Регулирование температуры горячей асфальтобетонной смеси для улучшения прочности сцепления
Автор: Башкарев А.Я., Бессонова В.Ю., Лазарев Ю.Г., Паневин Н.И.
Журнал: Строительство уникальных зданий и сооружений @unistroy
Статья в выпуске: 2 (111), 2024 года.
Бесплатный доступ
Целью исследования является определение оптимальных режимов приготовления асфальтобетонной смеси.
Асфальтобетон, прочность, адгезия, регулирование температуры, теория термофлуктуации
Короткий адрес: https://sciup.org/143182733
IDR: 143182733 | DOI: 10.4123/CUBS.111.3
Список литературы Регулирование температуры горячей асфальтобетонной смеси для улучшения прочности сцепления
- Vdovin E.A., Bulanov P.E., Mavliev L.F. (2022) Modification of bituminous binders with styrene-butadiene- styrene copolymer and sulfur. Construction of Unique Buildings and Structures, 7(105), Р. 10504. https://doi.org/10.4123/CUBS.105.4
- Yakobson M. Ya., Kuznetsova A. A., Vvedenskaya A. S. (2016) Relevance and prospects of cement concrete application in road construction. Transport construction, 9, 7-10 https://www.elibrary.ru/download/elibrary_27451041_98788430.pdf
- Sharafutdinov K. B., Saraykina K. A., Kashevarova G. G. [et al.]. (2023) Strength and Durability of Concretes with a Super Absorbent Polymer Additive. International Journal for Computational Civil and Structural Engineering, 19(2), 120-135. https://doi.org/10.22337/2587-9618-2023-19-2-120-135
- Ermoshin N.A., Romanchikov S.A., Averianov D.A. (2022) Simulation modeling of the risk of road structures during the repair period. Route navigator, 50(76), 30-41 https://www.elibrary.ru/download/elibrary_48202390_88032815.pdf
- Belikhin, S. V., Lazarev Yu. G., Ismailov A.M. (2019) Materials for structural repairs of transport infrastructure facilities. Regional aspects of the development of science and education in the field of architecture, construction, land management and cadastre at the beginning of the III millennium: Proceedings of the International Scientific and Practical Conference, Komsomolsk-on-Amur, November 29-30, 2018. – Komsomolsk-on-Amur: Komsomolsk-on-Amur State University,128-133 https://elibrary.ru/download/elibrary_38588377_57029397.pdf
- Lazarev Yu.G., Petukhov P.A. Shirokykh M.V. (2016) Development of methodology for evaluation of accuracy (reliability) of design of non-rigid pavements. Bulletin of Civil Engineers, 2 (55), 38-46. https://elibrary.ru/download/elibrary_26366397_29603402.pdf.
- Telegina M., Kirillova D., Lazarev Y., Petrov V. (2020) Temperature Condition of Asphalt Concrete During Road Usage. Proceedings of EECE 2019: Energy, Environmental and Construction Engineering, St. Petersburg, Russia, November 19-20, 2019. Cham: Springer, 177-189. https://doi.org/10.1007/978-3-030-42351-3_16.
- Yazhi Xu, Chuanfeng Zheng, Yepeng Feng, Xuldong Guo. (2018) Low-temperature cohesive and adhesive strength testing of contact surface between bitumen and mineral aggregates by image analysis. Construction and buildings materials, 183, 95-101. https://doi.org/10.1016/j.conbuildmat.2018.06.169
- Kopylov V.E., Burenina O.N., Pavlova E.A. (2017) Activation of mineral powders as a way to improve the physical and mechanical characteristics of asphalt concrete. Internet journal “SCIENCE”, 9 (5). https://naukovedenie.ru/PDF/48TVN517.pdf (free access).
- Bashkarev A.Ya., Lazarev, Yu.G., Bespalova N.N., Bessonova V.Yu. (2022) Methodology for determining the actual area of mineral components covered by a layer of bitumen in an asphalt concrete mixture. Route navigator, 53(79), 46-49. https://www.elibrary.ru/download/elibrary_49928478_28703896.pdf
- Abdullin A.I., Yemelyanicheva E.A., Diyarov I.N. (2009) Evaluation of the adhesion of bitumen to mineral material in asphalt concrete based on its wetting properties. Bulletin of Kazan Technological University, 4, 256-259. https://www.elibrary.ru/download/elibrary_12793628_48894021.pdf
- Galkin A.V., Parig Ya.I. (2017) Conditions for determining the cohesive strength of bitumen binder. Bulletin of KhNADU,79, 47-51. https://www.elibrary.ru/item.asp?id=30565347&ysclid=lryu814evw94919850
- Ying Yuan, Long Chen. (2020). Relationship among cohesion, adhesion and bond strength. Materials and design, 185, 1-13. https://doi.org/10.1016/j.matdes.2019.108272
- Canestrari, F., Cardone, F., Graziani, A., Santagata, F., Bahia, H. U. (2010) Adhesive and Cohesive Properties of Asphalt-Aggregate Systems Subjected to Moisture Damage. In Road Materials and Pavement Design, 11, 11–32. https://doi.org/10.1080/14680629.2010.9690325
- Bashkarev, A. Y., Kudravtseva N. N., Jaroslaw R. (2015) Correlation between asphalt concrete strength, amount of bitumen and asphalt mix batching modes. International Scientific Conference Urban Civil Engineering and Municipal Facilities (SPbUCEMF-2015), 66-72. https://doi.org/10.1016/j.proeng.2015.08.125
- Strakhova N.A., Tsamaeva P.S., Elmurzaev A.A. (2020) Methods for improving the adhesive properties of bitumen to mineral materials. Bulletin of GGNTU. Technical science, 16-4 (22), 29-35. https://doi.org/ 10.34708/GSTOU.2020.25.57.004.
- Porto M., Caputo P., Loise V., Eskandarsefat S., Teltayev B., Rossi C. (2019) Bitumen and bitumen modification: A Review on Latest Advances. Appl. Sci, 9, 1–35. https://doi.org/10.3390/app9040742
- Kotlyarsky E.V. (2011) Scientific and methodological foundations for assessing the structural and mechanical properties of composite materials based on organic binders. Building materials, 10, 36 – 41. https://elibrary.ru/item.asp?id=17292721&ysclid=lgklyaveli538040728
- Rudensky A.V. (2016) Bitumen quality is one of the most important factors in the efficiency of road construction and operation. Road builders, 1, 32–34. https://www.elibrary.ru/download/elibrary_36979719_62256142.pdf
- Polacco G., Filippi S., Merusi F., Stastna G. (2015) A review of the fundamentals of polymer-modified asphalt: Asphalt polymer interactions and compatibility. Advances in Colloid and Interface Science, 224, 72–112. http://doi.org/10.1016/j.cis.2015.07.010
- Tyukilina P. M., Gureev A.A. (2021) On the evolution of regulatory requirements for rheological characteristics of road binders in Russia. Chemistry and technology of fuels and oils, 1, 46–48. https://doi.org/10.32935/0023-1169-2021-623-1-46-48
- Tyukilina P. M., Zinovieva L. V., Egorov A. G. (2017) Influence of refining of petroleum raw materials on cohesive and deformative properties of road bitumen. Oil refining and petrochemistry, 5, 13–18. https://www.elibrary.ru/item.asp?id=29333788
- Per Redelius (2006). The structure of asphaltenes in bitumen. Road Materials and Pavement Design, 7, 143-162. http://doi.org/ 10.1080/14680629.2006.9690062.
- Per Redelius (2009) Asphaltenes in Bitumen, What They Are and What They Are Not, Road Materials and Pavement Design, 10:sup1, 25-43, http://doi.org/ 10.1080/14680629.2009.9690234
- Sirota E. B. (2005). Physical structure of asphaltenes. Energy & fuels, 19(4), 1290-1296. https://doi.org/10.1021/ef049795b
- Fakhri Mansour, Dezfoulian Reza (2019) Pavement structural evaluation based on roughness and surface distress survey using neural network model. Construction and Building Materials, 204, 768-780, https://doi.org/10.1016/j.conbuildmat.2019.01.142
- Le Van Phuc, Le Anh-Thang, Nguyen Manh Tuan, Nguyen Quang Phuc (2022) Development and validation of a temperature correction model for FWD backcalculated moduli. Australian Journal of Civil Engineering, 21, 1-9, https://doi.org/10.1080/14488353.2022.2083045
- Zhurkov S.N. (1982) Questions of modern physics of the strength of solids. Readings in memory of A.F. Ioffe, 14-21. https://rusneb.ru/catalog/000199_000009_001204276/
- Ivankov S.A., Bashkarev A.Ya. (2011) About the durability and strength of composites. Scientific and technical bulletins of SPbSPU, 4, 169-199. https://www.elibrary.ru/item.asp?id=15561868&ysclid=lrytht6868274131517
- Rudskoy A.I., Bashkarev A.Ya., Bessonova V.Yu. (2023) Application of the Thermofluctuation Theory of Strength to Calculate the Durability of Adhesive Joints in the Case of Granite-Bitumen Composites. Modern mechanical engineering. Science and education, 12, 505-520. https://doi.org/10.18720/SPBPU/2/id23-555
- Bashkarev A.Ya., Bessonova V.Yu., Lazarev Yu.G., Lozhechko V.P. (2023) Interfacial layers in mineral-bitumen composite and durability of asphalt concrete. Construction of Unique Buildings and Structures, 3 (108), P. 10802. https://doi.org/10.4123/CUBS.108.2
- Lazarev Y., Bondarenko A., Medres C., Raty J. (2017) Method of Assessment and Prediction of Temperature Conditions of Roadway Surfacing as a Factor of the Road Safety. Transportation Research Procedia: 12th International Conference "Organization and Traffic Safety Management in Large Cities", SPbOTSIC 2016, Saint-Petersburg, September 28-30, 2016, 20, 396-400. http://doi.org/ 10.1016/j.trpro.2017.01.064
Статья научная