Microstructure of a ternary Al–Pd–Rh alloy
-
, , , , and
Abstract
The characterization of phases in a ternary Al – Pd – Rh complex metallic alloy annealed at 1100 °C for 49 h before (original state) and after differential thermal analysis was performed. In the investigation, light microscopy, scanning and transmission electron microscopy, energy-dispersive X-ray spectroscopy, wavelength-dispersive X-ray spectroscopy, and differential thermal analysis were used. The dominant constituent in the original state was characterized as ∊6-phase. The minor constituent was attributed to the additionally solidified liquid co-existing with the ∊6-phase at 1100 °C. After differential thermal analysis, the microstructure of the alloy was composed of the matrix ∊6-phase and areas of the creek-type morphology.
References
[1] J.M.Dubois: Useful quasicrystals. World Scientific (2005) 1–67.Search in Google Scholar
[2] http://en.wikipedia.org/wiki/Complex_metallic_alloysSearch in Google Scholar
[3] G.Kreiner, Y.Moguilnikov, U.Burkhardt, M.Schapers: J. Non-Cryst. Solids334–335 (2004) 17. DOI:10.1016/j.jnoncrysol.2003.11.07010.1016/j.jnoncrysol.2003.11.070Search in Google Scholar
[4] K.Urban, M.Feuerbacher: J. Non-Cryst. Solids334–335 (2004) 143. DOI:10.1016/j.jnoncrysol.2003.11.02910.1016/j.jnoncrysol.2003.11.029Search in Google Scholar
[5] H.S.Jeevan, S.Ranganathan: J. Non-Cryst. Solids334–335 (2004) 184. DOI:10.1016/j.jnoncrysol.2003.11.03510.1016/j.jnoncrysol.2003.11.035Search in Google Scholar
[6] E.Huttunen-Saarivirta: J. Alloys Comp.363 (2004) 150. DOI:10.1016/S0925-8388(03)00445-610.1016/S0925-8388(03)00445-6Search in Google Scholar
[7] S.Balanetskyy, B.Grushko, T.Y.Velikanova, K.Urban: Intermetallics13 (2005) 649. DOI:10.1016/j.intermet.2004.10.00810.1016/j.intermet.2004.10.008Search in Google Scholar
[8] M.KriškaM.Kusý, E.Illekova, J.Buršík, M.Svoboda, P.Švec, J.Dolinsek, J.Janovec: Mater. Charact.59 (2008) 1594. DOI:10.1016/j.matchar.2008.02.00510.1016/j.matchar.2008.02.005Search in Google Scholar
[9] M.Yurechko, B.Grushko, T.Y.Velikanova, K.Urban: J. Alloys Comp.337 (2002) 172.Search in Google Scholar
[10] B.Przepiorzynski, B.Grushko, M.Surowiec: Intermetallics14 (2006) 498. DOI:10.1016/j.intermet.2005.08.01110.1016/j.intermet.2005.08.011Search in Google Scholar
© 2009, Carl Hanser Verlag, München
Articles in the same Issue
- Contents
- Contents
- Editorial
- 11th ISPMA in Prague
- Feature
- Physical aspects of plastic deformation in Mg–Al alloys with Sr and Ca
- Review
- Fe–Al materials for structural applications at high temperatures: Current research at MPIE
- Basic
- Very high cycle fatigue behaviour of as-extruded AZ31, AZ80, and ZK60 magnesium alloys
- Phase composition and morphology development in WE-type alloys modified by high Zn content
- Microstructural investigation of the failure mechanisms after creep exposure of Mg–Y–Nd–Zn–Mn alloy
- Theoretical investigation of phase equilibria by the continuous displacement cluster variation method
- Alloying behaviour of binary transition metal systems
- Surface composition of a Ag-5.1Cu (mass%) alloy
- Temperature and strain rate dependent flow criterion for bcc transition metals based on atomistic analysis of dislocation glide
- Strain-hardening behaviour of AZ31 magnesium alloys
- Bauschinger effect in thin metal films simulated by the continuum dislocation-based model
- Core structure of screw dislocations in hcp Ti: an ab initio DFT study
- Long-range internal stresses in monotonically and cyclically deformed metallic single crystals
- Energetic formulation of nonlocal crystal plasticity
- Austenite–martensite interfaces in strained foils of CuAlNi alloy
- Mechanical anisotropy and ideal strength in a multifunctional Ti–Nb–Ta–Zr–O alloy (Gum Metal)
- Low-cycle fatigue properties of TiAl alloy with high Nb content
- Mechanism and kinetics of the intermediary phase formation in Ti–Al and Ti–Al–Si systems during reactive sintering
- Influence of the dynamic crystallization conditions on the martensitic transformation in the Ti40.7Hf9.5Ni39.8Cu10 shape memory alloy
- Isostructural phase transition in hexagonal Ce1–xYxPdAl compounds
- Structural and phase transformations in Zr and Zr–Nb alloys under loading by spherical converging stress waves
- Influence of titanium volume fraction on the mechanical properties of Mg–Ti composites
- Applied
- Effects of prior homogenization treatments on microstructure development and mechanical properties of the extruded wrought magnesium alloy ZK60
- Annealing effects after various thermo-mechanical treatments on microstructure and mechanical properties of the wrought magnesium alloy AZ80
- Vacancy–solute interaction in magnesium alloy WE54 during artificial ageing: a positron annihilation spectroscopy study
- FeAl-based alloys cast in an ultrasound field
- High-temperature mechanical properties of Fe-40 at.% Al based intermetallic alloys with C or Ti addition
- The influence of dispersoids on the recrystallization of aluminium alloys
- High-rate plastic deformation of a copper single crystal under loading by spherical converging shock waves
- Hardening and softening in an Mg–Al–Ca matrix alloy reinforced with short graphite fibres
- Deformation behaviour of microcrystalline magnesium reinforced by alumina nano- and microparticles
- Thresholds in creep of magnesium alloy AX41 composites reinforced with short fibers
- Recovery processes in magnesium alloy AX41 and AX41-12 vol.% C-fibre composite studied by dilatometry
- Directional crystallisation of Ti–Al–Si in-situ composites
- Microstructure and mechanical properties of the AA6082 aluminium alloy with small additions of Sc and Zr
- Microstructure of a ternary Al–Pd–Rh alloy
- Effect of annealing on microstructure and properties of twin-roll-cast Al–Mn alloys with different copper content
- Quantitative characterization of the orientation spread within individual grains in copper after tensile deformation
- Effect of crystallization on the deformation behavior of a Zr-based bulk metallic glass
- Changes in structure and properties of carbide-steel cermets resulted from a heat treatment
- Comparative study of the high-temperature behaviour of Mg–Al and Mg–Zn wrought alloys
- Notification
- DGM News
Articles in the same Issue
- Contents
- Contents
- Editorial
- 11th ISPMA in Prague
- Feature
- Physical aspects of plastic deformation in Mg–Al alloys with Sr and Ca
- Review
- Fe–Al materials for structural applications at high temperatures: Current research at MPIE
- Basic
- Very high cycle fatigue behaviour of as-extruded AZ31, AZ80, and ZK60 magnesium alloys
- Phase composition and morphology development in WE-type alloys modified by high Zn content
- Microstructural investigation of the failure mechanisms after creep exposure of Mg–Y–Nd–Zn–Mn alloy
- Theoretical investigation of phase equilibria by the continuous displacement cluster variation method
- Alloying behaviour of binary transition metal systems
- Surface composition of a Ag-5.1Cu (mass%) alloy
- Temperature and strain rate dependent flow criterion for bcc transition metals based on atomistic analysis of dislocation glide
- Strain-hardening behaviour of AZ31 magnesium alloys
- Bauschinger effect in thin metal films simulated by the continuum dislocation-based model
- Core structure of screw dislocations in hcp Ti: an ab initio DFT study
- Long-range internal stresses in monotonically and cyclically deformed metallic single crystals
- Energetic formulation of nonlocal crystal plasticity
- Austenite–martensite interfaces in strained foils of CuAlNi alloy
- Mechanical anisotropy and ideal strength in a multifunctional Ti–Nb–Ta–Zr–O alloy (Gum Metal)
- Low-cycle fatigue properties of TiAl alloy with high Nb content
- Mechanism and kinetics of the intermediary phase formation in Ti–Al and Ti–Al–Si systems during reactive sintering
- Influence of the dynamic crystallization conditions on the martensitic transformation in the Ti40.7Hf9.5Ni39.8Cu10 shape memory alloy
- Isostructural phase transition in hexagonal Ce1–xYxPdAl compounds
- Structural and phase transformations in Zr and Zr–Nb alloys under loading by spherical converging stress waves
- Influence of titanium volume fraction on the mechanical properties of Mg–Ti composites
- Applied
- Effects of prior homogenization treatments on microstructure development and mechanical properties of the extruded wrought magnesium alloy ZK60
- Annealing effects after various thermo-mechanical treatments on microstructure and mechanical properties of the wrought magnesium alloy AZ80
- Vacancy–solute interaction in magnesium alloy WE54 during artificial ageing: a positron annihilation spectroscopy study
- FeAl-based alloys cast in an ultrasound field
- High-temperature mechanical properties of Fe-40 at.% Al based intermetallic alloys with C or Ti addition
- The influence of dispersoids on the recrystallization of aluminium alloys
- High-rate plastic deformation of a copper single crystal under loading by spherical converging shock waves
- Hardening and softening in an Mg–Al–Ca matrix alloy reinforced with short graphite fibres
- Deformation behaviour of microcrystalline magnesium reinforced by alumina nano- and microparticles
- Thresholds in creep of magnesium alloy AX41 composites reinforced with short fibers
- Recovery processes in magnesium alloy AX41 and AX41-12 vol.% C-fibre composite studied by dilatometry
- Directional crystallisation of Ti–Al–Si in-situ composites
- Microstructure and mechanical properties of the AA6082 aluminium alloy with small additions of Sc and Zr
- Microstructure of a ternary Al–Pd–Rh alloy
- Effect of annealing on microstructure and properties of twin-roll-cast Al–Mn alloys with different copper content
- Quantitative characterization of the orientation spread within individual grains in copper after tensile deformation
- Effect of crystallization on the deformation behavior of a Zr-based bulk metallic glass
- Changes in structure and properties of carbide-steel cermets resulted from a heat treatment
- Comparative study of the high-temperature behaviour of Mg–Al and Mg–Zn wrought alloys
- Notification
- DGM News