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SIMO-Package
This package implements NURBS-based IsoGeometric Analysis (IGA) and is released freely for education and research purposes. These codes are written in MATLAB. All your contributions are always welcomed.EGC_3dTOP
A Matlab program for extruded-geometric-component-based 3D topology optimizationPFEM-Package
PFEM-Package is a simple educational polygonal finite element method (PFEM) package written in MATLAB.DirectMultiscaleTOP
An open Matlab source provided a new multiscale topology optimization approach for the direct and simultaneous design of lattice materials, without material homogenization at the microscale.PolyCompositeFEM3D
A Polytopal Composite finite Element (PCE) approach is proposed. The key idea is to devise a polynomial projection of compatible strain fields through the least-squares approximation. For nearly incompressible problems, we design a pair of projection operators of volumetric and deviatoric strains resulting in stability of pressure solution.AdaptivePolyTree
A polytree-based adaptive approach to limit analysis of cracked structuresIGA-FG-TPMS-Rectangular-Plates
BCMO
We provided a Matlab-based optimization package based on our novel optimization algorithm named Balancing Composite Motion Optimization (BCMO).RotTPMS-Plates
This repository provides the basic source code of the investigation on the rotating triply periodic minimal surface (RotTPMS) plate structuresSGDSequentialMotionOpt
This Matlab-based package provided an novel optimization framework named Sequential Motion Optimization (SMO) enhanced in training deep neural networks (DNNs)PolyCompositeFEM2D
A Matlab-based polygonal composite finite elements for 2D solids is available. A computational approach based on arbitrary polygons and a polynomial projection of compatible strain fields through the least-squares approximation3DFaIR
AdapConTOPCoatedStructNonperiodicInfill
This open source aims to provide a direct multiscale topology optimization approach for additive manufacturing (AM) of coated structures with nonperiodic infills.Love Open Source and this site? Check out how you can help us