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Baranov, V.
Sidelnikov, S.
Zenkin, E.
Frolov, V.
Voroshilov, D.
Yakivyuk, O.
Konstantinov, I.
Sokolov, R.
Belokonova, I.
2019-07-01T07:28:20Z
2019-07-01T07:28:20Z
2018-02
Baranov, V. Study of strength properties of semi-finished products from economically alloyed high-strength aluminium-scandium alloys for application in automobile transport and shipbuilding [Текст] / V. Baranov, S. Sidelnikov, E. Zenkin, V. Frolov, D. Voroshilov, O. Yakivyuk, I. Konstantinov, R. Sokolov, I. Belokonova // Open Engineering. — 2018. — Т. 8 (№ 1). — С. 69-76
23915439
https://www.degruyter.com/view/j/eng.2018.8.issue-1/eng-2018-0005/eng-2018-0005.xml
https://elib.sfu-kras.ru/handle/2311/111138
The results of a study on the strength of rolled products from aluminium alloys doped with scandium under various processing conditions of hot and cold rolling are presented. The regularities of metal flow and the level of strength of deformed semi-finished products from aluminum-scandium alloys are established, depending on the total degree of deformation and the various modes of single reduction during rolling. It is shown that when using one heating of a cast billet to obtain high-quality semi-finished products, the temperature during the rolling process should not be lower than 350-370°, and the total degree of deformation does not exceed 50-60%. It was found that the semi-finished products from alloys with a content of scandium in the range 0.11-0.12% in the deformed state had elevated values of ultimate tensile strength and yield strength of the metal, which allows them to be recommended for industrial production of sheet metal products
aluminium alloys
deformed semi-finished products
rolling
scandium
temporary tensile strength
total degree of deformation
yield stress of metal
Study of strength properties of semi-finished products from economically alloyed high-strength aluminium-scandium alloys for application in automobile transport and shipbuilding
Journal Article
Journal Article Preprint
69-76
55.09.33
2019-07-01T07:28:20Z
10.1515/eng-2018-0005
Институт цветных металлов и материаловедения
Кафедра обработки металлов давлением
Кафедра общей металлургии
Open Engineering
Q3
без квартиля


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