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August 5, 2024International Journal of Fracture8 citationsOpen Access

A computational approach for phase-field model of quasi-brittle fracture under dynamic loading

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RVRoman Vodička

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Abstract

Abstract A computational model is formulated for studying dynamic crack propagation in quasi-brittle materials exposed to time-dependent loading conditions. Under such conditions, inertial effects of structural components play an important role in modelling crack propagation problems. The computational model is proposed within the theory of regularised cracks which uses a damage-like internal variable. Here, fracture considers phase-field damage which gives rise to a material degradation in a narrow material strip defining the regularised crack. Based on the energy formulation using the Lagrangian of the system, the proposed computational approach introduces a staggered scheme adopted to solve the coupled system and providing it in a variational form within the time stepping procedure. The numerical data are obtained by quadratic programming algorithms implemented together with a finite element code.

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Cite This Study

Roman Vodička (2024) studied this question.

synapsesocial.com/papers/68e5d588b6db64358756bd32https://doi.org/10.1007/s10704-024-00806-2
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1On Implementation of a Computational Approach of Phase-Field Fracture to Elasto-Plastic Materials2026
  2. 2Dynamic fracture modeling in ductile materials using phase field approach2026
  3. 3Inference of phase field fracture models2025
  4. 4Quasi-Static and Dynamic Crack Propagation by Phase Field Modeling: Comparison with Previous Results and Experimental Validation2024 · 6 citations
  5. 5Quasi-Brittle Fracture: The Blended Approach2025