Graded-material design based on phase-field and topology optimization

From MaRDI portal
Publication:2281500

DOI10.1007/s00466-019-01736-wzbMath1462.74129arXiv1811.07205OpenAlexW2950547113WikidataQ113327074 ScholiaQ113327074MaRDI QIDQ2281500

Elena Bonetti, Ferdinando Auricchio, Massimo Carraturo, Elisabetta Rocca, Alessandro Reali, Dietmar Hömberg

Publication date: 3 January 2020

Published in: Computational Mechanics (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/1811.07205



Related Items

A phase field-based systematic multiscale topology optimization method for porous structures design, Topology optimization for quasistatic elastoplasticity, Design of thin micro-architectured panels with extension-bending coupling effects using topology optimization, A phase-field approach for detecting cavities via a Kohn–Vogelius type functional, Identification of cavities and inclusions in linear elasticity with a phase-field approach, Additive manufacturing applications of phase‐field‐based topology optimization using adaptive isogeometric analysis, Phase field topology optimisation for 4D printing, On minimization of nonlinear energies using FEM in MATLAB, Sharp-interface limit of a multi-phase spectral shape optimization problem for elastic structures, A multi-material proportional topology optimization approach for compliant mechanism problems, Overhang penalization in additive manufacturing via phase field structural topology optimization with anisotropic energies, A phase-field-based graded-material topology optimization with stress constraint, Topology Optimization for Incremental Elastoplasticity: A Phase-Field Approach, Topology optimization of functionally graded anisotropic composite structures using homogenization design method, Shape and topology optimization involving the eigenvalues of an elastic structure: a multi-phase-field approach, An incremental form interpolation model together with the Smolyak method for multi-material topology optimization, Machine learning-combined topology optimization for functionary graded composite structure design, A single variable-based method for concurrent multiscale topology optimization with multiple materials, Two-scale topology optimization with heterogeneous mesostructures based on a local volume constraint



Cites Work

OSZAR »