<div><p>Present research work analyses the effect of heating modes on the densification, microstructure and mechanical properties of aluminum alloys [65Al-20Cu-15Mn] fabricated through powder metallurgy route. Sintering of compacts using conventional, microwave and spark plasma sintering methods has been carried out at 525°C. From the results, it has been observed that the spark plasma sintering method produced the samples with better mechanical properties than the other two methods, followed by microwave and conventionally sintered counterparts. Microstructural analysis using optical microscopy revealed that spark plasma sintered sample has finest microstructure due to faster rate of heating than microwave and conventional methods.</p></di...
The sintering characteristics and the tensile properties of the 7000 series Al-Zn-Mg-Cu alloys, fabr...
The Spark Plasma Sintering (SPS) is a promising sintering technology to produce dense bulk pre-compa...
Mechanical properties of aluminium alloys highly depend on their phase composition and microstructur...
In this research, we intended to examine the effect of heating mode on the densification, microstruc...
Sintered composites have revolutionized as a thermal treatment to consolidate a wide range of engine...
In this paper, the aluminum metal matrix composite reinforced with copper particulates (3, 6 and 9 v...
In this paper, the aluminum metal matrix composite reinforced with copper particulates (3, 6 and 9 v...
Aluminium–copper composite materials were successfully fabricated using spark plasma sintering...
Aluminum metal matrix composites (AMMCs) are light-weight materials having wide-spread use in the au...
The present work focuses on the effect of copper (Cu) reinforcement on structural and mechanical pro...
AbstractAluminum Metal Matrix Composites (AMC) comprising of Aluminum powder and Cenospheres were fa...
The microstructure of an aluminum alloy containing 53 wt% Zn, 2.1 wt% Mg and 1.3 wt% Cu as main allo...
We have successfully fabricated high-density pure aluminum (Al) bulk by means of a spark-plasma-sint...
Reactive processing of metals is interesting for materials design and achieving new sets of properti...
Aluminium and magnesium matrix composites are attractive lightweight materials with strength surpass...
The sintering characteristics and the tensile properties of the 7000 series Al-Zn-Mg-Cu alloys, fabr...
The Spark Plasma Sintering (SPS) is a promising sintering technology to produce dense bulk pre-compa...
Mechanical properties of aluminium alloys highly depend on their phase composition and microstructur...
In this research, we intended to examine the effect of heating mode on the densification, microstruc...
Sintered composites have revolutionized as a thermal treatment to consolidate a wide range of engine...
In this paper, the aluminum metal matrix composite reinforced with copper particulates (3, 6 and 9 v...
In this paper, the aluminum metal matrix composite reinforced with copper particulates (3, 6 and 9 v...
Aluminium–copper composite materials were successfully fabricated using spark plasma sintering...
Aluminum metal matrix composites (AMMCs) are light-weight materials having wide-spread use in the au...
The present work focuses on the effect of copper (Cu) reinforcement on structural and mechanical pro...
AbstractAluminum Metal Matrix Composites (AMC) comprising of Aluminum powder and Cenospheres were fa...
The microstructure of an aluminum alloy containing 53 wt% Zn, 2.1 wt% Mg and 1.3 wt% Cu as main allo...
We have successfully fabricated high-density pure aluminum (Al) bulk by means of a spark-plasma-sint...
Reactive processing of metals is interesting for materials design and achieving new sets of properti...
Aluminium and magnesium matrix composites are attractive lightweight materials with strength surpass...
The sintering characteristics and the tensile properties of the 7000 series Al-Zn-Mg-Cu alloys, fabr...
The Spark Plasma Sintering (SPS) is a promising sintering technology to produce dense bulk pre-compa...
Mechanical properties of aluminium alloys highly depend on their phase composition and microstructur...