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基于表面能的氧化石墨烯改性沥青黏附性 被引量:16

Adhesion Characteristics of Graphene Oxide Modified Asphalt Based on Surface Free Energy
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摘要 为了研究氧化石墨烯(GO)对沥青黏附性能的影响,在基质沥青和SBS改性沥青中添加0.5%GO粉末和GO分散液来制备GO改性沥青并对其进行接触角试验.基于表面自由能理论,计算GO改性沥青的黏附功、黏聚功和剥落功等参数来评价其黏附性能,同时通过浸水马歇尔和冻融劈裂试验对GO改性沥青混合料的水稳定性进行验证.结果表明:GO提高了沥青和集料体系的表面能,增加了表面能中色散成分的比例;GO分散液比GO粉末在沥青中的分散程度更好;GO分散液对基质沥青和SBS改性沥青的黏聚功、黏附功及剥落功有明显的提升;SBS‐2#GO改性沥青混合料的残留稳定度和冻融劈裂强度比最大,表明GO增强了沥青混合料的抗水损害性能. To investigate the effect of graphene oxide(GO)on adhesion characteristics of modified asphalt,0.5%GO powder and GO dispersion were added to base asphalt and SBS modified asphalt,and contact angel test was performed on GO modified asphalt.Based on the surface free energy theory,cohesion work and spalling work were calculated to evaluate the adhesion performance of graphene oxide modified asphalt.The water stability of the mixture was verified by immersion Marshall and freeze⁃thaw splitting tests.The results show that GO can improve the surface energy of asphalt and aggregate system,and increases the proportion of dispersive components in surface energy.The dispersion effect of GO dispersion is better than that of GO powder.GO could significantly improve the cohesion work,adhesion work and peeling work of both base asphalt and SBS modified asphalt.GO dispersion has the best effect on improving the residual stability and freeze⁃thaw splitting strength ratio of SBS modified asphalt,which further confirms the strengthening effect of GO on the water damage resistance of the mixture.
作者 赵艳 李波 曹贵 杨娟 李志伟 ZHAO Yan;LI Bo;CAO Gui;YANG Juan;LI Zhiwei(National and Provincial Joint Engineering Laboratory of Road&Bridge Disaster Prevention and Control,Lanzhou Jiaotong University,Lanzhou 730070,China;Research and Development Center of Transport Industry of Technologies,Materials and Equipment of Highway Construction and Maintenance,Gansu Province Highway Traffic Construction Group Co.,Ltd.,Lanzhou 730030,China;Laboratory of Clean Energy Chemistry and Materials,Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences,Lanzhou 730000,China)
出处 《建筑材料学报》 EI CAS CSCD 北大核心 2021年第6期1341-1347,共7页 Journal of Building Materials
基金 中国科学院科技服务网络计划区域重点项目(KFJ⁃STS⁃QYZD⁃149) 国家自然科学基金资助项目(51668038,51868042) 甘肃省杰出青年基金项目(1606RJDA318) 甘肃省高等学校产业支撑引导项目(2020C⁃13)。
关键词 表面自由能 氧化石墨烯改性沥青 抗水损害性能 黏附特性 surface free energy graphene oxide modified asphalt water damage resistance adhesive property
作者简介 第一作者:赵艳(1994-),女,甘肃武威人,兰州交通大学硕士生.E⁃mail:906812332@qq.com;通讯作者:李波(1981-),男,宁夏中卫人,兰州交通大学教授,博士生导师,博士.E⁃mail:libo@maillzjtu.cn。
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  • 1郑晓光,王粲,杨群.运用表面自由能理论分析沥青混合料水稳定性[J].中外公路,2004,24(5):88-90. 被引量:24
  • 2肖庆一,薛航,徐金枝,刘丽,雷海燕.基于表界面理论的沥青路面水损坏模型研究[J].武汉理工大学学报,2007,29(5):71-73. 被引量:31
  • 3Zollinger C J. Application of surface energy measure-ments to evaluate moisture susceptibility of asphalt and aggregates[D].Texas,USA:Texas A &M Universi-ty,2005.
  • 4Bhasin A,Masad E,Little D N. Limits on adhe-sive bond energy for improved resistance of hot-mix as-phalt to moisture damage[J].{H}TRANSPORTATION RESEARCH RECORD,2006,(70):313.
  • 5Copeland R A. Influence of moisture on bond strength of asphalt-aggregate systems[D].Tennessee,USA:Vanderbilt University,2007.
  • 6胡福增.材料表面与界面[M]{H}上海:华东理工大学出版社,2008218239.
  • 7赵国玺.表面活性剂作用原理[M]{H}北京:中国轻工业出版社,2003511513.
  • 8王海军;戈龙华;夏晓慧.沥青粘结料表面自由能试验研究[J]山东大学学报(工学版),2008(51):113117.
  • 9Hefer A W,Little D N,Herbert B E. Bitumen surface energy characterization by inverse gas chromatography[J].Journal ofTesting and Evaluation,2006,(3):17.
  • 10Hefr A W,Bhasin A,Little D N. Bitumen surface en-ergy characterization using a contact angle approach[J].{H}JOURNAL OF MATERIALS IN CIVIL ENGINEERING,2006,(6):759767.

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