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Rolled multi material layered 3D shaping technology

Objectif

Various emerging markets in the field of non silicon multimaterial micro devices offer a huge potential for commercialisation in the near future. However, solutions for mass-production for most of them have still to be developed. The objective of the MULTILAYER project is to develop a set of solutions for the large-scale production of micro devices based on a technology we call “Rolled multi material layered 3D shaping technology” and using the concept of tape casting and advanced printing techniques. This technology will enable to manufacture complex multifunctional 3D-micro parts on a layer by layer manner and in a high-throughput context. Each layer can be given a specific structure. They will be printed and contain channels and cavities that are open or filled in a very high precision manner. The microsystems will have as basic building material ceramics, which is a clear advantage in applications that require high temperature, corrosive environments and long time reliability. Furthermore, it will allow spatial resolutions under 10 µm and the ceramics tapes developed will be down to 10 µm thin. The “Rolled multi material layered 3D shaping technology” will have several advantages: - it will be an efficient mass production method - the fabrication series can attain over a million units - it will offer a good flexibility for a wide variety possible component designs, - it will allow the integration of different materials as different layers enabling to manufacture multimaterial multilayered packages with a high degree of integration, - the process will be very reliable, indeed, every single layer can be advantageously inspected and controled

Appel à propositions

FP7-NMP-2007-LARGE-1
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Coordinateur

COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES
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Rue Leblanc 25
75015 Paris 15
France

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Research Organisations
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Yves Hussenot (Mr.)
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€ 876 389

Participants (17)

RISE IVF AB
Suède
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€ 606 553
Adresse
Argongatan 30
431 53 Molndal

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Research Organisations
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Sylvia Håkansson (Ms.)
FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV
Allemagne
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€ 638 918
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Hansastrasse 27c
80686 Munchen

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Research Organisations
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Walter Krause (Mr.)
KUNGLIGA TEKNISKA HOEGSKOLAN
Suède
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€ 309 290
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Brinellvagen 8
100 44 Stockholm

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Higher or Secondary Education Establishments
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Christina Carlsson (Ms.)
CRANFIELD UNIVERSITY
United Kingdom
Contribution de l’UE
€ 326 429
Adresse
College Road
MK43 0AL Cranfield - Bedfordshire

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Higher or Secondary Education Establishments
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Paul Brelade Kirby (Dr.)
CARDIFF UNIVERSITY
United Kingdom
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€ 359 400
Adresse
Newport Road 30 36
CF24 0DE Cardiff

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Higher or Secondary Education Establishments
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Nick Bodycombe (Mr.)
POLITECHNIKA WROCLAWSKA
Pologne
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€ 120 760
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Wybrzeze Wyspianskiego 27
50-370 Wroclaw

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Higher or Secondary Education Establishments
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Leszek Golonka (Prof.)
THE CHANCELLOR MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE
United Kingdom
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€ 210 026
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Trinity Lane The Old Schools
CB2 1TN Cambridge

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Higher or Secondary Education Establishments
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Dawn Barker (Ms.)
UNITY SEMICONDUCTOR
France
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€ 154 413
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611 Rue Aristide Berges
38330 Montbonnot-saint-martin

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Gilles Du Sordet (Mr.)
KERANOR AS
Norvège
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€ 291 844
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Brobekkveien 104a
0582 Oslo

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Bernt Thorstensen (Dr.)
KMS Automation GmbH
Allemagne
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€ 385 210
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Im Webertal 20
78713 Schramberg-waldmoesssingen

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Joachim Schullerer (Mr.)
INSTITUT POLYTECHNIQUE DE GRENOBLE
France
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€ 203 454
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Avenue Felix Viallet 46
38031 Grenoble Cedex 1

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Clémentine Gleizal (Ms.)
CENTRO RICERCHE FIAT SCPA
Italie
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€ 261 268
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Strada Torino 50
10043 Orbassano

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Massimo Casali (Dr.)
OMNISYS INSTRUMENTS AB
Suède
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€ 241 600
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August Barks Gata 6b
421 30 Vastra Frolunda

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Martin Kores (Mr.)
LEGRAND
France
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€ 144 451
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Avenue Du Marechal De Lattre De Tassigny 128
87000 Limoges

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Alain Lambert (Mr.)
BPE INTERNATIONAL DR HORNIG GMBH
Allemagne
Contribution de l’UE
€ 330 000
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Fohrenstrasse 51
90542 Eckental

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Private for-profit entities (excluding Higher or Secondary Education Establishments)
Contact administratif
Wolfgang Hornig (Dr.)
MICRO SYSTEMS ENGINEERING GMBH
Allemagne
Contribution de l’UE
€ 332 431
Adresse
Schlegelweg 17
95180 Berg Oberfranken

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Gabriele Görich (Ms.)
KARLSRUHER INSTITUT FUER TECHNOLOGIE
Allemagne
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€ 707 564
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Kaiserstrasse 12
76131 Karlsruhe

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Higher or Secondary Education Establishments
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Klaus Rieger (Mr.)