DiMAT Materials Designer toolkit

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Main Author: Cetma
Format: Recurso digital
Published: Zenodo 2026
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author Cetma
author_facet Cetma
contents <p><span lang="EN-GB">The DiMAT Materials Designer is a tool that provides the user the capability to define complex materials, like composite materials, in terms of their base component and internal microstructure and obtain the mechanical properties of the new material. </span>Properties are calculated via a virtual testing approach, which consists of building a Finite Element Method (FEM) model and solving its equations to extract the requested properties from the results.</p> <p>Main functionalities are:</p> <ul> <li><span lang="EN-GB">Material definition: the toolkit provides a web-based interface for defining and modifying composite material, starting from the base component materials to the internal microstructure and layup arrangement of the composite.</span></li> <li>Properties calculation: the toolkit is connected to a calculation server which executes virtual testing of the defined material and calculates its elastic properties.</li> <li><span lang="EN-GB">Data visualization: the user can select one or more materials and visually compare their properties and download text files with all available information for local use.</span></li> <li>Data storage: all data related to the material definition and their calculated properties are stored on the server running the toolkit, so it can be used stand-alone without relying on other storage solutions.</li> <li><span lang="EN-GB">Parametric studies: the user can define and analyse more materials in a single interface and visualize graphically the relations between the input and output parameters of the study.</span></li> </ul> <p><span lang="EN-GB">The toolkit is implemented as several Docker containers each delivering specific functionalities. The FE calculation code is not included. The user can integrated different FE codes by modification of the source code.</span></p> <p><span lang="EN-GB">The toolkit requires an external Keycloak autentication service.</span></p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18311891
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle DiMAT Materials Designer toolkit
Cetma
<p><span lang="EN-GB">The DiMAT Materials Designer is a tool that provides the user the capability to define complex materials, like composite materials, in terms of their base component and internal microstructure and obtain the mechanical properties of the new material. </span>Properties are calculated via a virtual testing approach, which consists of building a Finite Element Method (FEM) model and solving its equations to extract the requested properties from the results.</p> <p>Main functionalities are:</p> <ul> <li><span lang="EN-GB">Material definition: the toolkit provides a web-based interface for defining and modifying composite material, starting from the base component materials to the internal microstructure and layup arrangement of the composite.</span></li> <li>Properties calculation: the toolkit is connected to a calculation server which executes virtual testing of the defined material and calculates its elastic properties.</li> <li><span lang="EN-GB">Data visualization: the user can select one or more materials and visually compare their properties and download text files with all available information for local use.</span></li> <li>Data storage: all data related to the material definition and their calculated properties are stored on the server running the toolkit, so it can be used stand-alone without relying on other storage solutions.</li> <li><span lang="EN-GB">Parametric studies: the user can define and analyse more materials in a single interface and visualize graphically the relations between the input and output parameters of the study.</span></li> </ul> <p><span lang="EN-GB">The toolkit is implemented as several Docker containers each delivering specific functionalities. The FE calculation code is not included. The user can integrated different FE codes by modification of the source code.</span></p> <p><span lang="EN-GB">The toolkit requires an external Keycloak autentication service.</span></p>
title DiMAT Materials Designer toolkit
url https://doi.org/10.5281/zenodo.18311891