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A sustainable application of recycled tyre crumbs as insulator in lightweight cellular concrete

机译:再生轮胎碎屑在轻质蜂窝混凝土中作为绝缘体的可持续应用

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End-of-life waste tyres are known to have negative economic and environmental impacts due to the difficulty associated with their disposal and recycling. The use of recycled tyre crumb (RTC) as a component of construction materials has emerged as a potentially sustainable solution to this environmental issue. There exists extensive research covering the use of RTC as a filler in conventional concrete. However, there are very limited studies focused on insulation properties of RTC in lightweight cellular concrete (LCC) as a sustainable application that can add value to the final product. This study investigates the effects of different RTC contents on compressive strength, porosity, thermal conductivity, sound insulation and water permeability of LCC as an insulator. A rather homogeneous distribution of tyre crumbs within LCC structure was achieved. It has been found that LCC samples containing RTC are suitable as insulators because the sound and thermal insulation are improved as rubber content is increased compared to the sample with similar density but without RTC. The insulation properties of this product also come with the same total porosity and a significant reduction in the rate of water permeability compared to the sample without RTC. 3D restructuring of micro-CT scan images of this composite revealed the effects of tyre crumb on the total and local porosity of this composite. Despite the fact that addition of tyre crumb reduced the strength, surface treatment of crumb rubber with sodium hydroxide solution exhibited significant improvement in the compressive strength of LCC as the result of better physical bonding with hydrated cement proven by scanning electron microscopy (SEM) images and energy dispersive spectroscopy (EDS) analysis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:报废轮胎由于其处理和回收的困难而具有负面的经济和环境影响。使用再生轮胎碎屑(RTC)作为建筑材料的一种已成为解决这一环境问题的潜在可持续解决方案。有广泛的研究涉及将RTC用作常规混凝土的填料。但是,针对轻质蜂窝混凝土(LCC)中RTC的保温性能的可持续性研究非常有限,可以为最终产品增加价值。本研究调查了不同RTC含量对LCC绝缘体的抗压强度,孔隙率,导热性,隔音性和透水性的影响。 LCC结构内的轮胎碎屑分布相当均匀。已经发现,与具有类似密度但没有RTC的样品相比,包含RTC的LCC样品适合作为绝缘体,因为随着橡胶含量的增加,声音和隔热性得到改善。与没有RTC的样品相比,该产品的绝缘性能还具有相同的总孔隙率和显着降低的水渗透率。该复合材料的微CT扫描图像的3D重建揭示了轮胎屑对这种复合材料的总孔隙率和局部孔隙率的影响。尽管事实上添加了轮胎屑会降低强度,但通过扫描电子显微镜(SEM)图像和水合水泥与水合水泥的更好的物理粘合结果,用氢氧化钠溶液对橡胶屑的表面处理仍显着改善了LCC的抗压强度。能量色散光谱(EDS)分析。 (C)2017 Elsevier Ltd.保留所有权利。

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