An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using an ultrasound (US) assisted permanent-mould indirect-chill casting process. Ultrasonically generated cavitation and acoustic streaming promoted de-agglomeration of particle clusters and distributed the particles throughout the melt. Significant grain refinement due to nucleation on the AlN nanoparticles was accompanied by an exceptional improvement in properties: yield strength increased by 103%, ultimate tensile strength by 115%, and ductility by 140%. Although good grain refinement was observed, the large nucleation undercooling of 14 K limits further refinement because nucleation is prevented by the formation of a nucleation-free zone aro...
Fast synchrotron radiography was used to investigate ultrasonic cavitation bubble formation and thei...
This study evaluated the effect of UltraSonic Treatment (UST) on a range of Al–Mg alloys. Prev...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
In the current work, a novel magnesium alloy Elektron21 reinforced by ceramic AlN nanoparticles were...
There has been growing interest in developing new materials with higher strength-to-weight ratios. T...
Magnesium-based metal matrix nanocomposites (MMNCs) are an important topic in the development of lig...
Metal matrix nanocomposites are attracting attention because of their great potential for improved m...
Effects of discontinuous ultrasonic treatment on the microstructure, nanoparticle distribution, and ...
Strong evidence is showing that microstructure and mechanical properties of a casting component can ...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Recent studies have showed that the microstructure and mechanical properties of A356 alloy can be si...
The paper present a study on alloys of the Al-Mg system (5–6 wt%) strengthened with nonmetallic nano...
Magnesium alloys have found increased application in the automotive industry because of their lower ...
Fast synchrotron radiography was used to investigate ultrasonic cavitation bubble formation and thei...
This study evaluated the effect of UltraSonic Treatment (UST) on a range of Al–Mg alloys. Prev...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
An AM60 magnesium alloy nanocomposite reinforced with 1 wt % of AlN nanoparticles was prepared using...
In the current work, a novel magnesium alloy Elektron21 reinforced by ceramic AlN nanoparticles were...
There has been growing interest in developing new materials with higher strength-to-weight ratios. T...
Magnesium-based metal matrix nanocomposites (MMNCs) are an important topic in the development of lig...
Metal matrix nanocomposites are attracting attention because of their great potential for improved m...
Effects of discontinuous ultrasonic treatment on the microstructure, nanoparticle distribution, and ...
Strong evidence is showing that microstructure and mechanical properties of a casting component can ...
Magnesium metal matrix nanocomposites (Mg-MMNCs) have recently gained attention in the aerospace and...
Recent studies have showed that the microstructure and mechanical properties of A356 alloy can be si...
The paper present a study on alloys of the Al-Mg system (5–6 wt%) strengthened with nonmetallic nano...
Magnesium alloys have found increased application in the automotive industry because of their lower ...
Fast synchrotron radiography was used to investigate ultrasonic cavitation bubble formation and thei...
This study evaluated the effect of UltraSonic Treatment (UST) on a range of Al–Mg alloys. Prev...
Metal matrix nanocomposites (MMNCs) can significantly improve mechanical properties of light alloys ...