IM (Ianniruberto, G.and Marrucci, G.) Model
ref: Ianniruberto, G.; Marrucci, G. A simple constitutive equation for entangled polymers with chain stretch. Journal of Rheology 2001, 45, 1305-1318.
Define an effective time
The classical DE model of
Here:
ref: Ianniruberto, G.; Marrucci, G. A simple constitutive equation for entangled polymers with chain stretch. Journal of Rheology 2001, 45, 1305-1318.
Define an effective time
The classical DE model of
ref: Costanzo, S.; Huang, Q.; Ianniruberto, G.; Marrucci, G.; Hassager, O.; Vlassopoulos, D. Shear and Extensional Rheology of Polystyrene Melts and Solutions with the Same Number of Entanglements. Macromolecules 2016, 49, 3925-3935.
Here,
ref: Costanzo, S.; Huang, Q.; Ianniruberto, G.; Marrucci, G.; Hassager, O.; Vlassopoulos, D. Shear and Extensional Rheology of Polystyrene Melts and Solutions with the Same Number of Entanglements. Macromolecules 2016, 49, 3925-3935.
Here,
Tumbling term of
The second parts becomes:
- A highly accurate approximation for this strain measure is:
ref: chapter 11.3 of Dealy, J. M. Larson, R. G. Read, D. J. "Structure and rheology of molten polymers, from structure to flow behavior and back again." 2018, Carl Hanser Verlag GmbH Co KG.
here:
2. Marrucci et al. proposed another approximation of this strain measure, which gives a much improved prediction of the normal stress ratio in shear, namely
here:
For simple shear:
The Cauchy Tensor, also known as right Cauchy–Green deformation tensor,
The Finger Tensor, also known as left Cauchy–Green deformation tensor,
Sometimes, Finger strain tensor is also defined by inverse of Cauchy tensor as (ref: Milner, S. T. Journal of Rheology 2001, 45, 1023-1028.):
Here, the diagonal is the same, while the