介绍了纳米改性沥青技术进展,分析评价了各种纳米材料对沥青及沥青混合料性能的影响,指出了目前纳米改性沥青技术存在的问题。为提高改性沥青的性能,应综合分析影响纳米改性沥青性能的因素,并对改性效果进行定量评价,为全面评价道路沥青的经济效益、环境效益等提供理论参考。
The development of the nanotechnology modification of asphalt was expounded,the influences of modifiers on asphalt and asphalt mixture were analyzed and evaluated,the existing problems of the nano-modified asphalt technology were pointed out.The factors affecting the performance of nano-modified asphalt should be analyzed comprehensively,and the modification effect should be evaluated quantitatively in order to improve the performance of modified asphalt.Therefore,it provided a theoretical reference for comprehensive evaluation of the economic and environmental benefits of paving asphalt.
[1] 黄彭,徐国财,张立德.纳米复合材料[M].北京:化学工业出版社,2002:65.
[2] Li X,Zhan Z,Peng G,et al.A new method for preparing completely exfoliated epoxy/clay nanocomposites:nano-disassembling method[J].Polymer Bulletin,2011,67(4):719-727.
[3] Magdy Abdelrahman,Dinesh R Katti,Amir Ghavibazoo,et al.Engineering physical properties of asphalt binders through nanoclay-asphalt interactions[J].Journal of Materials in Civil Engineering,2014,26(12):04014099.
[4] Manfred N.Perspective on nanotechnology in construction materials with a focus on asphaltic materials[R].Florida:NSF Workshop on Nano-modifications of Cementitious Materials,2006.
[5] Steyn W J vd M.Research and application of nanotechnology in transportation[R].South Africa:Proceedings of the 27 Southern African Transport Conference (SATC),2008.
[6] 叶超,陈华鑫.纳米SiO2和纳米TiO2改性沥青路用性能研究[J].新型建筑材料,2009,36(6):82-84.
[7] Tanzadeh J,Vahedi F,Kheiry P T,et al.Laboratory study on the effect of nano TiO2 on rutting performance of asphalt pavements[J].Advanced Materials Research,2013,622:990-994.
[8] Shafabakhsh G H,Mirabdolazimi S M,Sadeghnejad M.Evaluation the effect of nano-TiO2 on the rutting and fatigue behavior of asphalt mixtures[J].Construction and Building Materials,2014,54:566-571.
[9] 于江,李文博,李林萍.纳米二氧化钛对沥青老化性能的影响研究[J].重庆交通大学学报:自然科学版,2017,36(10):26-30.
[10] Hossein Nazari,Koorosh Naderi,Fereidoon Moghadas Nejad.Improving aging resistance and fatigue performance of asphalt binders using inorganic nanoparticles[J].Construction and Building Materials,2018,170:591-602.
[11] Saeed Sadeghpour Galooyak,Masoud Palassi,Ahmad Goli,et al.Performance evaluation of nano-silica modified bitumen[J].International Journal of Transportation Engineering,2015,3(1):55-66.
[12] 何小芳,杨南南,贺超峰,等.纳米TiO2在聚合物抗紫外光老化中的研究进展[J].材料导报,2013,27(15):50-53.
[13] Brabani M,Shakeri V,Sadeghnejad M,et al.Experimental investigation of nano zinc oxide effect on creep compliance of hot mix asphalt [C]//Howson J E,Lytton R L.7th Symposium on Advances in Science and Technology.Bander-Abbas:Neumann & Giese,2013:156-163.
[14] 陈渊召,陈爱玖,李超杰,等.纳米氧化锌改性沥青混合料性能分析[J].中国公路学报,2017,30(7):25-32.
[15] 张明祥.纳米氧化锌改性沥青及其抗老化性能研究[D].西安:长安大学,2015.
[16] 孙璐,辛宪涛,于鹏.纳米SiO2改性沥青混合料的路用性能[J].公路交通科技,2013,30(8):1-5.
[17] Mehmet Saltan,Serdal Terzi,Sebnem Karahancer.Examination of hot mix asphalt and binder performance modified with nano silica[J].Construction and Building Materials,2017,156:976-984.
[18] Saeed Sadeghpour Galooyak,Masoud Palassi,Ahmad Goli,et al.Performance evaluation of nano-silica modified bitumen[J].International Journal of Transportation Engineering,2015,3(1):55-66.
[19] Mostafa Sadeghnejad,Gholamali Shafabakhsh.Use of nano SiO2 and nano TiO2 to improve the mechanical behaviour of stone mastic asphalt mixtures[J].Construction and Building Materials,2017,157:965-974.
[20] Mehmet Saltan,Serdal Terzi,Sebnem Karahancer.Examination of hot mix asphalt and binder performance modified with nano silica research article[J].Construction and Building Materials,2017,156:976-984.
[21] Yao Hui,You Zhanping,Li Liang,et al.Performance of asphalt binder blended with non-modified and polymer-modified nanoclay[J].Construction and Building Materials,2012,35:159-170.
[22] Elfadil A A Siddig,Cheng Peifeng,Li Yiming.Effects of ethylene vinyl acetate and nanoclay additions on high-temperature performance of asphalt binders[J].Construction and Building Materials,2018,169:276-282.
[23] Erol Iskender.Evaluation of mechanical properties of nano-clay modified asphalt mixtures[J].Measurement,2016,93:359-371.
[24] 付玉.纳米蒙脱土改性沥青及沥青混合料老化特性研究[D].武汉:武汉理工大学,2010.
[25] Yu Jianying,Zeng Xuan,Wu Shaopeng,et al.Preparation and properties of montmorillonite modified asphalts[J].Materials Science and Engineering:A,2007,447(1/2):233-238.
[26] Yu Jianying,Feng Pengcheng,Zhang Henglong,et al.Effect of organo-montmorillonite on aging properties of asphalt[J].Construction and Building Materials,2009,23:2636-2640.
[27] Vargas M A,Moreno L,Montiel R,et al.Effects of montmorillonite (Mt) and two different organo-Mt additives on the performance of asphalt[J].Applied Clay Science,2017,139:20-27.
[28] 崔亚楠,刘涛.纳米蒙脱土改性沥青的抗老化性能及老化机理[J].建筑材料学报,2018,21(4):626-633.
[29] Pei Jianzhong,Wen Yong,Li Yanwei,et al.Organic montmorillonite modified asphalt materials:preparation and characterization[J].Journal of Testing and Evaluation,2014,42(1):118-125.
[30] 杨骞.碳纳米管增强沥青混合料的力学性能研究[D].杭州:浙江大学,2015.
[31] Joo Victor Staub de Melo,Glicério Trichês,Lucas Torres de Rosso.Experimental evaluation of the influence of reinforcement with Multi-Walled Carbon Nanotubes (MWCNTs) on the properties and fatigue life of hot mix asphalt[J].Construction and Building Materials,2018,162:369-382.
[32] 许晨.基于碳纳米管改性沥青的结构和性能的研究[D].重庆:重庆交通大学,2015.
[33] Hassan Latifi,Parham Hayati.Evaluating the effects of the wet and simple processes for including carbon Nanotube modifier in hot mix asphalt[J].Construction and Building Materials,2018,164:326-336.
[34] 杨海霞.抚顺地区SBR改性沥青及改性沥青混合料低温抗裂性能研究[D].吉林:吉林大学,2016.
[35] 张敏江,陈刚,焦兴华.SBR改性沥青在寒冷地区的路用性能[J].沈阳建筑大学学报:自然科学版,2009,25(5):858-862.
[36] 张华.纳米ZnO/SBS改性沥青混合料路用性能评价[J].中外公路,2016,36(2):289-292.
[37] 刘超.纳米蒙脱土(OMMT)/SBS改性沥青流变特性研究[D].大连:大连海事大学,2016.
[38] 祝伟.SBS掺量对改性沥青混合料路用性能的影响[D].西安:长安大学,2012.
[39] 马峰.纳米碳酸钙改性沥青路用性能及改性机理研究[D].西安:长安大学,2004.
[40] Abbas Kebritchi,Azam Jalali-Arani,Ali Asghar Roghanizad.Rheological behavior and properties of bitumen modified with polymeric coated precipitated calcium carbonate[J].Construction and Building Materials,2011,25:2875-2882.
[41] Fereidoon Moghadas Nejad,Azarhoosh A R,Gholam Hossein Hamedi,et al.Characterization of permanent deformation resistance of precipitated calcium carbonate modified asphalt mixture[J].Journal of Civil Engineering and Management,2015,21(5):615-622.
[42] Hao Xiuhong,Zhang Aiqin,Yang Wei.Study on the performance of nano calcium carbonate modified asphalt concrete AC-13[J].Advanced Materials Research,2012,450-451:503-507.
[43] Mohammad Jamal Khattak,Ahmed Khattab,Hashim R Rizvi.Characterization of carbon nano-fiber modified hot mix asphalt mixtures[J].Construction and Building Materials,2013,40:738-745.
[44] Mohammad Jamal Khattak,Ahmed Khattab,Hashim R Rizvi,et al.The impact of carbon nano-fiber modification on asphalt binder rheology[J].Construction and Building Materials,2012,30:257-264.
[45] Khattak M J,Khattab A,Rizvi H R.Mechanistic characteristics of asphalt binder and asphalt matrix modified with nano-fibers[R].Dallas (TX):Proceedings of the geo-frontiers 2011 conference,2011.
[46] 肖鹏,李雪峰.纳米ZnO/SBS改性沥青微观结构与共混机理[J].江苏大学学报:自然科学版,2006,27(6):548-551.
[47] Zhang Hongliang,Su Manman,Zhao Shifeng,et al.High and low temperature properties of nano-particles/polymer modified asphalt[J].Construction and Building Materials,2016,114:323-332.
[48] Mehmet Saltan,Serdal Terzi,Sebnem Karahancer.Performance analysis of nano modified bitumen and hot mix asphalt[J].Construction and Building Materials,2018,173:228-237.
[49] Ghasemi M,Marandi S M,Tahmooresi M,et al.Modification of stone matrix asphalt with nano-SiO2[J].Journal of Basic and Applied Scientific Research,2012,1(1):1338-1344.
[50] Sajad Rezaei,Hassan Ziari,Shams Nowbakht.High-temperature functional analysis of bitumen modified with composite of nano-SiO2 and styrene butadiene styrene polymer[J].Petroleum Science and Technology,2016,34(13):1203.
[51] 赵宝俊,赵士峰,张洪亮,等.纳米CaCO3/SBR复合改性沥青的性能与机理[J].长安大学学报:自然科学版,2017,37(5):15-22.
[52] 孙培,韩森,张洪亮,等.纳米CaCO3/SBR复合改性沥青及混合料的高温性能[J].材料导报,2016,30(8):122-126.
[53] 刘超.纳米蒙脱土(OMMT)/SBS改性沥青流变特性研究[D].大连:大连海事大学,2016.
[54] 杨泽清,肖新颜.纳米蒙脱土改性沥青复合材料研究进展[J].现代化工,2013,33(3):33-37.
[55] Zhang Henglong,Yu Jianying,Wang Huacai,et al.Investigation of microstructures and ultraviolet aging properties of organo-montmorillonite/SBS modified bitumen[J].Materials Chemistry and Physics,2011,129(3):769-776.
[56] Liu Shengjie,Zhou Shengbo,Xu Yinshan.Evaluation of cracking properties of SBS-modified binders containing organic montmorillonite[J].Construction and Building Materials,2018,175:196-205.
基金资助
国家自然科学基金(51778071)