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Hybridization of materials and processes by additive manufacturing

: Moritz, Tassilo; Scheithauer, Uwe; Weingarten, Steven; Abel, Johannes; Johne, Robert; Michaelis, Alexander; Hampel, Stefan; Cano, Santiago

Volltext ()

Chua, C.K.:
3rd International Conference on Progress in Additive Manufacturing, Pro-AM 2018. Proceedings : Nanyang Executive Centre, Nanyang Technological University, Singapore, 14 May 2018 through 17 May 2018
Nanyang: Nanyang Technological University, 2018
ISSN: 2424-8967
International Conference on Progress in Additive Manufacturing (PRO-AM) <3, 2018, Singapur>
Konferenzbeitrag, Elektronische Publikation
Fraunhofer IKTS ()
Fused Filament Fabrication (FFF); thermoplastic 3D printing (T3DP); Metal ceramic material compounds; CerAMfacturing

Material hybrids allow for property combinations like electrically conductive/electrically insulating, magnetic/non-magnetic, ductile/hard, porous/non-porous or metallic gloss combined with different colors. Furthermore, as known from MEMS (Micro electromechanical systems), hybrid components can get sensor or actor functions. Hybridization of processes offers the opportunity to combine shaping technologies which are especially suited for dense or porous structures, small or large series numbers, 2D or 3D applications, individualization or mass production, etc. However, combining different materials or powder technological processes requires adjustment of material properties for co-processing. The article focuses on combinations of different ceramic components with different pore structures or colors and ceramics with stainless steel by Additive Manufacturing methods.