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  • 1
    Online Resource
    Online Resource
    Cham : Springer Nature Switzerland | Cham : Springer
    UID:
    b3kat_BV048837226
    Format: 1 Online-Ressource (XXXIV, 300 p. 94 illus., 24 illus. in color)
    Edition: 1st ed. 2023
    ISBN: 9783031229565
    Series Statement: Light Engineering für die Praxis
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-031-22955-8
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-3-031-22957-2
    Language: English
    Keywords: Lasertechnologie ; Hochschulschrift
    URL: Volltext  (URL des Erstveröffentlichers)
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    UID:
    b3kat_BV049320092
    Format: XXXII, 300 Seiten , Illustrationen, Diagramme
    ISBN: 9783031229558
    Series Statement: Light Engineering für die Praxis
    Content: Digital production by additive manufacturing -- Research Hypothesis and Methodology -- Material Model of Ti-6Al-4V Alloy in Laser Powder Bed Fusion -- Support Structure Topology Optimization -- Support Structure Design -- Support Structure Performance Benchmark -- Demonstration of algorithmic support structures.
    Content: Additive manufacturing is considered a key technology for digital production. However, several barriers towards the broad industrial application exist, e.g. the associated cost and the required experience regarding the manufacturing process. To eradicate these barriers, the complete digitalization of the value creation process is needed. In this thesis, a digital, automated support structure design procedure is developed. Topology optimization is used for design rule determination, and the space colonization algorithm is adapted for the automated design. The validity of the procedure is proven experimentally, revealing sufficent mechanical performance alongside cost reduction at medium to large production scales. The content Provides a concise review of support structure optimization in laser powder bed fusion Includes thermo-mechanical material model of Ti-6Al-4V alloy Contains cost model for calculation of support-induced costs The author Katharina Bartsch studied mechanical engineering with a focus on product development, materials and production at the Technical University of Hamburg. Here, she received her doctorate in 2022 under Prof. Dr.-Ing. Claus Emmelmann (Institute for Laser and System Technologies - iLAS). During her time as a doctoral candidate, she worked as a research associate as well as chief engineer (since 2020) at the iLAS and as a team leader and research associate (since 2019) at the LZN Laser Zentrum Nord GmbH, later Fraunhofer Research Institution for Additive Production Technologies IAPT.
    Note: Sonstige Körperschaft: Technische Universität Hamburg, Institut für Laser- und Anlagensystemtechnik , Dissertation Technische Universität Hamburg 2022
    Language: English
    Keywords: Lasertechnologie ; Hochschulschrift
    Author information: Bartsch, Katharina
    Author information: Emmelmann, Claus
    Author information: Kriegesmann, Benedikt
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