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  1. Path-dependent-Abaqus-model-for-the-analysis-of-composite-curing Path-dependent-Abaqus-model-for-the-analysis-of-composite-curing Public

    This study introduces a novel method for analyzing residual stresses in composite materials: the Abaqus path-dependent curing model. The model is implemented within Abaqus CAE using Fortran subrout…

    Fortran 2

  2. Disp-Fortran-Code-Abaqus-Subroutine Disp-Fortran-Code-Abaqus-Subroutine Public

    In this project, we have provided Abaqus input files along with the VDISP and DISP Abaqus Fortran subroutines, developed to apply complex boundary conditions.

    Fortran 1

  3. Viscoelastic-Abaqus-model-for-the-analysis-of-composite-curing Viscoelastic-Abaqus-model-for-the-analysis-of-composite-curing Public

    This project presents an innovative approach for examining residual stresses in composites: The Abaqus viscoelastic model for curing. The implementation of the model is carried out in Abaqus CAE, u…

    Fortran 1

  4. Abaqus-HASHIN-progressive-Damage-for-3D-continuum-composites-VUMAT-Subroutine- Abaqus-HASHIN-progressive-Damage-for-3D-continuum-composites-VUMAT-Subroutine- Public

    Hashin criteria predict failure modes in composites based on stresses in fiber and matrix. While effective, implementing them in numerical simulations poses challenges. Abaqus addresses this but is…

    Fortran 1

  5. Abaqus-UEL-Subroutine Abaqus-UEL-Subroutine Public

    UEL refers to User-Defined Elements, which are used to implement element types not found in the Abaqus element library. This project assists in writing a UEL subroutine.

    Fortran 1 1

  6. Abaqus-VDFLUX-DFLUX-Subroutines-in-Fortran-Language-for-Welding-Simulation Abaqus-VDFLUX-DFLUX-Subroutines-in-Fortran-Language-for-Welding-Simulation Public

    In the project, we modeled welding in Abaqus using VDFLUX subroutine. VDFLUX subroutine is an Abaqus tool, designed for thermal loading in form of body/surface fluxes, as a function of time, coordi…

    Fortran 1