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Determination of the Strength Properties of Bituminous Mixtures

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Chemistry and Technology of Fuels and Oils Aims and scope

The results of developing and testing a laboratory procedure for determining strength properties exhibited by bituminous mixtures using a Lintel PK-21-01 strength meter are presented. The conditions for testing the strength of bituminous mixtures are selected according to predetermined criteria. The study reveals the dependence between the adhesion indicator for bitumen and the compressive strength of the samples collected from bituminous mixtures on its basis, which is evaluated according to the developed procedure. The strength and adhesive properties of the binder are found to decrease with increased DST-30-01 polymer content in the bitumen. The described procedures can be used in the development of new bitumen products, develop various production processes, and select the optimal parameters for its obtaining via standardized methods of testing bitumen and the developed procedure for determining the strength properties of bituminous mixtures.

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References

  1. É. V. Kotlyarskii and O. A. Voeiko, Durability of Asphalt Concrete Wearing Courses and Factors Contributing to the Asphalt Concrete Structural Failure under Traffic [in Russian], Tekhpoligraftsentr, Moscow (2007).

    Google Scholar 

  2. E. N. Barinov, Assessment and Prediction of the Durability of Asphalt Concrete Wearing Courses [in Russian], Izdvo Sankt-Peterburgskii Inzhenerno-Stroitel’nyi Institut, St. Petersburg (1993).

    Google Scholar 

  3. S. K. Iliopolov and E. V. Uglova, Durability of Asphalt Concrete Wearing Courses under the Increasing Dynamic Influence of Traffic [in Russian], FGUP Informavtodor, Moscow (2007).

    Google Scholar 

  4. N. G. Evdokimova, D. V. Zaitseva, A. V. Kim, et al., Development of a Procedure for Determining the Strength of Asphalt Concrete Mixtures [in Russian], UGNTU, Ufa (2016).

    Google Scholar 

  5. E. O. Kolysheva, G. M. Gainullina, and N. G. Evdokimova, Procedure for Determining the Strength of Asphalt Concrete Mixtures Using a PK-21 Strength Meter [in Russian], UGNTU, Ufa (2014).

    Google Scholar 

  6. N. G. Evdokimova, N. N. Luneva, N. A. Egorova, et al., Nanotekhnol. Stroit., 10, No. 5, 20–37 (2018).

    Article  CAS  Google Scholar 

  7. N. G. Evdokimova, N. N. Luneva, N. A. Egorova, et al., Khim. Tekhn. Topl. Masel, No. 5, 23–26 (2018).

  8. T. S. Khudyakova, D. A. Rozezental’, I. N. Mashkova, et al., Khim. Tekhn. Topl. Masel, No. 6, 35–36 (1987).

  9. A. I. Kartashevskii and A. G. Kashina, Khim. Tekhn. Topl. Masel, No. 4, 11–13 (1971).

  10. N. G. Evdokimova, O. B. Prozorova, and K. V. Kortyanovich, Methods for Studying the Properties of Bitumens and Oil Residues [in Russian], UGNTU, Ufa (2004).

    Google Scholar 

  11. S. V. Kotov, G. V. Timofeev, S. V. Levanova, et al., Khim. Tekhn. Topl. Masel, No. 3, 52–53, (2003).

  12. S. V. Gaver, Yu. V. Urcheva, A. M. Syroezhko, et al., Izv. SPbGTI (TU), No. 36, 68–71 (2016).

  13. N. A. Rybachuk, Vestn. IrGTU, No. 5, 98–105 (2015).

  14. T. S. Khudyakova, A. F. Masyuk, and V. V. Kalinin, Dorozh. Tekh., No. 7, 174–181 (2003).

    Google Scholar 

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Correspondence to N. G. Evdokimova.

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Translated from Khimiya i Tekhnologiya Topliv i Masel, No. 3, pp. 39–43, May–June, 2021.

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Evdokimova, N.G., Egorova, N.A. & Luneva, N.N. Determination of the Strength Properties of Bituminous Mixtures. Chem Technol Fuels Oils 57, 471–476 (2021). https://doi.org/10.1007/s10553-021-01268-1

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  • DOI: https://doi.org/10.1007/s10553-021-01268-1

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