Journal of Jilin University(Engineering and Technology Edition) ›› 2026, Vol. 56 ›› Issue (9): 2373-2381.doi: 10.13229/j.cnki.jdxbgxb.20250203
Ying WANG1,2(
),Shu-ming LI2,Yi-chen CAI1,Yu-qing YUAN3(
)
CLC Number:
| [1] | Craus J, Ishai I, Sides A. Some physico-chemical aspects of the effect and the role of the filler in bituminous paving mixtures[J]. Asphalt Paving Technol,1978, 47:558-588. |
| [2] | National Center for Asphalt Technology. Asphalt film thickness debunked[EB/OL]. [2025-04-26]. . |
| [3] | 吕得保, 刘寒冰, 关长禄. 沥青混合料的集料比表面积确定方法的研究[J]. 公路交通科技, 2011(5): 28-32. |
| De-bao Lü, Liu Han-bing, Guan Chang-lu. Study on ascertaining specific surface area of asphalt mixture aggregate[J]. Journal of Highway and Transportation Research and Development, 2011(5): 28-32. | |
| [4] | 何娟, 张京锋. 沥青混合料沥青膜厚度计算方法之维姆模型修正[J]. 广州大学学报: 自然科学版, 2010, 9(2): 68-71. |
| He Juan, Zhang Jing-feng. Revise of hveem model and the optimum asphalt film thickness of asphalt mixture[J]. Journal of Guangzhou University(Natural Science Edition), 2010, 9(2): 68-71. | |
| [5] | Zhang Y, Chen H, Xiao P, et al. Investigation of average asphalt film thickness of dense graded asphalt mixtures with compaction effects[J]. Construction and Building Materials, 2022, 326: No.126696. |
| [6] | 侯芸, 魏道新, 田波, 等. 沥青混合料油膜厚度计算方法[J]. 交通运输工程学报,2007(4): 58-62. |
| Hou Yun, Wei Dao-xin, Tian Bo, et al. Calculation method of asphalt film thickness in mixture[J]. Journal of Traffic and Transportation Engineering, 2007(4): 58-62. | |
| [7] | Radovskiy B. Analytical formulas for film thickness in compacted asphalt mixture[J]. Transportation Research Record, 2003, 1829(1): 26-32. |
| [8] | 成志强, 陈先勇, 陈辉强, 等. RAP中有效沥青膜厚度测定[J]. 重庆交通大学学报: 自然科学版, 2012(6): 1149-1153, 1161. |
| Cheng Zhi-qiang, Chen Xian-yong, Chen Hun-qiang, et al. Thickness testing of effective asphalt film in RAP[J]. Journal of Chong Qing Jiaotong University(Natural Science), 2012(6): 1149-1153, 1161. | |
| [9] | Nanjegowda V H, Silva F, Sousa J B, et al. Forensic approach to predict film thickness of reacted and activated rubber(RARX) modified asphalt mixtures[J]. Road Materials and Pavement Design, 2020, 21(Sup.1): 19-36. |
| [10] | Huurman M. Lifetime optimisation tool(LOT), main report 7-07-170-1[R]. Delft: Delft University of Technology, Laboratory of Road and Railway Engineering, 2008. |
| [11] | Al-Khateeb G G. Conceptualizing the asphalt film thickness to investigate the Superpave VMA criteria[J]. International Journal of Pavement Engineering, 2018, 19(11): 957-965. |
| [12] | Dong M S, Sun W, Li L L, et al. Effect of asphalt film thickness on shear mechanical properties of asphalt-aggregate interface[J]. Construction and Building Materials, 2020, 263: No.120208. |
| [13] | de Rezende L R, Kommidi S R, Kim Y R, et al. Strain sweep fatigue testing of sand asphalt mortar to investigate the effects of sample geometry, binder film thickness, and testing temperature[J]. Transportation Research Record, 2021, 2675(10): 516-529. |
| [14] | Kandhal P S, Chakraborty S. Effect of asphalt film thickness on short-and long-term aging of asphalt paving mixtures[J]. Transportation Research Record, 1996, 1535(1): 83-90. |
| [15] | Zhai H, Bahia H U, Erickson S. Effect of film thickness on rheological behavior of asphalt binders[J]. Transportation Research Record, 2000, 1728(1): 7-14. |
| [16] | Yi Y, Jiang Y, Tian T, et al. Research on the optimum asphalt film thickness of asphalt mixtures and its influence on the pavement performance based on the CT and Blaine method[J]. Journal of Materials in Civil Engineering, 2022, 34(12): No.04022324. |
| [17] | 于辉. 沥青膜厚度对沥青混合料性能影响的研究[D]. 长春: 吉林大学交通学院, 2007. |
| Yu Hui. Research on influence of thickness of asphaltum to the performance of asphaltum mixture[D]. Changchun: College of Transportation, Jilin University,2007. | |
| [18] | Sukkari A, Al-Khateeb G G, Ziada W, et al. Estimating asphalt film thickness in asphalt mixtures using microscopy to further enhance the performance of UAE roadways[C]∥The 18th International Road Federation World Meeting & Exhibition, Dubai, UAE, 2021: 87-96. |
| [19] | Karim F, Hussain J. Assessing the asphalt binder film thickness in recycled asphalt mixtures using micro-level techniques[J]. Materials, 2021, 14(24): No.7891. |
| [20] | Karim F, Hussain J, Hafeez I. Estimating the asphalt binder film thickness using scanning electron microscope and energy dispersive X-ray spectroscopy[J]. Advances in Materials Science and Engineering, 2021(1):No. 8894970. |
| [21] | Vieira L H, de Souza T D, Enríquez-León A J, et al. Experimental testing and analysis procedure to determine the apparent film thickness of asphalt binder in fine aggregate matrix mixtures[J]. Transportation Research Record, 2021, 2675(7): 166-179. |
| [22] | Jiang J, Zhao Y, Lu G, et al. Effect of binder film distribution on the fatigue characteristics of asphalt binder/filler composite based on image analysis method[J]. Construction and Building Materials, 2020, 260: No.119876. |
| [23] | Jiang J, Ni F, Gu X, et al. Evaluation of aggregate packing based on thickness distribution of asphalt binder, mastic and mortar within asphalt mixtures using multiscale methods[J]. Construction and Building Materials, 2019, 222: 717-730. |
| [24] | Jiang J, Li Y, Zhang Y, et al. Distribution of mortar film thickness and its relationship to mixture cracking resistance[J]. International Journal of Pavement Engineering, 2022, 23(3): 824-833. |
| [25] | Al-Khateeb G G, Sukkari A, Zeiada W, et al. Microscopy-based approach for measuring asphalt film thickness and its impact on hot-mix asphalt performance[J]. Case Studies in Construction Materials, 2023, 18: No.e01711. |
| [26] | Elseifi M A, Al-Qadi I L, Yang S H, et al. Validity of asphalt binder film thickness concept in hot-mix asphalt[J]. Transportation Research Record, 2008, 2057(1): 37-45. |
| [27] | Hinrichsen J A, Heggen J. Minimum voids in mineral aggregate in hot-mix asphalt based on gradation and volumetric properties[J]. Transportation Research Record, 1996, 1545(1): 75-79. |
| [28] | Al-Khateeb G G, Shenoy A. Mixture-property-independent asphalt film thickness model[J]. Materials Today Communications, 2019, 19: 482-486. |
| [29] | 程永喜. 开放量子点系统中的近藤效应及量子输运[M]. 北京: 北京邮电大学出版社, 2022: 1-20. |
| [30] | Zhu X, Yuan Y, Li L, et al. Identification of interfacial transition zone in asphalt concrete based on nano-scale metrology techniques[J]. Materials & Design, 2017, 129: 91-102. |
| [31] | .公路沥青路面施工技术规范 [S]. |
| [32] | 交通部公路科学研究所. .公路工程集料试验规程 [S]. |
| [33] | .公路工程沥青及沥青混合料试验规程 [S]. |
| [34] | Oliver W C, Pharr G M. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments[J]. Journal of Materials Research, 1992, 7(6): 1564-1583. |
| [35] | Zhao L, Zhang J, Pfetzing J, et al. Depth-sensing ductile and brittle deformation in 3C-SiC under Berkovich nanoindentation[J]. Materials and Design, 2021, 197: No.109223. |
| [36] | 张峥 编. 工程材料的力学性能[M]. 北京: 北京航空航天大学出版社, 2022: 132-140. |
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