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Funded Projects › HORIZON

MADE-3D · Multi-Material Design using 3D Printing

HORIZONStatus: SIGNED1 January 202330 June 2026EU funding €5,482,007Call HORIZON-CL4-2022-RESILIENCE-01

Additive manufacturing (AM) has the economic potential to complement conventional manufacturing processes, especially in the production of complex, multi-material (MM) components. To exploit the full benefits of optimized lightweight structures, it is usually required to use multi-materials with different physical properties. Still, multi-material combinations from conventional processes are not transferable to AM, due to residual stresses, cracks or thermal expansion rates of the different materials. Furthermore, geometric shape and position tolerances, as well as recycling strategies for powder waste, post-processed waste and the component itself are not yet defined. Based on the 3D printing processes PBF-LB and DED, this project aims at the concurrent engineering of designing processable multi-material optimized alloys, development of design concepts for multi-material structures with specific simulations for load cases and topology optimizations, and an extensive process adaption. Alloy and process development will be aided by advanced integrated computational material engineering approaches that combine thermodynamics, microstructure, and process simulations through machine-/active learning, resulting in shorter material development cycles. For bulk and powder materials, recycling of multi-material components via innovative concepts will promote the sustainability of multi-material additive manufacturing. This adaption will lead to increased process reliability and speed, enabling the dissemination of MM manufacturing in AM for the entire industry.The consortium brings a wide range of international expertise to the table, from materials research and digitization to the manufacture of multi-material components. It consists of startups, research institutions and market leaders in additive manufacturing. Industrial end-users cover automotive, aerospace and aeronautic applications with specific use cases.

Consortium · 13 organisations

coordinator

UNIVERSITAET PADERBORN

DE · €887,825

participant

EXPONENTIAL TECHNOLOGIES

LV · €278,044

associatedPartner

SKYRORA LTD

UK

associatedPartner

CSEM CENTRE SUISSE D'ELECTRONIQUE ET DE MICROTECHNIQUE SA - RECHERCHE ET DEVELOPPEMENT

CH

participant

FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV

DE · €477,250

participant

COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

FR · €338,623

participant

NIKON SLM SOLUTIONS AG

DE · €624,125

participant

SAFRAN ADDITIVE MANUFACTURING CAMPUS

FR · €438,890

participant

F3NICE

IT · €566,250

participant

AVL LIST GMBH

AT · €560,450

participant

Thermo Calc Solutions AB

SE · €623,051

participant

PANEPISTIMIO AIGAIOU

EL · €448,750

participant

AMIRES SRO

CZ · €238,750

Research fields

View the official record on CORDIS →

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Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.