STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively
A novel design of a catalytic stirrer that can only be manufactured by 3D printing techniques is proposed. The stirrer blades are meshed and permeable to fluids. The STL files required for printing these novel stirrers with 2, 3, or 6 blades can be downloaded here. Two groups of STL files are provided depending on the material to be printed, namely PLA or any other selected filament for FDM printing; or whey pastes or any other selected paste for DIW printing. G-code and 3MF files are also provided to print, either by FDM or DIW, stirrers with meshed blades of different infills, namely solid (non-meshed or 100% infill), 50% infill, and 35% infill. The meshed patterns are provided by the PrusaSlicer® Laminator, as detailed in the corresponding publication.
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Format: | artículo de datos biblioteca |
Published: |
2023
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Subjects: | Catalytic stirrer, Additive manufacturing, 3D printing, Direct ink writing (DIW), Fused deposition modelling (FDM), Process intensification, STL, G-cpde, |
Online Access: | http://hdl.handle.net/10261/340847 |
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dig-incar-es-10261-3408472023-12-19T02:30:41Z STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively Reguera García, Alejandro Llamas Unzueta, Raúl Montes Morán, Miguel Ángel Menéndez Díaz, José Ángel Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde A novel design of a catalytic stirrer that can only be manufactured by 3D printing techniques is proposed. The stirrer blades are meshed and permeable to fluids. The STL files required for printing these novel stirrers with 2, 3, or 6 blades can be downloaded here. Two groups of STL files are provided depending on the material to be printed, namely PLA or any other selected filament for FDM printing; or whey pastes or any other selected paste for DIW printing. G-code and 3MF files are also provided to print, either by FDM or DIW, stirrers with meshed blades of different infills, namely solid (non-meshed or 100% infill), 50% infill, and 35% infill. The meshed patterns are provided by the PrusaSlicer® Laminator, as detailed in the corresponding publication. Peer reviewed 2023-12-18T11:11:06Z 2023-12-18T11:11:06Z 2023 artículo de datos http://purl.org/coar/resource_type/c_beb9 http://hdl.handle.net/10261/340847 Sí open |
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Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde |
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Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde Reguera García, Alejandro Llamas Unzueta, Raúl Montes Morán, Miguel Ángel Menéndez Díaz, José Ángel STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
description |
A novel design of a catalytic stirrer that can only be manufactured by 3D printing techniques is proposed. The stirrer blades are meshed and permeable to fluids. The STL files required for printing these novel stirrers with 2, 3, or 6 blades can be downloaded here. Two groups of STL files are provided depending on the material to be printed, namely PLA or any other selected filament for FDM printing; or whey pastes or any other selected paste for DIW printing. G-code and 3MF files are also provided to print, either by FDM or DIW, stirrers with meshed blades of different infills, namely solid (non-meshed or 100% infill), 50% infill, and 35% infill. The meshed patterns are provided by the PrusaSlicer® Laminator, as detailed in the corresponding publication. |
format |
artículo de datos |
topic_facet |
Catalytic stirrer Additive manufacturing 3D printing Direct ink writing (DIW) Fused deposition modelling (FDM) Process intensification STL G-cpde |
author |
Reguera García, Alejandro Llamas Unzueta, Raúl Montes Morán, Miguel Ángel Menéndez Díaz, José Ángel |
author_facet |
Reguera García, Alejandro Llamas Unzueta, Raúl Montes Morán, Miguel Ángel Menéndez Díaz, José Ángel |
author_sort |
Reguera García, Alejandro |
title |
STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
title_short |
STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
title_full |
STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
title_fullStr |
STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
title_full_unstemmed |
STL, G-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of PLA or whey by FDM or DIW, respectively |
title_sort |
stl, g-code and 3mf files of catalytic stirrers with 2, 3 or 6 blades made of pla or whey by fdm or diw, respectively |
publishDate |
2023 |
url |
http://hdl.handle.net/10261/340847 |
work_keys_str_mv |
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