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Microstructural Study of a Zn-Al-Cu Alloy after Thermal Treatment at 100 °C and Creep
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LjJuben Terziev
, Jacqqueline Beckers and Jean Weggria
Published/Copyright:
April 22, 2021
Published Online: 2021-04-22
Published in Print: 1994-09-01
© 2021 by Walter de Gruyter Berlin/Boston
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Articles in the same Issue
- Inhalt
- Investigation of the Kinetics of Reduction of Nickel Oxide and Nickel Aluminate by Hydrogen
- Temperature Dependence of the Thermodynamic Functions for Demixing Liquid Binary Alloys
- Phase Equilibria in the Y—Iı-Fe System at 500 °C
- Herstellung und Gefüge von laserverglasten Al-Basis-Legierungen
- Effect of Grain Size and x/® Phase Proportion on Room Temperature Properties of Al-Cu Alloys
- Microstructural Study of a Zn-Al-Cu Alloy after Thermal Treatment at 100 °C and Creep
- On the Origin of Different Rates of Inpile Post-transition Oxidation for Zr-based Cladding Alloys
- EXAFS Studies of (Ti, W)B, Compounds
- Effects of High-temperature Treatments on Martensitic Transformation in MANET Steel
- Effect of Metalloid Substitution by Chromium on Magnetic Properties of FeSiB Amorphous Alloys
- DEUTSCHE GESELLSCHAFT FÜR MATERIALKUNDE E.V.
Articles in the same Issue
- Inhalt
- Investigation of the Kinetics of Reduction of Nickel Oxide and Nickel Aluminate by Hydrogen
- Temperature Dependence of the Thermodynamic Functions for Demixing Liquid Binary Alloys
- Phase Equilibria in the Y—Iı-Fe System at 500 °C
- Herstellung und Gefüge von laserverglasten Al-Basis-Legierungen
- Effect of Grain Size and x/® Phase Proportion on Room Temperature Properties of Al-Cu Alloys
- Microstructural Study of a Zn-Al-Cu Alloy after Thermal Treatment at 100 °C and Creep
- On the Origin of Different Rates of Inpile Post-transition Oxidation for Zr-based Cladding Alloys
- EXAFS Studies of (Ti, W)B, Compounds
- Effects of High-temperature Treatments on Martensitic Transformation in MANET Steel
- Effect of Metalloid Substitution by Chromium on Magnetic Properties of FeSiB Amorphous Alloys
- DEUTSCHE GESELLSCHAFT FÜR MATERIALKUNDE E.V.