Журналы →  Chernye Metally →  2021 →  №11 →  Назад

5 years of the united department “Metallurgy and ma-terials processing technology” of Sukhoi State technical University of Gomel
Название Influence of drawing speed on thin wire mechanical properties and microhardness
DOI 10.17580/chm.2021.11.04
Автор Yu. L. Bobarikin, Yu. V. Martyanov, Ya. I. Radkin, I. A. Tsyrganovich
Информация об авторе

Sukhoi State Technical University of Gomel (Gomel, Belarus):
Yu. L. Bobarikin, Cand. Eng., Associate Prof., Head of the Dept. of Metallurgy and Materials Processing Technology, e-mail: bobarikin@tut.by
Yu. V. Martyanov, Assistant, Dept. of Metallurgy and Materials Processing Technology, e-mail: you_rock@tut.by
Ya. I. Radkin, Senior Lecturer, Dept. of Metallurgy and Materials Processing Technology, e-mail: yradkin@gmail.com
I. A. Tsyrganovich, Post-graduate Student, Dept. of Metallurgy and Materials Processing Technology, e-mail: cyrganovich@gmail.com

Реферат

A general idea of the steel cord and the process of drawing a thin steel wire is given. It has been determined that the properties of a thin wire influences the properties of a steel cord. At the stage of fine drawing and twisting into a steel cord, the wire receives the final set of mechanical properties. It has been determined that the properties of a thin wire are influenced by the degree of deformation, the rate of deformation at the stage of drawing, and the uniform of deformation. The necessity of increasing the uniformity of the distribution of deformations in the process of drawing a thin wire is determined. Increasing the uniformity of the microhardness distribution shows an increasing the uniformity of the deformation’s distribution. High uniformity of deformation distribution increases the technological properties of the wire, increases its quality. The influence of the drawing a thin wire speed on the mechanical properties is investigated. The influence of the drawing speed on the uniformity of the deformation’s distribution in the cross-section of a thin wire was investigated by the method of measuring the microhardness. Diagrams of distribution of values of microhardness on wire cross-section for the studied drawing speeds are presented. Microhardness values can be used to determine the mechanical properties of the wire samples. This makes it possible, by measuring the microhardness of the wire cross section, to assess the nature of the metal mechanical properties distribution in the wire cross section. The optimal drawing speed is shown at which the most uniform distribution of deformations is observed. The dependence of the microhardness over the wire cross section average value on the drawing speed is proposed. With an increase the drawing speed, the microhardness of the wire increases. 

Ключевые слова Wire, steel cord, mechanical properties, microhardness, velocity, stresses, deformations
Библиографический список

1. Renshu Qin, Haibo Yang, Xuewen Sun, Shuyan Zhang, Bremen S. Cause analysis and prevention of fish scale crack defect for steel cord. IOP Conference Series: Earth and Environmental Science. 2021. No. 714. p. 8.
2. Stolyarov A., Polyakova M., Atangulova G. Effect of Die Angle and Frictional Conditions on Fine Grain Layer Generation in Multipass Drawing of High Carbon Steel Wire. Metals. 2020. No. 10 (1462). pp. 1-9.
3. Konstantinov D. V., Korchunov A. G., Zaitseva M. V. etc. Macro- and Micromechanics of Pearlitic-Steel Deformation in Multistage Wire Production. Steel in Translation. 2018. Vol. 48. pp. 458-462.
4. Korchunov A. G., Gun G. S., Shiryaev O. P., Pivovarova K. G. Study of structural transformation of hot-rolled carbon billets for high-strength ropes for responsible applications via the method of thermal analysis. CIS Iron and Steel Review. 2017. Vol. 13. pp. 38-40.
5. Kurenkova Т., Kukharenko М. Study of the effect of steel quality on the fatigue strength of steel cord. Metallovedenie i termicheskaya obrabotka metallov i splavov. 2020. No. 3 (34). pp. 37-42.
6. Hanchen Feng, Lei Cai, Linfeng Wang, Xiaodan Zhang, Feng Fang. Microstructure and strength in ultrastrong cold-drawn medium carbon steel. Journal of Materials Science and Technology. 2021. April. p. 33.
7. Volotkina I., Volotkin A., Naizabekov A., Lezhnev S., Panin E. Microstructure of bimetallic wire in the “ECAP-drawing” process. Journal of Chemical Technology and Metallurgy. 2021. No. 4 (56). pp. 857-866.
8. Chabbi L. Simulation of microstructure and mechanical properties in section rolling. Chernye Metally. 2017. No. 9, pp. 57-62.
9. Zavdoveev A., Baudin T., Rogante M., Pashinska E., Skoryk M. Shear impact during steel wire drawing on grain boundaries and mechanical properties. Letters on Materials. 2020. No. 10 (4s). pp. 558-565.
10. GOST 2999-75. Metals and alloys. Vickers hardness test by diamond pyramid. Moscow: Izdatelstvo standartov, 1987. p. 31;
11. Fedosov S. А., Peshek L. Determination of mechanical properties of materials by microindentation. Modern foreign techniques. Moscow: Fizicheskiy fakultet MGU, 2004. p. 100.
12. Konstantinov I. L., Sidelnikov S. B. Fundamentals of technological processes of metal forming: textbook. Krasnoyarsk: Sibirskiy Federalny Universitet, 2015. 488 p.
13. Milman Yu. V., Chugunova S. I., Goncharova S. I. The characteristic of plasticity determined by the indentation method. Voprosy atomnoy nauki i tekhniki. Seriya: Fizika radiatsionnykh povrezhdeniy i radiatsionnoe materialovedenie. 2011. No. 4. pp. 182-187.
14. Wu Juan, Kou Ziming. Numerical simulation of stress and strain of steel wire in wire rope strand. Coal Journal. 2015. Vol. 40 (6). pp.1463-1468.
15. Guo Wei, Lu Zhengxiong. Modeling theory and geometric realization of circular arc curved steel wire rope based on pro/e. China Mechanical Engineering. 2015. Vol. 26 (17). pp. 2362-2368.
16. Reference product of BSW. Belarusian production of steel cord is 30 years old. Byelorussian Steel Works - Management company of the “Byelorussian Metallurgical Company” holding. 03.05.2017, Available at: https://belsteel.com/press/publikatsii.php?id=1067 (accessed: 13.06.2021).

Language of full-text русский
Полный текст статьи Получить
Назад