The initial stage of liquid phase sintering for an Al-14Si-2.5Cu-0.5Mg (wt%) P/M alloy
Creators
- 1. CEIT and Tecnun (University of Navarra), Paseo de Manuel Lardizabal 15, 20018 San Sebastian (Spain)
Description
The present paper focuses on the initial stage of the liquid phase sintering (LPS) of a commercially available P/M Al-Si alloy, with nominal composition Al-14Si-2.5Cu-0.5Mg (in wt%). The microstructural examination of the as-received powder showed that it is constituted by pure Al particles and master alloy particles with composition Al-28Si-5Cu-1Mg (in wt%). Its compressibility is lower than for the conventional elemental P/M aluminium premixes, but it is still better than for prealloyed Al powders and other P/M powders. Thermogravimetry experiments showed that the elimination of the organic lubricant takes place between 275 and 490 deg. C during heating to the sintering temperature. The phase transformations leading to the formation of the liquid phase were studied by differential scanning calorimetry (DSC). The dimensional changes associated with the generation of the liquid were measured by dilatometry. Samples quenched into water from different temperatures (between 450 and 575 deg. C) and times (between 0 and 30 min) were studied to reveal the microstructural evolution of the alloy. The first liquid is formed inside the master alloy particles at around 505 deg. C. This liquid spreads across the compact, enhancing the chemical homogenization of the material. The alloying elements diffuse from the liquid inside the originally pure Al particles, reducing their melting temperature. This alloying process is almost concluded at around 535 deg. C. When the temperature is increased the liquid starts to be formed also in the originally pure Al particles. The melting of the FCC Al-rich phase finishes around 575-590 deg. C. The full melting of the alloy occurs at about 635-645 deg. C. After analyzing the different possible causes, it is concluded that the main swelling mechanism is the volume change associated with the melting of a fraction of the material when the temperature is increased. The phases detected by X-ray diffraction (XRD) in the as-received powder and in the sintered compact are FCC Al-rich solid solution, Si, θ-phase (CuAl2), and Q-phase (Cu2Mg8Si6Al5).
Availability note (English)
Available from http://dx.doi.org/10.1016/j.msea.2010.02.078Additional details
Identifiers
- DOI
- 10.1016/j.msea.2010.02.078;
- PII
- S0921-5093(10)00275-3;
Publishing Information
- Journal Title
- Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing
- Journal Volume
- 527
- Journal Issue
- 16-17
- Journal Page Range
- p. 3949-3966
- ISSN
- 0921-5093
- CODEN
- MSAPE3
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 44010149
- Subject category
- S36: MATERIALS SCIENCE;
- Descriptors DEI
- ALUMINIUM ALLOYS; CALORIMETRY; COPPER ALLOYS; DIFFERENTIAL THERMAL ANALYSIS; DILATOMETRY; ELECTRON MICROSCOPY; FCC LATTICES; LIQUIDS; MELTING; MELTING POINTS; MICROSTRUCTURE; PARTICLES; POWDER METALLURGY; POWDERS; SILICON ALLOYS; SINTERING; SOLID SOLUTIONS; THERMAL GRAVIMETRIC ANALYSIS; X-RAY DIFFRACTION
- Descriptors DEC
- ALLOYS; CHEMICAL ANALYSIS; COHERENT SCATTERING; CRYSTAL LATTICES; CRYSTAL STRUCTURE; CUBIC LATTICES; DIFFRACTION; DISPERSIONS; FABRICATION; FLUIDS; GRAVIMETRIC ANALYSIS; HOMOGENEOUS MIXTURES; METALLURGY; MICROSCOPY; MIXTURES; PHASE TRANSFORMATIONS; PHYSICAL PROPERTIES; QUANTITATIVE CHEMICAL ANALYSIS; SCATTERING; SOLUTIONS; THERMAL ANALYSIS; THERMODYNAMIC PROPERTIES; TRANSITION ELEMENT ALLOYS; TRANSITION TEMPERATURE
Optional Information
- Copyright
- Copyright (c) 2010 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.