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添加橡胶颗粒和改性粘结剂类型对降低轮胎/道路噪音的玛蹄脂碎石沥青(SMA LA)粘弹性性能的影响

Effect of Addition of Rubber Granulate and Type of Modified Binder on the Viscoelastic Properties of Stone Mastic Asphalt Reducing Tire/Road Noise (SMA LA).

作者信息

Gardziejczyk Wladyslaw, Plewa Andrzej, Pakholak Raman

机构信息

Faculty of Civil Engineering and Environmental Sciences, Bialystok University of Technology; 15-351 Bialystok, Poland.

出版信息

Materials (Basel). 2020 Aug 5;13(16):3446. doi: 10.3390/ma13163446.

Abstract

The use of rubber granulate in the composition of asphalt mixtures, as well as the use of poroelastic layers, is indicated by many research centers as a factor with a positive effect on tire/road noise reduction. Attention is however paid to their lower structural durability compared to asphalt concrete (AC) or stone mastic asphalt (SMA). Stone mastic asphalt reducing tire/road noise (SMA LA) layers have also been recently used as low-noise road surfaces. The article presents the test results of viscoelastic properties of asphalt mixtures SMA8 LA, SMA8 LA containing 10%, 20%, and 30% of rubber granulate, with bitumen 50/70, bitumen 50/70 modified with styrene butadiene styrene (SBS) copolymer, crumb rubber, and mixtures with bitumen modified simultaneously with crumb rubber and SBS copolymer. The reference asphalt mixture was the porous asphalt (PA8). The presented results of water damage resistance, degradation resistance in the Cantabro abrasion loss test, stiffness modulus as a function of temperature and hysteresis loop proved that the amount of rubber granulate and the type of binder significantly affect the values of these parameters. Attention was paid to the possibility of using the results of uniaxial cyclic compression tests when determining the proportion of rubber granulate in SMA8 LA mixtures. Tests of hysteresis loops and stiffness modulus confirm much higher elasticity of SMA8 LA mixtures with rubber granulate as compared to mixtures without the addition of granulate.

摘要

许多研究中心指出,在沥青混合料的组成中使用橡胶颗粒以及使用多孔弹性层,是对降低轮胎/路面噪声有积极作用的一个因素。然而,与沥青混凝土(AC)或玛蹄脂碎石混合料(SMA)相比,它们的结构耐久性较低。降低轮胎/路面噪声的玛蹄脂碎石混合料(SMA LA)层最近也被用作低噪声路面。本文介绍了沥青混合料SMA8 LA、含有10%、20%和30%橡胶颗粒的SMA8 LA、采用50/70号沥青、用苯乙烯-丁二烯-苯乙烯(SBS)共聚物改性的50/70号沥青、橡胶粉以及同时用橡胶粉和SBS共聚物改性的混合料的粘弹性性能测试结果。参考沥青混合料为多孔沥青(PA8)。所呈现的抗水损害性、坎塔布罗磨耗损失试验中的抗降解性、刚度模量随温度的变化以及滞后回线的结果证明,橡胶颗粒的用量和粘结剂的类型显著影响这些参数的值。在确定SMA8 LA混合料中橡胶颗粒的比例时,关注了使用单轴循环压缩试验结果的可能性。滞后回线和刚度模量试验证实,与未添加颗粒的混合料相比,含橡胶颗粒的SMA8 LA混合料具有更高的弹性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a97/7475981/66e52ff93ba8/materials-13-03446-g001.jpg

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