Bond Studies of Reinforcing Bars in Silica Fume Concrete

B. Hamad, M. S. Itani
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Abstract

This paper reports on research in progress conducted at the American University in Beirut to evaluate the effect of silica fume on bond and anchorage of reinforcement in high performance concrete (HPC) structures. The program includes testing the effect of a wide range of variables on the bonded strength of beam bar splices and bars anchored in pullout specimens. Results of the first phase of the research program have been analyzed. Ten beam specimens were tested. Each beam was designed to include two bars in tension, spliced at the center of the span. The splice length was selected so that bars would fail in bond, splitting the concrete cover in the splice region, before reaching the yield point. The beams were loaded in positive bending with the splice in a constant moment region. The variables used were the percentage replacement of cement by silica fume and the casting position. Test results indicated that replacement of 5 to 20 percent of the cement by an equal weight of silica fume resulted in an average 8 percent reduction in bond strength regardless of casting position.
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硅粉混凝土中钢筋粘结研究
本文报道了贝鲁特美国大学正在进行的一项研究,旨在评估硅灰对高性能混凝土(HPC)结构中钢筋粘结和锚固的影响。该程序包括测试各种变量对拉拔试件中梁杆接头和锚定杆的粘结强度的影响。对第一阶段研究计划的结果进行了分析。对10个梁试件进行了试验。每根梁被设计成包括两个张力杆,在跨度的中心拼接。选择的拼接长度使杆在达到屈服点之前粘结失效,劈开拼接区域的混凝土覆盖层。梁被加载为正弯曲,拼接在恒矩区。所使用的变量是硅灰替代水泥的百分比和浇注位置。试验结果表明,用同等重量的硅灰代替5%至20%的水泥,无论浇注位置如何,粘结强度平均降低8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Contribution of Concrete between Cracks at Inelastic Steel Strains and Conclusions for the Optimization of Bond Preventing Brittle Failure of Tension Splices in High-Strength Concrete Bond Studies of Reinforcing Bars in Silica Fume Concrete Bond Modelling of Prestressing Strand Bond and Splitting: A Vexing Question
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