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Load-adapted design of generative manufactured lattice structures

: Reinhart, G.; Teufelhart, S.

Preprint urn:nbn:de:0011-n-1746513 (895 KByte PDF)
MD5 Fingerprint: 08dc2c8c3da33a584207048cda1794a2
Created on: 28.7.2011

Schmidt, M. ; Wissenschaftliche Gesellschaft Lasertechnik -WLT-:
Lasers in Manufacturing 2011, Sixth International WLT Conference on Lasers in Manufacturing. Proceedings : May 23-26, 2011, München; LiM 2011
Amsterdam: Elsevier, 2011 (Physics Procedia 12.2011, Pt.1)
ISSN: 1875-3892
International Conference on Lasers in Manufacturing (LIM) <6, 2011, München>
Conference Paper, Journal Article, Electronic Publication
Fraunhofer IWU ()
Additive Layer Manufacturing (ALM); selective laser melting (SLM); lightweight design; lattice structures

Additive layer manufacturing offers many opportunities for the production of lightweight components, because of the high geometrical freedom that can be realized in comparison to conventional manufacturing processes. This potential gets demonstrated at the example of a bending beam. Therefore, a topology optimization is performed as well as the use of periodically arranged lattice structures. The latter ones show the constraint, that shear forces in the struts reduce the stiffness of the lattice. To avoid this, the structure has to be adapted to the flux of force. This thesis is supported by studies on a torque-loaded shaft.