Risultati finali
This Workshop will convey all aspects in the processing of MAX phases, with special attention on application-driven chemical & microstructural optimisation. Also emphasis will be put on the relation between MAX phase composition (including solid solutions) & microstructure with in-service mechanical performance. Setting the scene for the development of MAX phase-based material designed for harsh environments (irradiation, corrosive media, high temperatures & pressures) will primarily be based on the state-of-the-art know-how on bulk MAX phase materials, extrapolating in the field of applications requiring the deposition of coatings to ensure the protection of a substrate. This Workshop will be organised at UP (long-standing experience in MAX phase production & characterisation) and lectures will be given by top MAX phase experts in the Consortium (DU, KU Leuven, SCK•CEN, ICL, UCAM, UoM, UoH, UP, RWTH) and industries (SHT).
Workshop on multiscale modellingThis Workshop will introduce the students to the principles of multiscale modelling and simulation techniques needed to predict in-service material behaviour and better understand material degradation mechanisms. The Workshop will include lectures based on the project modelling approaches (BCA, KMC, first principle calculations, molecular dynamics, FEM) as well as hands-on computer/simulation exercises. This one week-long Workshop will be organised at KU Leuven as an activity of the ATHENS (Advanced Technology Higher Education Network) network, which is made of 15 leading European technological Universities with KU Leuven being one of them. The ATHENS network (http://athensnetwork.eu) organises intensive short-duration specialization courses during pre-defined periods of the academic year (November and March) at each member institution. The so-called ATHENS week was established with the support of the EC SOCRATES programme receiving an annual subsidy of 50000 € between 1997 and 2001. Today, the Programme is mainly funded by contributions of the member institutions. The ATHENS programme facilitates the exchange of students between European technological institutions, usually motivating students to continue their studies at a higher level; each session includes 30 hours of scientific courses and 10-15 hours of 'European Dimension' cultural activities, and is equivalent to 23-ECTS credits. The Workshop lecturers will include top experts from the Consortium (UOXF, UCAM, RWTH, SCK•CEN, KTH, GTT, ICL).
Autumn School on ATF developmentThe IL TROVATORE Autumn School, which took place in October 2022, was dedicated to the project core objective, i.e., the development of ATF claddings and their joints. Special attention was paid to joining the ATF cladding tubes, an aspect that was not specifically addressed in any other Workshop. The Autumn School was organised at POLITO (long-standing expertise in the joining of SiC/SiC claddings) and the lectures addressed all aspects of ATF cladding material development (all bulk, coated & surface-modified concepts; joining; interaction with both coolant and standard LWR fuels; ion/proton/neutron irradiation & PIE; predictive modelling activities).
Workshop on surface engineering technologiesThis Workshop will cover aspects of the surface engineering technologies (coatings & surface modification) used in the project, providing a basic background on thin film physics. The specific characteristics and limitations of the coating technologies (magnetron sputtering, cathodic arc deposition, cold spraying, pulsed laser deposition) and the GESA surface modification process considered in IL TROVATORE will be addressed, including state-of-the-art interface engineering approaches for particular systems. This Workshop will be organised at KIT (GESA process development and upscaling to 1 m-long tubes) and lectures will be given by top experts in the field of thin film and surface engineering technologies (RWTH, LiU, HSU, IIT, KIT) and industries (PLANSEE, HAUZER).
Background study; codes, models & parameters for n-damage in SiC and PyC/SiC; thermodynamic stability of coating alloys and coated clad systems; ab initio models on coating thermomechanical and chemical stability, n-induced defect microstructures, etc.; in-service damage evolution
TEM specimen preparation protocol for irradiated materialsEstablishment of a material-specific TEM specimen preparation protocol for ion/proton-irradiated materials
Mid-term assessment of ATF cladding/coolant interaction"Report on the performance of ATF clads & joints that passed the ""go/no-go"" tests; report on underperforming ATF clads & joints; suggestions for further material optimisation"
Detailed design of MISTRAL rigAn existing MISTRAL rig design (able to irradiate in the 250-350C range) will be adapted to meet the project goals, taking into account the materials to be irradiated (i.e., chemical composition, density, specimen geometry)
Standardisation roadmapIdentify standardisation activities and suggest associated implementation plan
Advanced characterisation of ATF clads & joints prior to BR2 irradiationThermomechanical damage evolution performance of critical interfaces microstructure coating yield behaviour leak tightness suggestions for further material optimisation
Mid-term review report on existing irradiation dataBackground study new ionproton irradiation data
Mid-term assessment of ion/proton irradiation tolerance of ATF clads/jointsReport on the performance of ATF clads & joints with promising irradiation tolerance; report on underperforming ATF clads/joints; suggestions for further material optimisation
Communication action planDetailed communication action plan considering the suggestions of all involved parties
Assessment of test procedure for SiC/SiC cladsEvaluation of best-practice testing procedure for SiC/SiC clads & their constituents; test data and associated statistics
Creation of project website & 'visual identity' (logo – see section 2.2.2)
Since IL TROVATORE participates to the Open Research Data Pilot, the first draft of the Data Management Plan (DMP) must be submitted to the EC within the first 6 months of the project. The DMP will evolve during the project, until a mature data management policy is established during the project lifetime.
Pubblicazioni
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Editore:
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Editore:
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