Dramatically improving thermoplasticity of FGH4096 superalloy by a novel sub-solvus temperature holding followed by extremely slow cooling
Author:
Publisher
Elsevier BV
Subject
Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites
Reference62 articles.
1. Microstructure evolution in GH4742 superalloy by combining hot deformation and heat treatment;Zhang;J Mater Res Technol,2023
2. Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications;Song;J Mater Res Technol,2022
3. Dynamic mechanical properties of FGH4097 powder alloy and the applications of its constitutive model;Li;J Mater Res Technol,2023
4. Effect of temperature and strain rate on the workability of FGH4096 superalloy in hot deformation;Liu;Mater Des,2016
5. Microstructural evolution and dynamic recrystallization of a nickel-based superalloy PM EP962NP during hot deformation at 1150 °C;Sun;J Mater Res Technol,2022
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1. Linear Stability of Mixed Convection in a Horizontal Channel Filled with Cold Water;2024
2. Optimizing the Hot Deformation Microstructure of GH4975 Superalloy by Sup-solvus Temperature Holding Followed by Extremely Slow Cooling;Metals and Materials International;2023-12-04
3. Hot deformation behavior and flow stress modeling of coarse-grain nickel-base GH4151 superalloy ingot materials in cogging;Journal of Materials Research and Technology;2023-09
4. Advancements in processing of Ni-based superalloys by microstructure engineering via discontinuous γ′ break-down;Materialia;2023-09
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