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The nonlinear elastic plastic behaviour of the material has been considered.
The elasto-plastic behaviour of the material is governed by a nonlinear complementarity problem.
Such enhancement allows study of the fracture behaviour of the material across its usage temperature range.
The viscoelastic behaviour of the material is studied during the degradation.
Strain-energy functions can be used to predict the behaviour of the material in circumstances in which a direct experimental test is impractical.
Both models were able to predict accurately the nonlinear shear behaviour of the material.
This may also account for the macroscopical deformation behaviour of the material.
The deformation behaviour of the material is described using a newly developed plasticity model.
Regardless of the behaviour of the material, the applied methods lead to the same relationships, proving their accuracy.
The residual stresses presented in the SLM coupons had a significant influence on the cyclic behaviour of the material.
In order to allow for rapid measurements, the required information is derived from the dielectric behaviour of the material.
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behaviour of the fuel
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behaviour of the flow
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