ANALYSIS OF THE STEELS AND ALLOYS SELECTION WITH HIGH MECHANICAL PROPERTIES FOR MACHINE-BUILDING PARTS

Authors

  • Riskulov A. A. DSc, Prof. of the Materials Science and Mechanical Engineering Department, Tashkent State Transport University
  • Alimukhamedov Sh. P. Dr. Tech. Sciences, Professor of the Department of Materials Science and Mechanical Engineering, Tashkent State Transport University, Tashkent, The Republic of Uzbekistan
  • Tursunov N. K. Ph.D., head of the Department of Materials Science and Mechanical Engineering, Tashkent State Transport University, Tashkent, The Republic of Uzbekistan
  • Gapirov A. D. Docent the Department of Materials Science and Mechanical Engineering, Tashkent State Transport University.
  • Toirov O. T. Ph.D. student of the Department of Materials Science and Mechanical Engineering, Tashkent State Transport University, Tashkent, The Republic of Uzbekistan
  • Kh.I. Nurmetov Senior Lecturer, of the Department of Materials Science and Mechanical Engineering, Tashkent State Transport University

DOI:

https://doi.org/10.17605/OSF.IO/2VM43

Keywords:

Wear-resistant, steels structural, corrosion-resistant

Abstract

According to the metallography terminology, steel is wrought alloy of iron with carbon (containing up to 2%) and other elements. This is one of the main metallic engineering materials. Wide application of steels in engineering is caused by combination of valuable complex of their mechanical, physical, chemical, and other properties.The assortment of steels currently used in engineering is extremely wide. Developed informative marking system reflects the composition, production and treatment technology and the structure of different steel grades.

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Published

2022-06-23

How to Cite

Riskulov A. A., Alimukhamedov Sh. P., Tursunov N. K., Gapirov A. D., Toirov O. T., & Kh.I. Nurmetov. (2022). ANALYSIS OF THE STEELS AND ALLOYS SELECTION WITH HIGH MECHANICAL PROPERTIES FOR MACHINE-BUILDING PARTS. Web of Scientist: International Scientific Research Journal, 3(6), 1298–1309. https://doi.org/10.17605/OSF.IO/2VM43

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