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Variational Approach to Dynamic Brittle Fracture via Gradient Damage Models

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  • معلومة اضافية
    • Contributors:
      Institut des Sciences de la mécanique et Applications industrielles (IMSIA - UMR 9219); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-École Nationale Supérieure de Techniques Avancées (ENSTA Paris)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS)-EDF R&D (EDF R&D); EDF (EDF)-EDF (EDF); Laboratoire de mécanique des solides (LMS); École polytechnique (X)-Mines Paris - PSL (École nationale supérieure des mines de Paris); Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Centre National de la Recherche Scientifique (CNRS); Laboratoire d'études de DYNamique (DYN); Service d'Etudes Mécaniques et Thermiques (SEMT); Département de Modélisation des Systèmes et Structures (DM2S); CEA-Direction des Energies (ex-Direction de l'Energie Nucléaire) (CEA-DES (ex-DEN)); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-CEA-Direction des Energies (ex-Direction de l'Energie Nucléaire) (CEA-DES (ex-DEN)); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Département de Modélisation des Systèmes et Structures (DM2S); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay; Matériaux et Mécanique des Composants (EDF R&D MMC); EDF R&D (EDF R&D)
    • بيانات النشر:
      HAL CCSD
      Trans Tech Publications
    • الموضوع:
      2015
    • Collection:
      MINES ParisTech: Archive ouverte / Open Archive (HAL)
    • نبذة مختصرة :
      International audience ; In this paper we present a family of gradient-enhanced continuum damage models which can be viewed as a regularization of the variational approach to fracture capable of predicting in a unified framework the onset and space-time dynamic propagation (growth, kinking, branching, arrest) of complex cracks in quasi-brittle materials under severe dynamic loading. The dynamic evolution problem for a general class of such damage models is formulated as a variational inequality involving the action integral of a generalized Lagrangian and its physical interpretation is given. Finite-element based implementation is then detailed and mathematical optimization methods are directly used at the structural scale exploiting fully the variational nature of the formulation. Finally, the link with the classical dynamic Griffith theory and with the original quasi-static model as well as various dynamic fracture phenomena are illustrated by representative numerical examples in quantitative accordance with theoretical or experimental results.
    • Relation:
      hal-01225237; https://hal.science/hal-01225237; https://hal.science/hal-01225237v2/document; https://hal.science/hal-01225237v2/file/15-AMM.pdf
    • الرقم المعرف:
      10.4028/www.scientific.net/AMM.784.334
    • الدخول الالكتروني :
      https://hal.science/hal-01225237
      https://hal.science/hal-01225237v2/document
      https://hal.science/hal-01225237v2/file/15-AMM.pdf
      https://doi.org/10.4028/www.scientific.net/AMM.784.334
    • Rights:
      info:eu-repo/semantics/OpenAccess
    • الرقم المعرف:
      edsbas.F0B2807D