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Foundry Production
Название Use of graphite-containing sludge in the composition of non-stick coatings
DOI 10.17580/chm.2022.04.04
Автор T. R. Gilmanshina, A. A. Kovaleva, S. A. Khudonogov, D. Yu. Kritsky
Информация об авторе

Siberian Federal University, Krasnoyarsk, Russia:
T. R. Gilmanshina, Cand. Eng., Associate Professor, e-mail: gtr1977@mail.ru
A. A. Kovaleva, Cand. Eng., Associate Professor
S. A. Khudonogov, Senior Lecturer
D. Yu. Kritsky, Undergraduate

Реферат

The importance of a reasonable choice of effective technological solutions in the use of man-made resources is determined by such factors as the presence of large-scale man-madeformations in the region, which  makes them a promising raw material for the development of hightech industries with a reduced negative impact on the environment. Therefore, in this work, we studied the possibility of using graphite-containing sludge from the aspiration system for cleaning gases in the production of cryptocrystalline graphite as part of a self-drying non-stick coating. The elemental composition of graphite-containing sludge is represented by carbon (up to 45 %), sulfur (up to 1.95 %), silicon (up to 13.0 %); phase composition - graphite (up to 44 %), calcite (up to 12.7 %), crystallobalite (up to 1.5 %), pyrite (up to 3.65 %), quartz (up to 19.23 %), clinochlore (up to 17,1 %) and halite (up to 1.56 %). The sludge particle size is 3.64 microns, the total surface is 36 506 cm2/cm3. Replacing graphite with sludge in the coating composition leads to an increase in its density from 1220 to 1750 kg/m3; viscosity from 34 to 105 s; abrasion resistance from 175 to 245 g of sand. The sludge-based coating does not form a casing layer, while the depth of the penetrating layer can reach 6.0–6.5 mm. The results of the study of the value of burn-on on the surface of a gray iron casting showed that replacing graphite with sludge leads to a decrease in the thickness of burn-on on the surface of the casting by 1.5–3.0 times, depending on the thickness of the casting wall.

Ключевые слова Self-drying coating, graphite-containing sludge, cast iron, burn-in, density, viscosity, thickness of the cover layer, depth of the penetrating layer, abrasion resistance
Библиографический список

1. Yakovleva Е. А. Opportunities and barriers of the cyclical economy in state regulation. Mechanisms for the development of socio-economic systems of the region: Collection of articles of the 12th International scientific and practical conference. 2019. pp. 57–61.
2. Romanova О. А., Sirotin D. V. Methods for determination of the environmental and economic efficiency of processing technogenic generations in the Urals. Ekonomika regiona. 2021. Vol. 17. Iss. 1. pp. 59–71.
3. Federal Law of July 21, 2014. No. 219-FZ “On Amendments to the Federal Law “On Environmental Protection” and Certain Legislative Acts of the Russian Federation” (as amended and supplemented on July 26, 2019).
4. Vlasova V. V., Fomina E. Yu. The technology of the processing CHP-plant ash and slag wastes with obtaining ferrous raw materials for iron and steel industry. Chernye Metally. 2019. No. 7. pp. 67–72.
5. Lee W.-H., Wu Y.-F., Ding Y.-C., Cheng T.-W. Fabrication of ceramic moulds using recycled shell powder and sand with geopolymer technology in investment casting. Applied Sciences. 2020. Vol. 10. Iss. 13. pp. 4577.
6. Moiz Khan M., Jadhav G. N., Mahajani S. M. et al. Comparative study of waste foundry sand reclamation techniques. 73rd World Foundry Congress. WFC 2018 – Proceedings. 2018. pp. 119, 120.
7. Drozyński D., Bobrowski A., HoltzerM. Influence of the reclaim addition on properties of moulding sands with the geopol binder. Archives of Foundry Engineering. 2015. Vol. 15. Iss. 1. pp. 138–142.
8. Łucarz M. Thermal reclamation of the used moulding sands. Metalurgija. 2015. Vol. 54. Iss. 1. pp. 109–112.
9. Vdovin К. N., Feoktistov N. А., Pivovarova К. G., Ponomareva Т. B. The use of technogenic aluminachromic waste material to improve the quality of castings and resource saving in foundry production. Tekhnologii metallurgii, mashinostroeniya i materialoobrabotki. 2019. No. 18. pp. 154–160.
10. Geyko М. А., Leushin I. О., Subbotin А. Yu. Variants of application in foundry technologies of secondary products of refining galvanized steel waste. Design and advanced technologies in mechanical engineering, metallurgy and their staffing: proceedings of the 3rd All-Russian Scientific and Practical Conference; resp. editor I. E. Illarionov. Cheboksary, 2017. pp. 22–26.
11. Kryukova I. S., Belyaev S. V., Leushin I. О. Ecological aspects of the use of galvanic production waste as a filler for non-stick coatings. Chernye Metally. 2008. No. 8. pp. 9–11.
12. Antoshkina Е. G., Smolko V. А. Non-stick coatings for casting molds and cores based on regenerated products of abrasive production. Liteyshchik Rossii. 2008. No. 3. pp. 40, 41.
13. Rudolph S. Boron nitride release coatings. Aluminum cast house technology. 2001. Sep. 23–26. pp. 163–170.
14. Vdovin К. N., Smirnov А. N., Pivovarova К. G., Ponamareva Т. B. Study of properties of magnesite refractory scrap as a filler for non-stick paint for Hadfield steel. Teoriya i tekhnologiya metallurgicheskogo proizvodstva. 2018. No. 1 (24). pp. 34–37.
15. Amelchenko V. N., Illarionov I. E., Gilmanshina T. R., Borisyuk V. A. Graphite as a prospective material for metallurgical application. CIS Iron and Steel Review. 2018. Vol. 16. pp. 29–32.
16. Illarionov I. E., Gilmanshina T. R., Kovaleva A. A., Bratukhina N. A. Understanding the effect of structural defects in graphite on the properties of foundry coatings. CIS Iron and Steel Review. 2018. Vol. 16. pp. 63–66.
17. GOST 17022–78. Graphite. Types, marks and general technical requirements. Introduced: 01.01.1982.
18. Illarionov I. E., Kaftannikov A. S., Nuraliev F. A., Gilmanshina T. R. Evaluation of burn value on surface of iron castings. Chernye Metally. 2018. No. 8. pp. 23–28.

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