Valdés-Vidal Gonzalo, Calabi-Floody Alejandra, Mignolet-Garrido Cristian, Díaz-Montecinos Cristian
Department of Civil Engineering, Universidad de La Frontera, Temuco 4811230, Chile.
CDI-Centro de Desarrollo e Investigación, Maipú 9260061, Chile.
Polymers (Basel). 2023 Mar 29;15(7):1705. doi: 10.3390/polym15071705.
Stone Mastic Asphalts (SMA) are asphalt mixes with discontinuous granulometry and a high content of asphalt binder. In order to prevent draindown of the asphalt binder and ensure good performance, these mixes must be strengthened with cellulose or mineral fibres and/or polymer additives. This study was designed to evaluate the effect of a granular additive based on waste tyre textile fibres (WTTF), developed as a replacement for cellulose commercial additives in SMA mixes. Use of the WTTF-based additive will encourage the development of sustainable mixes by recycling a by-product of end-of-life tyres (ELT), which currently constitute a major environmental problem around the world. To this end, in the present experimental study we evaluated the replacement of cellulose-based commercial fibre with different percentages of WTTF-based additive (0%, 50%, 75%, 100%) in an SMA asphalt mix. The following design and performance properties were evaluated: resistance to cracking, stiffness modulus, sensitivity to moisture, and resistance to permanent deformation. The results indicated that replacing 100% of the cellulose commercial additive in the SMA mix by the WTTF-based additive allowed the mix to meet its design properties and showed good performance in the mechanical properties evaluated, with behaviour similar to that of the reference SMA mix.
橡胶玛蹄脂碎石混合料(SMA)是一种具有间断级配且沥青结合料含量高的沥青混合料。为了防止沥青结合料的析漏并确保良好性能,这些混合料必须用纤维素或矿物纤维和/或聚合物添加剂进行增强。本研究旨在评估一种基于废旧轮胎纺织纤维(WTTF)的粒料添加剂的效果,该添加剂是作为SMA混合料中纤维素商业添加剂的替代品而开发的。使用基于WTTF的添加剂将通过回收废旧轮胎(ELT)的副产品来促进可持续混合料的发展,废旧轮胎目前在全球构成了一个重大的环境问题。为此,在本实验研究中,我们评估了在SMA沥青混合料中用不同百分比(0%、50%、75%、100%)的基于WTTF的添加剂替代基于纤维素的商业纤维的情况。评估了以下设计和性能特性:抗裂性、刚度模量、对水分的敏感性和抗永久变形能力。结果表明,在SMA混合料中用基于WTTF的添加剂完全替代纤维素商业添加剂,能使混合料满足其设计性能,并在评估的力学性能方面表现出良好性能,其性能与参考SMA混合料相似。