Investigation of the nonlinear hyper-viscoelastic behavior of elastomers at finite strain: implementation and numerical validation

Rubber-like materials are known for their time-dependent behavior. The ability to model the hyperviscoelastic behavior of a diverse range of these materials including polymers, elastomers and rubbers is of increasing importance especially in the context of soft tissue mechanics. In this paper, a vis...

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Veröffentlicht in:European physical journal plus Jg. 137; H. 5; S. 536
Hauptverfasser: Tayeb, Adel, Arfaoui, Makrem, Zine, Abdelmalek, Ichchou, Mohamed, Hamdi, Adel, Ben Abdallah, Jalel
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.05.2022
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ISSN:2190-5444, 2190-5444
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Abstract Rubber-like materials are known for their time-dependent behavior. The ability to model the hyperviscoelastic behavior of a diverse range of these materials including polymers, elastomers and rubbers is of increasing importance especially in the context of soft tissue mechanics. In this paper, a viscohyperelastic model, recently published, is recalled. The implementation of this hyperviscoelastic model at finite strain into the finite element software Abaqus via a umat subroutine is presented. To this end, the discrete form of the constitutive equations of the stress and the tangent modulus following the Jaumann derivative were determined. Then, the implementation was validated using homogeneous tests of simple extension and simple shear for several history of strain and non-homogeneous test of pure torsion of a hollow cylinder. The semi-analytic resolution of the boundary value problems of each test compared to the results of simulation of the implemented model shows a total validation of the implementation algorithm. The implemented model can, therefore, be used in real engineering and biomechanical applications dealing with hyperviscoelastic models.
AbstractList Rubber-like materials are known for their time-dependent behavior. The ability to model the hyperviscoelastic behavior of a diverse range of these materials including polymers, elastomers and rubbers is of increasing importance especially in the context of soft tissue mechanics. In this paper, a viscohyperelastic model, recently published, is recalled. The implementation of this hyperviscoelastic model at finite strain into the finite element software Abaqus via a umat subroutine is presented. To this end, the discrete form of the constitutive equations of the stress and the tangent modulus following the Jaumann derivative were determined. Then, the implementation was validated using homogeneous tests of simple extension and simple shear for several history of strain and non-homogeneous test of pure torsion of a hollow cylinder. The semi-analytic resolution of the boundary value problems of each test compared to the results of simulation of the implemented model shows a total validation of the implementation algorithm. The implemented model can, therefore, be used in real engineering and biomechanical applications dealing with hyperviscoelastic models.
ArticleNumber 536
Author Tayeb, Adel
Zine, Abdelmalek
Ichchou, Mohamed
Hamdi, Adel
Ben Abdallah, Jalel
Arfaoui, Makrem
Author_xml – sequence: 1
  givenname: Adel
  orcidid: 0000-0003-4136-8779
  surname: Tayeb
  fullname: Tayeb, Adel
  email: teyebadel@yahoo.fr
  organization: École Nationale d’Ingénieurs de Tunis, LR-11-ES19 Laboratoire de Mécanique Appliquée et Ingénierie, Université de Tunis El Manar, Laboratoire de tribologie et dynamique des systèmes, Université de Lyon
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  givenname: Makrem
  surname: Arfaoui
  fullname: Arfaoui, Makrem
  organization: École Nationale d’Ingénieurs de Tunis, LR-11-ES19 Laboratoire de Mécanique Appliquée et Ingénierie, Université de Tunis El Manar
– sequence: 3
  givenname: Abdelmalek
  surname: Zine
  fullname: Zine, Abdelmalek
  organization: Institut Camille Jordan, Université de Lyon
– sequence: 4
  givenname: Mohamed
  surname: Ichchou
  fullname: Ichchou, Mohamed
  organization: Laboratoire de tribologie et dynamique des systèmes, Université de Lyon
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  givenname: Adel
  surname: Hamdi
  fullname: Hamdi, Adel
  organization: École Nationale d’Ingénieurs de Tunis, LR-11-ES19 Laboratoire de Mécanique Appliquée et Ingénierie, Université de Tunis El Manar
– sequence: 6
  givenname: Jalel
  surname: Ben Abdallah
  fullname: Ben Abdallah, Jalel
  organization: École Nationale d’Ingénieurs de Tunis, LR-11-ES19 Laboratoire de Mécanique Appliquée et Ingénierie, Université de Tunis El Manar
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Snippet Rubber-like materials are known for their time-dependent behavior. The ability to model the hyperviscoelastic behavior of a diverse range of these materials...
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SubjectTerms Acoustics
Algorithms
Analysis of PDEs
Applied and Technical Physics
Atomic
Biological clocks
Biomechanical engineering
Biomechanics
Boundary value problems
Complex Systems
Condensed Matter Physics
Constitutive equations
Constitutive relationships
Decomposition
Deformation
Elastomers
Engineering Sciences
Finite element method
Functional Analysis
Materials
Mathematical and Computational Physics
Mathematical models
Mathematics
Molecular
Numerical Analysis
Optical and Plasma Physics
Physics
Physics and Astronomy
Polymers
Reactive fluid environment
Regular Article
Soft tissues
Software
Strain
Tangent modulus
Theoretical
Thermodynamics
Viscoelasticity
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Title Investigation of the nonlinear hyper-viscoelastic behavior of elastomers at finite strain: implementation and numerical validation
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