Javascript must be enabled to continue!
Optimization of Drying Process of Lithium Battery Pole Piece Based on Simulation Technology
View through CrossRef
After electrode pulping and coating of lithium battery, it is necessary to dry the pole pieces, but there is a contradiction between drying efficiency and drying quality. In the process of rapid drying, the binder components are easy to migrate, which reduces the adhesion of the pole pieces, leading to the increase of internal resistance of the pole pieces and subsequent manufacturing defects. Therefore, this paper puts forward an optimization scheme of pole piece efficient drying process. Firstly, based on the analysis of the transfer process of heat and solvent quality in the drying process, the calculation method of drying curve is put forward, and the optimal design criteria of drying parameters are established. Furthermore, a multiphase flow and heat transfer model of drying process is constructed, and the oven structure and parameters are optimized based on multiphase flow simulation. The experimental results of drying process optimization of positive pole pieces show that the mass production speed of 51 Ah positive pole is increased by 25% after process optimization. The adhesion of the A surface of the pole piece is increased by 6.5%, and the difference between the A and B surfaces is decreased by 91%. The average resistance of the pole piece decreases by 12%, which meets the high requirements for the quality and efficiency of pole piece drying for automotive lithium-ion batteries.
Title: Optimization of Drying Process of Lithium Battery Pole Piece Based on Simulation Technology
Description:
After electrode pulping and coating of lithium battery, it is necessary to dry the pole pieces, but there is a contradiction between drying efficiency and drying quality.
In the process of rapid drying, the binder components are easy to migrate, which reduces the adhesion of the pole pieces, leading to the increase of internal resistance of the pole pieces and subsequent manufacturing defects.
Therefore, this paper puts forward an optimization scheme of pole piece efficient drying process.
Firstly, based on the analysis of the transfer process of heat and solvent quality in the drying process, the calculation method of drying curve is put forward, and the optimal design criteria of drying parameters are established.
Furthermore, a multiphase flow and heat transfer model of drying process is constructed, and the oven structure and parameters are optimized based on multiphase flow simulation.
The experimental results of drying process optimization of positive pole pieces show that the mass production speed of 51 Ah positive pole is increased by 25% after process optimization.
The adhesion of the A surface of the pole piece is increased by 6.
5%, and the difference between the A and B surfaces is decreased by 91%.
The average resistance of the pole piece decreases by 12%, which meets the high requirements for the quality and efficiency of pole piece drying for automotive lithium-ion batteries.
Related Results
Data-Driven Decision Making in Battery Technology – How to Compete in Global Battery Industry?
Data-Driven Decision Making in Battery Technology – How to Compete in Global Battery Industry?
Battery technology is regarded as a crucial key technology for the energy transition and thus a sustainable future, as batteries can store and distribute renewable energy to cover ...
Recent developments in tomato drying techniques: A comprehensive review
Recent developments in tomato drying techniques: A comprehensive review
AbstractTomatoes, a highly perishable agricultural product, are commonly dried to extend their shelf life. They serve as raw materials in various domains, including direct consumpt...
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Over the years many boreholes have been drilled into the Northeast German Basin (NEGB) in pursuit of the exploration of hydrocarbons. As well as gaining important information regar...
Effect of microwave and conventional drying process on the drying kinetics and physico-chemical quality of brown shrimp (Metapenaeus dobsonii)
Effect of microwave and conventional drying process on the drying kinetics and physico-chemical quality of brown shrimp (Metapenaeus dobsonii)
The aim of this study was to compare the drying kinetics, proximate composition, instrumental texture and colour profiling of dried shrimp (Metapenaeus dobsonii) under open sun dry...
Research on high-rate and repeat frequency discharge lithium battery for electromagnetic launch primary power supply
Research on high-rate and repeat frequency discharge lithium battery for electromagnetic launch primary power supply
Abstract
Lithium battery with excellent comprehensive performance can effectively improve the firing frequency of railgun, firing times of railgun, system integratio...
Association between low drying temperature and ozonation process to control pest and preserve the maize quality
Association between low drying temperature and ozonation process to control pest and preserve the maize quality
Maize is one of the cereals major produced for its nutritional and energy characteristics and that has become one of the most cultivated crop in the world. To maintain high quality...
Lithium Surface Modification for Enhanced Cycle Life and Safety of Lithium Batteries
Lithium Surface Modification for Enhanced Cycle Life and Safety of Lithium Batteries
Lithium (Li) metal is an ideal anode material for rechargeable batteries due to its extremely high theoretical specific capacity (3860 mAh/g), low density (0.59 g/cm3) and the lowe...
Li-NMC Temperature Modelling Based on Realistic Internal Resistance
Li-NMC Temperature Modelling Based on Realistic Internal Resistance
Lithium-ion battery (LIB) produce heat when it is put under charging and discharging process. The heat generated during charging and discharging are directly related to the interna...

