Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/18827
Title: Ultrasound assisted casting of an AM60 based metal matrix nanocomposite, its properties, and recyclability
Authors: Dieringa, H
Katsarou, L
Buzolin, R
Szakács, G
Horstmann, M
Wolff, M
Mendis, C
Vorozhtsov, S
StJohn, D
Keywords: nanoparticles;;metal matrix nanocomposite (MMNC);;AlN;;magnesium alloy AM60;;strengthening mechanisms
Issue Date: 22-Sep-2017
Publisher: MDPI
Citation: Metals, 2017, 7 (10)
Abstract: 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 around each grain. To assess the industrial applicability and recyclability of the nanocomposite material in various casting processes, tests were performed to determine the effect of remelting on the microstructure. With each remelting, a small percentage of effective AlN nanoparticles was lost, and some grain growth was observed. However, even after the third remelting, excellent strength and ductility was retained. According to strengthening models, enhanced yield strength is mainly attributed to Hall-Petch strengthening caused by the refined grain size. A small additional contribution to strengthening is attributed to Orowan strengthening.
URI: http://bura.brunel.ac.uk/handle/2438/18827
DOI: http://dx.doi.org/10.3390/met7100388
ISSN: http://dx.doi.org/10.3390/met7100388
Appears in Collections:Dept of Mechanical and Aerospace Engineering Research Papers

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