A Global Approach of the Finite Element Simulation of Hot Stamping

Author:

Hein P.1

Affiliation:

1. Arcelor Flat Carbon Steel

Abstract

The use of quenched boron steel components is an economic way to achieve significant improvements in terms of weight saving and crash performance. The material and process knowledge on the hot stamping of boron steels (e.g. Arcelor’s USIBOR 1500 P®) by the stampers needs to be extended and accurate simulation tools must be developed to support the growth of this forming technology. This paper simultaneously addresses the specific requirements of the hot stamping simulation and the current state of the art in this field. A specific approach is presented for the detection of the process limits within the simulation tool. A software chain has been set up with the target to decrease the computation times.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference18 articles.

1. Kahl, M.: Some like it hot. Automotive Manufacturing Solutions (2004), Sept/Oct, 49-52.

2. Kefferstein, R.: Development of Safety and Structural Automotive Parts by Hot-Stamping: Example of the Solution USIBOR 1500 P,. Journées Sidérurgiques Internationales ATS 2004. Paris, 9. - 10. 12. 04.

3. Eriksson, M.: Modelling of Forming and Quenching of Ultra High Strength Steel Components for Vehicle Structures. Luleå University of Technology. Doctoral Thesis LTU-DT 02/19 SE. ISSN: 1402-1544 (2002).

4. Garcia-Aranda, L.: Etude thermo-mécanique et modélisation numérique de l'emboutissage à chaud de l'Usibor 1500. Ecole des Mines de Paris. PhD-Thesis (2004), in French.

5. Lorenz, D.; Roll, K.: Simulation of Hot Stamping and Quenching of Boron Alloyed Steel. 7th Int. ESAFORM Conf. on Mat. Forming, April 28-30 2004, Trondheim, Norway, pp.659-662.

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