Investigation of α2/γ phase transformation mechanism under the interaction of dislocation with lamellar interface in primary creep of lamellar TiAl alloys
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference17 articles.
1. Current understanding of creep behaviour of near γ-titanium aluminides
2. Observations on the creep behavior of fully-lamellar polycrystalline TiAl: Identification of critical effects
3. Dislocation evolution with creep strain and dislocation emission related with α2-phase dissolution
4. Primary creep deformation behaviors related with lamellar interface in TiAl alloy
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1. Precipitation of Ti2Al phases at lamellar interfaces in a high-Nb-containing TiAl alloy during thermal exposure;Journal of Materials Science & Technology;2022-11
2. Quasi-in-situ investigation on microstructure degradation of a fully lamellar TiAl alloy during creep;Journal of Materials Research and Technology;2022-05
3. Effect of Strain Rate on Microstructure and Mechanical Properties of Electroplastic Rolled ZrTi Alloy;Advanced Engineering Materials;2022-01-27
4. The effects of quaternary alloying additions on the γTiAl alloy: Preferential site occupancy, interfacial energetics to physical parameters;Surfaces and Interfaces;2021-08
5. Influence of heat treatment on microstructure and nanohardness of TiAl alloy solidified under high pressure;China Foundry;2020-11
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