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Exact Solution of a Cylinder Tube Made of Metallic Foam Under Inner Pressure

Exact Solution of a Cylinder Tube Made of Metallic Foam Under Inner Pressure
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摘要 Exact solution of the stress and velocity fields of a cylinder tube of metallic foams under inner pressure is given in which the Triantafillou and Gibson constitutive law (TG model) for the material is taken as a basis of the calculation. The nonlinear equation is turned linear equation by introducing a kinematics parameter. The differences between the full condensed materials and the effect of the relative density are also discussed. Exact solution of the stress and velocity fields of a cylinder tube of metallic foams under inner pressure is given in which the Triantafillou and Gibson constitutive law (TG model) for the material is taken as a basis of the calculation. The nonlinear equation is turned linear equation by introducing a kinematics parameter. The differences between the full condensed materials and the effect of the relative density are also discussed.
机构地区 School of Science
出处 《Journal of Beijing Institute of Technology》 EI CAS 2008年第3期355-360,共6页 北京理工大学学报(英文版)
基金 the National Natural Science Foundation of China(10672022)
关键词 metal foams constitutive law TG model the relative density kinematics parameter metal foams constitutive law TG model the relative density kinematics parameter
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  • 1Gibson, L.J., Ashby, M.F.: Cellular Solids-Structure and Properties. Cambridge University Press, Cambridge (1997)
  • 2Gibson, L.J., Ashby, M.F., Zhang, J., Triantafillou, T.C.: Failure surfaces for cellular materials under multi-axial loads- (I) Modeling. Int. J. Mech. Sci. 31, 635-665 (1989)
  • 3Triantafillou, T.V., Gibson, L.J.: Constitutive modeling of elasticplastic open-cell foam. J. Eng. Mech. 116, 2772-2778 (1990)
  • 4Miller, R.: A continuum plasticity model for the constitutive and indentation behavior of foamed metals. Int. J. Mech. Sci. 42, 729-754 (2000)
  • 5Deshpande, V.S., Fleck, N.A.: Isotropic constitutive models for metallic foams. J. Mech. Phys. Solids 48, 1253-1283 (2000)
  • 6Deshpande, V.S., Fleck, N.A.: Collapse of truss core sandwich beams in 3-point bending. Int. J. Solids Structure 49, 6275- 6305 (2001)
  • 7Ashby, M.A., Evans, A.G., Fleck, N.A., Gibson, L.J., Hutchinson, J.W., Wadley, H.N.G.: Metal Foams: a Design Guide. Butterworth Heinemann, Oxford (2000)
  • 8Fan, T.Y., Mai, Y.M., Guo, R.P., Maier, M., Liu, G.T.: Continuum constitutive models and analytic solutions of crack problems of cellular materials. J. Mater. Sci. Technol. 11, 86-105 (2003)
  • 9Guo, R.E, Mai, Y.W., Fan, T.Y., Liu, G.T., Maier, M.: Plane stress crack growing steadily in metal foams. Mater. Sci. Eng. A 381, 292-298 (2004)
  • 10Hill, R.: The Mathematical Theory of Plasticity. Oxford University Press, Oxford (1950)

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