On the Theory of Isothermal Hot Rolling of an Aluminum Alloy Strip


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Abstract

The two-dimensional problem of isothermal (including superplasticity conditions) rolling of an aluminum sheet (at a low angle of bite) is analytically solved, and the influence of high homologous temperature on the pressure on rolls is estimated. The energy–force and kinematic parameters of rolling are found using a dynamic model, which adequately describes the experimental data obtained for commercial aluminum alloys. Calculation results are presented for AMg5 and D18T alloys.

About the authors

A. I. Rudskoi

Peter the Great St. Petersburg Polytechnic University

Email: dkitaeva@mail.ru
Russian Federation, Politekhnicheskaya ul. 29, St. Petersburg, 195251

G. E. Kodzhaspirov

Peter the Great St. Petersburg Polytechnic University

Email: dkitaeva@mail.ru
Russian Federation, Politekhnicheskaya ul. 29, St. Petersburg, 195251

D. A. Kitaeva

Peter the Great St. Petersburg Polytechnic University

Author for correspondence.
Email: dkitaeva@mail.ru
Russian Federation, Politekhnicheskaya ul. 29, St. Petersburg, 195251

Ya. I. Rudaev

Kyrgyz Russian Slavic University

Email: dkitaeva@mail.ru
Kyrgyzstan, ul. Kievskaya 44, Bishkek, 720000

E. A. Subbotina

Kyrgyz Russian Slavic University

Email: dkitaeva@mail.ru
Kyrgyzstan, ul. Kievskaya 44, Bishkek, 720000


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