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Multiphase-Field Modeling and Simulation of Martensitic Phase Transformation in Heterogeneous Materials

In: High Performance Computing in Science and Engineering ' 18

Author

Listed:
  • E. Schoof

    (Karlsruhe Institute of Technology (KIT), Institute of Applied Materials (IAM-CMS)
    Karlsruhe University of Applied Sciences, Institute of Digital Materials Science (IDM))

  • C. Herrmann

    (Karlsruhe Institute of Technology (KIT), Institute of Applied Materials (IAM-CMS)
    Karlsruhe University of Applied Sciences, Institute of Digital Materials Science (IDM))

  • D. Schneider

    (Karlsruhe Institute of Technology (KIT), Institute of Applied Materials (IAM-CMS)
    Karlsruhe University of Applied Sciences, Institute of Digital Materials Science (IDM))

  • J. Hötzer

    (Karlsruhe Institute of Technology (KIT), Institute of Applied Materials (IAM-CMS)
    Karlsruhe University of Applied Sciences, Institute of Digital Materials Science (IDM))

  • B. Nestler

    (Karlsruhe Institute of Technology (KIT), Institute of Applied Materials (IAM-CMS)
    Karlsruhe University of Applied Sciences, Institute of Digital Materials Science (IDM))

Abstract

The martensitic phase transformation is an important mechanism which strongly changes the properties of the material. On the one hand, martensite is a widely used and purposefully produced constituent of many high-strength steels. On the other hand, martensite can also lead in some cases to an unwanted embrittlement of the material, so that this transformation has to be prevented.

Suggested Citation

  • E. Schoof & C. Herrmann & D. Schneider & J. Hötzer & B. Nestler, 2019. "Multiphase-Field Modeling and Simulation of Martensitic Phase Transformation in Heterogeneous Materials," Springer Books, in: Wolfgang E. Nagel & Dietmar H. Kröner & Michael M. Resch (ed.), High Performance Computing in Science and Engineering ' 18, pages 475-488, Springer.
  • Handle: RePEc:spr:sprchp:978-3-030-13325-2_30
    DOI: 10.1007/978-3-030-13325-2_30
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