1 to 10 of 39 Results
Nov 7, 2022
Hagenlocher, Christian, 2022, "Python implementation of heat accumulation equations for additive manufacturing", https://doi.org/10.18419/darus-2609, DaRUS, V1
This is a python implementation of the heat accumulation equations, which describe the increase of the residual temperature in additive manufacturing. The Derivation of the equations is described in the related paper given below. If you run the script in the console, it creates t... |
Python Source Code - 10.9 KB -
MD5: 8b81775ff2d408c217d897d3fc4384ae
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May 13, 2022
Faure, Frauke; Hagenlocher, Christian; Lind, Jannik; Wagner, Jonas; Weber, Rudolf; Graf, Thomas, 2022, "10 kHz x-ray video of laser beam welding of copper", https://doi.org/10.18419/darus-2086, DaRUS, V1
At the X-ray facility at the IFSW, so far it has been possible to record videos with a framerate of 1 kHz to 3 kHz. In this setup the X-rays propagate through the workpiece and are filmed by the high-speed camera via a projection on the scintilator. Through a new sample formation... |
May 13, 2022 -
10 kHz x-ray video of laser beam welding of copper
AVI Video - 209.4 MB -
MD5: d0482e7d7e3fd17c598a5f853706ea3d
10 kHz X-ray video of laser beam welding process of copper. |
May 13, 2022 -
10 kHz x-ray video of laser beam welding of copper
JPEG Image - 37.6 KB -
MD5: 8ba143f9cf36c0f28f761b2e8486f9e3
Additional explanation to the 10 kHz x-ray video. |
Jan 3, 2022
Hagenlocher, Christian; Boley, Steffen, 2022, "Infrared imaging of laser based direct energy deposition of AlMg5 wire", https://doi.org/10.18419/darus-2242, DaRUS, V1, UNF:6:hJjhqJEMD0Y6k8xQqETXMw== [fileUNF]
The data shows temperature fields, which were recorded during laser-based direct energy deposition of AlMg5 wires by means of infrared imaging. All captured temperature fields are given as sequences of csv data. Each frame of the acquired image sequences is represented by its ind... |
TIFF Image - 1.2 GB -
MD5: 38b88dcddc6fc8e951826684b88613f3
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AVI Video - 4.5 GB -
MD5: 79a0c259ef6b57d6fe055b42a11e7dc3
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TIFF Image - 3.6 MB -
MD5: 16b8e10a91682225e5a19ab3d508afa2
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TIFF Image - 3.6 MB -
MD5: f50b7fd027e10de5559e365c6a317213
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