EXTENSION OF A PHASE TRANSFORMATION MODEL FOR PARTIAL HARDENING IN HOT STAMPING

Journal Title: Journal of Machine Engineering - Year 2018, Vol 18, Issue 3

Abstract

The quality of predicted microstructural and mechanical properties in hot stamping simulations relies considerably on the material model. Many researchers studied the effect of the plastic deformation on the phase transformation of the most commonly used hot stamping steel 22MnB5, and proved that the deformation applied at high temperature promotes the formation of ferrite, pearlite and bainite. This behaviour has to be integrated into materials modelling. In this study, the effect of pre-strain on the phase transformation of the material is considered. The specimens are heated to austenitization temperature, isothermally deformed at 700 °C, and quenched down to room temperature. The phase fractions and the temperature-dilatation behaviour obtained from the experiments are used to calibrate the material model. By using the experimental data obtained from dilatometer testing, the accuracy of the material model is evaluated. Additionally, an attempt to predict the results between the tested data points by using interpolation was made and compared with the simulation results.<br/><br/>

Authors and Affiliations

Thawin HART-RAWUNG, Johannes BUHL, Markus BAMBACH

Keywords

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  • EP ID EP376420
  • DOI 10.5604/01.3001.0012.4619
  • Views 52
  • Downloads 0

How To Cite

Thawin HART-RAWUNG, Johannes BUHL, Markus BAMBACH (2018). EXTENSION OF A PHASE TRANSFORMATION MODEL FOR PARTIAL HARDENING IN HOT STAMPING. Journal of Machine Engineering, 18(3), 88-98. https://europub.co.uk./articles/-A-376420