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Influence of the Concentration and Particle Size of the Filler in Epoxy–Gravel Composite on the Resistance to Contact Deformation when Introducing a Solid Sphere

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Abstract

The resistance to contact deformation of epoxy–gravel composites during the introduction of a solid sphere is investigated as a function of the concentration of the components and the particle size of the filler.

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REFERENCES

  1. RF Patent 2532602, 2014.

  2. Zhachkin, S.Yu., Pukhov, E.V., Trifonov, G.I., Komarov, Yan.V., and Zagoruiko, K.V., Analysis of wear resistance of functional coating in conditions of abrasive wear of geometrically complicated friction part, Vestn. Voronezh. Gos. Agrar. Univ., 2019, vol. 12, no. 3 (62), pp. 32–40.

  3. Kozarez, I.V., Mikhal’chenkova, M.A., Lavrov, V.I., and Sinyaya, N.V., Increasing the abrasion resistance of parts by varying the surfacing technique of double-layer hard-surface coatings, Traktor. Sel’khozmash., 2016, no. 10, pp. 38–40.

  4. Kashfullin, A.M., Gur’yanov, S.G., and Pepelyaeva, E.V., Influence of arc surfacing technological parameters on the wear resistance of applied coatings, Permsk. Agrar. Vestn., 2020, no. 1 (29), pp. 19–27.

  5. Mikhal’chenkov, A.M., Lushkina, S.A., Mikhal’chenkova, M.A., and Lavrov, V.I., Factors determining the functionality of dispersion-strengthened composites based on epoxy resins (mechanical engineering), Vestn. Bryansk. Gos. S-kh. Akad., 2015, no. 2-2, pp. 25–28.

  6. Lyga, R.I. and Mikhal’chuk, V.M., Epoxy composites containing silicon dioxide and titanium dioxide, Vestn. Voronezh. Gos. Univ. Ser.: Khim. Biol. Farm., 2021, no. 3, pp. 17–25.

  7. Filin, Yu.I., Epoxy composite to increase the service life of heat-strengthened plowshares, Sel’sk. Mekhanizator, 2017, no. 5, pp. 36–37.

  8. Mostovoi, A.S., Plakunova, E.V., and Panova, L.G., Modification of epoxy composites to improve performance properties, Mat. Metody Tekh. Tekhnol., 2013, no. 6 (56), pp. 33–35.

  9. Poloz, A.Yu., Ebich, Yu.R., Dolinskaya, R.M., and Prokopchuk, N.R., Influence of epoxy-containing diluents-modifiers on the structure and properties of wear-resistant epoxy composites, Polimer. Mater. Tekhnol., 2021, vol. 7, no. 3, pp. 65–73.

    Google Scholar 

  10. Zotkina, M.M., Saltanova, T.A., Zotkin, A.V., Botov, M.M., et al., Study of changes in elastoplastic, deformative properties and hardness of filled polymer composites operating in soil conditions, in Aktual’nye voprosy arkhitektury i stroitel’stva (Current Issues of Architecture and Construction), Saransk: Nats. Res. Mordovia State Univ., 2020, pp. 326–330.

  11. Mikhal’chenkov, A.M., Tyureva, A.A., Borshchevskii, I.A., and Kiseleva, L.S., Influence of the composition and size of the fractions of the composite gravel filler with an epoxy matrix on its wear, Tekh. Servis Mash., 2021, no. 3 (144), pp. 100–107.

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Correspondence to A. M. Mikhal’chenkov.

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Translated by B. Gilbert

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Mikhal’chenkov, A.M., Fes’kov, S.A. & Kozarez, I.V. Influence of the Concentration and Particle Size of the Filler in Epoxy–Gravel Composite on the Resistance to Contact Deformation when Introducing a Solid Sphere. Russ. Engin. Res. 43, 972–975 (2023). https://doi.org/10.3103/S1068798X23080178

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  • DOI: https://doi.org/10.3103/S1068798X23080178

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