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Fracture mechanics

Author: Views:30Time:2018-11-07
  1. Chow, C.L. & Lu, T.J., 'On evolution laws of anisotropic damage', Eng. Frac. Mech.34, 679-701, 1989.

  2. Lu, T.J., Xia, Z.C. & Hutchinson, J.W., 'Delamination of beams under transverse shear and bending', Mater. Sci. Eng. A188, 102-113, 1994.

  3. Lu, T.J., 'Crack branching in all-oxide ceramic composites', J. Amer. Ceram. Soc.79, 266-274, 1996.

  4. Chen, C., Lu, T.J. & Fleck, N.A., “The mode I crack growth resistance of metallic foams”, J. Mech. Phys. Solids49, 231-259, 2001.

  5. Wang, F., Huang, P. & Lu, T.J., “Surface-effect territory in small volume creep deformation”, J. Mater. Res.24(11), 3277-3285, 2010.

  6. Huang, P., Wang, F., Xu, M., Xu, K.W. & Lu, T.J., “The dependence of strain rate sensitivity upon deformed-microstructures in nanocrystalline Cu”, Acta Mater. 58(15), 5196-5205, 2010.

  7. Xiong, Q.L., Tian, X.G. & Lu, T.J., “Atomistic modeling of electron relaxation effect on femtosecond laser-induced ablation and spallation of gold films”, J. Appl. Phys.112, 024313, 2012, doi: 10.1063/1.4739256.

  8. Zhou Q., Zhao J., Xie J.Y., Wang F., Huang P., Lu, T.J. & Xu, K.W., “Grain size dependent strain rate sensitivity and activation volume in nanocrystalline body-centered cubic metal thin filmsMater. Sci. Eng. A 608, 184-189, 2014.

  9. Zhou, Q., Wang, F., Huang, P., Xu, K.W. & Lu, T.J., “The mechanical behavior of nanoscale metallic multilayers: a survey (invited contribution for 60th anniversary), Acta Mech. Sinica 31(3), 319-337, 2015. (Top 10 most read articles published in 2015.)

  10. Zhou, Q., Li, J.J., Wang, F., Huang, P., Xu, K.W. & Lu, T.J., “Strain rate sensitivity of Cu/Ta multilayered films: Comparison between grain boundary and heterophase interface”, Scripta Mater. 111, 123-126, 2016.

  11. Cui, Y., Huang, P., Torrents Abad, O., Wang, F., Lu, T.J., Xu, K.W. & Wang J,“Plastic deformation modes of CuZr/Cu multilayers”, Scientific Reports 6, 23306, 2016.

  12. Gu, C., Wang, F., Huang, P., Lu, T.J. & Xu, K.W., “Structure-dependent size effects in CuTa/Cu nanolaminates”, Mater. Sci. Eng. A658, 381-388, 2016.

  13. Zhou, Q., Huang, P., Liu, M.B., Wang, F., Xu, K.W. & Lu, T.J., “Grain and interface boundaries governed strengthening mechanisms in metallic multilayers”, J. Alloys Compounds 698, 906-912, 2017.

  14. Chen, Z.Q., Huang, L., Huang, P., Xu, K.W., Wang, F. & Lu, T.J., “The effects of thin coatings on the mechanical properties and resistance to annealing-induced embrittlement of bulk metallic glass”, Mater. Sci. Eng. A692, 67-74, 2017.

  15. Gu, C., Wang, F., Huang, P., Xu, K.W. & Lu, T.J., “Size-dependent hardness and tensile plasticity of Ta-Zr61Cu17.5Ni10Al17.5Si4 nanolaminates”, J. Alloys Compounds 707, 321-326, 2017.

  16. Liu, M., Chen, X.Q., Li, X.G. & Lu, T.J., “Corrosion behavior of low-Cr steel rebars in alkaline solutions with different pH in the presence of chlorides”,Journal of Electroanalytical Chemistry 803, 40-50, 2017.

  17. Li, Y., Zhou, Q., Huang, P., Xu, K.W., Wang, F. & Lu, T.J., “On the role of weak interface in crack blunting process in nanoscale layered composites”, Appl. Surface Sci. 433, 957-962, 2018.

  18. Zhou, J., Huang, P., Xu, K.W., Wang, F. & Lu, T.J., “Unusual annealing effects on hardness and strain rate sensitivity of nanocrystalline Nb”, ThinSolid Films 645, 146-153, 2018.

  19. Zhao, J., Huang, P., Xu, K.W., Wang, F. & Lu, T.J., “Indentation size and loading strain rate dependent creep deformation of nanocrystalline Mo”, Thin Solid Films 653, 353-370, 2018.

  20. Ma, C.F., Huang, P., Xu, K.W., Wang, F. & Lu, T.J., “Free volume gradient effect on shear banding behavior in CuZr/CuZr multilayers”, Thin Solid Films 66, 48-53, 2018.

  21. Gu, C., Wang, F., Huang, P., Xu, K.W. & Lu, T.J., “Intrinsic size effect of CuTa/Cu nanolaminates with unequal modulation ratios”, Scripta Mater., 2017,DOI: 10.1016/j.scriptamat.2016.11.026.


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