期刊文献+

Functionally Graded Dual-nanoparticulate-reinforced Aluminium Matrix Bulk Materials Fabricated by Spark Plasma Sintering 被引量:2

Functionally Graded Dual-nanoparticulate-reinforced Aluminium Matrix Bulk Materials Fabricated by Spark Plasma Sintering
原文传递
导出
摘要 Functionally graded(FG) carbon nanotubes(CNT) and nano-silicon carbide(nSiC) reinforced aluminium(Al)matrix composites have been successfully fabricated using high-energy ball milling followed by solid-state spark plasma sintering processes.The CNTs were well-dispersed in the Al particles using the nSiC as a solid mixing agent.Two different types of multi-walled CNTs were used to add different amounts of CNTs in the same volume.The ball milled Al—CNT—nSiC and Al—CNT powder mixtures were fully densified and demonstrated good adhesion with no serious microcracks and pores within an FG multilayer composite.Each layer contained different amounts of the CNTs,and the nSiC additions showed different microstructures and hardness.It is possible to control the characteristics of the FG multilayer composite through the efficient design of an Al—CNT—nSiC gradient layer.This concept offers a feasible approach for fabricating the dualnanoparticulate-reinforced Al matrix nanocomposites and can be applied to other scenarios such as polymer and ceramic systems. Functionally graded(FG) carbon nanotubes(CNT) and nano-silicon carbide(nSiC) reinforced aluminium(Al)matrix composites have been successfully fabricated using high-energy ball milling followed by solid-state spark plasma sintering processes.The CNTs were well-dispersed in the Al particles using the nSiC as a solid mixing agent.Two different types of multi-walled CNTs were used to add different amounts of CNTs in the same volume.The ball milled Al—CNT—nSiC and Al—CNT powder mixtures were fully densified and demonstrated good adhesion with no serious microcracks and pores within an FG multilayer composite.Each layer contained different amounts of the CNTs,and the nSiC additions showed different microstructures and hardness.It is possible to control the characteristics of the FG multilayer composite through the efficient design of an Al—CNT—nSiC gradient layer.This concept offers a feasible approach for fabricating the dualnanoparticulate-reinforced Al matrix nanocomposites and can be applied to other scenarios such as polymer and ceramic systems.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第8期736-742,共7页 材料科学技术(英文版)
关键词 Carbon nanotubes(CNT) Silicon carbide High-energy ball milling Spark plasma sintering(SPS) Functionally graded materials(FGM) Carbon nanotubes(CNT) Silicon carbide High-energy ball milling Spark plasma sintering(SPS) Functionally graded materials(FGM)
  • 相关文献

参考文献28

  • 1M. Koizumi, Compos. Part B: Eng. 28 (1997) 1-4.
  • 2A. Kawasaki, R. Watanabe, Eng. Frac. Mech. 69 (2002) 1713-1728.
  • 3H. Kwon, C.R. Bradbury, M. Leparoux, Adv. Eng. Mater. 13 (2011) 325-329.
  • 4D. Pinheiro, M.T. Vieira, M.A. Djouadi, Surf. Coat. Technol. 203 (2009) 3197-3205.
  • 5A.G. Evans, J.W. Hutchinson, Surf. Coat. Technol. 201 (2007) 7905-7916.
  • 6U. Wiklund, J. Gunnars, S. Hogmark, Wear 232 (1999) 262-269.
  • 7S. Ijima, Nature 354 (1991) 56-58.
  • 8K.P. So, C. Biswas, S.C. Lim, K.H. An, Y.H. Lee, Synth. Met. 161 (2011) 208-212.
  • 9J. Tersoff, R.S. Ruoff, Phys. Rev. Lett. 73 (1994) 676-679.
  • 10A. Mathur, S. Wadhwa, M. Tweedie, K.S. Hazra, C. Dickinson, S.S. Roy, S.K. Mitra, D.S. Misra, J.A. McLaughlin, Physica E: Low-dimen. Syst. Nanostruc. 44 (2011) 29-36.

同被引文献11

引证文献2

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部