Inspection of the electrode geometry involves examining the spacing between the electrodes, their size and orientation with respect to each other, their distance from the wall, and their angles. ![]() When inspecting the batteries at the cell level, engineers examine the mechanical fabrication to see if there are any inclusions, the homogeneity of the electrodes, internal connections (welding), and the arrangement of the electrodes in the cells. CT is a universal tool to control the cell.įor example, the batteries used for electric vehicles or energy storage are made up of modules, and each module in turn is made up of multiple cells. Every cell that tests as poor lowers efficiency and drives up costs. However, the main goal of our customers is to optimize cost efficiency. It thus reduces failed tests, and thereby scrap, costs, and environmental impact. That makes CT the best solution for finding the cause when batteries fail or test poorly. With 3D CT technology, we can look inside the battery after assembly, inspect in greater detail, and assess the entire cell more accurately. Waygate Technologies' software can also be deployed on the cloud to do additional ADR from batteries and other domains. The highly consistent defect analysis results can reduce the workload for highly qualified operators and thus helps companies become more operator independent. for highly accurate overhang issue detection), and the algorithms get more accurate over time. ![]() Authorized operators can parametrize scanned samples (e.g. Reporting functions allow to identify potential negative trends in production at just a glance. Waygate Technologies' software consists of the full and intuitive workflow management as well as a comprehensive ADR library running in the background of your production, delivering automatic decision making. ![]() X|approver, is machine learning on-premises ADR software (Automated Defect Recognition) with specific teachable algorithms to evaluate the quality of battery and other components. ![]() Datos|x software is used to acquire and reconstruct CT data volumes from 3D systems.
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