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A General Equation of Coherency Strain Energy and its Application
-
Ho Yong Lee
and Suk-Joong L. Kang
Published/Copyright:
April 22, 2021
Published Online: 2021-04-22
Published in Print: 1994-06-01
© 2021 by Walter de Gruyter Berlin/Boston
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Articles in the same Issue
- Inhalt
- Aufsätze
- Viscosity Investigations on Liquid Alloys of the Monotectic System Al-In
- Activity Interaction Coeflicients of Si in Cu-Ti-Si Melts at 1550 °C
- Impact Properties of Al-Si-Cu Alloys
- Combined Effects of Carbide, Cavitation and Ihin-section Size on the Creep Rupture Properties of a Nickel-base Superalloy
- Recrystallization and Development of Cube Texture in Ti and Ti+ Cr Added Ni-Fe-Cu Alloys
- Dislocation Microstructure and Texture Development in Rolled Copper Single Crystals
- A General Equation of Coherency Strain Energy and its Application
- FIM Study of D03-ordered Fe3Al
- Some Temperature Dependent Correlations of Fracture Toughness, Strength, Notch Toughness and Microstructure in an HSLA Steel
- Grain Refinement by Thermal Cycling in High-nitrogen Austenitic Heat-resistant Steels
- Mitteilungen der Deutschen Gesellschaft für Materialkunde e.V.
- PERSONEN
- BUCHBESPRECHUNGEN
- VERANSTALTUNGEN
- Impressum
Articles in the same Issue
- Inhalt
- Aufsätze
- Viscosity Investigations on Liquid Alloys of the Monotectic System Al-In
- Activity Interaction Coeflicients of Si in Cu-Ti-Si Melts at 1550 °C
- Impact Properties of Al-Si-Cu Alloys
- Combined Effects of Carbide, Cavitation and Ihin-section Size on the Creep Rupture Properties of a Nickel-base Superalloy
- Recrystallization and Development of Cube Texture in Ti and Ti+ Cr Added Ni-Fe-Cu Alloys
- Dislocation Microstructure and Texture Development in Rolled Copper Single Crystals
- A General Equation of Coherency Strain Energy and its Application
- FIM Study of D03-ordered Fe3Al
- Some Temperature Dependent Correlations of Fracture Toughness, Strength, Notch Toughness and Microstructure in an HSLA Steel
- Grain Refinement by Thermal Cycling in High-nitrogen Austenitic Heat-resistant Steels
- Mitteilungen der Deutschen Gesellschaft für Materialkunde e.V.
- PERSONEN
- BUCHBESPRECHUNGEN
- VERANSTALTUNGEN
- Impressum