
重庆交通大学学报(自然科学版) ›› 2021, Vol. 40 ›› Issue (12): 96-102.DOI: 10.3969/j.issn.1674-0696.2021.12.15
宿金菲,栗培龙,朱磊,董超
收稿日期:2020-01-14
修回日期:2020-07-02
发布日期:2021-12-27
作者简介:宿金菲(1993—),女,河北唐山人,博士研究生,主要从事路面微细观作用行为方面的研究。 E-mail: 1120964075@qq.com
通信作者:栗培龙(1980—),男,江苏邳州人,教授,博士,主要从事路面材料与结构方面的研究。E-mail:lipeilong@chd.edu.cn
基金资助:SU Jinfei, LI Peilong, ZHU Lei, DONG Chao
Received:2020-01-14
Revised:2020-07-02
Published:2021-12-27
摘要: 为探究沥青混合料的压实特性,通过旋转压实仪成型试件,采用密实曲线平均斜率K1、K2和密实能量指数CEI表征沥青混合料的压实特性。基于自主开发的矿料接触试验仪和界面接触滑移试验装置提出用最大滑移作用力和最大滑移剪应力分别表征颗粒系统和沥青混合料的接触特性。从微细观水平分析了矿料/沥青体系接触摩擦效应对压实特性的影响。试验结果表明:粗集料的数量越多,颗粒间的接触效应越显著,沥青混合料越难以压实;相比SMA-13和OGFC-13,AC-13的工作性较好;公称最大粒径越大,沥青混合料达到目标压实度所需的能力越多,抗滑移变形能力越好。沥青用量越多或压实温度越高均会导致沥青混合料的接触强度减弱,从而提高工作性;最大滑移剪应力比K2更适合评价开放交通后沥青混合料的压实特性。
中图分类号:
宿金菲,栗培龙,朱磊,董超. 矿料/沥青体系微细观接触摩擦效应对压实特性的影响[J]. 重庆交通大学学报(自然科学版), 2021, 40(12): 96-102.
SU Jinfei, LI Peilong, ZHU Lei, DONG Chao. Effect of Microscopic Contact Friction of Aggregate/Asphalt System on Compaction Characteristics[J]. Journal of Chongqing Jiaotong University(Natural Science), 2021, 40(12): 96-102.
| [1] 刘卫东,高英,黄晓明,等.沥青路面现场压实细观特性分析[J].哈尔滨工业大学学报,2019,51(3):99-106.
LIU Weidong, GAO Ying, HUANG Xiaoming, et al. Mesoscopic characteristics of asphalt pavement during field compaction [J]. Journal of Harbin Institute of Technology, 2019, 51(3): 99-106. [2] PREZ-JIMNEZ F, MARTNEZ A H, MIR R, et al. Effect of compaction temperature and procedure on the design of asphalt mixtures using Marshall and gyratory compactors [J]. Construction and Building Materials, 2014, 65: 264-269. [3] 张争奇,袁迎捷,王秉纲. 沥青混合料旋转压实密实曲线信息及其应用[J]. 中国公路学报,2005,18(3):1-6. ZHANG Zhengqi, YUAN Yingjie, WANG Binggang. Information of gyratory compaction densification curve of asphalt mixture and its application [J]. China Journal of Highway and Transport, 2005, 18(3): 1-6. [4] 张争奇,边秀奇,杜群乐,等. 沥青混合料压实特性影响因素研究[J].武汉理工大学学报,2012, 34(6):36-41. ZHANG Zhengqi, BIAN Xiuqi, DU Qunle, et al. Study on factors effecting on compaction property of asphalt mixture [J]. Journal of Wuhan University of Technology, 2012, 34(6): 36-41. [5] LIU Juanyu, SABOUNDJIAN S, LI Peng,et al. Laboratory evaluation of Sasobit-modified warm-mix asphalt for Alaskan conditions [J].Journal of Materials in Civil Engineering, 2011, 23(11): 1498-1505. [6] GAO Lei, NI Fujian, CHARMOT S, et al. Influence on compaction of cold recycled mixes with emulsions using the Superpave gyratory compaction [J]. Journal of Materials in Civil Engineering, 2014, 26(11): 04014081. [7] LI Peilong, SU Jinfei, MA Songson, et al. Effect of aggregate contact condition on skeleton stability in asphalt mixture [J]. International Journal of Pavement Engineering, 2020, 21(2): 196-202. [8] LI Jiange, LI Peilong, SU Jinfei, et al. Effect of aggregate contact characteristics on densification properties of asphalt mixture [J]. Construction and Building Materials, 2019, 204: 691-702. [9] JIA Jie, LIU Honghai, WAN Yipin. Dynamic characteristics modelling of the tamper-asphalt mixture interaction: Application to predict asphalt mat density [J]. International Journal of Pavement Engineering, 2019, 20(5): 530-543. [10] WANG Xue, SHEN Shihui, HUANG Hai, et al. Towards smart com-paction: Particle movement characteristics from laboratory to the field [J]. Construction and Building Materials, 2019, 218: 323-332. [11] HASKETT M, OEHLERS D, ALI M S M, et al. Evaluating the shear-friction resistance across sliding planes in concrete [J]. Engineering Structures, 2011, 33(4): 1357 -1364. [12] MIAO Yinghao, YU Weixiao, HU Yue, et al. Investigating the functions of particles in packed aggregate blend using a discrete element method [J]. Materials, 2019, 12(4):556. [13] HU Jing, LIU Pengfei, WANG Dawei, et al. Inuence of aggregates spatial characteristics on air-voids in asphalt mixture [J]. Road Materials and Pavement Design, 2018, 19(4): 837-855. [14] SHI Liwan, YANG Zhen, WANG Duanyi, et al. Gradual meso-structural response behavior of characteristics of asphalt mixture main skeleton subjected to load [J]. Applied Sciences, 2019, 9(12): 2452. [15] LIU Yu. Discrete Element Methods for Asphalt Concrete: Development and Application of User-Defined Microstructural Models and a Viscoelastic Micromechanical Model [D]. Michigan, US: Michigan Technological University, 2011. [16] POLACZYK P, HUANG B S, SHU X,et al. Investigation into locking point of asphalt mixtures utilizing Superpave and Marshall compactors[J]. Journal of Materials in Civil Engineering, 2019, 31(9): 04019188. [17] FATTAH M Y, HILAL M, FLYEH H B. Assessment of mechanical stability performance of asphalt mixture using Superpave gyratory compactor [J]. Journal of Transportation Engineering Part B: Pavements, 2019, 145(2): 04019004. [18] KIM K, KANG M. Linking the effect of aggregate interaction to the compaction theory for asphalt mixtures using image processing [J]. Applied Sciences, 2018, 8 (11): 2045. |
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