Development of Technology of Mading Shafts from 35XGCL Brand Steel Alloy

  • Nozimjon Kholmirzaev researcher at Tashkent State Technical University, Tashkent, Uzbekistan
  • Farrukhjon Abdullaev researcher at Tashkent State Technical University, Tashkent, Uzbekistan
  • Nodir Turakhodjaev DSc. professor at Tashkent State Technical University, Tashkent, Uzbekistan
  • Mullabozorokhun Akramov Quality engineer at JV LLC UzAuto – Austem, Andijan, Uzbekistan
  • Usmon Makhamatmuratov Master student at Tashkent State Technical University, Tashkent, Uzbekistan
Keywords: Chrome, manganese, alloyed, shaft, sand, clay mold

Abstract

In this paper, 35XGCL low – alloy steel alloys reduce non – metallic inclusions and gaseous pores, increasing the mechanical properties, in addition economically inexpensive energy and resource – saving technologies for the development of high – quality castings using new innovative casting technologies.

References

1. A.S. Toʻraxonov Metallshunoslik va termik ishlash. O’qituvchi, Toshkent – 1968.
2. M.Sahoo and S.Sahu. PRINCIPLES OF METAL CASTING 3rd edition MeGraw-Hill UK 2014. 763 r.
3. John Campbell. THE METALLURGIY OF CAST METALS CASTINGS. 2003. 334 p.
4. Turakhodjaev N. et al. Quality improvement of the steel melting technology in an electric arc furnace //ACADEMICIA: An International Multidisciplinary Research Journal. – 2021. – Т. 11. – №. 7. – С. 48-54.
5. Turakhodjaev N. et al. An International Multidisciplinary Research Journal.
6. Turakhodjaev N. et al. Technology for Cleaning Non-Metallic Inclusions and Gaseous Pores in the Process of Liquefaction of Steels in an Electric Arc Furnace //European Multidisciplinary Journal of Modern Science. – 2022. – Т. 4. – С. 77-82.
7. Turakhodjaev N. et al. An International Multidisciplinary Research Journal.
8. Kholmirzaev N. et al. INCREASING THE LIFETIME OF TILLAGE MACHINE OF PLOWSHARES MADE STELL MADE BY FOUNDRY TECHNOLOGIES.
9. Nodir T. et al. Development of 280X29Nl Alloy Liquefaction Technology to Increase the Hardness and Corrosion Resistance of Cast Products //International Journal of Mechatronics and Applied Mechanics. – 2021. – Т. 154. – С. 2021.
10. Nosir S. et al. DEVELOPMENT OF QUALITY STEEL ALLOY LIQUIDATION TECHNOLOGY //American Journal of Interdisciplinary Research and Development. – 2022. – Т. 7. – С. 74-83.
11. Nosir S. et al. Development of technology for obtaining quality castings from steel alloys //Eurasian Journal of Engineering and Technology. – 2022. – Т. 5. – С. 135-138.
12. Nosir S. et al. Technology for Obtaining High Quality Castings from Resistance White Cast Iron //Eurasian Journal of Engineering and Technology. – 2022. – Т. 5. – С. 139-148.
13. Nosir S. et al. Technology to Increase the Hardness and Resistance of High–Chromium White Cast Iron //European Multidisciplinary Journal of Modern Science. – 2022. – Т. 6. – С. 665 – 670.
14. Norkhudjayev, F. R., Mukhamedov, A. A., Djalolova, S. T., Ergashev, D. M., & Hudayberdiyev, O. R. (2020). Technological capabilities of application of thermocyclic processing (Tcp) tool steel. International Journal of Psychosocial Rehabilitation, 24(8), 1866-1874.
15. Norkhudjayev, F. R., Mukhamedov, A. A., & Ergashev, D. M. (2019). FEATURES OF THERMAL PROCESSING OF INSTRUMENTAL ALLOYED STEELS. Journal of Tashkent Institute of Railway Engineers, 15(2), 68-71.
16. Норхуджаев, Ф. Р., & Эргашев, Д. М. (2020). ТЕРМОЦИКЛИЧЕСКАЯ ОБРАБОТКА (ТЦО) НЕТЕПЛОСТОЙКИХ ИНСТРУМЕНТАЛЬНЫХ СТАЛЕЙ. Universum: технические науки, (11-1 (80)), 73-77.
17. Norkhudjayev, F. R., Mukhamedov, A. A., Khudayberdiev, O. R., Ergashev, D. M., & Norkhudjayeva, R. F. (2020). Development of Machine-Building Materials and Details of Machines from the Powders received from Waste of Raw Materials in the Industry of Uzbekistan. Test Engineering and Management, 83(5-6), 639-646.
Published
2022-09-20
How to Cite
[1]
Kholmirzaev, N., Abdullaev, F., Turakhodjaev, N., Akramov, M. and Makhamatmuratov, U. 2022. Development of Technology of Mading Shafts from 35XGCL Brand Steel Alloy. International Journal on Integrated Education. 5, 9 (Sep. 2022), 110-113. DOI:https://doi.org/10.17605/ijie.v5i9.3475.
Section
Articles