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Dataset of Simulations for LBW and PBF processes

Constantin Zenz


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  "description": "<p>This&nbsp;dataset has been created by TU WIEN and belongs to Work Package 2 about&nbsp;Simulations for LBW and PBF processes.</p>\n\n<p>&copy; COPYRIGHT 2021 The CUSTODIAN Consortium. All rights reserved.</p>\n\n<p><strong>Table of contents including supplementary information:</strong></p>\n\n<ul>\n\t<li>LBW_G11.png - <em>Comparative image of cross and longitudinal section of simulation and experiment of LBW; primary beam only; conditions G11 (details given in image).</em></li>\n\t<li>LBW_G11_opt.png - <em>Comparative image of cross and longitudinal section of simulation and experiment of LBW; primary and secondary beam; conditions G11 (details given in image).</em></li>\n\t<li>LBW_G7.mp4 - <em>Comparative video: high speed camera recording (top) and simulation result (bottom) of LBW; conditions G7: P = 4kW, gap width = 0.3mm, welding velocity = 100mm/s; primary beam only.</em></li>\n\t<li>LBW_G7_GrainGrowth.mp4 - <em>Video showing coupled simulation of melting, solidification, and crystallographic grain growth; conditions G7; primary beam only.</em></li>\n\t<li>LBW_G9.png - <em>Comparative image of cross and longitudinal section of simulation and experiment of LBW; primary beam only; conditions G9 (details given in image).</em></li>\n\t<li>LBW_G9_opt.png - <em>Comparative image of cross and longitudinal section of simulation and experiment of LBW; primary and secondary beam; conditions G9 (details given in image).</em></li>\n\t<li>PBF_CM247LC_multitrack.mp4 - <em>Video of simulation showing 6 tracks of PBF-LB/M of CM247LC on a 100&mu;m powder bed; bidirectional scanning path; substrate coloured light grey, powder coloured dark grey, meltpool coloured by temperature.</em></li>\n\t<li>PBF_CM247LC_validation.png - <em>Image showing comparison of cross-sectional weld bead obtained experimentally and in simulation for a single track of CM247LC scanned on 100&mu;m powder bed.</em></li>\n\t<li>PBF_IN713LC_balling.mp4 - <em>Video of simulation of PBF-LB/M of IN713LC where insufficient heat input (452W) leads to surface energy-driven defect called balling; accompanying image of experimental result on the right</em></li>\n\t<li>PBF_IN713LC_Q5plus.png -<em> Image of simulation and experimental result of PBF-LB/M of IN713LC with sufficient heat input to prevent balling (520W).</em></li>\n\t<li>PBF_IN713LC_validation.png -<em> Image showing comparison of cross-sectional weld bead obtained experimentally and in simulation for a single track of IN713LC scanned on 50&mu;m powder bed.</em></li>\n</ul>", 
  "license": "https://creativecommons.org/licenses/by/4.0/legalcode", 
  "creator": [
    {
      "affiliation": "Vienna University of Technology,  Institute of Production Engineering and Photonic Technologies, Getreidemarkt 9, 1060 Vienna, Austria", 
      "@type": "Person", 
      "name": "Constantin Zenz"
    }
  ], 
  "url": "https://zenodo.org/record/5507355", 
  "datePublished": "2021-08-31", 
  "keywords": [
    "Multi-physical simulation", 
    "Laser Beam Welding", 
    "Powder Bed Fusion", 
    "Additive Manufacturing", 
    "Beam Shape Optimization"
  ], 
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  "identifier": "https://doi.org/10.5281/zenodo.5507355", 
  "@id": "https://doi.org/10.5281/zenodo.5507355", 
  "@type": "Dataset", 
  "name": "Dataset of Simulations for LBW and PBF processes"
}
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