A Comprehensive Material Model for the Super-Duplex Stainless Steel SAF2507 in a Welding Environment

Author:

Prunbauer Maximilian1,Raninger Peter2ORCID,Ecker Werner2ORCID,Rester Martin1,Ebner Reinhold2ORCID

Affiliation:

1. Berndorf Band GmbH, Leobersdorfer Strasse 26, 2560 Berndorf, Austria

2. Materials Center Leoben Forschung GmbH, Roseggerstraße 12, 8700 Leoben, Austria

Abstract

The aim of this work is to describe a reliable methodology for determining parameters of a material model suitable for implementation in a welding simulation using the finite element method (FEM). The adopted methodology employs a multi-scale approach integrating a microstructure evolution model, a representative volume element (RVE) calibrated through experimental methods, including a thermal–mechanical simulator, and electron backscatter diffraction (EBSD) experiments. The result is a complete material model, which covers thermal, mechanical and metallurgical material models for SAF2507 (EN 1.4410), that shows promising results and was successfully implemented in finite element (FE) code. A direct comparison of experimental and calculated results shows a deviation of up to 12% for the phase fraction of austenite and 25% for the mean grain diameter of ferrite.

Funder

Austrian Research Promotion Agency

Publisher

MDPI AG

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