Журналы →  Gornyi Zhurnal →  2025 →  №10 →  Назад

PHYSICS OF ROCKS AND PROCESSES
Название Experimental research of properties of backfill mixtures composed of coal ash and marble production waste
DOI 10.17580/gzh.2025.10.06
Автор Mislibaev I. T., Alimov Sh. M., Tuichieva D. I.
Информация об авторе

Navoi State University of Mining and Technologies, Navoi, Uzbekistan

I. T. Mislibaev, Dean, Doctor of Engineering Sciences, Professor, mislibaev65@mail.ru
D. I. Tuichieva, Assistant

Almalyk Branch of Tashkent State Technical University named after Islam Karimov, Almalyk, Uzbekistan

Sh. M. Alimov, Senior Researcher

Реферат

The paper deals with the studies into increasing patterns of strength and rheological properties of backfill mixtures including coal ash and marble production wastes, as well as with the substantiation of rational interaction of materials within self-hardening mixtures. In order to analyze the technology of backfill mixture preparation using coal ash, backfill composition was examined. When selecting a hardener composition, the main criteria are its manufacturability (strength, transportability) and economic efficiency (price of components of aggregate, transportation costs). Experience of backfilling shows that the strength of a backfill is directly proportional to the consumption of a binder. For lab-scale testing, samples of self-hardening backfill materials of 3 different compositions were selected. Then, the calculations determined the amount of components necessary for preparation of 1 m3 of mixture. The samples intended for preparation of monolithic selfhardening backfill mixtures were stored in a room at an air temperature of 20±5 ° C, being covered with a damp cloth adapted to the conditions of underground mining operations, excluding the possibility of moisture evaporation. For the research, mold-cube samples with a side of 10 cm were made using a press. The test to determine resistance to the preset uniaxial compression of the prepared self-hardening backfill mixtures was carried out on press IP-1A-1000 designed for testing of construction materials and for the use in research institutes. In order to ensure the reliability of the research results, five samples of each composition were prepared and tested, and their strength values were obtained.

Ключевые слова Strength and rheological properties, backfill mixture, composition, coal ash, sand, slag, laboratory studies, samples, compression
Библиографический список

1. Khayrutdinov M. M., Kongar-Syuryun Ch. B., Tyulyaeva Yu. S., Khayrutdinov A. M. Cementless backfill mixtures based on water-soluble manmade waste. Bulletin of the Tomsk Polytechnic University, Geo Assets Engineering. 2020. Vol. 331, No. 11. pp. 30–36.
2. Kurbanov Z. Kh., Ganiev A., Usanova G. A. Analysis of composition of dry construction mixture composed of marble waste. Oriental Renaissance: Innovative, educational, natural and social sciences. 2022. Vol. 2, Iss. 1. pp. 299–304.
3. Gaziev U. A., Rakhimov Sh. T. Backfill mixtures using waste from Uzbekistan mining and metallurgical plant. Sovremennoe promyshlennoe i grazhdanskoe stroitelstvo. 2020. Vol. 16, No. 3. pp. 109–115.
4. Kopytov A. I., Starodubtsev S. A. Application of Paste Backfill Mining Technology on the example of Daizhuang Coal Mine (China). Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta. 2023. No. 2(156). pp. 86–91.
5. Shabanov E. A., Gilyazidinova N. V. Research of the properties of concrete mixtures with the application of carbon mining waste for mines construction. Innovatsii i investitsii. 2020. No. 9. pp. 240–244.
6. Özkılıç Y. O.¸ Zeybek O., Bahrami A., Çelik A. İ ., Mydin M. A. O. et al. Optimum usage of waste marble pow der to reduce use of cement toward eco-friendly concrete. Journal of Materials Research and Technology. 2023. Vol. 25. pp. 4799–4819.
7. Basaran B., Kalkan I., Aksoylu C., Özkılıç Y. O., Sabri M. M. S. Effects of waste powder, fine and coarse marble aggregates on concrete compressive strength. Sustainability. 2022. Vol. 14, Iss. 21. ID 14388.
8. Cao H., Gao Q., Zhang X., Guo B. Research progress and development direction of filling cementing materials for filling mining in iron mines of China. Gels. 2022. Vol. 8, Iss. 3. ID 192.
9. Li C., Chen D., Yang K. Filling parameters and process optimization of mining–filling synergistic coal-based solid waste paste in Renjiazhuang mine. Frontiers in Materials. 2023. Vol. 10. ID 1234145.
10. Gvishiani A. D., Tatarinov V. N., Manevich A. I., Kaftan V. I. Geodynamic interpretation of modern geodynamic Movements in the southern part of the Yenisei Ridge (in application to the problems of underground isolation of radioactive waste). Eurasian Mining. 2021. No. 2. pp. 7–11.
11. Avksentyev S. Yu., Makharatkin P. N., Safiullin R. N., Aleksandrov V. I. Specific pressure loss calculations for tailings hydrotransport at the Kachkanar GOK. Obogashchenie Rud. 2022. No. 3. pp. 45–51.
12. Yatsenko E. A., Goltsman B. M., Sergeev V. V. Production of porous geopolymers using ash and slag waste of power plants in the Russian Arctic. Eurasian Mining. 2022. No. 2. pp. 58–60.
13. Mislibaev I. T., Alimov Sh. M., Tuychibaev Z. I. Determination of rheological properties of self-hardening mixtures. Gornyi vestnik Uzbekistana. 2024. No. 1(96). pp. 79–82.
14. Production Procedures for Construction Using Waste Rocks, Preparation of Mixtures, Their Transport and Placement. Tashkent : Tashkentskiy arkhitekt urno-stroitelnyi institut, 2012. 89 p.

Language of full-text русский
Полный текст статьи Получить
Назад