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Unoxidized Graphene/Alumina Nanocomposite: Fracture- and Wear-Resistance Effects of Graphene on Alumina Matrix

Author(s)
Kim, Hyo JinLee, Sung-MinOh, Yoon-SukYang, Young-HwanLim, Young SooYoon, Dae HoLee, ChangguKim, Jong-YoungRuoff, Rodney S.
Issued Date
2014-06
DOI
10.1038/srep05176
URI
https://scholarworks.unist.ac.kr/handle/201301/47484
Fulltext
https://www.nature.com/articles/srep05176
Citation
SCIENTIFIC REPORTS, v.4, pp.5176
Abstract
It is of critical importance to improve toughness, strength, and wear-resistance together for the development of advanced structural materials. Herein, we report on the synthesis of unoxidized graphene/alumina composite materials having enhanced toughness, strength, and wear-resistance by a low-cost and environmentally benign pressure-less-sintering process. The wear resistance of the composites was increased by one order of magnitude even under high normal load condition (25 N) as a result of a tribological effect of graphene along with enhanced fracture toughness (K-IC) and flexural strength (sigma(f)) of the composites by similar to 75% (5.60 MPa.m(1/2)) and similar to 25% (430 MPa), respectively, compared with those of pure Al2O3. Furthermore, we found that only a small fraction of ultra-thin graphene (0.25-0.5 vol%, platelet thickness of 2-5 nm) was enough to reinforce the composite. In contrast to unoxidized graphene, graphene oxide (G-O) and reduced graphene oxide (rG-O) showed little or less enhancement of fracture toughness due to the degraded mechanical strength of rG-O and the structural defects of the G-O composites.
Publisher
NATURE PUBLISHING GROUP
ISSN
2045-2322
Keyword
WALL CARBON NANOTUBESMECHANICAL-PROPERTIESLAYER GRAPHENEELASTIC PROPERTIESCOMPOSITESBEHAVIORGRAPHITEMICROSTRUCTURETOUGHNESSSTRENGTH

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