Toolless Manufacturing of Complex Structures

Akronym

ToMax

Bidragets beskrivning

Lithography based additive manufacturing technologies (L-AMT) are capable of fabricating parts with excellent surface quality, good feature resolution and precision. ToMax aims at developing integrated lithography-based additive manufacturing systems for the fabrication of ceramic parts with high shape complexity. The focus of the project is to unite industrial know-how in the field of software development, photopolymers and ceramics, high-performance light-sources, system integration, life cycle analysis, industrial exploitation and rewarding end-user cases. The consortium will provide 3D-printers with high throughput and outstanding materials and energy efficiency. The project is clearly industrially driven, with 8 out of 10 partner being SMEs or industry. Targeted end-use applications include ceramics for aerospace engineering, medical devices and energy efficient lighting applications. The consortium is aiming to exploit disruptive applications of L-AMT by developing process chains beyond the current state of the art, with the dedicated goal to provide manufacturing technologies for European Factories of the Future. By relying on L-AMT, ToMax the following objectives are targeted: (1) ToMax will provide methods which are 75% more material efficient with respect to traditional manufacturing (2) Are 25% more material efficient with respect to current AMT approaches by using computational modelling to optimize geometries and by providing recyclable wash-away supports. (3) ToMax will provide methods which are 35% more energy efficient that current AMT approaches by developing 50% faster thermal processing procedures. (4) Incorporate recycling for the first time in L-AMT of engineering ceramics Overall, the consortium will provide innovative, resource efficient manufacturing processes. ToMax will develop energy-efficient machinery and processes, with a focus on manufacturing of alumina, silicon nitride and cermet parts with high shape complexity.
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Startår

2015

Slutår

2017

Beviljade finansiering

DESKARTES OY
330 250 €
Participant
INTERNATIONAL SYALONS NEWCASTLE LIMITED (UK)
110 000 €
Participant
LITHOZ GMBH (AT)
431 875 €
Participant
R2M SOLUTION SRL (IT)
261 320 €
Participant
RAUSCHERT HEINERSDORF - PRESSIG GMBH (DE)
165 625 €
Participant
OSRAM GMBH (DE)
388 000 €
Participant
CYCLECO SAS (FR)
309 353 €
Participant
IN-VISION DIGITAL IMAGING OPTICS GMBH (AT)
280 750 €
Participant
UNIVERSIDAD POLITECNICA DE MADRID (ES)
253 313 €
Participant
TECHNISCHE UNIVERSITAET WIEN (AT)
627 500 €
Coordinator

Beviljat belopp

3 157 986 €

Finansiär

Europeiska unionen

Typ av finansiering

Research and Innovation action

Ramprogram

Horizon 2020 Framework Programme

Utlysning

Programdel
INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Advanced manufacturing and processing (5268)
Technologies for Factories of the Future (5269)
Tema
Manufacturing processes for complex structures and geometries with efficient use of material (FoF-02-2014)
Utlysnings ID
H2020-FoF-2014

Övriga uppgifter

Finansieringsbeslutets nummer

633192

Identifierade teman

manufacturing, production, industry