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Unoxidized graphene/alumina nanocomposite: fracture- and wear-resistance effects of graphene on alumina matrix.
Kim, Hyo Jin; Lee, Sung-Min; Oh, Yoon-Suk; Yang, Young-Hwan; Lim, Young Soo; Yoon, Dae Ho; Lee, Changgu; Kim, Jong-Young; Ruoff, Rodney S.
Afiliação
  • Kim HJ; 1] Icheon Branch, Korea Institute of Ceramic Engineering and Technology, Icheon, Republic of Korea [2] School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea.
  • Lee SM; Icheon Branch, Korea Institute of Ceramic Engineering and Technology, Icheon, Republic of Korea.
  • Oh YS; Icheon Branch, Korea Institute of Ceramic Engineering and Technology, Icheon, Republic of Korea.
  • Yang YH; Icheon Branch, Korea Institute of Ceramic Engineering and Technology, Icheon, Republic of Korea.
  • Lim YS; Energy and Environmental Division, Korea Institute of Ceramic Engineering and Technology, Seoul, Republic of Korea.
  • Yoon DH; School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Republic of Korea.
  • Lee C; Department of Mechanical Engineering and SKKU Advanced Institute of Nanotechnology, Sungkyunkwan Univeristy, Suwon, Republic of Korea.
  • Kim JY; Icheon Branch, Korea Institute of Ceramic Engineering and Technology, Icheon, Republic of Korea.
  • Ruoff RS; Department of Mechanical Engineering and the Materials Science and Engineering Program, The University of Texas, Austin, Texas, USA.
Sci Rep ; 4: 5176, 2014 Jun 05.
Article em En | MEDLINE | ID: mdl-24898792
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 (KIC) and flexural strength (σf) of the composites by ~75% (5.60 MPa·m(1/2)) and ~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.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sci Rep Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Sci Rep Ano de publicação: 2014 Tipo de documento: Article