Home energy storage disassembly analysis
Home energy storage disassembly analysis
6 FAQs about [Home energy storage disassembly analysis]
How is automated disassembly performed?
Utilizing computed tomography (CT) scans, internal cell structures and joints are identified, contributing to the development of disassembly procedures. Through post-mortem analysis, cells are manually disassembled and the processes are evaluated, facilitating the establishment of the framework for automated disassembly.
How does disassembly work?
For this, a necessary disassembly process extends to the cell level with a deeper dismantling down to electrodes. Through dismantling of electrode-separator-composites (ESCs), a separated recovery of the anodic and cathodic active materials is facilitated, ensuring a high level of purity and enabling a regeneration of the active materials.
Can a disassembly station be adapted for cells with hard casings?
Thus, experimental investigations in automated cell disassembly within the station can be executed to verify the disassembly concept and make adjustments to the construction. With this modular design, an adaptation of the disassembly station is feasible for cells with hard casings by quickly replacing the cell opening unit.
How does post-mortem analysis contribute to automated disassembly?
Through post-mortem analysis, cells are manually disassembled and the processes are evaluated, facilitating the establishment of the framework for automated disassembly. Key parameters are outlined and potential tools along with methods for further studies are summarized.
What is automated disassembly framework?
Automated disassembly framework Following the manual dismantling of the investigated battery cells, the internal structures and joints are clearly determined. The identification of component joints within the cell facilitates the development of methods for cell disassembly and components separation.
How can automated battery disassembly process chains be developed?
This research focuses on conceptualizing a framework for developing automated battery disassembly process chains. Utilizing computed tomography (CT) scans, internal cell structures and joints are identified, contributing to the development of disassembly procedures.
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