Artikel
Open Access
The Mg–Ca–O system: Thermodynamic analysis of oxide data and melting/solidification of Mg alloys with added CaO
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Veröffentlicht/Copyright:
20. Februar 2018
Received: 2017-08-02
Accepted: 2017-10-18
Published Online: 2018-02-20
Published in Print: 2018-03-13
© 2018, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- The Mg–Ca–O system: Thermodynamic analysis of oxide data and melting/solidification of Mg alloys with added CaO
- Thermodynamic description of the Cu–S–Sn system
- Thermophysical properties of NPG solid solution in the NPG–SCN organic system
- Magnetic properties of amorphous–nanocrystalline Fe–Cr–B–Si–Ni–Nb alloys
- Effect of sensitization on tribological behavior of AISI 304 austenitic stainless steel
- The effects of friction stir processing on the wear behavior of cast AZ91C magnesium alloy
- Effect of alumina particles on structural changes in MoS2 during a ball milling process
- Fabrication of bioactive porous bredigite (Ca7MgSi4O16) scaffold via space holder method
- Short Communications
- A simple and economic approach to superhydrophobic films
- Cu/Ag core/shell particles via modified arc discharge method
- DGM News
- DGM News
Schlagwörter für diesen Artikel
Alloy solidification;
Thermodynamic data;
Ternary phase diagram;
Metal–oxide reactions
Creative Commons
BY 4.0
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- The Mg–Ca–O system: Thermodynamic analysis of oxide data and melting/solidification of Mg alloys with added CaO
- Thermodynamic description of the Cu–S–Sn system
- Thermophysical properties of NPG solid solution in the NPG–SCN organic system
- Magnetic properties of amorphous–nanocrystalline Fe–Cr–B–Si–Ni–Nb alloys
- Effect of sensitization on tribological behavior of AISI 304 austenitic stainless steel
- The effects of friction stir processing on the wear behavior of cast AZ91C magnesium alloy
- Effect of alumina particles on structural changes in MoS2 during a ball milling process
- Fabrication of bioactive porous bredigite (Ca7MgSi4O16) scaffold via space holder method
- Short Communications
- A simple and economic approach to superhydrophobic films
- Cu/Ag core/shell particles via modified arc discharge method
- DGM News
- DGM News