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环氧预聚物改性煤沥青流变学特性研究 被引量:3

Research on Rheological Properties of Epoxy Prepolymer Modified Coal Pitch
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摘要 为改善煤沥青路用性能,采用过量环氧树脂(3.33倍反应量)与聚醚胺反应制备环氧树脂预聚物对煤沥青进行改性,研究了改性煤沥青的流变性能、抗老化性能和温度敏感性。结果表明,改性后的煤沥青10℃延度由0.0 cm增加到43.7 cm,-18℃劲度模量S由691 MPa降低到298 MPa,蠕变速率m由0.245增加到0.341,煤沥青的低温性能得到大幅提升;RTFOT老化试验质量变化由2.3%减小到0.8%,针入度指数由-9.7改变为-0.219,环氧树脂预聚物显著改善煤沥青的抗老化性和温度敏感性。 In order to improve the road performance of the coal tar pitch,the rheological property,ageing resistance performance,and temperature sensitivity of the modified coal pitch were studied in this paper. An excess epoxy resin(3. 33 times the reaction amount)was used to react with the polyetheramine to prepare the epoxy resin prepolymer to modify the coal tar pitch. The results showed that the 10℃ ductility of the modified coal tar pitch increased from 0. 0 cm to 43. 7 cm,the-18℃ stiffness modulus S decreased from 691 MPa to 298 MPa,and the creep rate m increased from 0. 245 to 0. 341. The low temperature performance of the coal tar pitch was greatly improved. The quality change of the RTFOT aging test reduced from 2. 3% to 0. 6%,and the penetration index changed from-9. 7 to-0. 2. It indicated that the epoxy resin prepolymer significantly improved the aging resistance and temperature sensitivity of the coal tar pitch.
作者 李永翔 何智民 米世忠 王国忠 贾永杰 LI Yongxiang;HE Zhimin;MI Shizhong;WANG Guozhong;JIA Yongjie(College of Energy and Transportation Engineering,Inner Mongolia Agricultural Uriiversity,Hohhot 010018,China;Inner Mongolia Autonomous Region Road Materials Recycling and Maintenance Engineering Technology Research Center,Hohhot 010010,China;Inner Mongolia Road and Bridge Engineering Technology Testing Corporation,Hohhot 010050,China)
出处 《内蒙古农业大学学报(自然科学版)》 CAS 2022年第1期59-65,共7页 Journal of Inner Mongolia Agricultural University(Natural Science Edition)
基金 内蒙古自治区交通运输厅建设科技项目(NJ-2018-05,NJ-2018-07,NJ-2020-13) 内蒙古自治区科技计划(2020GG0257,2021GG0082) 能源与交通工程学院实验室开放项目(NYKF20200102,NYKF20200104)。
关键词 环氧预聚物 流变性能 煤沥青 抗老化性能 温度敏感性 Epoxy resin prepolymer Rheological properties Coal tar pitch Anti-aging performance Temperature sensitivity
作者简介 李永翔(1983-),男,博士,主要从事道路结构、道路材料方面的研究。
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