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Resulting design methods, developed on the basis of the idealised material behaviour, are necessarily overly conservative.
For this purpose, different elements, representing elastic, viscous or plastic material behaviour, are combined in parallel and series connections.
The effects of size effect, strain rate effect and the specific equation of state on the dynamic material behaviour are investigated using numerical modelling method.
To this end, specific nonlinear material models representing elastic, viscous and plastic material behaviour are applied in a thermodynamically consistent manner and the connection relations are evaluated.
The novel features of Havriliak Negami model for dynamic viscoelastic material behaviour are used to take the rheological properties of the coating (and/or core) material into consideration.
A variety of isotropic and anisotropic functions for transversely isotropic material behaviour are derived, where each individual term fulfills a priori the polyconvexity condition.
Similar(52)
The discrepancy with real polycrystalline material behaviour is largely related to transport in the accumulated channel.
Anisotropic material behaviour is incorporated without difficulties.
The polymer material behaviour is assumed to be elastoplastic.
Anisotropy of the material behaviour is generally observed after stretching.
Significant differences between tube types were observed and anisotropic material behaviour was apparent.
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