The Effect of Process and Model Parameters in Temperature Prediction for Hot Stamping of Boron Steel

Author:

Sun Chaoyang1,Bai Qian2,Lin Jianguo2,Matsumoto Takeki3,Dean Trevor A.4

Affiliation:

1. School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. Department of Mechanical Engineering, Imperial College London, London SW7 2AZ, UK

3. IMRA Europe S.A.S. U.K. Research Centre, University of Sussex, Brighton BN1 9RS, UK

4. Department of Mechanical Engineering, University of Birmingham, Birmingham B15 2TT, UK

Abstract

Finite element models of the hot stamping and cold die quenching process for boron steel sheet were developed using either rigid or elastic tools. The effect of tool elasticity and process parameters on workpiece temperature was investigated. Heat transfer coefficient between blank and tools was modelled as a function of gap and contact pressure. Temperature distribution and thermal history in the blank were predicted, and thickness distribution of the blank was obtained. Tests were carried out and the test results are used for the validation of numerical predictions. The effect of holding load and the size of cooling ducts on temperature distribution during the forming and the cool die quenching process was also studied by using two models. The results show that higher accuracy predictions of blank thickness and temperature distribution during deformation were obtained using the elastic tool model. However, temperature results obtained using the rigid tool model were close to those using the elastic tool model for a range of holding load.

Funder

IMRA Europe S.A.S. U.K. Research Centre

Publisher

SAGE Publications

Subject

Mechanical Engineering

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