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  • Babu, Bijish,Tec. Lic.1979-Swerim AB, Heating and Metalworking, Luleå, Sweden (author)

Simulation of Ti-6Al-4V Additive Manufacturing Using Coupled Physically Based Flow Stress and Metallurgical Model

  • Article/chapterEnglish2019

Publisher, publication year, extent ...

  • 2019-11-21
  • MDPI,2019
  • printrdacarrier

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  • LIBRIS-ID:oai:DiVA.org:ltu-77109
  • https://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-77109URI
  • https://doi.org/10.3390/ma12233844DOI

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  • Language:English
  • Summary in:English

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  • Subject category:ref swepub-contenttype
  • Subject category:art swepub-publicationtype

Notes

  • Validerad;2019;Nivå 2;2019-12-09 (johcin)
  • Simulating the additive manufacturing process of Ti-6Al-4V is very complex due to the microstructural changes and allotropic transformation occurring during its thermomechanical processing. The α -phase with a hexagonal close pack structure is present in three different forms—Widmanstatten, grain boundary and Martensite. A metallurgical model that computes the formation and dissolution of each of these phases was used here. Furthermore, a physically based flow-stress model coupled with the metallurgical model was applied in the simulation of an additive manufacturing case using the directed energy-deposition method. The result from the metallurgical model explicitly affects the mechanical properties in the flow-stress model. Validation of the thermal and mechanical model was performed by comparing the simulation results with measurements available in the literature, which showed good agreement

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  • Lundbäck, AndreasLuleå tekniska universitet,Material- och solidmekanik(Swepub:ltu)andlun (author)
  • Lindgren, Lars-ErikLuleå tekniska universitet,Material- och solidmekanik(Swepub:ltu)lel (author)
  • Swerim AB, Heating and Metalworking, Luleå, SwedenMaterial- och solidmekanik (creator_code:org_t)

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  • In:Materials: MDPI12:231996-1944

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