Abstract
In the numerical simulation of elastomer forming process, Henckys isotropic hyperelastic material model can guarantee relatively accurate prediction of strain range in terms of large deformations. It is shown, that this material model prolongate Hooke's law from the area of infinitesimal strains to the area of moderate ones. New representation of the fourth-order elasticity tensor for Hencky's hyperelastic isotropic material is obtained, it possesses both minor symmetries, and the major symmetry. Constitutive relations of considered model is implemented into MSC.Marc code. By calculating and fitting curves, the polyurethane elastomer material constants are selected. Simulation of equipment for elastomer sheet forming are considered.
Cite
CITATION STYLE
Oleinikov, A. A., & Oleinikov, A. I. (2016). Hencky’s model for elastomer forming process. In Journal of Physics: Conference Series (Vol. 734). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/734/3/032003
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