Effect of CNT volume fraction on wear properties of hybrid CNT+SiCsf/AS52 Mg matrix composites
The effect of the carbon nanotube (CNT) volume fraction on the wear properties of hybrid Mg composites was investigated. The hybrid x vol% CNT + 15 vol% SiCsf-reinforced Mg–5Al–2Si alloy (AS52) matrix composites (x=0, 5 and 10 vol%) were fabricated in two steps involving preform fabrication and sque...
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Veröffentlicht in: | Metals and materials international 2016, 22(4), , pp.714-722 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The effect of the carbon nanotube (CNT) volume fraction on the wear properties of hybrid Mg composites was investigated. The hybrid x vol% CNT + 15 vol% SiCsf-reinforced Mg–5Al–2Si alloy (AS52) matrix composites (x=0, 5 and 10 vol%) were fabricated in two steps involving preform fabrication and squeeze infiltration. The wear rate of the hybrid CNT+SiC
sf
/AS52 Mg metal matrix composites (MMCs) was evaluated using ballon-disk wear testing, and the roughness was measured using confocal laser 3D microscopy. Additionally, the worn surfaces were examined using high-resolution transmission electron microscopy. The adhesive wear and worn surface roughness of the hybrid CNT+SiC
sf
/AS52 Mg MMCs were reduced with increasing CNT addition. The CNTs hindered pull-out or cracking of the SiC
sf
s and matrix deformation. The wear resistance of the hybrid CNT+SiC
sf
/AS52 Mg MMCs was improved by the CNT additions, causing self-lubricant and strengthening effects compared with the single SiC
sf
/AS52 Mg MMCs. |
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ISSN: | 1598-9623 2005-4149 |
DOI: | 10.1007/s12540-016-6100-z |