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The tissue differentiation process of calluses by taking into consideration blood vessel growth was simulated by a user subroutine program based on the mechanoregulation model and a diffusion equation.
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The healing performance and development of tissue phenotypes were estimated using mechano-regulation theory with deviatoric strain, which was implemented and analyzed with the commercial software ABAQUS 6.10 and a user's subroutine program.
For the iterative calculation to determine cell phenotype during the healing period, a user subroutine was programmed by Python code.
Based on a mechano-regulation theory with a deviatoric strain as a mechanical stimulation the process of tissue differentiation was simulated by a user's subroutine programmed by a Python code for an iterative calculation.
Commercial software ABAQUS is selected as the analysis tool and a user subroutine USFLD is programmed to predict the response of pin-loaded of composite laminates.
In addition, a subroutine program called the User Defined Scalar (Fluent Inc. 2011) was coded to solve Eq. (1) considering the four different viscosity model with particle shape effects.
A mechano-regulation algorithm with a deviatoric strain was programmed in a user subroutine, and iterative calculations were performed using the commercially available finite element code ABAQUS 6.10 to estimate the tissue differentiation process during bone healing.
The user subroutine of the material model was programmed by the FORTRAN language, and viscoelastic parameters of the material model were recognized based on dynamic strain data of dynamic impact tests, whose validity was verified by using test data in the literature.
These material models are programmed and linked to an available computer program LS-DYNA3D through its user subroutine capability.
Then this model is implemented with a user subroutine into the explicit dynamic finite element program LS-DYNA to simulate the dynamic behaviors of PMMA aircraft windshield under high speed bird strike.
A meso-scale unit-cell based material model for a prototypical plain-woven single-ply flexible armor is developed and implemented in a material user subroutine for use in commercial explicit finite element programs.
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