SICS
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44 Projects, page 1 of 9
assignment_turned_in Project2010 - 2013Partners:ISESP, UC, INRIA, ORANGE SA, University of Bremen +21 partnersISESP,UC,INRIA,ORANGE SA,University of Bremen,University of Paderborn,TECNALIA,AALTO,Telefonica Research and Development,DOCOMO,EAB,NICTA,IMT,SICS,LYATISS,KTH,NEC,HPLB,TELECOM ITALIA S.p.A,Alcatel-Lucent (Germany),Trinity College Dublin, Ireland,FHG,NSNFINLAND,CSIRO,Technion – Israel Institute of Technology,PT Inovação e Sistemas (Portugal)Funder: European Commission Project Code: 257448more_vert assignment_turned_in Project2008 - 2012Partners:University of Bonn, SAP AG, University of Duisburg-Essen, TU Berlin, Schneider Electric (Germany) +15 partnersUniversity of Bonn,SAP AG,University of Duisburg-Essen,TU Berlin,Schneider Electric (Germany),ISEP,SELEX ES,TELECOM ITALIA S.p.A,AICIA,BAS,UniPi,UCG,UCL,SEA,EPFZ,UCY,TU Delft,Polytechnic Institute of Porto,SICS,Schneider Electric (France)Funder: European Commission Project Code: 224053more_vert assignment_turned_in Project2010 - 2013Partners:ICCS, SNIA Europe, iTricity, Umeå University, Siemens (Germany) +10 partnersICCS,SNIA Europe,iTricity,Umeå University,Siemens (Germany),RAI,SICS,UNIME,ORANGE SA,ENGINEERING - INGEGNERIA INFORMATICA SPA,IBM ISRAEL,Telefonica Research and Development,SAP AG,DW,TELENOR ASAFunder: European Commission Project Code: 257019more_vert Open Access Mandate for Publications assignment_turned_in Project2016 - 2019Partners:SICSSICSFunder: European Commission Project Code: 716864Overall Budget: 343,996 EURFunder Contribution: 343,996 EURIn the “DADIYSO COMP” project Swerea SICOMP covers the entire topic and will be the only partner. Swerea SICOMP will develop an FE-based simulation tool for rapid predictions of cure induced part distortions including sub models for cure kinetics, glass transition, and constitutive relations among other aspects. A balance between accuracy, complexity, and simulation time will be achieved which will enable the tool to be used for optimization purposes. Carbon-epoxy distortion calibration coupons and small demonstrator parts will be manufactured and measured to validate the simulation tool for rapid cure distortion predictions. The final simulation tool for cure distortions will be included in an optimisation framework to allow for shape and layup optimisation to account for cure induced part distortions. The optimization framework will evaluate which areas within the part have the most significant contribution to global distortion, and then adjust the tool/part shape and material layup in these areas to minimize the effects of distortion. Also an efficient part data (CAD + ply-book) to CAE interfacing method will be developed to import a part design into the optimisation environment, as well as the reverse process. Emphasis will be on creating tools that are accurate and robust, while maintaining a level of complexity that would not be overwhelming for a non-expert engineer in either cure distortion or optimization. Finally the entire package will be demonstrated on one or more use cases together with the topic manager. The final result of DADIYSO COMP will help designers to predict and prevent distortion in a reliable manner as well as give ideas on how to improve the design for manufacturing
more_vert assignment_turned_in Project2014 - 2017Partners:Liander (Netherlands), ABB AS, SICS, INCODE, EDP DISTR +5 partnersLiander (Netherlands),ABB AS,SICS,INCODE,EDP DISTR,ENCS,FFCUL,TNO,KTH,ZIVFunder: European Commission Project Code: 607109more_vert
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