Artificial granite based bitumen-mineral mixtures

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription or Fee Access

Abstract

Bitumen-mineral mixtures are widely used in asphalt concrete, waterproofing materials, blind areas production and other technologies. In this article, it is proposed to use artificial granite as aggregat in the bitumen-mineral mixtures production: waste product from the porcelain stoneware production, formed as a result of firing a charge consisting of natural raw materials – high-quality clay or kaolin, feldspar and quartz sand. This ensures stability of the chemical-mineralogical and physico-technical properties of the porcelain stoneware production waste, which peculiarity associated with low porosity. The need for the adhesive additives introduction has been identified. The cationic-type additives represented by cyclic imidazolines, which contribute to hydrogen bonds formation between the low-porous glass crystal structure of the porcelain stoneware production waste and organic binder is recognized as the most effective adhesive additive. It is shown that the physical and mechanical properties of the bitumen-mineral mixture based on the porcelain stoneware production waste is not worse then mixtures using natural mineral raw materials.

Full Text

Restricted Access

About the authors

A. S. Evforitskiy

South Russian State Polytechnic University (Novocherkassk Polytechnic Institute) named after M.I. Platov

Author for correspondence.
Email: eforbro@yandex.ru

Engineer

Russian Federation, 132, Prosveshcheniya Street, Novocherkassk, Rostov-on-Don Region, 346428

N. D. Yatsenko

South Russian State Polytechnic University (Novocherkassk Polytechnic Institute) named after M.I. Platov

Email: natyacen@yandex.ru

Doctor of Sciences (Engineering)

Russian Federation, 132, Prosveshcheniya Street, Novocherkassk, Rostov-on-Don Region, 346428

References

  1. Simchuk E.N., Zhdanov K.A., Dedkovskii I.A. Improving approaches and methods for assessing the physical and operational properties of asphalt concrete in Russia. Dorogi i Mosty. 2021. No. 1 (45), pp. 181–221. (In Russian). EDN: NLXXIP
  2. Macheret D.A., Lednei A.Yu. Transport infrastructure’s economic impotance and development prospects in present-day conditions. Transport Rossiiskoi Federatsii. 2018. No. 5 (78), pp. 16–21. (In Russian). EDN: YMSLHV
  3. Evforitsky A.S. Investigation of the processes of processing foamed refuse heap into an integral part of asphalt concrete. Problems of development of scientific competition in the field of high Technologies: collection of articles of the International Scientific and Practical Conference. Ufa: Scientific Publishing Center Aeterna”, 2018, pp. 6–9. (In Russian). EDN: YQPSMH
  4. Borisenko Yu.G., Soldatov A.A., Yashin S.O. Bitumen-mineral compositions modified with highly dispersed screening of expanded clay. Stroitel’nye Materialy [Construction Materials]. 2009. No. 1, pp. 62–63. (In Russian). EDN: JVWACF
  5. Kazaryan S.O., Borisenko Yu.G., Ionov M.Ch., Borisenko O. A. Influence of fine-disperse screenings of expand clay crushing on structure and properties of stone mastic asphalt concrete. Stroitel’nye Materialy [Construction Materials]. 2015. No. 5, pp. 82–86. (In Russian). EDN: TUHVLV
  6. Yadygina V.V., Kuznetsova E.V., Lebedev M.S. Change in the properties of asphalt concrete when using hydrophobized mineral powder. Vestnik of the Belgorod State Technological University named after V.G. Shukhov. 2020. Vol. 5. No. 4, pp. 17–23. (In Russian). EDN: AQJHRL. https://doi.org/10.34031/2071-7318-2020-5-4-17-23
  7. Aminov Sh.Kh., Strugovets I.B., Khanannova G.G. The use of pyrite cinder as a mineral aggregate in asphalt concrete. Stroitel’nye Materialy [Construction Materials]. 2007. No. 9, pp. 42–43. (In Russian). EDN: IBEQCX
  8. Yemelyanycheva E.A., Abdullin A.I. Ways of road bitumen to mineral materials adhesive properties improving. Vestnik of the Kazan Technological University. 2013. No. 3, pp. 198–204. (In Russian). EDN: PVVDXB
  9. Gridchin A.M., Yadykina V.V. Features of interaction of bitumen with mineral materisals from sour rocks. Vestnik KhNADU. 2008. No. 40, pp. 13–16. (In Russian). EDN: NUZDRB
  10. Rossi C.O., Caputo P., Baldino N., et al. Effects of adhesion promoters on the contact angle of bitumen-aggregate interface. International Journal of Adhesion and Adhesives. 2016. Vol. 70, pp. 297–303. http://dx.doi.org/10.1016/j.ijadhadh.2016.07.013
  11. Yatsenko N.D., Evforitsky A.S., Popova L.D., Kotenko N.P. Adesione additives for the production of asphalt concrete with the use of waste in building. IOP Ceramics Conference Series Materials Science and Engineering: International Science and Technology Conference (FarEastCon 2020). 2021. Vol. 1079, Chapter 2. 032065. (In Russian). EDN: DHDRZW. https://doi.org/10.1088/1757-899x/1079/3/032065
  12. Goncharova M.A., Tkacheva I.A. The use of adhesion additives in asphalt concrete with grantite and slag crushed stone. Stroitel’nrye Materialy [Construction Materials]. 2017. No. 11, pp. 39–42. (In Russian). EDN: ZWUFXT
  13. Vasiliev Yu.E., Ilyukhin A.V., Marsov V.I., Marsova E.V. Innovatsionnye tekhnologii v proizvodstve asfal’tobetonnykh smesei [Innovative technologies in the production of asphalt concrete mixtures]. Moscow: MADI. 2016. 116 p. EDN: XQYGRD
  14. Solomentsev A.B., Bukhtiyarov S.V. Comparison of road clutch bitumen adhesive additives with the surfase mineral material. Stroitel’stvo i Rekonstruktsiya. 2014. No. 1 (51), pp. 85–91. (In Russian). EDN: SQMAWV
  15. Kotenko N.P., Shcherba Yu.S., Evforitsky A.S. Effect of polymer and functionaladdirives on the properties of bitumen and -concrete. Plasticheskie Massy. 2019. No. 11–12, pp. 47–49. (In Russian). EDN: VFMBOX. https://doi.org/10.35164/0554-2901-2019-11-12-47-49
  16. Evforitsky A.S., Yatsenko N.D., Popova L.D. Study of the influence of filler based on porcelain waste on physical and mechanical properties of hot fine-grained asphalt concrete. Stroitel’stvo i Arkhitektura. 2021. Vol. 9. No. 3, pp. 26–30. (In Russian). EDN: JAFNPU. https://doi.org/10.29039/2308-0191-2021-9-3-26-30
  17. Yatsenko N.D., Evforitsky A.S., Kotenko N.P. Physical and mechanical properties of the road surface when replacing the finely crushed mineral part of asphalt concrete with porcelain stoneware production waste. Materials Science Forum. 2021. Vol. 1043, pp. 101–107. EDN: GQVQMR. https://doi.org/10.4028/www.scientific.net/MSF.1043.101

Supplementary files

Supplementary Files
Action
1. JATS XML
2. Fig. 1. X-ray diffraction of ceramic granite, where ◼ – β-quartz; ⚫ – mullite; ◣ – β-cristobalite

Download (53KB)
3. Fig. 2. Bitumen adhesion based on a porcelain stoneware production waste with surfactants: а – Bitaden 10; b – Bitaden TC

Download (329KB)

Copyright (c) 2025 ООО РИФ "СТРОЙМАТЕРИАЛЫ"