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The effect of nano-silica and waste glass powder on mechanical, rheological, and shrinkage properties of UHPC using response surface methodology

机译:响应面法研究纳米二氧化硅和玻璃废粉对UHPC的力学,流变和收缩性能的影响

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This study provides the experimental and statistical modeling in order to increase the performance of ultra high performance concrete (UHPC) within reducing the cement consumption. Also showing the effect of waste glass powder and nano silica fume on mechanical, rheological, and shrinkage properties. For this purpose, a fraction of binder was added with the range of 0–5% of nano-silica fume and fraction of Portland cement were substituted with 0–20% of waste glass powder, the maximum particle size of 63μm. The mechanical properties were obtained by testing on 28 days compressive strength. The rheological property found by doing the flow test. Numbers and randomization orders of experiments were designed by central composite face-centered (CFC) and modeled by response surface methodology (RSM). The validity of models was controlled by analysis of variance (ANOVA). The study showed adding nano-silica and waste glass powder and especially their interaction improved the properties of UHPC.
机译:这项研究提供了实验和统计模型,以便在减少水泥消耗的同时提高超高性能混凝土(UHPC)的性能。还显示了废玻璃粉和纳米硅粉对机械,流变和收缩性能的影响。为此目的,添加了一部分粘合剂,该粘合剂的纳米硅灰含量为0-5%,而波特兰水泥的一部分则用0-20%的废玻璃粉代替,最大粒径为63μm。通过测试28天的抗压强度获得机械性能。通过进行流动测试发现的流变性质。实验的数量和随机顺序由中央复合面心(CFC)设计,并由响应面方法(RSM)建模。模型的有效性通过方差分析(ANOVA)进行控制。研究表明,添加纳米二氧化硅和废玻璃粉,特别是它们之间的相互作用改善了超高纯陶瓷的性能。

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