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Constitutive laws

Author: Views:15Time:2018-11-08
  1. Chen, C., Lu, T.J. & Fleck, N.A., '‘Effect of imperfections on the yielding of two-dimensional foams’, J. Mech. Phys. Solids47, 2235-2272, 1999.

  2. Chen, C. & Lu, T.J., 'A phenomenological framework of constitutive modelling for incompressible and compressible elasto-plastic solids', Int. J. Solids Struc.37, 7769-7786, 2000.

  3. Chen, Y.-H. & Lu, T.J., "Recent developments in invariant integrals", Appl. Mech. Review56(5), 515-552, 2003.

  4. Hu, G.K., Liu, X.N. & Lu, T.J., “A variational method for nonlinear micropolar composites”, Mech. Mater.37, 407-425, 2005.

  5. Zhao KJ, Chen C, Shen YP, Lu TJ. Molecular dynamics study of nano-void growth in face-centered cubic single crystal copper. Computational Materials Science 46, 749-754, 2009.

  6. Li, B.C., Zhao, G.P. & Lu, T.J., "A double degree freedom mass-spring-damper-foam collision model for low velocity impact," ASME J. Appl. Mech. 79(5), 051021, 2012.

  7. Liu, X.R., Tian, X.G., Lu, T.J., Zhou, D.Q. & Liang, B.,"Blast resistance of sandwich-walled hollow cylinders with graded metallic foam cores," Comp. Struc.94, 2485-2493, 2012. DOI: 10.1016/j.compstruct.2012.02.029

  8. Jin, M.Z., Chen, C. & Lu, T.J., ‘The mechanical behavior of porous metal fiber sintered sheets’, J. Mech. Phys. Solids61(1), 161-174, 2013.

  9. Ni, C.Y., Li, Y.C., Xin, F.X., Jin, F. & Lu, T.J., ‘Ballistic resistance of hybrid-cored sandwich plates: numerical and experimental assessment’, Composites A46, 69-79, 2013.   

  10. Yan, L.L., Yu, B., Han, B., Chen, C.Q., Zhang, Q.C. & Lu, T.J., "Compressive strength and energy absorption of sandwich panels with aluminum foam-filled corrugated cores," Comp. Sci. Tech. 86, 142-148, 2013.

  11. Yan, L.L., Han, B., Chen, C.Q., Zhang, Q.C. & Lu, T.J., "Three-point bending of sandwich beams with aluminum foam-filled corrugated cores," Mater. Design. 60, 510-519, 2014.

  12. Han, B., Xu, Y., Yu, B., Chen, C.Q., Zhang, Q.C. & Lu, T.J., "Foam filling radically enhances transverse shear response of corrugated sandwich plates," Mater. Design 77, 132-141, 2015.

  13. Yu, B., Yan, L.L., Han, B., Zhang, Q.C., Chen, C.Q., Jin, F. & Lu, T.J., "Dynamic crushing of all-metallic corrugated panels filled with close-celled aluminum foams," ASME J. Appl. Mech. 82(1), 011006, 2015.

  14. Han, B., Qin, K.K., Yu, B., Zhang, Q.C., Chen, C.Q. & Lu, T.J., "Design optimization of foam-reinforced corrguated sandwich beams," Comp. Struc. 130, 51-62, 2015.

  15. Ni, C.Y., Hou, R., Xia, H.Y, Zhang, Q.C., Wang, W.B., Cheng, Z.H., & Lu, T.J., ‘Perforation resistance of corrugated metallic sandwich plates filled with reactive powder concrete: Experiment and simulation’, Comp. Struc. 127, 426-435, 2015.   

  16. Yu, B., Han, B., Su, P.B., Ni, C.Y., Zhang, Q.C. & Lu, T.J., "Graded square honeycomb as sandwich core for enhanced mechanical performance," Mater. Design 89, 642-652, 2016.

  17. Han, B., Qin, K.K., Yu, B., Wang, B., Zhang, Q.C. & Lu, T.J., "Honeycomb-corrugation hybrid as a novel sandwich core for significantly enhanced compressive performance," Mater. Design 93, 271-282, 2016.

  18. Han, B., Zhang, Q.C. & Lu, T.J., "Recent advances in hybrid lattice-cored sandwiches for enhanced multifunctional performance," Extreme Mech. Lett. 10, 58-69, 2017.

  19. Han, B., Qin, K.K., Zhang, Q.C., Zhang, Q., Lu, T.J. & Lu, B.H., "Free vibration and buckling of foam-filled corrugated composite sandwichplates under thermal loading," Comp. Struc. 172, 173-189, 2017.

  20. Ni, C.Y., Hou, R., Han, B., Jin, F. & Lu, T.J., ‘Normal and oblique projectile impact of double-layered pyramidal lattice truss structures filled with ceramic insertions’, J. Thermoplastic Composite Materials 30(8), 1136-1156, 2017.  

  21. Zhao, Z.Y., Han, B., Wang, X., Zhang, Q.C. & Lu, T.J., "Out-of-plane compression of Ti-6Al-4V sandwich panels with corrugated channel cores," Mater. Design 137, 463-472, 2018.

  22. Yan, L.L., Zhao, X., Zhao, J.B., Li, B.C., Zhang, Q.C. & Lu, T.J., Coupling Enhancement Mechanism of Aluminum Foam-Filled Metallic Corrugated Sandwich Panels”, Rare Metal Mater. Eng. 47, 503-508, 2018.

  23. Han, B., Yu, R.P., Zhang, Q.C., Gao, H, Zhang, Q. & Lu, T.J., "Creep of closed-cell metallic foams: effects of imperfections and predictive modeling," Mater. Design 156, 229-241, 2018.

  24. Yan, L.L., Zhao, Z.Y., Han, B., Lu, T.J. & Lu, B.H., Tube enhanced foam: A novel way for aluminum foam enhancement”, Mater. Lett. 227, 70-73, 2018.

  25. Su, P.B., Han, B., Zhao, Z.N., Zhang, Q.C. & Lu, T.J., "Three-point bending of honeycomb sandwich beams with facesheet perforations," Acta Mech. Sinica 34(4), 667-675, 2018.

  26. Wang, X., Zhao, Z.Y., Li, L., Zhang, Z.J., Zhang, Q.C., Han, B. & Lu, T.J., "Free vibration behavior of Ti-6Al-4V sandwich beams with corrugated channel cores: Experiments and simulations," Thin Walled Struc. 35, 329-340, 2019.

  27. Li, F.H., Han, B., Zhang, Q.C., Jin, F. & Lu, T.J., "Buckling of a standing corrugated sandwich plate subjected to body force and terminal load," Thin Walled Struc., 2018, in press.

  28. Chen, X., Li, M.X., Yang, M., Liu, S.B., Genin, G., Xu, F. & Lu, T.J., "The elastic fields of a compressible liquid inclusion," Extreme Mech. Lett., 2018, in press.

  29. Su, P.B., Yang, M., Han, B., Wei, Z.H., Zhang, Q.C., K.K., Qin & Lu, T.J., "Axial compressive collapse of ultralight corrugated sandwich cylindrical shells," Mater. Design, 2018, in press.

  30. Li, L., Han, B., Zhang, Q.C. & Lu, T.J., “Dynamic crushing of honeycombs under impact loading: a theoretical model”, Acta Mech. Sinica, 2018, in press.

  31. Wang, X., Han, B., Yu, R.P., Zhao, Z.Y., Zhang, Q.C. & Lu, T.J., "Magnetic-responsive Fe3O4nanoparticle-impregnated cellulose paper actuators," Extreme Mech. Lett., 2018, in press.

  32. Li, L., Han, B., He, S.Y., Zhao, Z.Y., Zhang, R., Zhang, Q.C. & Lu, T.J., “Shock loading simulation using density-graded metallic foam projectiles”, Mater. Design, 2018, in press.

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