Research of Three-High Screw Rolling of Aluminum Billets with Copper Inserts at Different Rolls Feed Angles

Author:

Skripalenko Mikhail M.1ORCID,Rogachev Stanislav O.2ORCID,Bazhenov Viacheslav E.3ORCID,Romantsev Boris A.1,Skripalenko Mikhail N.1,Karpov Boris V.4,Titov Andrey Yu.3,Koltygin Andrey V.3ORCID,Danilin Andrei V.1

Affiliation:

1. Metal Forming Department, University of Science and Technology MISIS, Leninsky Prospekt 4, 119049 Moscow, Russia

2. Department of Physical Metallurgy and Physics of Strength, University of Science and Technology MISIS, Leninsky Prospekt 4, 119049 Moscow, Russia

3. Casting Department, University of Science and Technology MISIS, Leninsky Prospekt 4, 119049 Moscow, Russia

4. Research and Production Center of Metal Processing with Pressure (RPC MPP), Intitutskiy Proezd, 2, Zavoda Mosrentgen, 142771 Moscow, Russia

Abstract

Three-high screw-rolling of aluminum alloy ingots was carried out at 12- and 20-degrees rolls feed angles. The ingots had two copper, cylindrical inserts oriented along the ingot axis: the center of one insert coincided with the ingot’s center, and the center of the other insert coincided with the ingot’s half-radius. The effect of the rolls feed angle value on the aluminum and copper microstructure as well as the hardness formation was established. X-ray study and three-dimensional modeling allowed the copper insert twisting angle to be estimated along the rolled billet axis. It also allowed detection of the number of breaks of the insert located in the ingot’s center and the insert located in the ingot’s half-radius depending on the rolls feed angle value.

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference37 articles.

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2. Teterin, P.K. (1971). Theory of Cross and Screw Rolling, Metallurgija. (In Russian).

3. Chen, C., Chen, J., Shuang, Y., and Li, C. (2023). Short-flow rolling process and heat treatment of seamless titanium alloy tube. Metals, 13.

4. Potapov, I.N., and Polukhin, P.I. (1990). Screw Rolling Technology, Metallurgia. (In Russian).

5. Galkin, S.P. (1998). Theory and Technology of Steady-State Workpiece and Bar Rolling of Low-Ductility Steels and Alloys, Moscow State Institute of Steel and Alloys. (In Russian).

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