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Design Recommendations For Bond Between Gfrp/steel Wire Composite Rebars And Concrete

机译:Gfrp /钢丝复合钢筋与混凝土之间粘结的设计建议

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摘要

Due to significant advantages over GFRP rebars, namely high tensile strength, high elastic modulus, and good ductile properties, GFRP/steel wire composite rebars offer a superior alternative to ordinary steel rebars. However, experimental researches on this new type of rebar have been limited, especially those on the bond performance. This research is designed to investigate the bond behavior between GFRP/steel wire composite rebars and concrete. According to American Concrete Institute (ACI) code, a total of 180 pull-out specimens were tested under monotonic static loading conditions. The test parameters were the rebar rib spacing, rebar diameter, embedded length, concrete compressive strength, concrete cover thickness, and concrete cast depth. Based on the numerical analysis of the test results, new criteria for acceptable bond performance of GFRP/steel wire composite rebars to concrete were developed. Designed recommendations for the modification factor of concrete cover thickness, the modification factor of concrete cast depth, and the critical value of bond slip at both free and loaded ends were derived. The calculation formula of bond strength and the basic development length were proposed, and the calculation principle of development length of concrete structures reinforced with GFRP/steel wire composite rebars was suggested.
机译:由于与GFRP钢筋相比具有显着的优势,即高拉伸强度,高弹性模量和良好的延展性,因此GFRP /钢丝复合钢筋是普通钢筋的替代品。但是,对这种新型钢筋的实验研究是有限的,特别是在粘结性能方面。本研究旨在研究GFRP /钢丝复合材料钢筋与混凝土之间的粘结性能。根据美国混凝土学会(ACI)规范,在单调静态载荷条件下总共测试了180个拉出样本。测试参数为钢筋肋间距,钢筋直径,预埋长度,混凝土抗压强度,混凝土覆盖层厚度和混凝土浇筑深度。在对试验结果进行数值分析的基础上,制定了GFRP /钢丝复合钢筋与混凝土的可接受粘结性能的新标准。得出了关于混凝土覆盖层厚度的修正系数,混凝土浇筑深度的修正系数以及自由端和载荷端的粘结滑移临界值的设计建议。提出了粘结强度和基本发展长度的计算公式,并提出了GFRP /钢丝复合钢筋混凝土结构发展长度的计算原则。

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