Gap-Bridging during Quasi-Simultaneous Laser Transmission Welding

  • Tightness is often the main requirement for quasi-simultaneous laser transmission welds. However, remaining gaps cannot be detected by the used set-path monitoring. By using a pyrometer in combination with a 3D-scanner, weld seam interruptions can be localized precisely while welding, due to temperature deviations along the weld contour. To analyze the temperature signal in correlation to theTightness is often the main requirement for quasi-simultaneous laser transmission welds. However, remaining gaps cannot be detected by the used set-path monitoring. By using a pyrometer in combination with a 3D-scanner, weld seam interruptions can be localized precisely while welding, due to temperature deviations along the weld contour. To analyze the temperature signal in correlation to the progress of gap-bridging, T-joint samples with predefined gaps are welded. The set-path is measured synchronously. Additionally, the temperature distribution and the influence of the thermal expansion of the polymers are studied by a thermo-mechanical FEM-process simulation. On top of that, the melt blow-out of the welded samples is analyzed using μCT-measurements. The experiments have shown that closing of a gap can be identified reliably by the temperature signal and that the squeezed melt flow into the gap and the thermal expansion in the gap zone accelerates gap-bridging. Furthermore the inserted heat can be adapted in the fault zone, in order to avoid thermal damage.show moreshow less

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Metadaten
Author:Anton Schmailzl, Stefan HierlOTHGND, Michael Schmidt
DOI:https://doi.org/10.1016/j.phpro.2016.08.113
ISSN:1875-3892
ISSN:1875-3884
Parent Title (English):Physics Procedia
Publisher:Elsevier
Place of publication:Amsterdam [u.a.]
Editor:Michael Schmidt
Document Type:conference proceeding (article)
Language:English
Year of first Publication:2016
Release Date:2021/02/09
Volume:83
First Page:1073
Last Page:1082
Konferenzangabe:9th International Conference on Photonic Technologies - LANE 2016, September 19-22, Fürth, Germany
Institutes:Fakultät Maschinenbau
Fakultät Maschinenbau / Labor Laser-Materialbearbeitung (LMP)
Begutachtungsstatus:peer-reviewed
Open Access Publication channel:Gold Open Access- Erstveröffentlichung in einem/als Open-Access-Medium
research focus:Materialien und Produktion
Licence (German):Creative Commons - CC BY-NC-ND - Namensnennung - Nicht kommerziell - Keine Bearbeitungen 4.0 International
Frontdoor-URL:https://opus4.kobv.de/opus4-oth-regensburg/1020
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