Finite Element Analysis of Rolling Force and Torque during Hot Continuous Rolling of Hot Work Steel
Yonglin Kang
Abstract
Yonglin Kang
Abstract
The hot continuous rolling process for φ200 mm round bars of a hot work steel is simulated by using the three-dimensional thermal-mechanical coupled elastoplastic finite element method. The changes in rolling force and torque during the rolling process are calculated precisely. As a result, the roll strength and profiles can be verified and/or modified, from which a more reliable roll pass schedule can been chosen.
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The hot continuous rolling process for φ200 mm round bars of a hot work steel is simulated by using the three-dimensional thermal-mechanical coupled elastoplastic finite element method. The changes in rolling force and torque during the rolling process are calculated precisely. As a result, the roll strength and profiles can be verified and/or modified, from which a more reliable roll pass schedule can been chosen.
Key concepts: Finite element method, Torque, Work (physics), Structural engineering, Materials science, Thermal, Process (computing), Mechanical engineering