Metallurgy, Vol. 59 No. 2, 2020.
Preliminary communication
Investigation of the formation evolution of aluminum alloy 1050 structure during rolling in the spiral rollers and the longitudinal wedge mill
S. A. Mashekov
orcid.org/0000-0002-9577-2219
; Kazakh National Technical University, Almaty, Kazakhstan
G. A. Smailova
orcid.org/0000-0003-2293-6232
; Kazakh Agrarian University, Almaty, Kazakhstan
A. M. Alshynova
; Almaty Technological University, Almaty, Kazakhstan
A. Zhauyt
orcid.org/0000-0003-3905-6928
; Almaty University of Power Engineering and Telecommunications, Almaty, Kazakhstan
N. S. Sembaev
; Pavlodar State University, Pavlodar, Kazakhstan
M. R. Maulenova
orcid.org/0000-0003-3430-8102
; Kazakh National Technical University, Almaty, Kazakhstan
Abstract
This article presents a new methodof obtaining the sheet steel with ultrafine-grained structure. The ultrafinegrained structure is obtained by implementing severe plastic deformation developed by a spiral roller. This paper investigates the stress-strain state (SSS) of the workpiece during rolling in a spiral roller and a longitudinal wedge mill (LWM). A rational technology of rolling aluminum alloy 1050 was developed and tested under the laboratory conditions. It was proved that the system achieves an equilibrium state by diffusion along the grain boundaries accelerated by the flow of vacancies formed during the deformation. It has been established that rolling aluminum alloy 1050in the spiral rollers and LWM leads to an increase in the strength and plastic properties of the sheet metal.
Keywords
aluminum alloys; rolling; ultrafine-grained structure; strength; ductility
Hrčak ID:
232472
URI
Publication date:
1.4.2020.
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