玻璃微珠和废轮胎改性混凝土力学性能的评价

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Revista Digital Lampsakos Pub Date : 2019-11-26 DOI:10.21501/21454086.3283
Juan Pablo Valencia Villegas, Ana María González Mesa, Oscar Felipe Arbeláez Pérez
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引用次数: 4

摘要

本工作探讨了再生轮胎和微球作为原材料的替代品,作为生产传统混凝土的原材料,生产改性混凝土的联合作用。设计了传统混凝土和混合混凝土,并设计和制备了以0:1、1:1、1:3、3:1和1:0取代细骨料质量为15%的改良混凝土混合物。用制备的混凝土混合物制作了直径为5mmx300mm的圆柱形试样。对圆柱形试样的力学和物理性能的评估表明,轮胎残留物含量最高的材料密度较低,而微球含量较高的材料抗压强度较高;事实上,这与传统的混凝土相似。因此,与抗压强度分别为22.4和19.1MPa的其他混合物相比,玻璃微球混凝土配合比设计和1:3配合比设计显示出更高的力学性能。结果表明,微球和轮胎残留物的组合具有协同效应,在建筑行业中有可能取代混凝土制造中的传统材料。特别是,预计在混凝土生产中使用这些材料将成为使用这些废物的替代方案,而这些废物目前还没有处理计划。
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Evaluación de las propiedades mecánicas de concretos modificados con microesferas de vidrio y residuos de llantas
The combined effect of recycled tires and microspheres as substitutes of raw material to produce modified concrete as of raw materials used in the manufacture of traditional concrete was explored in this work. Traditional and mix concrete were designed and modified concrete mixes with 15% by mass of fine aggregate were replaced in a 0:1, 1:1, 1:3, 3:1 and 1:0 were designed and prepared. With the prepared concrete mixes cylindrical specimens of 5mmx300mm in diameter were made. The evaluation of mechanical and physical properties of the cylindrical specimens showed that the materials with the highest content of tire residues exhibited the lower density, while those with higher microsphere content have a higher compressive strength; in fact, this is similar to the traditional concrete. As a result, the concrete mix design with glass microspheres and the mix design in 1:3 ratios showed greater mechanical properties then the other mixtures with compressive strengths of 22.4 and 19.1 MPa respectively. The results demonstrate that the combinations of microspheres and tire residues have a synergistic effect with a potential use in the construction industry as a replacement of traditional materials in the manufacture of concrete. In particular, it is expected that the use of these materials in the production of concrete, will become an alternative for the use of these wastes, which do not currently have a disposal plan.
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Revista Digital Lampsakos
Revista Digital Lampsakos ENGINEERING, MULTIDISCIPLINARY-
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