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Novel applications of waste foundry sand in conventional and dry-mix concretes

机译:铸造废砂在常规混凝土和干混混凝土中的新应用

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The use of waste materials in the building industry is a major challenge for eco-efficient construction. Brazil generates more than 3 million tons of waste foundry sand (WFS) annually, making it one of the largest industrial wastes produced in the country. This work proposes the use of WFS in two novel ways: in conventional concrete by WFS calcination, and in dry-mix concrete for the production of concrete blocks. For the conventional mixture study, mortars with 0, 50 and 100% replacement of natural sand by WFS and calcined WFS (CFS) were produced. The fresh state properties, volumetric variation, cement hydration and 28-days compressive strength of the mortars were evaluated. For the dry-mix concrete study, compositions with two densities (2.20 and 2.25 g/cm(3)), three cement contents and 0, 50 and 100% WFS in natural sand replacement were produced in the laboratory. Furthermore, concrete blocks of different strength ranges and 0 and 100% WFS in natural sand replacement were produced in a concrete block manufacturing plant for full-scale testing. The results showed that the use of WFS led to reductions in flowability and compressive strength of the mortars, but did not cause expansion as initially expected. In contrast, the use of up to 100% CFS resulted in mortars with flowability and compressive strength similar to those of the reference. WFS calcination removed the pulverized coal and may have formed pozzolanic phases in the clay material. As a result, the CFS presented performance similar to that of natural sand. In dry-mix concrete, the laboratory results showed that the use of 100% WFS resulted in similar strengths to the reference for concretes of up to 20 MPa. Finally, full-scale tests showed that it was possible to produce concrete blocks with 100% WFS and strengths compatible to the reference.
机译:在建筑行业中使用废料是生态高效建筑的主要挑战。巴西每年产生超过300万吨的铸造废砂(WFS),使其成为该国产生的最大工业废物之一。这项工作提出了以两种新颖的方式使用WFS:在WFS煅烧的常规混凝土中以及在干混混凝土中用于生产混凝土砌块。对于常规混合物研究,生产了用WFS和煅烧的WFS(CFS)替代0%,50%和100%天然砂的砂浆。评估了砂浆的新鲜状态性能,体积变化,水泥水化和28天抗压强度。对于干混混凝土的研究,在实验室中生产了两种密度(2.20和2.25 g / cm(3)),三种水泥含量以及天然砂替代中0、50和100%WFS的组合物。此外,在混凝土砌块制造工厂中生产了强度范围不同,天然砂替代量为0和100%WFS的混凝土砌块,以进行全面测试。结果表明,使用WFS导致砂浆的流动性和抗压强度降低,但并未引起最初预期的膨胀。相反,使用高达100%的CFS可使砂浆的流动性和抗压强度与参考文献相似。 WFS煅烧去除了煤粉,并且可能在粘土材料中形成了火山灰相。结果,CFS表现出与天然砂相似的性能。在干混混凝土中,实验室结果表明,使用100%的WFS可获得与高达20 MPa的混凝土相似的强度。最后,全面测试表明,可以生产出具有100%WFS和强度与参考材料兼容的混凝土砌块。

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