Phase Field Dislocation Dynamics Modeling of Shearing Modes in Ni2(Cr,Mo,W)-Containing HAYNES® 244® Superalloy

Author:

Mann Thomas,Fahrmann Michael G.,Koslowski Marisol,Titus Michael S.

Publisher

Elsevier BV

Reference46 articles.

1. The effective pinning of the dislocations by the different variants changes how each dislocation interaction occurs. Acknowledgments: TM and MST would like to acknowledge a generous gift from Haynes International to conduct research on high temperature alloys. This work was conducted utilizing computational resources provided by Rosen Center for Advanced Computing and Information Technology at Purdue University;CRedIT Authors Statement: Thomas Mann: Investigation, Formal Analysis, Visualization, Writing -Original Draft. Michael Fahrmann: Supervision, Funding Acquisition. Marisol Koslowski: Software, Methodology, Resources

2. Development of a New 760�C (1400 �F) Capable Low Thermal Expansion Alloy;M G Fahrmann;Superalloys 2012 (Twelfth International Symposium,2012

3. Mechanical properties and strengthening of a Ni-25Mo-8Cr alloy containing Ni2(Mo,Cr) precipitates;M Kumar;Acta Materialia,1996

4. Variant Selection of Intragranular Ni2(Mo,Cr) Precipitates (?') in the Ni-Mo-Cr-W Alloy;J Song;Acta Materialia,2018

5. Deformation-Induced Planar Defects in Immm Ni2(Cr, Mo, W) Strengthened HAYNES� 244� Superalloy;T R Mann;Metall. Mater. Trans. A,2023

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