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Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys

Publication ,  Journal Article
Du, X; Du, W; Wang, Z; Liu, K; Li, S
Published in: Applied Surface Science
August 1, 2019

Defects in graphene nanoplatelets (GNPs) and their interface behavior to reinforce magnesium alloys was studied by using two types of GNPs, one with high integrity and the other with multiple defects, as reinforcements in ZK60 alloy. Herein, GNPs prepared by chemical exfoliation exhibited multiple defects, such as carbon atom vacancies, dangling carbon bonds, oxygen-containing functional groups and wrinkles. During the composite fabrication, Mg atoms restored the sp 2 structure of graphene and reacted with the oxygen-containing groups on graphene, leading to a strong interfacial bonding. Meanwhile, graphene defects scattering in nanoscale triggered nucleation of Mg nanograins, which connect the “hard” GNPs and “soft” Mg matrix for effective transfer of stress and strain. The defective GNPs (0.05 wt%) reinforced ZK60 alloy with large tensile yield strength enhancement (65%) and especially remarkable elongation improvement (44%). This work highlights the structural feature of GNPs to reach their full strengthening potential as reinforcements in metal matrix composites.

Duke Scholars

Published In

Applied Surface Science

DOI

ISSN

0169-4332

Publication Date

August 1, 2019

Volume

484

Start / End Page

414 / 423

Related Subject Headings

  • Applied Physics
 

Citation

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Du, X., Du, W., Wang, Z., Liu, K., & Li, S. (2019). Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys. Applied Surface Science, 484, 414–423. https://doi.org/10.1016/j.apsusc.2019.04.111
Du, X., W. Du, Z. Wang, K. Liu, and S. Li. “Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys.” Applied Surface Science 484 (August 1, 2019): 414–23. https://doi.org/10.1016/j.apsusc.2019.04.111.
Du X, Du W, Wang Z, Liu K, Li S. Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys. Applied Surface Science. 2019 Aug 1;484:414–23.
Du, X., et al. “Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys.” Applied Surface Science, vol. 484, Aug. 2019, pp. 414–23. Scopus, doi:10.1016/j.apsusc.2019.04.111.
Du X, Du W, Wang Z, Liu K, Li S. Defects in graphene nanoplatelets and their interface behavior to reinforce magnesium alloys. Applied Surface Science. 2019 Aug 1;484:414–423.
Journal cover image

Published In

Applied Surface Science

DOI

ISSN

0169-4332

Publication Date

August 1, 2019

Volume

484

Start / End Page

414 / 423

Related Subject Headings

  • Applied Physics