Deformation Mechanisms and Microstructural Evolution of γ + γ′ Duplex Aggregates Generated During Thermomechanical Processing of Nickel-Base Superalloys
Author:
Affiliation:
1. High Temperature Materials Research Division; China Iron & Steel Research Institute Group; Beijing 100081 China
2. Beijing Key Laboratory for Advanced High Temperature Materials; Beijing 100081 China
Publisher
John Wiley & Sons, Inc.
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/9781119075646.ch52/fullpdf
Reference19 articles.
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3. The Evolution of Wrought Age-hardenable Superalloys;Decker;JOM,2006
4. Modelling of the Influence of Alloy Composition on Flow Stress in High-Strength Nickel-based Superalloys;Crudden;Acta Materialia,2014
5. On the Prediction of the Yield Stress of Unimodal and Multimodal γ’ Nickel-base Superalloys;Galindo-Nava;Acta Materialia,2015
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2. Effect of Non-fully Recrystallized Grain Structures on the Fatigue Behavior of a Wrought γ-γ′ Ni-Base Superalloy;The Minerals, Metals & Materials Series;2024
3. Multi-scale Calculation-Aided Composition Optimization Design of Low-Density and High-Strength Nickel-Based Superalloy;Metallurgical and Materials Transactions A;2023-07-18
4. An investigation on as-cast microstructure and homogenization of nickel base superalloy René 65;High Temperature Materials and Processes;2022-01-01
5. Characteristic Flow Behaviour of γ + γʹ Duplex and Its Significant Applications in Hot Working Process of Superalloys;Superalloys 2020;2020
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