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Influence of fibers partially coated with rubber from tire recycling as aggregate on the acoustical properties of rubberized concrete

机译:轮胎回收产生的部分包覆橡胶的纤维作为骨料对橡胶混凝土声学特性的影响

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摘要

The aim of this study is to analyze the main parameters that influence the acoustic properties of lightweight concrete containing high volume of recycled rubber aggregates. To that end, the sound absorption and the sound insulation on rubberized concrete are tested under different frequencies. Concrete specimens were designed with 0-100% substitution of its coarse aggregate by two different rubber aggregates from recycled tires, which is up to a 60% of the overall concrete volume fraction. Moreover, to evaluate the influence of the external texture and the direct contact of rubber, concrete panels with different surface finishes (rough and smooth face) were casted. Crumb rubber (CR) and fibers partially coated with crumb rubber (FCR) have been studied for sound barriers. FCR are composed of steel and plastic fibers mixed with small rubber particles from recycled tires and obtained during the granulation process, before the complete rubber separation. The results of this research indicate that the combination of steel and textile fibers contaminated with rubber powder increase sound absorption when compared to ordinary or rubberized concrete. The addition of CR or FCR reduces concrete density and increases its open porosity. However, concrete with large VF of FCR presents an even larger volume of open pores than concrete with CR admixtures, which increases the sound absorption. In addition, the results obtained for sound insulation in high frequencies are also improved with CR and FCR, even when the concrete becomes lighter, because damping of CR and FCR concrete is enhanced. As a consequence, high VF of FCR (80-100%) can be incorporated to concrete for non-structural uses to increase sound absorption. 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是分析影响包含大量再生橡胶骨料的轻质混凝土的声学性能的主要参数。为此,在不同频率下测试了橡胶混凝土的吸声和隔音性能。设计的混凝土标本被再生轮胎中的两种不同的橡胶骨料替代了其粗骨料的0-100%,其最高占混凝土总体积分数的60%。此外,为了评估外部质地和橡胶直接接触的影响,浇铸了具有不同表面光洁度(粗糙和光滑表面)的混凝土面板。已经研究了面包屑橡胶(CR)和部分涂覆有面包屑橡胶(FCR)的纤维的隔音性能。 FCR由钢和塑料纤维与再生轮胎中的小橡胶颗粒混合而成,并在造粒过程中(完全橡胶分离之前)获得。这项研究的结果表明,与普通或涂橡胶的混凝土相比,被橡胶粉污染的钢纤维和纺织纤维的结合增加了吸声。加入CR或FCR会降低混凝土密度并增加其开孔率。但是,FCR VF大的混凝土比带有CR掺合料的混凝土具有更大的开孔体积,从而增加了吸声效果。另外,即使当混凝土变得更轻时,使用CR和FCR也可以改善高频隔音效果,因为CR和FCR混凝土的阻尼得以增强。结果,可以将高VF的FCR(80-100%)掺入混凝土中用于非结构性用途,以增加吸声效果。 2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2016年第30期|25-36|共12页
  • 作者单位

    Univ Politecn Madrid, Dept Construct & Tecnol Arquitecton, ETS Arquitectura, Avda Juan de Herrera 4, E-28040 Madrid, Spain|Univ Europea Canarias, ETS Arquitectura, Inocencio Garcia 1, La Orotava 38300, Spain;

    Univ Tecn Norte, Fac Educ Ciencia & Tecnol FECYT, Carrera Diseno Graf, Ibarra, Ecuador;

    Univ Politecn Madrid, Dept Construct & Tecnol Arquitecton, ETS Arquitectura, Avda Juan de Herrera 4, E-28040 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Concrete; Tires; Rubber; Steel fiber; Plastic fiber; Sound absorption;

    机译:混凝土;轮胎;橡胶;钢纤维;塑料纤维;吸声;

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