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FLEXURAL BEHAVIOR OF GFRP-RC SLABS POST-TENSIONED WITH CFRP TENDONS

机译:用CFRP诱拐后GFRP-RC板的抗弯行为

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The results of an experimental investigation on the effects of prestressing on the flexural behavior of GFRP-reinforced SCC slabs are presented. A total of six one-way slab strips were tested up to failure, including one steel-reinforced control slab. The five remaining slabs were reinforced with GFRP bars, three of which also contained two CFRP post-tensioned tendons. Steel stirrups were included in one prestressed and one non-prestressed slab to ensure a flexural mode of failure. The slabs were tested under four-point bending. Results were compared to analytical models for ultimate flexural and shear capacity as well as load-deflection behavior. Prestressing effectively increased the cracking load and post-cracking stiffness of the FRP-reinforced slabs and significantly reduced crack widths at service loads. Slabs without shear reinforcement failed in shear in a brittle manner prior to reaching their full flexural capacity. All of the GFRP-reinforced slabs failed at higher loads than the control slab.
机译:提出了对预应力对GFRP增强SCC板坯弯曲行为的实验研究的结果。总共六条单向板条用速度进行了故障,包括一个钢筋控制板。用GFRP棒加固五个剩余的板,其中三个,其中三个也含有两个CFRP后张紧肌腱。钢镫箱中包含在一个预应力和一个非预应力板中,以确保弯曲失效模式。在四点弯曲下测试板。将结果与用于极限弯曲和剪切容量的分析模型以及负载偏转行为。预应力有效地增加了FRP加强板的开裂载荷和开裂后刚度,并在服务负荷下显着降低了裂缝宽度。在达到完全弯曲能力之前,没有剪切钢筋的板坯以脆性剪切失效。所有GFRP加强板块都比控制板更高的负载失效。

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