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Towards a sustainable concrete: “sandless” concrete : Science and Engineering of Composite Materials

机译:迈向可持续混凝土:“无砂”混凝土:复合材料科学与工程

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As a step towards ensuring the sustainability of concrete as a construction material, an investigation was carried out on the mechanical and durability properties of concrete made without natural sand, termed “sandless” concrete, and with cement partially replaced by fly ash. Four groups of concrete mixes, with water-cement (w/c) ratios of 0.40, 0.45, 0.50 and 0.55, respectively, were studied. For each w/c ratio, there were six mixes with 0, 10%, 20%, 30%, 40% and 50% of cement content replaced by fly ash by mass, and one normal concrete mix containing natural sand. The difference in mechanical properties between normal and “sandless” concrete was not significant. “Sandless” concrete mixes with cement replaced by fly ash by <30% showed comparable compressive, splitting tensile and flexural strengths as those without fly ash. However, the elastic modulus was reduced with the incorporation of fly ash. In addition, use of fly ash led to reduced drying shrinkage of “sandless” concrete, and significantly improved the resistance to chloride ion penetration. The resistance to sulfate attack, on the other hand, seemed to decrease with higher fly ash content. From the study, it appears that “sandless” concrete with cement replaced by fly ash up to 30% could be considered for structural applications.
机译:为了确保混凝土作为建筑材料的可持续性,对不含天然砂的混凝土(其称为“无砂”混凝土,而水泥被粉煤灰部分替代)的机械性能和耐久性进行了研究。研究了四组混凝土混合料,水灰比(w / c)分别为0.40、0.45、0.50和0.55。对于每种w / c比率,有六种混合物,分别用0、10%,20%,30%,40%和50%的水泥含量替换为粉煤灰,而一种普通的混凝土混合物则包含天然沙子。普通混凝土和“无砂”混凝土的机械性能差异不明显。掺有水泥的“无沙”混凝土掺合料被粉煤灰替代的比例小于30%,与未掺粉煤灰的混凝土相比,其抗压,抗张和挠曲强度相当。然而,随着掺入粉煤灰,弹性模量降低。此外,粉煤灰的使用降低了“无砂”混凝土的干燥收缩率,并显着提高了对氯离子渗透的抵抗力。另一方面,较高的粉煤灰含量似乎降低了对硫酸盐侵蚀的抵抗力。根据研究,似乎可以考虑将“无沙”混凝土用水泥代替粉煤灰的比例提高至30%,以用于结构应用。

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