Command line tools for creating models of composite wind turbine blades
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Updated
May 27, 2024 - Python
Command line tools for creating models of composite wind turbine blades
Control software for Marlin-driven filament winders
UMAT for ABAQUS using 3D Hashin Based Orthotropic Damage Model
This repository contains a subroutine for an ANSYS Mechanical APDL cohesive element for the modelling of multiple delamination quasi-static and fatigue onset/initiation and propagation. The subroutine also calculates the J-integral in the cohesive zone. Test cases are also included showcasing these capabilities.
Calculate properties of composite laminates.
Natural feeling domain-specific language for building structural equation models in R for estimation by covariance-based methods (like LISREL/Lavaan) or partial least squares (like SmartPLS)
Some interesting numbers to lookup in factordb
UMAT for ABAQUS using Mazars Concrete Damage Model with Fracture Energy Regularization
A Hashin 2D Damage Model UMAT for ABAQUS (discontinued)
A Tsai-Wu based 2D Damage Model UMAT for ABAQUS (discontinued)
Python scripting in Salome allows us to automatically generate random particles or pores. With subsequent operations we are able to build composite or porous bodies for study in Code_Aster.
Finite elements for 3D problems in Python/Cython
Failure criteria for composites considering fiber and matrix.
UMAT subroutines (for FEA code Abaqus) to model progressive damage/failure in FRP composites
ANN functions to calculate some mechanical properties of unidirectional composites
Simple desktop application for normalization of tensile/compression test data of fiber reinforced composites
Processes C-scans, calculates time-of-flight, identifies contours of damaged regions, and creates a 3D reconstruction of the damage state
TER 2A - Unidirectional composite material failure
extract exhibitors data of Composite and Advanced Materials Exhibition
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