Phase equilibria of the Al–Zn–Fe–V quaternary system at 620 °C
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Yangsheng Cai
Abstract
The 620 °C isothermal section of the Al–Zn–Fe–V quaternary system with the Al content fixed at 55 wt.% and the Al-rich corner of the Al–Fe–Zn ternary system at 620 °C have been determined by means of scanning electron microscopy coupled with energy dispersive X-ray spectroscopy and X-ray diffractometry. Two four-phase regions are identified in the isothermal section of the Al–Zn–Fe–V quaternary system. Two three-phase regions are found in the Al-rich corner of the Al–Fe–Zn ternary system. No new ternary and quaternary phases have been found in the present work.
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© 2016, Carl Hanser Verlag, München
Artikel in diesem Heft
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Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Nanoindentation of carbon microspheres
- Thermal and mechanical properties of single-walled and multi-walled carbon nanotube polycarbonate polyurethane composites with a focus on self-healing
- Preparation and characterization of ZnO nanorod arrays produced using wet methods
- Phase equilibria of the Al–Zn–Fe–V quaternary system at 620 °C
- Effect of withdrawal rate and zinc content on pore structure and morphology of lotus-type porous Cu–Zn alloys fabricated using continuous casting
- Investigation of tungsten surface changes after interaction with dense plasma streams compared with the results given by a simple 1D model
- Investigation of Al2O3/TiC ceramic cutting tool materials with the addition of SiC-coated h-BN: preparation, mechanical properties, microstructure and wear resistance
- Effect of the addition of different sintering aids on the densification behavior of zirconia-toughened alumina nanocomposite powder
- Mixed mode notch-crack fatigue propagation in the welding zone of 06Cr19Ni10 austenitic stainless steel: Effect of strain strengthening
- A study on mechanical and microstructural properties of dissimilar FSWed joints of AA5251–AA5083 plates
- Short Communications
- A methodology for in-situ micro-compression testing of fiber composites
- The synthesis and electrochemical performance of Cu6Sn5 intermetallic nanoparticles as anode material in Li ion batteries
- DGM News
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