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  4. Generieren von Leichtbaustrukturen mittels Laserstrahlschmelzen
 
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2009
Presentation
Title

Generieren von Leichtbaustrukturen mittels Laserstrahlschmelzen

Title Supplement
Vortrag gehalten auf dem Workshop "Aktiver und passiver Leichtbau im Maschinenbau und der Bauindustrie", 9. September 2009, Chemnitz
Abstract
Selective Laser Melting technologies allow direct additive manufacturing of metallic components of virtually unlimited freedom of design, bearing huge potential for new light weight design solutions in light weight metal alloys like aluminum, titanium, stainless steel and others. This presentation explains the new technology and respective machinery, lists its advantages for new light weight solutions and illustrates the new design freedom the technology offers to the professional design engineer, e. g. periodic lattice structures or freeform structures using bionic design rules and topology optimization tools. It shows examples and references for light weight parts manufactured by Selective Laser Melting like medical implants, safety crash absorbers, turbine wheels, motorsports applications and many more. It also gives a prospective on expedient future applications of Laser Melting technologies for extreme light weight solutions.
Author(s)
Müller, B.
Töppel, T.
Gebauer, M.
Conference
Workshop "Aktiver und passiver Leichtbau im Maschinenbau und der Bauindustrie" 2009  
File(s)
Download (1.9 MB)
Rights
Use according to copyright law
DOI
10.24406/publica-fhg-365350
Language
German
Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik IWU  
Keyword(s)
  • additive manufacturing

  • rapid prototyping

  • rapid manufacturing

  • selective laser melting

  • light weight structure

  • lattice structures

  • graded structures

  • freeform structures

  • bionic structures

  • topology optimization

  • individual light weight design

  • extreme light weight design

  • Generative Fertigung

  • Laserstrahlschmelzen

  • Leichtbaustruktur

  • (periodische) Gitterstruktur

  • Fachwerkstruktur

  • gradierte Struktur

  • Freiformstruktur

  • bionische Struktur

  • Topologieoptimierung

  • individueller Leichtbau

  • Extremleichtbau

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