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Proceedings of

International Conference on Future Trends In Structural, Civil, Environmental and Mechanical Engineering FTSCEM 2013

"THE EFFECTS OF CONCENTRATION, SIZE, AND ORIENTATION ON THE HARDNESS OF NANOPARTICLES DOPED DIAMOND-LIKE CARBON FILM"

CHEHUNG WEI CHUN-HSIEN YU
DOI
10.15224/978-981-07-7021-1-65
Pages
111 - 115
Authors
2
ISBN
978-981-07-7021-1

Abstract: “The inclusion of nanoparticles in a material is a common strategy to improve mechanical properties such as Young’s modulus or hardness. In most cases, the degree of improvement depends on the distribution and size of nanoparticles as well as the process condition. In order to investigate the effects of nanoparticles on the mechanical properties of a nanoparticles doped film, a nanoindentation finite element analysis is carried out. In this study, different concentration, size, and shape (spherical, elliptical) of nanoparticles were doped in diamond-like carbon (DLC) film on a silicon substrate and the mechanical property (hardness) is calculated based on a finite element analysis. The results indicate that for a given concentration, DLC doped with larger but less in quantites spherical nanoparticles has higher hardness than that in smaller but more dense counterpart. Meanwhile, large concentration of nanoparticle leads to higher hardness due to more population of nanoparticles. The ori”

Keywords: nanoparticles, nanoindentation, finite element analysis, hardness

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