Periodic Reporting for period 1 - CIRC-UITS (Circular Integration of independent Reverse supply Chains for the smart reUse of IndusTrially relevant Semiconductors)
Période du rapport: 2023-01-01 au 2024-06-30
Within WP2, T2.1 studied the state of the art of Data Spaces and Digital Product Passport and analysed the most used IoT protocols. Achievements: 1) A strategy for secure data exchange and 2) Selection of a framework technology for Data Space connector. T2.2 designed the toolbox architecture and the partners role was defined, including all 4 pilots. Achievements: 1) 1st version of the CIRC-UITS digital toolbox, 2) 1st iteration of technical developments for some components. T2.3 developed the Digital Twin architecture, including the pilot case studies.
Within WP3, T3.1 performed the following work: 1) LCS&CA Methodology Definition, 2) AI-based advisory state of the art, 3) Pilot Inventory Table, 4) Identification of Needs, 5) User Stories, 6) Selection of Indicators. Achievements: 1) CIRC-UITS LCS&CA and Advisory Framework, 2) AI-based advisory use cases, 3) Identification of pilot needs and user stories. T3.2 performed the following work: 1) Data Collection, 2) Design of Services Architecture, 3) Definition of the Assessment and Advisory services integration flows to enable non-experts to assess the impact of their decisions. Achievements: 1) Initial data collection for the LCA of the pilot 1 and pilot 2, 2) Assessment and Advisory services architecture, 3) Assessment and Advisory services integration flows
Within WP4, four pilots have been implemented. PILOT 1 assessed the disassemblability & repairability of ESPs => ECO Design PILOT 2 designed two new green TPMS prototypes by following the eco-design logic. PILOT 3 assessed the eco-design & repairability of IME prototypes. PILOT 4 assessed new sorting procedures for the automatic obsolete PCBs selection. In addition, the design, implementation and testing of new AI-based PCB disassembly procedures is supporting all the pilots. Achievements: 1) definition of ESP's disassemblability & repairability issues/needs, 2) design of two innovative green TPMS prototypes, 3) definition of IME eco-design & repairability issues/needs, 4) definition of new sorting procedures for obsolete PCBs.
2) Digital Twin with advisory functions (further research needed)
3) Digital twin-based process line and design concepts (further demo needed)
4) Extended lifecycle of parts (further research needed)
5) GRETA - web-based microservices (further demo needed)
6) Innovative disassembly solutions for repairing refurbishment, re-use and recycling (further research needed)
7) Knowledge on circularity in printed electronics and integration of circularity concepts in structural electronics (further demo needed)
8) Learning Factory on Circular Business Model (further research needed)
9) Low Temperature Soldering Materials (further demo needed)
10) Methodologies to calculate and interpret sustainability assessment results (further demo needed)
11) Optimized Disassembly/Rework Operations (further demo needed)
12) Recycling simulation tool (further demo needed)
13) Serious games (further demo needed)