Coordinatore | UAB MODERNIOS E-TECHNOLOGIJOS
Organization address
address: TAIKOS 7 contact info |
Nazionalità Coordinatore | Lithuania [LT] |
Sito del progetto | http://www.mesmesh.eu |
Totale costo | 2˙606˙029 € |
EC contributo | 1˙925˙000 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2008-SME-2 |
Funding Scheme | CP-TP |
Anno di inizio | 2009 |
Periodo (anno-mese-giorno) | 2009-10-01 - 2012-10-31 |
# | ||||
---|---|---|---|---|
1 |
UAB MODERNIOS E-TECHNOLOGIJOS
Organization address
address: TAIKOS 7 contact info |
LT (VISAGINAS) | coordinator | 228˙250.00 |
2 |
F.A. Muggler Service A/S
Organization address
address: Fabriksvangen 15 contact info |
DK (Slangerup) | participant | 381˙025.00 |
3 |
VILNIAUS UNIVERSITETAS
Organization address
address: UNIVERSITETO G. 3 contact info |
LT (VILNIUS) | participant | 353˙400.00 |
4 |
PERA INNOVATION LIMITED
Organization address
address: Innovation Park, Nottingham Road contact info |
UK (MELTON MOWBRAY, LEICESTERSHIRE) | participant | 338˙005.00 |
5 |
UNIVERSITY OF BATH
Organization address
address: CLAVERTON DOWN contact info |
UK (BATH) | participant | 307˙800.00 |
6 |
BALTIJOS POLISTIRENAS UAB
Organization address
address: S. Lozoraicio 15A contact info |
LT ("GARLIAVA,KAUNO") | participant | 127˙400.00 |
7 |
"MATRICAN, S.A."
Organization address
address: POLIGONO INDUSTRIAL GUARNIZO 45 contact info |
ES (EL ASTILLERO) | participant | 115˙000.00 |
8 |
DANISH INNOVATION INSTITUTE A/S
Organization address
address: Diplomvej Bygning 373 contact info |
DK (Kongens Lyngby) | participant | 74˙120.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'The aim of the project is the development of a pre-commercial prototype mould with built in continuous structural health monitoring. This will be achieved by carrying out research work appropriate for developing femtosecond laser metal processing techniques to produce smooth walled and depth-controlled grooves on metal parts. In these groves a TiN/Al2O3 composite will be sintered in a few micron thick layer that will work as a wave guide for high frequency pulsing. The measurements will be processed by an FPGA or appropriate dedicated DSP module, to give the user a real time indicator of the structural health of the metal part. If the steel surface gets damaged or is worn down through use, the ceramic grid will crack or become thinner and have increased resistance. Using a number of transducers the surface damage can be quantified and allow for preventive maintenance. The developed technology will be implemented and tested on high precision flanges used in machine construction and on moulds used for injection molding, and hence these will work as proof of concept. The technology could potentially also be used for real time health measurements on dyes for extrusion, in the automotive industry the technology can be applied to driveshaft’s, gears, break pads and a number of other areas where steel surfaces are subjected to continuous friction.'
Optimization of joining processes for new automotive metal-composite hybrid parts
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