Effects of discontinuous ultrasonic treatment on the microstructure, nanoparticle distribution, and mechanical properties of cast Al413-SiCnp nanocomposites were studied. The results showed that discontinuous ultrasonic treatment was more effective in improving the mechanical properties of the cast nanocomposites than the equally timed continuous treatment. The yield and ultimate tensile strengths of Al413-2%SiCnp nanocomposites discontinuously treated for two 20 minute periods increased by about 126% and 100% compared to those of the monolithic sample, respectively. These improvements were about 107% and 94% for the nanocomposites continuously treated for a single 40 minute period. The improvement in the mechanical properties was associat...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...
Copyright © 2014 The Minerals, Metals & Materials Society. All rights reserved.Aluminum-matrix nano-...
In this work, A357/0.5 wt.% SiC nanocomposites were fabricated with a combination of ultrasonic proc...
In the modern era, the need for new products with novel processing and multipurpose materials is inc...
The ultrasonic vibration (UV) treatment has been successfully applied to improve the particles distr...
Recent studies have showed that the microstructure and mechanical properties of A356 alloy can be si...
The wear properties of nanocomposites are evaluated in the present work. Owing to its good castabili...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
Strong evidence is showing that microstructure and mechanical properties of a casting component can ...
A novel approach to produce Al-2 vol.% graphite nanocomposites using micron-sized graphite particles...
To reduce the cost of nanocomposites and improve the dispersion of nanoparticles, Al2O3np/SiCnp/Al h...
In this study, we have investigated the effect of ultrasonic stirring in aluminium matrix composite ...
In this study, the effect of ultrasonic treatment (UST) parameters such as amplitude, sonication tim...
Aluminum alloy A356 is of significance for numerous applications. The mechanical properties of A356 ...
Metal matrix nanocomposites are a newly developed materials with promising applications in a wide va...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...
Copyright © 2014 The Minerals, Metals & Materials Society. All rights reserved.Aluminum-matrix nano-...
In this work, A357/0.5 wt.% SiC nanocomposites were fabricated with a combination of ultrasonic proc...
In the modern era, the need for new products with novel processing and multipurpose materials is inc...
The ultrasonic vibration (UV) treatment has been successfully applied to improve the particles distr...
Recent studies have showed that the microstructure and mechanical properties of A356 alloy can be si...
The wear properties of nanocomposites are evaluated in the present work. Owing to its good castabili...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
Strong evidence is showing that microstructure and mechanical properties of a casting component can ...
A novel approach to produce Al-2 vol.% graphite nanocomposites using micron-sized graphite particles...
To reduce the cost of nanocomposites and improve the dispersion of nanoparticles, Al2O3np/SiCnp/Al h...
In this study, we have investigated the effect of ultrasonic stirring in aluminium matrix composite ...
In this study, the effect of ultrasonic treatment (UST) parameters such as amplitude, sonication tim...
Aluminum alloy A356 is of significance for numerous applications. The mechanical properties of A356 ...
Metal matrix nanocomposites are a newly developed materials with promising applications in a wide va...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...
Copyright © 2014 The Minerals, Metals & Materials Society. All rights reserved.Aluminum-matrix nano-...
In this work, A357/0.5 wt.% SiC nanocomposites were fabricated with a combination of ultrasonic proc...