A major update of the Porous Microstructure Analysis (PuMA) software is presented. PuMA is a framework for computing effective material properties and response based on material microstructures. Version 3.0 of the software extends the PuMA capabilities to include computation of anisotropic conductivity, elasticity, permeability, per-voxel material or fiber orientation estimation, as well as expanded computational material generation capabilities. Version 3.0 also introduces pumapy, a Python version of the PuMA software
There have been substantial advances in modeling and simulation of microstructure in 3D. These have ...
The representation of a fiber in a spherical coordinate system (a). 3D rendering of a rPCL scaffold ...
Python Materials Genomics (pymatgen) is a robust materials analysis code that defines core object re...
The Porous Microstructure Analysis (PuMA) software has been developed in order to compute effective ...
The Porous Microstructure Analysis (PuMA) software is a suite of tools for the analysis of porous ma...
PoreMS is a python package for generating pore structures to be used in molecular simulations. This...
Included in this dataset are 3D volume reconstructions processed from micro-computed tomography (µCT...
AbstractMesoscale modelling of porous materials may require building explicit geometric models for p...
PoreMS is a python package for generating pore structures to be used in molecular simulations. This...
Hybrid 3D scaffolds composed of different biomaterials with fibrous structure or enriched with diffe...
In this work we numerically implement a previously developed large deformation model for porous fibr...
This release of pyLabFEA allows finite element analysis (FEA) of 2D models with arbitrary arrangemen...
This release contains several updates to the code. The most important changes are: Substantial impr...
The need for diverse materials has emerged as industry becomes more developed, and there is a need f...
MicroStructPy is a microstructure mesh generator written in Python. Features of MicroStructPy includ...
There have been substantial advances in modeling and simulation of microstructure in 3D. These have ...
The representation of a fiber in a spherical coordinate system (a). 3D rendering of a rPCL scaffold ...
Python Materials Genomics (pymatgen) is a robust materials analysis code that defines core object re...
The Porous Microstructure Analysis (PuMA) software has been developed in order to compute effective ...
The Porous Microstructure Analysis (PuMA) software is a suite of tools for the analysis of porous ma...
PoreMS is a python package for generating pore structures to be used in molecular simulations. This...
Included in this dataset are 3D volume reconstructions processed from micro-computed tomography (µCT...
AbstractMesoscale modelling of porous materials may require building explicit geometric models for p...
PoreMS is a python package for generating pore structures to be used in molecular simulations. This...
Hybrid 3D scaffolds composed of different biomaterials with fibrous structure or enriched with diffe...
In this work we numerically implement a previously developed large deformation model for porous fibr...
This release of pyLabFEA allows finite element analysis (FEA) of 2D models with arbitrary arrangemen...
This release contains several updates to the code. The most important changes are: Substantial impr...
The need for diverse materials has emerged as industry becomes more developed, and there is a need f...
MicroStructPy is a microstructure mesh generator written in Python. Features of MicroStructPy includ...
There have been substantial advances in modeling and simulation of microstructure in 3D. These have ...
The representation of a fiber in a spherical coordinate system (a). 3D rendering of a rPCL scaffold ...
Python Materials Genomics (pymatgen) is a robust materials analysis code that defines core object re...