Coordinatore | EUROPEAN SPACE AGENCY
Organization address
address: Rue Mario Nikis 8-10 contact info |
Nazionalità Coordinatore | France [FR] |
Sito del progetto | http://www.accmet-project.eu/ |
Totale costo | 22˙102˙994 € |
EC contributo | 12˙250˙000 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2010-LARGE-4 |
Funding Scheme | CP-IP |
Anno di inizio | 2011 |
Periodo (anno-mese-giorno) | 2011-06-15 - 2016-06-14 |
# | ||||
---|---|---|---|---|
1 |
EUROPEAN SPACE AGENCY
Organization address
address: Rue Mario Nikis 8-10 contact info |
FR (PARIS) | coordinator | 1˙311˙786.50 |
2 |
THE UNIVERSITY OF BIRMINGHAM
Organization address
address: Edgbaston contact info |
UK (BIRMINGHAM) | participant | 1˙232˙760.00 |
3 |
RENISHAW PLC
Organization address
address: NEW MILLS contact info |
UK (WOTTON UNDER EDGE) | participant | 1˙019˙182.00 |
4 |
GRANTA DESIGN LTD
Organization address
address: CLIFTON ROAD RUSTAT HOUSE 62 contact info |
UK (CAMBRIDGE) | participant | 592˙944.00 |
5 |
THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE
Organization address
address: The Old Schools, Trinity Lane contact info |
UK (CAMBRIDGE) | participant | 588˙968.25 |
6 |
STIFTELSEN SINTEF
Organization address
address: Strindveien 4 contact info |
NO (TRONDHEIM) | participant | 586˙549.00 |
7 |
THE UNIVERSITY OF SHEFFIELD
Organization address
address: FIRTH COURT WESTERN BANK contact info |
UK (SHEFFIELD) | participant | 569˙354.00 |
8 |
DANMARKS TEKNISKE UNIVERSITET
Organization address
address: Anker Engelundsvej 1, Building 101A contact info |
DK (KONGENS LYNGBY) | participant | 519˙174.00 |
9 |
UNIVERSITAET ULM
Organization address
address: HELMHOLTZSTRASSE 16 contact info |
DE (ULM) | participant | 518˙879.00 |
10 |
FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V
Organization address
address: Hansastrasse 27C contact info |
DE (MUENCHEN) | participant | 437˙976.00 |
11 |
TLS TECHNIK GMBH & CO. SPEZIALPULVER KG
Organization address
address: PC STRASSE GEBAUDE 1 23 contact info |
DE (BITTERFELD) | participant | 371˙542.00 |
12 |
UNIVERSITA DEGLI STUDI DI TORINO
Organization address
address: Via Giuseppe Verdi 8 contact info |
IT (TORINO) | participant | 371˙542.00 |
13 |
UNIVERSITE DE ROUEN
Organization address
address: RUE THOMAS BECKET 1 MONT SAINT AIGNAN contact info |
FR (MONT SAINT AIGNAN CEDEX) | participant | 371˙542.00 |
14 |
CARDIFF UNIVERSITY
Organization address
address: Newport Road 30-36 contact info |
UK (CARDIFF) | participant | 371˙483.00 |
15 |
Strategisch Initiatief Materialen
Organization address
address: Technologiepark 903 contact info |
BE (Zwijnaarde) | participant | 352˙876.00 |
16 |
AIRBUS DEFENCE AND SPACE GMBH
Organization address
address: WILLY MESSERSCHMITT STRASSE 1 contact info |
DE (OTTOBRUNN) | participant | 329˙236.20 |
17 |
NORSK TITANIUM AS
Organization address
address: SOMMERROGATEN 13-15 contact info |
NO (OSLO) | participant | 295˙634.00 |
18 |
AKADEMIA GORNICZO-HUTNICZA IM. STANISLAWA STASZICA W KRAKOWIE
Organization address
address: AL ADAMA MICKIEWICZA 30 contact info |
PL (KRAKOW) | participant | 295˙265.00 |
19 |
avantys engineering GmbH & Co. KG
Organization address
address: Cheruskerstrasse 3 contact info |
DE (Paderborn) | participant | 291˙259.00 |
20 |
CENTRO RICERCHE FIAT SCPA
Organization address
address: Strada Torino 50 contact info |
IT (ORBASSANO) | participant | 221˙498.00 |
21 |
INSTITUT MAX VON LAUE - PAUL LANGEVIN
Organization address
address: 6 Rue Jules Horowitz contact info |
FR (GRENOBLE) | participant | 221˙419.00 |
22 |
ROLLS-ROYCE PLC
Organization address
address: BUCKINGHAM GATE 65 contact info |
UK (LONDON) | participant | 196˙842.00 |
23 |
UNITED KINGDOM ATOMIC ENERGY AUTHORITY
Organization address
address: CULHAM SCIENCE CENTRE contact info |
UK (ABINGDON) | participant | 181˙096.00 |
24 |
BRUKER EAS GMBH
Organization address
address: EHRICHSTRASSE 10 contact info |
DE (HANAU) | participant | 147˙760.00 |
25 |
JOHNSON MATTHEY PLC.
Organization address
address: FARRINGDON STREET 25 - 5th floor contact info |
UK (LONDON) | participant | 147˙632.00 |
26 |
ONDERZOEKSCENTRUM VOOR AANWENDING VAN STAAL NV
Organization address
address: Pres. John Kennedylaan 3 contact info |
BE (ZELZATE) | participant | 138˙129.00 |
27 |
INSTALLATION EUROPEENNE DE RAYONNEMENT SYNCHROTRON
Organization address
address: rue Jules Horowitz 6 contact info |
FR (GRENOBLE) | participant | 131˙098.00 |
28 |
MAX PLANCK INSTITUT FUR EISENFORSCHUNG GMBH
Organization address
address: MAX PLANCK STRASSE 1 contact info |
DE (DUSSELDORF) | participant | 119˙640.00 |
29 |
MOLYCORP SILMET AS
Organization address
address: KESK 2 contact info |
EE (SILLAMAE) | participant | 118˙106.00 |
30 |
GE AVIO SRL
Organization address
address: VIA I MAGGIO 99 contact info |
IT (RIVALTA DI TORINO) | participant | 109˙576.54 |
31 |
AVIO S.P.A
Organization address
address: Strada del Drosso 145 contact info |
IT (TORINO) | participant | 86˙928.46 |
32 |
MAGNESIUM ELEKTRON LIMITED
Organization address
address: ANCHORAGE GATEWAY 5 contact info |
UK (SALFORD) | participant | 2˙323.00 |
33 |
MONASH UNIVERSITY
Organization address
address: Wellington Road contact info |
AU (VICTORIA) | participant | 0.00 |
34 |
MTT TECHNOLOGIES LIMITED
Organization address
address: WEST STREET CRAVEN HOUSE ARUNDELL PLACE contact info |
UK (FARNHAM) | participant | 0.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'The core concept of Accelerated Metallurgy is to deliver an integrated pilot-scale facility for the combinatorial synthesis and testing of many thousands of unexplored alloy formulations. This facility would be the first of its kind in the world and would represent a significant advance for metallurgy. The novel technology that enables this HTT facility is based on automated, direct laser deposition (DLD). The key feature of this technology is the way in which a mixture of elemental powders is accurately and directly fed into the laser's focal point, heated by the laser beam, and deposited on a substrate in the form of a melt pool, which finally solidifies to create a unique fully-dense alloy button with precise stoichiometry. This robotic alloy synthesis is 1000 times faster than conventional manual methods. Once produced, these discrete mm-sized samples are submitted to a range of automated, standardised tests that will measure chemical, physical and mechanical properties. The vast amount of information will be recorded in a 'Virtual Alloy Library' and coupled with computer codes such as neural network models, in order to extract and map out the key trends linking process, composition, structure and properties. The most promising alloy formulations will be further tested, patented and exploited by the 20 end-users. Industrial interests include: (i) new lightweight fuel-saving alloys (<4.5 g/cm3) for aerospace and automotive applications; (ii) new higher-temperature alloys (stable>1000°C) for rockets, gas turbines, jet-engines, nuclear fusion; (iii) new high-Tc superconductor alloys (>30K) that can be wire-drawn for electrical applications; (iv) new high-ZT thermoelectric alloys for converting waste heat directly into electricity; (v) new magnetic and magnetocaloric alloys for motors and refrigeration; and (vi) new phase-change alloys for high-density memory storage. The accelerated discovery of these alloy formulations will have a very high impact on society.'
The discovery of promising novel alloys is about to get much easier and incredibly faster. Scientists are employing high-throughput and statistically founded synthesis and testing techniques to drastically speed time-to-market.
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