diagonal tension. The post-tensioned beams designed to have approximately the same longitudinal reinforcement stiffness, exhibited similar shear strength. Draping FRP tendons resulted in an increase of 8.8% in shear cracking strength, while it had slight effect on the maximum shear strength. In this study, it was demonstrated that arching action played a major role in the shear resistance of FRP post-tensioned beams, while the contribution of aggregate interlock was negligible.
机译:为了研究具有纵向纤维增强聚合物(FRP)增强和没有搅拌的张紧混凝土梁的剪切行为,并且测试了七个大型梁,剪切跨度与有效的深度比约为3.0。测试变量包括预应力水平,弯曲加强型和肌腱型材。使用数字图像相关技术跟踪剪切裂缝宽度和滑移。发现后张紧的混凝土梁在剪切压缩或剪切张力中失效,而非预应力混凝土梁在对角线张力下降。设计用于具有大致相同纵向增强刚度的后张紧光束表现出类似的剪切强度。悬垂的FRP肌腱导致剪切开裂强度的增加8.8%,而对最大剪切强度有轻微影响。在这项研究中,证明拱形动作在张紧梁的剪切电阻中发挥了重要作用,而聚集互锁的贡献可以忽略不计。

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