含橡胶轮胎颗粒的石膏复合材料的性能

Nayra Alberici Pinto, Cesar Fabiano Fioriti, Jorge Luís Akasaki, T. Acunha, F. Okimoto
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引用次数: 1

摘要

石膏是已知的最古老的合成建筑材料,然而,它是一种在研究水平上知之甚少的材料,在这项工作中,它的研究是通过制造橡胶轮胎的复合材料来进行的,旨在获得一种替代的建筑材料。因此,目的是研究石膏基复合材料,其中含有5、10和15%的轮胎翻新过程中两种等级的硫化橡胶残渣。粒度分为细粒(筛通度0.60 mm)和粗粒(筛通度1.19 mm)。研究了复合材料的稠度(微坍落度)、质量密度、吸水率、表面硬度、抗弯强度、抗压强度、扫描电镜(SEM)和热性能。结果表明,在石膏复合材料中掺入橡胶是有吸引力的,其稠度随橡胶含量的增加而降低,较厚的橡胶粒度有利于复合材料的和易性;随着复合材料中橡胶含量的增加,质量密度降低,主要表现为细粒化;吸水率表明,高含量的橡胶有利于水在复合材料中的渗透,无论颗粒大小;表面硬度表现为添加10%薄橡胶的复合材料提供的冲击能降低;在抗弯强度和抗压强度方面,添加5%薄橡胶的复合材料与对照复合材料的结果相似,而添加15%薄橡胶的复合材料的抗弯强度和抗压强度分别下降了60%和40%;SEM观察到,薄层橡胶复合材料的孔隙更小,橡胶颗粒之间的粘附更有效;最后,橡胶有助于降低白天的热振幅,主要是随着粒径和橡胶含量的增加。
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Rendimiento de compuestos de yeso que incorporan partículas de neumáticos de goma
Gypsum is the oldest synthetic construction material that is known, however it is a material about which there is little knowledge at the level of research, and in this work its study took place by making composites with the incorporation of rubber tires, aiming to obtain an alternative construction material. Thus, the objective was to investigate gypsum-based composites, with a mass incorporation of 5, 10, and 15% of two grades of vulcanized rubber residue from tire retreading processes. The granulometries are referred to as thin (sieve pass-through #0.60 mm) and thick (sieve pass-through #1.19 mm). The composites were investigated in terms of consistency (mini-slump), mass density, water absorption, surface hardness, flexural strength, compressive strength, scanning electron microscopy (SEM), and thermal behavior. The results revealed that rubber incorporation can be attractive in gypsum composites: in which the consistency decreased with the increase of the rubber content and the thick rubber granulometry favored the workability of the composites; the mass density was reduced, mainly with thin granulometry, as the rubber content in the composites increased; the water absorption showed that the high levels of rubber favor the penetration of water in the composites, regardless of the granulometry; the surface hardness showed reduced impact energy provided by the composite with 10% thin rubber; in both flexural strength and compression, the composite with 5% thin rubber showed a similar result to the control composite, while composites with 15% rubber suffered a gradual drop of up to 60 and 40%, respectively; with SEM it was observed that the thin rubber composites had smaller pores, in addition to more effective adhesion between the rubber particles; finally the rubber helps to reduce the thermal amplitudes during the day, mainly with the increase of the particle size and the rubber content .
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