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- W2077305320 abstract "A power-law relationship between the stretches has been shown to describe the inherent slight compressibility of isotropic solid rubbers in simple tension. It is well known that the Hencky strain-energy function predicts such a kinematic power-law relationship. Although the resulting constitutive relation adequately models the stress response for moderate deformations, it is not capable of predicting the stress response for large deformations. A strain-energy function for slightly compressible rubber is derived that both incorporates the kinematic power-law relation and reduces to the Hencky form on using a simple linearization process. Special forms of this new general strain-energy function are shown to be consistent with the stress–stretch experimental data in simple tension over a large range of axial stretches. This general form is also shown to be consistent with the observed behavior of rubbers in compression tests involving moderate volume changes." @default.
- W2077305320 created "2016-06-24" @default.
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- W2077305320 date "2009-08-01" @default.
- W2077305320 modified "2023-10-04" @default.
- W2077305320 title "A generalization of Hencky’s strain-energy density to model the large deformations of slightly compressible solid rubbers" @default.
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- W2077305320 doi "https://doi.org/10.1016/j.mechmat.2009.03.001" @default.
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