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  4. Numerical and experimental assessment of liquid metal embrittlement in externally loaded spot welds
 
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January 30, 2024
Journal Article
Title

Numerical and experimental assessment of liquid metal embrittlement in externally loaded spot welds

Abstract
Zinc-based surface coatings are widely applied with high-strength steels in automotive industry. Some of these base materials show an increased brittle cracking risk during loading. It is necessary to examine electrogalvanized and uncoated samples of a high strength steel susceptible to liquid metal embrittlement during spot welding with applied external load. Therefore, a newly developed tensile test method with a simultaneously applied spot weld is conducted. A fully coupled 3D electrical, thermal, metallurgical and mechanical finite element model depicting the resistant spot welding process combined with the tensile test conducted is mandatory to correct geometric influences of the sample geometry and provides insights into the sample’s time dependent local loading. With increasing external loads, the morphology of the brittle cracks formed is affected more than the crack depth. The validated finite element model applies newly developed damage indicators to predict and explain the liquid metal embrittlement cracking onset and development as well as even ductile failure.
Author(s)
Prabitz, Konstantin
Materials Center Leoben Forschung GmbH
Antretter, Thomas
Montanuniversitaet Leoben, Institute of Mechanics
Rethmeier, Michael  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
El-Sari, Bassel  
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Schubert, Holger
Mercedes-Benz AG
Hilpert, Benjamin
Mercedes-Benz AG
Gruber, Martin
voestalpine Stahl GmbH
Sierlinger, Robert
voestalpine Stahl GmbH
Ecker, Werner
Materials Center Leoben Forschung GmbH
Journal
Welding in the world  
Open Access
DOI
10.1007/s40194-024-01696-7
Language
English
Fraunhofer-Institut für Produktionsanlagen und Konstruktionstechnik IPK  
Keyword(s)
  • Resistance Spot Welding

  • Finite Element Simulation

  • Advanced High-Strength Steel

  • Liquid Metal Embrittlement

  • Damage Prediction

  • Tensile Resistance Spot Welding Experiment

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