A constitutive model for polyurethane foam with strain rate sensitivity

Kwang Yong Jeong1, Seong Sik Cheon1, Munshi Basit2
1Division of Mechanical and Automotive Engineering, Kongju National University, Chungnam, 331-717, Korea
2Department of Mechanical Engineering, Auburn University, Auburn, Alabama, 36849, USA

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US Department of Transportation, FARS/GES 2009 Data Summary, DOT HS 811 401 (2011).

U. K. Lee, S. B. Jang and S. S. Cheon, Development of a subframe type fuel tank for passenger cars, Journal of Mechanical Design (Transaction of ASME), 132(4) (2010) 044501.

V. P. W. Shim, Z. H. Tu and C. T. Lim, Two-dimensional response of crushable polyurethane foam to low velocity impact, International Journal of Impact Engineering, 24 (2000) 703–731.

M. Avalle, G. Belingardi and R. Montanini, Characterization of polymeric structural foams under compressive impact loading by means of energy absorption diagram, International Journal of Impact Engineering, 25 (2001) 455–472.

K. C. Rusch, Load-compression behaviour of flexible foams, Journal of Applied Polymer Science, 13 (1969) 2297–2311.

E. A. Meinecke and D. M. Schwaber, Energy absorption in polymeric foams, Journal of Applied Polymer Science, 14 (1970) 2239–2248.

J. A. Sherwood and C. C. Frost, Constitutive modeling and simulation of energy absorbing polyurethane foam under impact loading, Polymer Engineering and Science, 32 (1992) 1138–1146.

M. Langseth, O. S. Hopperstad and T. Berstad, Crashworthiness of aluminium extrusions: Validation of numerical simulation, effects of mass ratio and impact velocity, International Journal of Impact Engineering, 22 (1999) 829–854.

L. J. Gibson and M. F. Ashby, Cellular solids: Structure and properties, Pergamon Press (1997).

G. Subhash and Q. Liu, Quasistatic and dynamic crushability of polymeric foam in rigid confinement, International Journal of Impact Engineering, 36 (2009) 1303–1311.

M. Avalle, G. Belingardi and A. Ibba, Mechanical models of cellular solids: Parameters identification from experimental tests, International Journal of Impact Engineering, 34 (2007) 3–27.

Q. Liu, G. Subhash and X. L. Gao, A parametric study on crushability of open-cell structural polymeric foams, Journal of Porous Materials, 12 (2005) 233–248.

Q. Liu and G. Subhash, A phenomenological constitutive model for foams under large deformation, Polymer Engineering and Science, 44(5) (2004) 463–473.

A. Nagy, W. L. Ko and U. S. Lindholm, Mechanical behavior of foamed materials under dynamic compression, Journal of Cellular Plastics, 10 (1974) 127–134.