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The Python package for the composite uFJC model in the context of diffuse chain scission.
The Python package for the composite uFJC with scission. This package corresponds to "A statistical mechanics framework for polymer chain scission, based on the concepts of distorted bond potential and asymptotic matching" by Jason Mulderrig, Brandon Talamini, and Nikolaos Bouklas, 2023.
A repository that incorporates the composite uFJC scission model within the Lake-Thomas theory of polymer fracture.
A repository for calculating network-level attributes for an elastomer network composed of composite uFJCs which undergo scission. This repository is dependent upon the composite-uFJC-scission Python package.
The Python package for the composite uFJC with scission implemented in the Unified Form Language (UFL) in FEniCS. This package corresponds to "A statistical mechanics framework for polymer chain scission, based on the concepts of distorted bond potential and asymptotic matching" by Jason Mulderrig, Brandon Talamini, and Nikolaos Bouklas, 2023.
The Python package for the composite uFJC (cuFJC) model. This package corresponds to the cuFJC model derived in "A statistical mechanics framework for polymer chain scission, based on the concepts of distorted bond potential and asymptotic matching" by Jason Mulderrig, Brandon Talamini, and Nikolaos Bouklas, 2023.
The Python package for the composite uFJC (cuFJC) model with scission. This package corresponds to "A statistical mechanics framework for polymer chain scission, based on the concepts of distorted bond potential and asymptotic matching" by Jason Mulderrig, Brandon Talamini, and Nikolaos Bouklas, 2023.
A repository that incorporates the composite uFJC (cuFJC) model with scission in the Lake-Thomas theory of polymer fracture.
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A repository that incorporates the composite uFJC model within a localizing gradient-enhanced damage model (LGEDM) for elastomers.
Repository used to complete the Hello World GitHub Guide
A repository that incorporates the composite uFJC model within a localizing gradient-enhanced damage model (LGEDM) for elastomers.
This is a folder implementing the transient network theory (TNT) in FEniCS. The TNT tracks the state of a polymer network with transient physical crosslinks, and is able to be implemented microscopically and macroscopically. See the work of Franck Vernerey for more information regarding the TNT and its derivations.
The Python package for the (generalized composite) uFJC diffuse chain scission model, employing FEniCS.
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