The thermal expansion behavior of aluminum matrix composites reinforced with hybrid (nanometer and micrometer) Al2O3 particles was measured between 100 and 600°C and compared to theoretical models. The results revealed that the nanoparticle concentration had significant effect on the thermal expansion behavior of the composites. For the composites with lower nanoparticle concentration, their coefficient of thermal expansion (CTE) is determined by a stress relaxation process. While for the composites with higher nanoparticle concentration, their CTE is determined by a percolation process. © 2013
To explore potential applications of nanocomposites for microelectronic packaging, the thermal prope...
Crack growth resistance behaviour and thermo-physical properties of Al2O3 particle-reinforced AlN/Al...
In the present investigation, Al–Al2O3 nano- and microcomposites with different volume fractions of ...
The thermal expansion behavior of aluminum matrix composites reinforced with hybrid (nanometer and m...
The thermal expansion behavior of aluminum matrix composites reinforced with hybrid (nanometer and m...
The thermal expansion behavior of Duralcan particle reinforced composite materials was investigated....
Pore-free composites combining alumina particles within a matrix of pure aluminium are produced by p...
An experimental and theoretical investigation of the strength properties of aluminum alloys strength...
The thermal expansion behaviour of high performance poly(ether-ether-ketone) (PEEK) composites reinf...
The focus of this work is to highlight the relative response of Al-based micro- and nanocomposites i...
Al2O3 nanoparticle-reinforced Al-12Si matrix composites were successfully fabricated by hot pressing...
The coefficient of thermal expansion (CTE) is one of the most important physical properties of metal...
In this study, Aluminum matrix composite reinforced with 5, 10 and 15 vol% Al2O3 particles were fabr...
The development of novel methods for industrial production of metal-matrix composites with improved ...
This paper describes study of coefficient of thermal expansion (CTE) of as-cast and heat-treated alu...
To explore potential applications of nanocomposites for microelectronic packaging, the thermal prope...
Crack growth resistance behaviour and thermo-physical properties of Al2O3 particle-reinforced AlN/Al...
In the present investigation, Al–Al2O3 nano- and microcomposites with different volume fractions of ...
The thermal expansion behavior of aluminum matrix composites reinforced with hybrid (nanometer and m...
The thermal expansion behavior of aluminum matrix composites reinforced with hybrid (nanometer and m...
The thermal expansion behavior of Duralcan particle reinforced composite materials was investigated....
Pore-free composites combining alumina particles within a matrix of pure aluminium are produced by p...
An experimental and theoretical investigation of the strength properties of aluminum alloys strength...
The thermal expansion behaviour of high performance poly(ether-ether-ketone) (PEEK) composites reinf...
The focus of this work is to highlight the relative response of Al-based micro- and nanocomposites i...
Al2O3 nanoparticle-reinforced Al-12Si matrix composites were successfully fabricated by hot pressing...
The coefficient of thermal expansion (CTE) is one of the most important physical properties of metal...
In this study, Aluminum matrix composite reinforced with 5, 10 and 15 vol% Al2O3 particles were fabr...
The development of novel methods for industrial production of metal-matrix composites with improved ...
This paper describes study of coefficient of thermal expansion (CTE) of as-cast and heat-treated alu...
To explore potential applications of nanocomposites for microelectronic packaging, the thermal prope...
Crack growth resistance behaviour and thermo-physical properties of Al2O3 particle-reinforced AlN/Al...
In the present investigation, Al–Al2O3 nano- and microcomposites with different volume fractions of ...