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Experimental study on rheology, strength and durability properties of high strength self-compacting concrete

机译:高强度自密实混凝土的流变,强度和耐久性能的试验研究

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The rheological behaviour of high strength self compacting concrete (HS-SCC) studied through an experimental investigation is presented in this paper. The effect of variation in supplementary cementitious materials (SCM) vis-a-vis four different types of processed crushed sand as fine aggregates is studied. Apart from the ordinary Portland cement (OPC), the SCMs such as fly ash (FA), ground granulated blast furnace slag (GGBS) ultrafine slag (UFS) and micro-silica (MS) are used in different percentages keeping the mix-paste volume and flow of concrete, constant. The combinations of rheology, strength and durability are equally important for selection of mixes in respect of high-rise building constructions. These combinations are referred to as the rheo-strength and rheo-durability which is scientifically linked to performance based rating. The findings show that the fineness of the sands and types of SCM affects the rheo-strength and rheo-durability performance of HS-SCC. The high amount of fines often seen in fine aggregates contributes to the higher yield stress. Further, the mixes with processed sand is found to offer better rheology as compared to that of mixes made using unwashed crushed sand, washed plaster sand, washed fine natural sand. The micro silica and ultra-fine slag conjunction with washed crushed sand can be a good solution for high rise construction in terms of rheo-strength and rheo-durability performance.
机译:通过实验研究,研究了高强度自密实混凝土(HS-SCC)的流变行为。研究了四种不同类型的经处理的碎砂作为细骨料的补充胶凝材料(SCM)变化的影响。除普通硅酸盐水泥(OPC)外,还使用不同百分比的SCM,例如粉煤灰(FA),高炉矿渣粉(GGBS),超细矿渣(UFS)和微硅粉(MS),以保持混合浆状混凝土的体积和流量恒定。流变,强度和耐久性的结合对于高层建筑结构的混合料的选择同样重要。这些组合被称为流变强度和流变耐久性,这在科学上与基于性能的等级相关。研究结果表明,砂的细度和SCM的类型会影响HS-SCC的流变强度和流变耐久性。经常在细骨料中看到的大量细粉导致较高的屈服应力。此外,发现与用未经处理的碎砂,经洗涤的石膏砂,经洗涤的天然细砂制成的混合物相比,与经处理的沙子的混合物具有更好的流变性。就流变强度和流变耐久性能而言,微二氧化硅和超细矿渣与洗过的碎砂结合可以成为高层建筑的良好解决方案。

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