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Rheological properties, microstructure and aging resistance of asphalt modified with CNTs/PE composites

机译:用CNTS / PE复合材料改性沥青的流变性能,微观结构和老化性

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Nanomaterials for asphalt modification and incorporating nanoparticles into asphalt mixtures to deal with road failure have gained popularity recently. Researchers have reported the improved performance of asphalt modified by carbon nanotubes (CNTs), but the cost is very high with the relatively high CNTs content. This work studied the composites modification for asphalt by CNTs and polymer with a relatively low dosage. Combined adding CNTs and polyethylene (PE), and pre-melting-mixed CNTs/PE composites were selected for preparation of modified asphalt in the study. The rheological properties as well as anti-aging performance were investigated using dynamic oscillation shearing, steady state shearing, MSCR, Fourier transform infrared (FT-IR) spectroscopy and Scanning Electron Microscopy (SEM). The influence of CNTs/PE composites on viscoelasticity as well as anti-aging performance was illustrated. The results indicated that CNTs and PE have synergistic effect on improving the high temperature performance of asphalt binders (verified by increased modulus, higher viscosity, etc.), indicating improvement on rutting resistance. Premixed CNTs/PE composites benefits for the low temperature cracking resistance and has the good anti-aging performance. No new absorption peaks appeared in FT-IR spectrum of CNTs/PE modified asphalt after aging, whereas a number of micro-cracks occurred in the SEM of aged asphalt with CNTs & PE. Microstructure evaluation indicated that premixed CNTs/PE composites can delay the aging degree of asphalt. (C) 2020 Elsevier Ltd. All rights reserved.
机译:沥青改性纳米材料并将纳米颗粒掺入沥青混合物中以处理道路故障的沥青混合物已经获得了普及。研究人员报道了通过碳纳米管(CNT)改性沥青改善的性能,但成本与相对高的CNT含量非常高。这项工作研究了CNT和聚合物的复合材料改性,具有相对低剂量的沥青。选择组合添加CNT和聚乙烯(PE)和预熔融混合的CNTS / PE复合材料,用于制备该研究的改性沥青。使用动态振荡剪切,稳态剪切,MSCR,傅立叶变换红外(FT-IR)光谱和扫描电子显微镜(SEM)研究了流变性能以及抗衰老性能。图说明了CNTS / PE复合材料对粘弹性以及抗衰老性能的影响。结果表明,CNT和PE对提高沥青粘合剂的高温性能(通过增加的模量,较高粘度等验证)具有协同作用,表明对车辙抗性的改善。预混合的CNT / PE复合材料的效果低温开裂性,具有良好的抗衰老性能。在老化后CNT / PE改性沥青的FT-IR光谱中没有出现新的吸收峰,而在CNTS和PE的沥青的SEM中发生了许多微裂纹。微观结构评价表明预混合的CNT / PE复合材料可以延迟沥青老化程度。 (c)2020 elestvier有限公司保留所有权利。

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