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Effect of Rheoiogy of SCC on Bond Strength of Ribbed Reinforcement Bars

机译:SCC流变学对肋骨加强杆粘合强度的影响

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SCC can have very different rheological properties depending on the application and local mix design traditions. By definition, SCC should encapsulate the reinforcement bars to ensure proper bond strength, however, variations in bond strength may at least theoretically occur dependent on the rheological properties and the flow characteristics history near the individual bar. Especially, the bond strength may be questioned for SCC with a slump flow in the range 500-580 mm which is often used to obtain good control of flowing concrete as well as high segregation resistance. This paper presents the results of an experimental program investigating the relationship between the rheological parameters yield stress and plastic viscosity and bond strength of reinforcement bars. A reference conventional slump concrete requiring vibration to consolidate and several SCCs of equivalent strength class but with varying rheological parameters as measured by the 4C-Rheometer were prepared. Batches of 250 liters were cast into a formwork containing 12 mm diameter ribbed reinforcement bars fixed horizontally. The distance of SCC flow in the formwork was 2.5 m. Bond and compressive strengths were tested after 7 days of curing. The results indicate that the bond strength is not significantly influenced by the rheological properties of SCC and that the bond strength corresponds to that of conventional concrete.
机译:根据应用和局部混合设计传统,SCC可以具有非常不同的流变性能。通过定义,SCC应封装加强杆以确保适当的粘合强度,然而,粘合强度的变化可以至少理论上取决于个体杆附近的流变性和流动特性历史。特别地,粘合强度可能被质疑用于SCC,其坍落度在500-580mm的范围内,其通常用于获得流动混凝土以及高偏析阻力的良好控制。本文介绍了研究流变参数屈服应力和塑料粘度与加强棒的粘合强度之间关系的实验计划的结果。制备需要振动的参考常规坍落度混凝土,以巩固和等同强度等级的几种SCC,但是通过4C流变仪测量的流变学参数的变化。将250升的批量铸成含有12毫米直径的肋状加强杆的模板,水平固定。模板中SCC流动的距离为2.5米。在7天固化后测试键和抗压强度。结果表明,键合强度没有受到SCC流变性能的显着影响,并且粘合强度对应于常规混凝土。

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