Showing 1–12 of 22 results
Automatic Stacking Machine for High-Power Lithium-Metal Battery
Battery Tab Cutting Machine (Mk-ctab100)
Cell Hot-pressing Testing Machine (Mk-ry150)
Electrode Sheet Die-cutting Machine (Mk-mt150)
Electrolyte Injection Port Cleaning Device
Electrolyte Supplementing Machine
Glove Box System (Mk-stx8m)
Hi-pot Test Machine (Mk-hp25)
Lithium Metal Battery Lithium Anode Automatic Electrode Sheet Making Machine
Lithium metal anode making machine is applicable to the preparation and molding/shaping of lithium metal anode. It can perform lithium metal strip fixed-length cutting and copper strip fixed-length tab cutting, so as to realize (lithium electrode sheet+copper tab) pressing and making anode electrode process.
Automatically complete the fixed-length cutting of the lithium strip into pieces and the fixed-length cutting of the copper strip into electrode tabs Efficiency ≥15ppm, winding tension ≥1N.
Lithium strip low tension unwinding;
Fixed length traction and cut into sections;
CCD positioning & correction;
Copper tab cutting and transfer;
Tab and lithium foil pre-pressing and bonding;
Tab final pressing flat and compounding;
CCD detection and sorting;
Lithium electrode isolation and stacking transfer;
Lithium electrode sheet directly deliver into the stacking/lamination machine;
MES system connection function;
Lithium-copper Negative Electrode Sheet Making Machine is also optional in Mikrouna Lithium Metal Negative Electrode/Anode Making Machine
Lithium Metal Battery Pilot Line Automatic Stacking Machine
The Z-shaped lithium metal battery stacking machine is a pivotal piece of equipment in the mid-stage production process of lithium battery manufacturing. Lithium metal battery production can be broadly divided into four major processes: electrode sheet production, cell assembly, cell activation and testing, and module/Pack encapsulation. Among these, cell assembly constitutes the mid-stage production, encompassing processes such as winding or stacking, cell pre-encapsulation, and cell electrolyte injection. Stacking, in particular, involves arranging individual electrode sheets produced in the die-cutting process into a cell.
The Z-shaped stacking machine stands out in the market as one of the four main types of stacking equipment, alongside cut-and-stack machines, thermal bonding stacking machines, and winding-stacking integrated machines. Currently, the Z-shaped stacking machine is the most widely applied in China due to its efficiency and reliability.
Lithium Metal Solid-state Battery Equipment Pilot Line
Designed for cutting-edge research and development in solid-state battery technology. Our glove boxes maintain H2O and O2 levels below 1PPM, ensuring safety and stability throughout the battery manufacturing process in the SSB pilot line.
The Mikrouna Solid-State Battery Pilot Line employs advanced dry and wet processes to ensure the high-performance manufacturing and stability of solid-state batteries.
Additionally, our SSB pilot line is fully customizable, making it ideal for supporting batteries with different material systems, including lithium metal anode, Polymer, oxide, and sulfide solid-state batteries.
Main sections:
– Preparation of Solid Electrolyte Materials: Precise weighing & proportioning, vacuum stirring;
– Preparation of Electrolyte Membranes: 3D printing molding / extrusion coating, roll pressing;
– Preparation of Electrode Sheets: Coating & baking, die-cutting & shaping, pressing copper tabs onto lithium foil;
– Assembly of Solid-State Batteries: Semi-automatic stacking, hot pressing test, ultrasonic welding, top & side sealing, vacuum electrolyte filling & sealing.
Integrating Lithium metal electrode preparation, stacking, welding, packaging, insulation
detection, vacuum electrolyte injection, and sealing functions;
The transition chamber also has a vacuum baking function;
Water and oxygen content atmosphere for the Lithium metal solid state battery line inside the glove boxes are controlled below 1ppm.
Lithium Negative Electrode Forming (Mk-mcx200lib)
This equipment is mainly used to mesh the copper tabs with the lithium electrode sheets to meet the process dimensional requirements and make the negative electrode sheets. The lithium electrode sheets are transferred to the locating tooling by manual operation, and then the copper tabs are placed in the locating slots of the tooling. The air cylinder pushes to press the tabs to the overlapping position for overall pressing.