STUDY OF THE INFLUENCE OF ELECTROLYTIC-PLASMA TREATMENT PARAMETERS ON THE SURFACE STRUCTURE AND MECHANICAL PROPERTIES OF THE STRAIGHT TOOTH OF AN EARTHMOVING BUCKET
https://doi.org/10.53360/2788-7995-2026-2(22)-62
Abstract
This study examines how electrolytic plasma treatment can improve the wear resistance of 30CrMnSi bucket teeth used in loaders operating under severe abrasive conditions. Samples were subjected to various processing methods, including electrolytic plasma hardening, nitriding, carburizing, nitrocarburizing hardening, and quenching. Multiple analytical techniques, including scanning electron microscopy energy dispersive spectroscopy, X-ray diffraction, and microhardness testing, were used to comprehensively characterize the structure, phases, and mechanical properties of the samples. The tribological properties of the materials were evaluated using a TRB3 tribometer, and abrasive wear testing was conducted according to GOST 23.208–79. The results show that electrolytic plasma treatment results in the formation of diffusion layers with a thickness of 15 to 25 μm. This process is accompanied by the formation of carbide, nitride, and carbonitride phases (Fe₄C, Fe₇C₃, Fe₄N, Fe₂N, and Fe₃(CN)). This process significantly increases surface hardness (up to 810 HV) and improves wear resistance. The study also showed that electrolytic plasma nitriding provides an optimal balance between hardness and toughness, resulting in low friction and increased resistance to abrasive wear. The development of this technology can extend the service life of earthmoving and mining equipment components, reducing maintenance costs and downtime.
Keywords
About the Authors
S. D. BolatovKazakhstan
Sanzhar Daurenuly Bolatov – junior researcher of Scientific Research Center «Surface Engineering and Tribology»,
070002, Ust-Kamenogorsk, st. Shakarima, 148
L. G. Sulyubayeva
Kazakhstan
Laila Gylimmeddenovna Sulyubayeva – PhD, associate professor, Senior Researcher of Scientific Research Center «Surface Engineering and Tribology»,
070002, Ust-Kamenogorsk, st. Shakarima, 148
B. A. Alibekova
Kazakhstan
Balym Alibekkyzy Alibekova – engineer of Scientific Research Center «Surface Engineering and Tribology»,
070002, Ust-Kamenogorsk, st. Shakarima, 148
References
1. Florea V.A. Efficiency of Maintenance Activities in Aggregate Quarries: A Case Study of Wear Parts on Loaders and Excavators / V.A. Florea, M. Toderaș // Applied Sciences. – 2024. – № 14(17). – Р. 7649.
2. Singla S. Enhancing wear resistance of low alloy steel applicable on excavator bucket teeth via hardfacing / S. Singla, A.S. Kang, J.S. Grewal // Asian Review of Mechanical Engineering. – 2012. – № 1(2). – Р. 51-54.
3. A Review on Wear-Resistant Coating with High Hardness and High Toughness on the Surface of Titanium Alloy / H. Bai et al // Journal of Alloys and Compounds. – 2021. – № 882. – Р. 160645.
4. Effect of Thermal, Chemical and Thermo-Chemical Pre-Treatments to Enhance Methane Production / R. Rafique et al // Energy. – 2010. – № 35. – Р. 4556-4561.
5. Electrolytic Plasma Processing for Cleaning and Metal- Coating of Steel Surfaces / E.I. Meletis et al // JC Surface and Coatings Technology. – 2002. – № 150. – Р. 246-256.
6. Investigation on the Effect of Technological Parameters of Electrolyte-Plasma Cementation Method on Phase Structure and Mechanical Properties of Structural Steel 20Kh / B. Rakhadilov et al // AIMSMATES. – 2023. – № 10. – Р. 934-947. https://doi.org/10.3934/matersci.2023050.
7. Duplex Surface Treatments Combining Plasma Electrolytic Nitrocarburizing and Plasma Immersion Ion-Assisted Deposition / AL. Yerokhin et al // Surface and Coatings Technology. – 2001. – № 142-144. – Р. 1129-1136.
8. Electrolytic Plasma Nitriding of Medium-Carbon Steel 45 for Performance Enhancement / Z. Satbayeva et al // Crystals. – 2024. – № 14.
9. Improving Wear Resistance by Electrolyte-Plasma Hardening of Corrosion-Resistant Steel of the Tip / K. Kombaev et al // J Appl Eng Science. – 2023. – № 21. – Р. 810-819.
10. MAR Analysis of AISI Material Power of AISI 4140 Bucket Teeth Excavator Using Influence of Abrasive Wear. / S.H. Suryo et al // Surakarta, Indonesia. – 2018. – Р. 030022.
11. Richhariya V. Surface Modification of AISI 1020 Mild Steel by Electrical Discharge Coating with Tungsten and Copper Mixed Powder Green Compact Electrodes.
12. Electrolytic Plasma Treatment of the Surface of a Part Produced with the Use of Additive Technology / Metal Science and Heat Treatment Available online: https://link.springer.com/article/10.1007/s11041-018-0250-1 (accessed on 15 October 2025).
13. Electrolyte-Plasma Product Treatment / LI. Akhmadullina et al // J. Phys.: Conf. Ser. – 2020. – № 1588. – Р. 012012, https://doi.org/10.1088/1742-6596/1588/1/012012.
14. Duradji A.Y. National University of Science and Technology «MISIS» (MISIS), Moscow, Russia Aluminum Treatment in the Electrolytic Plasma During the Anodic Process / A.Y. Duradji // JESTR. – 2017. – № 10. – Р. 81-84. https://doi.org/10.25103/jestr.103.11.
15. Kashapov RN. Research of Plasma-Electrolyte Discharge in the Processes of Obtaining Metallic Powders / RN. Kashapov, LN. Kashapov, NF Kashapov,// J. Phys.: Conf. Ser. – 2017. – № 927. – Р. 012086, https://doi.org/10.1088/1742-6596/927/1/012086.
Review
For citations:
Bolatov S.D., Sulyubayeva L.G., Alibekova B.A. STUDY OF THE INFLUENCE OF ELECTROLYTIC-PLASMA TREATMENT PARAMETERS ON THE SURFACE STRUCTURE AND MECHANICAL PROPERTIES OF THE STRAIGHT TOOTH OF AN EARTHMOVING BUCKET. Bulletin of Shakarim University. Technical Sciences. 2026;(2(22)):583-593. https://doi.org/10.53360/2788-7995-2026-2(22)-62
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