English

Nickel coated carbon nanotubes in aluminum matrix composites: A multiscale simulation study

Materials Science 2019-10-02 v1

Abstract

In this work we use density functional theory (DFT) calculations to benchmark empirical potentials for the interaction between nickel and sp2^2 bonded carbon nanoparticles. These potentials are then used in order to investigate how Ni decorated or coated carbon nanotubes (CNT) affect the mechanical properties of Al/CNT composites. In particular we look at the pull-out behaviour of pristine as well as Ni-decorated and Ni-coated CNT from an Al matrix. Our result shows that Ni coating may produce an extended interface (interphase) where a significant amount of energy is dissipated during CNT pull-out, leading to a high pull-out force. We also demonstrate that surface decorated CNT may act as efficient nano-crystallization agents and thus provide a novel strengthening mechanism not previously discussed in the literature. We discuss our results in view of promising approaches for engineering CNT-metal interfaces such as to achieve high strength metal-CNT composite.

Keywords

Cite

@article{arxiv.1907.05086,
  title  = {Nickel coated carbon nanotubes in aluminum matrix composites: A multiscale simulation study},
  author = {Samaneh Nasiri and Kai Wang and Mingjun Yang and Qianqian Li and Michael Zasier},
  journal= {arXiv preprint arXiv:1907.05086},
  year   = {2019}
}

Comments

17 pages, 9 figures, 3 tables