The Study of the Microstructure of the Metal after Rolling Thick Workpieces of Nonferrous Metals and Alloys in Relief and Smooth Rolls

Article Preview

Abstract:

One of the ways to improve the quality of steel production by rolling is the creation of additional streams of the metal flow, i.e. intensification of shear deformation not only in longitudinal but also in transverse direction. From the review of scientific-technical and patent literature it is known that to improve the quality of products when rolling usually use a system of alternating projections and depressions, which is created on the surface of the wide faces of slab or on work rolls. In this case, along with deformation in altitudinal and longitudinal directions, the conditions for deformation of the metal in the transverse direction, which has a positive effect on reducing the anisotropy of properties. Knowing the advantages of rolling with additional shear deformations, we have developed energy-saving technology of plate billets rolling of non-ferrous metals and alloys, allowing to obtain a uniform fine-grained structure throughout the volume of the workpiece, and designed two new constructions of the pair of work rolls with embossed surface as an annular groove, forming a trapezoidal protrusions and depressions alternating each other along the entire length of the barrel (the first pair to unequal treatment of the ledge to the depression and the second pair with equal respect to the ledge to the depression) to implement this technology in practice. In this paper were described results of investigations of microstructure evolution of copper alloys by rolling on the proposed technology in the relief rolls and according to the current technology in smooth rolls.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1099-1104

Citation:

Online since:

November 2016

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2017 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] А. s. 1088818. USSR. МКI3 В 21 В 1/22. Method of rolling. / Brinza А.V., Poluhin V.P., Brinza V.V. etc. / Bul. №16, (1984).

Google Scholar

[2] The intensity of plastic deformation with periodic asymmetric rolling in eccentric rolls. / Fedorov N.N., Peretyat'ko V.N., Fedorov N.А. / Izvestiya VUZov. Ferrous metallurgy, 1997 №10, pp.45-51.

Google Scholar

[3] Naizabekov A.B., Scientific and technological bases of increase of efficiency of forging processes with alternating deformations. - Almaty (2000), p.336.

Google Scholar

[4] Patent of Republic of Kazakhstan № 14791. Rolls for rolling of thick sheets / Naizabekov A.B., Lezhnev S.N. (2007), bul. №11.

Google Scholar

[5] Naizabekov A.B., Lezhnev S.N., Ashkeev Zh.A., Izvestiya VUZov. Ferrous metallurgy, (2001) № 2, pp.25-27.

Google Scholar

[6] Research and development of technology for rolling of high quality rolled plates from ferrous and non-ferrous metals in relief rolls. Naizabekov A., Lezhnev S., Koinov T., Mazur I., Panin Е. 8th International Conference «Scientific-technical progress in metallurgy», Temirtau, 2015, pp.321-329.

DOI: 10.32339/0135-5910-2021-4-445-454

Google Scholar

[7] The study of rolling process of thick-sheet billets in the relief rolls. / Naizabekov A., Lezhnev S., Panin Е., Mazur I. / 6th International Conference on Modelling and Simulation of Metallurgical Processes in Steelmaking (SteelSim2015), Bardolino, Italy, (2015).

Google Scholar