AVTOTRANSPORT DETALLARI SIRTINING YEYILISHGA CHIDAMLILIGINI OSHIRISH TEXNOLOGIYASI

Authors

  • Bo‘ynazarov O‘rol Ravshanovich Author
  • Abdurahimov Alibek Ibrat o‘g‘li Author

Keywords:

nitrooksidlash, nitridlash, oksidlash, avtotransport detallari, yeyilishga bardoshlilik, sirt qattiqligi, tribologik xossalar.

Abstract

Ushbu maqolada avtotransport detallarining ishqalanish sharoitida yeyilishga bardoshliligini oshirishga qaratilgan uch bosqichli nitrooksidlash texnologiyasi tadqiq etilgan. Jarayon sirtni tayyorlash, nitridlash va oksidlash bosqichlarini o‘z ichiga oladi. Tadqiqot natijalariga ko‘ra, nitrooksidlash natijasida detal sirtida yuqori qattiqlikka ega nitrid qatlamlari va himoya oksid qatlami hosil bo‘lib, ularning yeyilish hamda korroziyaga chidamliligi sezilarli darajada ortadi. Olingan natijalar ushbu texnologiyaning avtotransport detallarining ekspluatatsion xususiyatlarini yaxshilash, xizmat muddatini uzaytirish va texnik xizmat ko‘rsatish xarajatlarini kamaytirishda samarali usul ekanligini ko‘rsatdi.

References

1. Eshkabilov, F. K. (2019). Technology of nitro-oxidation of structural steels. International Journal of Advanced Research in Science, Engineering and Technology, 6(11), 11654–11658.

2. Eshkabilov, K., Kholboev, T., & Khudaykulov, S. (2023). Structural-phase transformations during nitro oxidation of structural steels. E3S Web of Conferences, 401, 03014. https://doi.org/10.1051/e3sconf/202340103014

3. Eshkabilov, K., Kholboev, T., & Khudaykulov, S. (2024). Corrosion and tribological properties of diffusion nitride-oxide coatings. AIP Conference Proceedings, 3124(1), 050024. https://doi.org/10.1063/5.0242006

4. Stramke, S., Huchel, U., & Crummenauer, J. (1997). Pulsed plasma nitriding and combined processes. In Surface Treatment, Computer Methods and Experimental Measurements (pp. 391–398). WIT Press.

5. Zlatanovic, M., & Gredic, T. (1993). Matching of TiN coating structures by plasma nitriding of substrates. Vacuum, 44(2), 83–88. https://doi.org/10.1016/0042-207X(93)90037-K

6. Gredic, T., Zlatanovic, M., Popovic, N., & Bogdanov, Z. (1993). Effect of plasma nitriding on the properties of (Ti,Al)N coatings deposited onto hot work steel substrates. Thin Solid Films, 228(1–2), 261–263. https://doi.org/10.1016/0040-6090(93)90754-Y

7. Sun, Y., & Bell, T. (1998). Plasma surface engineering of low alloy steel. Materials Science and Engineering: A, 140(1), 419–434. https://doi.org/10.1016/S0921-5093(97)00763-4

8. Bell, T. (2002). Surface engineering of austenitic stainless steel. Surface Engineering, 18(6), 415–422. https://doi.org/10.1179/026708402225006893

9. Davis, J. R. (Ed.). (2001). Surface hardening of steels: Understanding the basics. Materials Park, OH: ASM International.

10. Totten, G. E. (Ed.). (2006). Steel heat treatment: Metallurgy and technologies. Boca Raton, FL: CRC Press.

Published

2026-06-11

How to Cite

[1]
2026. AVTOTRANSPORT DETALLARI SIRTINING YEYILISHGA CHIDAMLILIGINI OSHIRISH TEXNOLOGIYASI. Ustozlar uchun. 97, 4 (Jun. 2026), 322–327.