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Llithium Cell fabrication machine

December 20 , 2023

Coating Machine:

Detailed Functionality: Utilizes precision coating techniques such as Cylindrical Cell pilot line or slot-die coating to apply a consistent and controlled layer of electrode materials onto current collectors.

Advanced Features: May include in-line thickness monitoring systems and automated adjustments to ensure uniform coating across the entire surface.


Calendaring Machine:

Detailed Functionality: Employs high-pressure rollers to compress and shape the coated electrode materials with precision. May involve multiple calendaring stages for fine-tuning.

Quality Control Measures: Incorporates advanced sensors to monitor thickness variations and maintain uniform density.


Winding or Stacking Machine:

Detailed Functionality: Offers programmable control for the winding or stacking process, ensuring tight tolerances and proper alignment of electrode materials.

Advanced Features: Incorporates tension control systems to prevent deformities and maintain uniform winding or stacking.


Assembly Machine:

Detailed Functionality: Employs robotic arms or automated systems for the precise assembly of electrode stacks and separators, maintaining the desired cell configuration.

Quality Assurance: Utilizes computer vision and sensors to verify proper alignment and positioning of components.


Electrolyte Filling Machine:

Detailed Functionality: Uses automated dispensing systems to precisely inject the required amount of electrolyte into each Cylindrical Cell pilot line

Advanced Features: May include in-line monitoring of electrolyte volume and viscosity to ensure accuracy.


Formation Equipment:

Detailed Functionality: Utilizes programmable charge and discharge cycles in controlled environments, allowing for the conditioning and activation of cells.

Data Logging: Integrates sophisticated data logging systems to monitor voltage, temperature, and capacity throughout the formation process.


Tab Welding Machine:

Detailed Functionality: Employs spot welding or laser welding techniques for precise and secure attachment of metal tabs to electrode materials.

Quality Control Measures: Incorporates real-time monitoring to ensure consistent weld quality and electrical conductivity.


Testing and Quality Control Equipment:

Detailed Functionality: Utilizes a combination of testing stations for capacity, voltage, internal resistance, and cycle life testing.

Integrated Software: Incorporates advanced software for data analysis, providing detailed insights into cell performance.


Safety Testing Equipment:

Detailed Functionality: Employs specialized equipment to simulate and assess the cell's response to extreme conditions, including overcharging, short circuits, and thermal stress.

Safety Protocols: Includes fail-safe mechanisms and real-time monitoring to ensure the safety of the testing environment.


Labeling Machine:

Detailed Functionality: Integrates high-speed label application systems, ensuring accurate placement and adhesion of labels.

Variable Data Printing: Incorporates technology for printing unique information, such as batch numbers and production dates, on each label.


Packaging Machine:

Detailed Functionality: Utilizes automated packaging lines with robotics for efficient and precise packaging of finished cells.

Protective Measures: Includes mechanisms for cushioning and securing cells within packaging to prevent damage during transportation.


Research and Development (R&D) Equipment:

Detailed Functionality: Equips R&D facilities with versatile testing equipment for prototyping and experimenting with novel materials and designs.

Flexibility: Supports quick changeovers and adaptations for iterative testing and development.


Automation Systems:

Detailed Functionality: Integrates programmable logic controllers (PLCs) and robotic systems to automate material handling, processing, and quality control.

Smart Manufacturing: Utilizes Industry 4.0 principles, enabling real-time data exchange and connectivity for process optimization.


Data Collection and Analysis Tools:

Detailed Functionality: Utilizes comprehensive data logging systems with advanced analytics for continuous monitoring and analysis of various parameters.

Machine Learning Integration: Incorporates machine learning algorithms for predictive maintenance and optimization based on historical data.

These detailed functionalities showcase the sophistication and precision of the equipment used in a modern Cylindrical Cell Production line, emphasizing the importance of advanced technologies for efficient and high-quality production.




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