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基于新型生物基温拌再生剂的新拌沥青与老化沥青混合行为的定量评估

Quantitative Evaluation of Blending Behavior between Virgin Asphalt and Aged Asphalt Incorporating a New Bio-Based Warm-Mix Rejuvenator.

作者信息

Yu Le, You Shiyuan, He Zhaoyi, Wei Dingbang, Kong Lin

机构信息

School of Civil Engineering, Chongqing Jiaotong University, Chongqing 400074, China.

Chongqing City Construction Investment Group Co., Ltd., Chongqing 400023, China.

出版信息

Materials (Basel). 2024 Aug 15;17(16):4061. doi: 10.3390/ma17164061.

Abstract

The blending degree between virgin asphalt and aged asphalt has a significant effect on road performance of reclaimed asphalt mixture. This study presented an innovative examination of blending behavior between virgin asphalt and aged asphalt incorporating a new bio-based warm-mix rejuvenator (BWR) by utilizing Atomic Force Microscopy (AFM). Through analyzing the variation of several micro-morphology parameters between virgin asphalt and aged asphalt (or recycled asphalt) after blending, an index of regenerative blending degree (RBD) was proposed to quantitatively evaluate their blending behavior, and the effect of various blending temperatures and durations on regenerative blending degree was investigated. The results show that the regenerative blending degree between virgin asphalt and aged asphalt was higher than that between virgin asphalt and recycled asphalt under the same blending condition. A clear linear correlation was observed between the regenerative blending degree calculated by 3D micro-morphology parameters and the dosage of bio-based warm-mix rejuvenator in recycled asphalt, with a correlation coefficient of 0.98. With the increase in blending duration, the regenerative blending degree between virgin asphalt and recycled asphalt increased first and then decreased, but continued to improve with the increase in blending temperature, which indicates that a higher blending temperature and prolonging the blending duration properly have a positive effect on the blending processing between virgin asphalt and recycled asphalt. Compared with the regenerative blending degree calculated by 2D micro-morphology parameters, the regenerative blending degree calculated by 3D micro-morphology parameters is more reasonable to quantify the blending behavior between virgin asphalt and recycled asphalt.

摘要

新沥青与老化沥青的掺配程度对再生沥青混合料的路用性能有显著影响。本研究通过原子力显微镜(AFM)对新沥青与老化沥青在掺入新型生物基温拌再生剂(BWR)时的掺配行为进行了创新性研究。通过分析新沥青与老化沥青(或再生沥青)掺配后几种微观形貌参数的变化,提出了再生掺配度(RBD)指标来定量评价它们的掺配行为,并研究了不同掺配温度和时间对再生掺配度的影响。结果表明,在相同掺配条件下,新沥青与老化沥青的再生掺配度高于新沥青与再生沥青的再生掺配度。通过三维微观形貌参数计算得到的再生掺配度与再生沥青中生物基温拌再生剂的用量之间呈现明显的线性相关,相关系数为0.98。随着掺配时间的增加,新沥青与再生沥青的再生掺配度先增大后减小,但随着掺配温度的升高持续提高,这表明较高的掺配温度和适当延长掺配时间对新沥青与再生沥青的掺配过程有积极影响。与通过二维微观形貌参数计算得到的再生掺配度相比,通过三维微观形貌参数计算得到的再生掺配度用于量化新沥青与再生沥青的掺配行为更为合理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8217/11356266/892a66598edb/materials-17-04061-g001.jpg

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