categorias de produtos
- piloto de bateria / linha de produção
- montagem de laboratório de bateria
- Lithium Battery Pack Assembly Line
- Solid State Battery Assembly Line
- Sodium Ion Battery Production Line
- Supercapacitor Assembly Line
- Lithium Ion Battery Recycling Plant
- Dry Electrode Preparation Solution
- Perovskite Based Solar Cell Lab Line
- Electrode Preparation
- Li-íon da bateria materiais
- espuma de eletrodo de metal
- materiais ativos de cátodo
- ânodo materiais ativos
- Customized Battery Electrode
- Materiais de célula de moeda
- chip de lítio
- peças de célula cilíndrica
- coletores de corrente da bateria
- materiais condutores da bateria
- eletrólito e bolsa
- Metal Mesh
- fichário de bateria
- separador e fita
- filme laminado de alumínio
- tira de níquel / folha
- Battery Tabs
- materiais de grafeno
- Nickel Felt
- Titanium Fiber Felt
- Battery Pack Machine & Compoments
- Battery Pack Compoments
- Turnkey Solutions Battery Pack Assembly Line
- Cell Sorter
- Battery Pack Spot Welder
- Laser Welder
- Battery Charging Discharging Tester
- Battery Pack Aging Machine
- Battery Pack Comprehensive Tester
- Battery Pack Compression Machine
- CCD Visual Inspector
- Battery Pape Sticking Machine
- BMS Testing Machine
- Al Wire Bonding Machine
- toda a máquina de montagem da bateria
- testador e analisador de bateria
- Battery Safety Tester
- Material Characterization Tester
- máquina de prensagem
- máquina de solda a ponto de metal
- máquina misturadora a vácuo
- máquina de crimpagem / desmontagem
- máquina de selagem a vácuo
- enchimento de eletrólitos
- empilhamento / máquina de enrolamento
- cortador de eletrodos / talhadeira
- malote formando máquina
- NMP Solvent Treatment System
- Lithium Battery Production Plant
- Caixa de luva de vácuo
- fornos
- Hydraulic Press Machine
- Coater
- moinho de bolas
- máquina de laboratório
- misturador centrífugo planetário / moinho
- Fornos de vácuo
- câmara de teste de temperatura e umidade
- Hardness Tester
- Spray Dryer
- incubadora
- evaporadores rotativos
- Viscometer
- Three Roller Mill
- analisador de área de superfície
- triturador de laboratório
- máquina de cura uv
- congeladores ultra-baixos
- Water Chiller
- Laser Cleaning Machine
- Cutting Machine
- Bateria
- outro equipamento de laboratório
Contate-nos
- Se você tiver dúvidas, entre em contato conosco, todas as perguntas serão respondidas
- WhatsApp : +86 18659217588
- Email : David@tmaxcn.com
- Email : Davidtmaxcn@gmail.com
- Adicionar : No. 39, Xinchang Road, Xinyang, Haicang Dist., Xiamen, Fujian, China (Mainland)
The prismatic battery cell manufacturing line consists of three main sections: Electrode Preparation → Cell Assembly → Formation & Grading The following table outlines the key process differences between LFP (Lithium Iron Phosphate) and Sodium-ion battery manufacturing: Electrode Manufacturing (Front-end Process) The core objective of this stage is to combine active materials with the substrate through a series of precision processes, producing positive and negative electrode sheets that meet strict specifications for thickness, density, and composition. This foundational stage directly determines the initial performance and consistency of the battery cells. 1.Slurry Preparation Mix active materials, conductive agents, and binders according to precise formulas. Add solvents for high-speed dispersion to form a uniform and stable slurry. 2.Coating Apply the slurry evenly and quantitatively onto both sides of aluminum foil (cathode) or copper foil (anode) substrates, ensuring consistent surface density. 3.Electrode Drying Rapidly evaporate organic solvents from the slurry to solidify the coating on the current collector surface, ensuring complete electrode dryness. 4.Calendering Mechanically compact dry electrode sheets to effectively increase the compaction density of active materials, reduce porosity, and improve battery energy density. 5.Slitting Cut continuous electrode sheets to the designed dimensions in preparation for cell assembly. Electrode Manufacturing (Front-end Process) At this stage, prepared electrode sheets are assembled into battery cells and filled with electrolyte to form sealed units. This is the core manufacturing process, with extremely high requirements for equipment precision and process control. Any deviation may directly affect battery energy density, cycle life, and safety. 6.Stacking Stack and combine positive and negative electrode plates with the separator according to strict process parameters to form a bare cell. 7.Tab Welding Use ultrasonic technology to precisely fuse the internal terminals of the battery cell with external adapters. 8.Shell Insertion Carefully insert the bare battery cells into customized aluminum alloy casings. 9.Cover Welding Perform laser welding to create a circumferential sealing weld between the battery cover plate and the aluminum shell. 10.Electrolyte Filling Inject precisely measured electrolyte into the enclosed battery case in a strictly controlled dust-free and anhydrous environment (dew point below -40°C). 11.Final Sealing Complete the sealing process by mechanically stamping and closing the injection port. SEI Formation & Cell Capacity Grading At this stage, battery cells undergo activation, performance testing, and grading screening. A series of standardized processes establish a stable electrochemical interface and ensure strict classification based on performance indicators—the core process for guaranteeing final battery quality and safety. 12.SEI Formation Perform initial low-current charging to construct a dense and stable SEI film on the negative electrode surface. 13.Aging Allow the SEI film structure to naturally mature and stabilize in a constant- temperature environment for a specified period. 14.Cell Capacity Grading Execute standard charge-discharge cycle testing to accurately quantify core performance parameters, including actual capacity and DC internal resistance. 15.Cell Sorting Strictly classify and screen battery cells based on capacity test data to ensure consistent performance in the final battery pack. The planetary vacuum mixer is designed for mixing and dispersing powder and liquid raw materials for various battery types, producing a uniformly mixed battery slurry. It is particularly well-suited for high-viscosity processes, with a working viscosity range up to 1,200,000 cP. Customization is available to meet specific production requirements. The transfer coating machine features easily adjustable coating thickness with high accuracy and user-friendly operation. It supports both continuous and intermittent coating modes. Customization is available for specific production needs. • Coating modes: Continuous or intermittent • Effective coating width: 300 / 400 / 500 / 600 mm (customizable) • Coating speed: Customizable • Heating oven length: 1m / 3m / 6m / 12m / 18m (customizable) The hydraulic balanced electric roller delivers high-precision rolling of battery electrodes. The equipment ensures excellent transverse and longitudinal uniformity, providing superior rolling performance for both laboratory and production environments. • Roller size: D210×330 mm (customizable) • Rolling speed: 0.8–5 m/min(customizable) • Rolling temperature: Standard 130°C (customizable range: RT–150°C, precision ±2°C) The die cutting machine is primarily used for precision cutting of battery electrode sheets for stacking pouch cells and prismatic batteries. It is an essential tool in the production line for producing specifically shaped cathodes and anodes. • Die cutting size: Customized according to cell dimensions • Automatic & high efficiency Based on cell design and manufacturing processes, electrodes are cut or slit into required dimensions for stacking. These machines ensure accurate electrode size control, clean edges, and high consistency, providing reliable preparation for subsequent cell assembly steps. • Stacking size: Customized according to cell dimensions • Working stations: Single or double working station options The laser welding machine is the core precision equipment for manufacturing prismatic batteries, directly determining battery safety, consistency, yield, and service life. It is an indispensable standard for mass production of prismatic batteries. • Customized welding stroke • Welding materials: Aluminum / Nickel / Copper, etc. • Welding power: 1000W / 1500W / 2000W / 3000W / 4000W / 6000W optional The formation and aging equipment is the core process equipment in the later stage of battery manufacturing, used for cell activation, performance screening, and consistency matching after electrolyte filling and sealing. It directly determines battery capacity, cycle life, and safety. • Energy-feedback optional • Current range: 10A / 20A / 30A / 60A / 100A, etc. • Aging channels: 8–100 channels optional The battery capacity grading tester performs precise charging and discharging, capacity calibration, performance sorting, and aging screening of battery cells after formation. It ensures consistency in factory cell capacity, internal resistance, and voltage—a critical quality control step before PACK assembly. • Energy-feedback optional • Current range: 10A / 20A / 30A / 60A / 100A / 200A / 300A, etc. • Testing channels: 8–512 channels optional Our turnkey solution is customized based on the following key parameters: Based on the above project parameters, we will formulate a complete turnkey solution tailored to your specific requirements.
WHAT IS A LAB-SCALE COIN CELL BATTERY LINE?

SN
Process Stage
LFP (Lithium Iron Phosphate)
Sodium-ion
1
Mixing
Slurry mixing of LFP cathode + graphite anode
Slurry mixing of sodium-based cathode (e.g., NFPP, layered oxides) + carbon anode
2
Coating & Drying
Coating on Al (cathode) & Cu (anode) foils
Coating on Al (cathode) & sometimes different current collectors (Cu or Al depending on chemistry)
3
Calendering
Compression of electrodes
Compression of electrodes
4
Slitting
Cutting electrode sheets
Cutting electrode sheets
5
Cell Assembly
Prismatic casing, separator, electrolyte filling
Prismatic casing, separator, sodium-ion electrolyte filling
6
Electrolyte Filling
LiPF₆ in organic solvents
Sodium salts (NaPF₆, NaClO₄, etc.) in different solvents
7
Formation & Aging
SEI formation on graphite anode
SEI formation on hard carbon anode
8
Testing
Capacity, voltage, safety
Capacity, voltage, safety





English▼





























+86 13174506016
David@tmaxcn.com