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外文資料翻譯--分形維數(shù)與瀝青混凝土力學(xué)性能之間的關(guān)系-全文預(yù)覽

  

【正文】 g Technologists 1987? Vol. 56:33–61. 8. Krutz NC, Sebaaly PE. Effect of Aggregate Gradation on Permanent Deformation of Asphaltic Concrete. In: Proceedings of The Association of Asphalt Paving Technologists 1993? Vol. 62, pp. 450–473. 5 9. Oduroh PK, Mahboub KC, Anderson RM. Flat and Elongated Aggregates inSuperpave Regime. Journal of Materials in Civil Engineering 2020? Vol. 12, –130. 10. Mandelbort, ., (1977). Fractals form, change and dimension. Freeman, SanFrancisco, p. 273. 11. Kaye, ., (1978). Specification of the ruggedness and/or texture of a fine particle profile by its fractal dimension. Powder Technology, 21, 116. 12. Kennedy, ., Lin, .,(1992). A parison of Fourier and fractaltechniques in the analysis of closed forms. J. Sedimentary Petrology 62 (5), 842848. 13. Hoyez, B., (1994). The roughness of sand grains: an application of Fourieranalysis and of fractal dimension. Ann. Soc. G233。s roundness number. Soils and Foundations, 35 (1), 163167. 16. Hyslip, ., Vallejo, ., (1997). Fractal analysis of roughness and size distribution of granular materials. Engineering Geology, 48: 231244. 17. Akbulut, S., (2020). Fractal Dimensioning of sand grains using i mage analysis system. Pamukkale University Journal of Engineering Science, 8(3): 329334. 18. Gori, U., Mari, M., (2020). The correlation between the fractal dimension and internal friction angle of different granular materials, Soils and Foundations, (3)41723. 19. Xu, Y. F., Sun, D. A., (2020). Correlation of surface fractal dimension with frictional angle at critical state of sands, Geotechnique, 55 (9), 691695. 20. Peng, Y., Sun, L., Wang, Y., Huang, Z., 2020. Fractal characteristicsof gradedaggregate in asphalt Mixture. Huazhong Keji Daxue Xuebao (Ziran Kexue Ban)/Journal of Huazhong University of Science and Technology (NaturalScience Edition), 35 (12): 8082. 21. Yang, R., Xu, Zhihong, (2020). Relationship between fractal dimension and road performance of densegradation asphalt mixture. Tumu Gongcheng Xuebao/China Civil Engineering Journal, 40 (3): 98103. 22. Arasan, S., Yener, E., Hattatoglu, F., Hinislioglu, S., Akbulut, S., 2020. The Correlation between Shape of Aggregate and Mechanical Properties of Asphalt Concrete: Digital Image Processing Approach (under review). 23. Ishai I, Gellber H. Effect of geometric irregularity of aggregates on the properties and behavior of asphalt concrete. In: Proceedings Association of Asphalt Paving Technologists 1982? 51: 494521. 24. Tons E, Goetz WH. Packing volume concepts for aggregates. Highway Research Record 236, Transportation Research Board, National Research Council,Washington DC 1968? 7996. 6 InternationalJournalofCivilAndStructuralEngineering,2020,1(2):165170. 分形維數(shù)與瀝青混凝土 力學(xué)性能之間的關(guān)系 Seracettin Arasan 1 , Engin Yener 2 , Fatih Hattatoglu 3 , Suat Akbulut 4 , Sinan Hinislioglu 5 5阿塔圖克大學(xué)工程學(xué)院、土木工程部門(mén) ,25240處軍營(yíng) ,土耳其 2 Bayburt大學(xué)土木工程部門(mén) ,Bayburt, 土耳其 摘 要 聚合粒子的形狀對(duì) 它們力學(xué)行為的重要性已經(jīng)被 很好的認(rèn)可了。 這方面的論文詳細(xì)介紹了關(guān)于分形維數(shù)能夠 影響瀝青混凝土的力學(xué)性能 的 研究 。 大量的幾何不規(guī)則顆粒的成功聚合 對(duì) 理解它們 對(duì) 路面性能 的影響 和 選擇骨料顆粒來(lái) 生產(chǎn)具有充足質(zhì)量的路面都是十分必
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