Inhomogeneity of temperature distribution through thickness of the aluminium strip during hot rolling

Author:

Rezaei Ashtiani H R1,Bisadi H1,Parsa M H2

Affiliation:

1. Department of Solid Mechanics, School of Mechanical Engineering, Iran University Science and Technology (IUST), Tehran, Iran

2. School of Metallurgy and Materials Engineering, University College of Engineering, University of Tehran, Tehran, Iran

Abstract

Temperature distribution and inhomogeneity of its through thickness of the strip play an essential role in hot rolling processes, where both the strip and work-roll behaviour are affected strongly by these temperature fields and the microstructural and mechanical properties through thickness of hot rolled strip depend on this temperature inhomogeneity within the strip being deformed during hot rolling. In this investigation, a mathematical model was developed to predict the thermal history and inhomogeneity of temperature through thickness of an aluminium alloy strip undergoing single-stand hot plate rolling using the commercial finite element (FE) package, ABAQUS/Explicit in three dimensions. To estimate the reliability of the numerical analysis, the FE model was validated using experimental roll force and torque data and also temperature history at the centre-line of strip; good agreement was found between the two sets of predicated and experimental results. The effects of various process parameters, such as rolling speed, interface heat-transfer and friction coefficients between strip and work roll, initial thickness of the strip, and work-roll temperature and diameter on the temperature inhomogeneity, is considered.

Publisher

SAGE Publications

Subject

Mechanical Engineering

Reference22 articles.

1. Hollander, F. Mathematical models in metallurgical process development. Proceeding of the conference on Royal Garden Hotel, London, 12–13 February 1969, pp. 46–79 (Iron and Steel Institute, London).

2. Modelling Microstructure and Its Effects during Multipass Hot Rolling.

3. Prediction of temperature distribution in the hot rolling of slabs

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