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Abaqus Tutorial: LaRC05 failure criterion for fiber-reinforced composites

$ 30.00
In this training video, first, an introduction to failure criteria is given. Then, the formulation and theory of failure criterion (LaRC05) are explained and the methods of using it in Abaqus software are examined.


  • Training video
  • PDF file Description provided in the video
  • A step-by-step written guide to using the criteria in Abaqus
  • 19 inp file ready to use in ABAQUS software

ABAQUS Tutorial: Stress analysis of rolling contact of a wheel with the UIC60 profile rail

$ 99.00
  Modeling the rotation of a train wheel on a rail has tips that are trained in this tutorial video. In addition to the tutorial video , the abaqus files and their results will be provided to you so that nothing will remain unclear to you. In addition, all trainings include free online response after purchase.


  • Step-by-step training video which describes theories behind and how to model (*.mp4)
  • Abaqus files (*.cae, *.inp, *.jnl, *.odb)
  • Guarantee up to 1 years

Finite element validation of shot peening induced residual stresses using ABAQUS

$ 85.00
This package describes a three-dimensional dynamic finite element (FE) study of single-shot impacting on a metallic component using Abaqus/CAE software. The prediction is validated by comparison with results from the published literature by Meguid et al. (1999).

MatLib for Abaqus

$ 250.00
MatLib Abaqus material library has been used in various industrial and research projects and has parameters of various engineering materials (such as metal, composite, ceramic, concrete, etc.) with different behaviors (such as elastic, plastic, damage, etc.) and each user can use it in its research and work. This will reduce the time required to determine the parameters of the material, its calibration, ensuring its accuracy and the like, and the time required to perform the simulation will be greatly reduced.


  • MatLib Abaqus material library in 3 units
  • Training video (*.mp4)
  • Installation guide (*.pdf)
  • Get updates up to 3 years

UHYPER Subroutine: Modelling Porous Elastomers with Abaqus/Standard

$ 55.00
This ABAQUS UHYPER subroutine implements the hyperelastic energy density derived for the macroscopic elastic response of non-Gaussian elastomers weakened by an isotropic and non-ercolative distribution of equiaxed pores. This result is valid for any choice of I1-based incompressible energy density characterizing the non-Gaussian isotropic elastic response of the underlying elastomer.


  • Training video; How to use the subroutine in Abaqus
  • PDF file Description of the hyperelastic model
  • A step-by-step written guide to using the criteria in Abaqus
  • 5 input example files ready to use in ABAQUS software
  • FORTRAN UHYPER subroutine run on Windows or Linux

VUMAT subroutine: 3D Hashin failure criteria in Abaqus with exponential damage evolution

$ 399.00
In order to effectively describe the progressively intralaminar and interlaminar damage for composite laminates, a three-dimensional progressive damage model for composite laminates to be used for low-velocity impact is presented. it is based on continuum damage mechanics (CDM) and was developed and implemented in the user subroutine of ABAQUS/explicit, VUMAT. the nonlinear damage model can be used to analyze the dynamic performance of the composite structure and its failure behavior. For the intralaminar damage, as a function of the energy release rate, the damage model in an exponential function can describe the progressive development of the damage. VUMAT subroutine is validated by well-known papers and can be used in any simulations.  


  • Tensile test validation (*.cae, *.inp, *.jnl, *.odb)
  • Compression test validation (*.cae, *.inp, *.jnl, *.odb)
  • Shear test validation (*.cae, *.inp, *.jnl, *.odb)
  • 3D Hashin VUMAT Subroutine with exponential damage evolution (*.for, *.f)
  • User guide which describes theories behind and how to use the subroutine (*.pdf)
  • Guarantee up to 3 years

VUMAT Subroutine: Shear modified Gurson–Tvergaard-Needleman (GTN) damage model

$ 275.00
In this product, The modified GTN model proposed by Gatea et al. was implemented in Abaqus software using UMAT and VUMAT subroutines. In this model, in addition to the original GTN model, the effects of plastic anisotropy and shear have been added to increase the accuracy of solving this damage model.


  • User documentation (PDF)
  • Abaqus files (*.cae, *.inp, *.jnl, *.odb)
  • Fortran file (*.for)
  • GTN damage material data (*.xls)