共 24 条
- [11] Li K., Gao X.L., Subhashb G., Effects of cell shape and strut cross-sectional area variations on the elastic properties of three-dimensional open-cell foams, J. Mech. Phys. Solids, 54, 4, pp. 783-806, (2013)
- [12] Zhang X.Y., Wu Y.D., Tang L.Q., Et al., Modeling and computing parameters of three-dimensional Voronoi models in nonlinear finite element simulation of closed-cell metallic foams, Mechanics of Advanced Materials and Structures, 25, 15-16, pp. 1265-1275, (2016)
- [13] Li Y., Zheng Z., Yu J., Et al., Finite element analysis on deformation modes of closed-cell metallic foam, Explosion and Shock Waves, 4, 34, pp. 464-470, (2014)
- [14] Li L., Xue P., Luo G., A numerical study on deformation mode and strength enhancement of metal foam under dynamic loading, Material & Design, (2016)
- [15] Wang S.L., Ding Y.Y., Wang C.F., Et al., Dynamic material parameters of closed-cell foams under high-velocity impact, International Journal of Impact Engineering, 99, pp. 111-121, (2017)
- [16] Kim W.M., Kenton H., Morris J.W., Comparative analysis of the cellular and Johnson-Mehl microstructures through computer simulation, Acta Metallurgica, 28, 4, pp. 443-453, (1980)
- [17] Okabe A., Boots B., Sugihara K., Spatial Tessellations: Concepts and Applications of Voronoi Diagrams, (1992)
- [18] Li K., Gao X.L., Wang J., Dynamic crushing behavior of honeycomb structures with irregular cell shapes and non-uniform cell wall thickness, Int. J. Solids Struct., 44, 5, pp. 3-63, (2007)
- [19] Zheng Z.J., Wang C.F., Yu J.L., Et al., Dynamic stress- strain states foe metal foams using a 3D cellular model, J. Mech. Phys. Solids, 72, pp. 93-114, (2014)
- [20] Song Y.Z., Wang Z.H., Zhao L.M., Et al., Dynamic crushing behavior of 3D closed-cell foams based on Voronoi random model, Materials & Design, 31, 9, pp. 4289-5281, (2010)