Search Results - "Mook, W.M."

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  1. 1

    Plastic instability mechanisms in bimetallic nanolayered composites by Zheng, S.J., Wang, J., Carpenter, J.S., Mook, W.M., Dickerson, P.O., Mara, N.A., Beyerlein, I.J.

    Published in Acta materialia (01-10-2014)
    “…Strain localization is a common deformation-induced instability in many metallic metals. How it happens is related to both microstructure and the way in which…”
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    Journal Article
  2. 2

    Scale effects for strength, ductility, and toughness in “brittle” materials by Gerberich, W.W., Michler, J., Mook, W.M., Ghisleni, R., Östlund, F., Stauffer, D.D., Ballarini, R.

    Published in Journal of materials research (01-03-2009)
    “…Decreasing scales effectively increase nearly all important mechanical properties of at least some “brittle” materials below 100 nm. With an emphasis on…”
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    Journal Article
  3. 3

    Effect of double ion implantation and irradiation by Ar and He ions on nano-indentation hardness of metallic alloys by Dayal, P., Bhattacharyya, D., Mook, W.M., Fu, E.G., Wang, Y.-Q., Carr, D.G., Anderoglu, O., Mara, N.A., Misra, A., Harrison, R.P., Edwards, L.

    Published in Journal of nuclear materials (01-07-2013)
    “…In this study, the authors have investigated the combined effect of a double layer of implantation on four different metallic alloys, ODS steel MA957,…”
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    Journal Article
  4. 4

    In situ electron backscatter diffraction (EBSD) during the compression of micropillars by Niederberger, C., Mook, W.M., Maeder, X., Michler, J.

    “…For the first time, in situ electron backscatter diffraction (EBSD) measurements during compression experiments by a modified nanoindenter on micron-sized…”
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    Journal Article
  5. 5

    Quantitative stress/strain mapping during micropillar compression by Maeder, X., Mook, W.M., Niederberger, C., Michler, J.

    Published in Philosophical magazine (Abingdon, England) (01-03-2011)
    “…Micropillar compression is increasingly used as a method to examine small length-scale mechanical properties since it minimises the strain gradients that are…”
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    Journal Article
  6. 6

    Superhard silicon nanospheres by Gerberich, W.W, Mook, W.M, Perrey, C.R, Carter, C.B, Baskes, M.I, Mukherjee, R, Gidwani, A, Heberlein, J, McMurry, P.H, Girshick, S.L

    “…Successful deposition and mechanical probing of nearly spherical, defect-free silicon nanospheres has been accomplished. The results show silicon at this…”
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    Journal Article
  7. 7

    Superhard nanocrystalline silicon carbide films by Liao, Feng, Girshick, S. L., Mook, W. M., Gerberich, W. W., Zachariah, M. R.

    Published in Applied physics letters (25-04-2005)
    “…Nanocrystalline silicon carbide films were deposited by thermal plasma chemical vapor deposition, with film growth rates on the order of 10 μ m ∕ min . Films…”
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    Journal Article
  8. 8

    Smaller is tougher by Beaber, A.R., Nowak, J.D., Ugurlu, O., Mook, W.M., Girshick, S.L., Ballarini, R., Gerberich, W.W.

    Published in Philosophical magazine (Abingdon, England) (01-03-2011)
    “…"Smaller is stronger" is now a tenet generally consistent with the predominance of evidence. An equally accepted tenet is that fracture toughness almost always…”
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    Journal Article
  9. 9

    Flow stresses and activation volumes for highly deformed nanoposts by Mook, W.M., Lund, M.S., Leighton, C., Gerberich, W.W.

    “…Recent interest in high-strength nanocrystalline structures has prompted a call for understanding scale effects in deformation mechanisms. One aspect,…”
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    Journal Article Conference Proceeding
  10. 10

    In situ scanning electron microscopy indentation studies on multilayer nitride films: Methodology and deformation mechanisms by Rzepiejewska-Malyska, K.A., Mook, W.M., Parlinska-Wojtan, M., Hejduk, J., Michler, J.

    Published in Journal of materials research (01-03-2009)
    “…Systematic studies of the deformation mechanisms of multilayer transition metal nitride coatings TiN/CrN, TiN/NbN, and NbN/CrN, and corresponding reference…”
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    Journal Article
  11. 11

    A boundary constraint energy balance criterion for small volume deformation by Gerberich, W.W., Cordill, M.J., Mook, W.M., Moody, N.R., Perrey, C.R., Carter, C.B., Mukherjee, R., Girshick, S.L.

    Published in Acta materialia (01-05-2005)
    “…A concept for the deformation resistance of small volumes under contact subjected to displacements in the 2–100 nm regime is proposed. In terms of an energy…”
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    Journal Article
  12. 12

    Length-scale-based hardening model for ultra-small volumes by Jungk, J.M., Mook, W.M., Cordill, M.J., Chambers, M.D., Gerberich, W.W., Bahr, D.F., Moody, N.R., Hoehn, J.W.

    Published in Journal of materials research (01-10-2004)
    “…Understanding the hardening response of small volumes is necessary to completely explain the mechanical properties of thin films and nanostructures. This…”
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    Journal Article