Yield strength prediction in Ni-base alloy 718Plus based on thermo-kinetic precipitation simulation
MR Ahmadi, E Povoden-Karadeniz, L Whitmore… - Materials Science and …, 2014 - Elsevier
Materials Science and Engineering: A, 2014•Elsevier
The yield strength of Allvac® 718Plus™ during aging is computed using integrated physical
models that take into account intrinsic, grain boundary, solid solution and precipitate
strengthening contributions. Precipitation strengthening of γ′ has the main effect on the
final yield strength in this alloy during aging, with the coherency and anti-phase boundary
effects providing the major strengthening contributions. We utilize transmission electron
microscopy to obtain the unknown physical parameters entering the strengthening models …
models that take into account intrinsic, grain boundary, solid solution and precipitate
strengthening contributions. Precipitation strengthening of γ′ has the main effect on the
final yield strength in this alloy during aging, with the coherency and anti-phase boundary
effects providing the major strengthening contributions. We utilize transmission electron
microscopy to obtain the unknown physical parameters entering the strengthening models …
Abstract
The yield strength of Allvac® 718Plus™ during aging is computed using integrated physical models that take into account intrinsic, grain boundary, solid solution and precipitate strengthening contributions. Precipitation strengthening of γ′ has the main effect on the final yield strength in this alloy during aging, with the coherency and anti-phase boundary effects providing the major strengthening contributions. We utilize transmission electron microscopy to obtain the unknown physical parameters entering the strengthening models and compare precipitate size and distribution with the simulation results.
Elsevier
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