China Lithium Battery Slitting Machine for Electrode Cutting - Reliable Suppliers & Factory Manufacturing
Equipment Characteristics
The slitting machine is a pivotal component in battery production, tasked with precisely processing rolled positive and negative electrode materials. The process begins with feeding these rolled electrodes into the winding mechanism, where they are guided through alignment systems to maintain proper alignment and centering. This ensures accuracy during the subsequent cutting process.
Precision Cutting
Once aligned, the electrode material enters the slitting mechanism, equipped with cutting tools that slice it into narrower strips of specified widths. This precision cutting is essential for producing electrodes that meet exacting dimensional requirements crucial to battery performance and assembly.
Collection and Waste Management
As the slitting process progresses, the upper and lower winding mechanisms collect the slit electrode strips into separate rolls. Concurrently, a scrap collection mechanism gathers side scraps to maintain cleanliness and efficiency on the production line.
Auxiliary Systems
1. Deviation Correction System: Ensures the electrode material remains on course throughout the slitting process, minimizing errors in alignment.
2. Tension Transmission System: Controls and maintains consistent tension levels in the electrode material, essential for uniform cutting.
3. Dust Suction System: Removes debris and dust generated during cutting, keeping the workspace clean and preventing contaminants.
Process Specifications
The slitting machine adheres to strict process specifications regarding burrs (sharp edges), straightness, and other critical indicators. These specifications ensure that each electrode strip meets the required standards for smooth integration into battery cells.
In Conclusion
By incorporating these advanced features and systems, the slitting machine optimizes the production of electrode materials with high precision and efficiency. It plays a crucial role in streamlining battery manufacturing processes, contributing to the consistent quality and performance of batteries used in diverse applications, from portable electronics to electric vehicles and renewable energy storage solutions. This systematic approach to electrode processing underscores the machine's importance in advancing battery technology and meeting the growing demand for reliable energy storage solutions globally.

Manual Slitting for Electrode Assembly Process

Automatical Slitting for Electrode Assembly Process
Specification of Equipment
| Product |
|
|
|---|---|---|
| Model | WS-SDFTJ | WS-ZDFTJ |
| Equipment dimension | L1000*700*800(MM) | L2000*1700*1900(MM) |
| Equipment weight | 400KG | 1200KG |
| Cutter type | Top and bottom set of spherical blades | 20m/min |
| Slitting width | 10~345mm | 1~15m/min |
| Max. slitting size | 400mm | ≤±0.3mm (without edge material slitting) |
| Winding accuracy | - | ≤0.4mm |
| Vertical slitting burr | - | <6μm |
| Horizontal metal burr | - | <8μm |
Frequently Asked Questions (FAQ)
The slitting machine is designed to precisely process rolled positive and negative electrode materials by feeding, aligning, and cutting them into narrower strips of specified widths required for battery cells.
It utilizes a Deviation Correction System that prevents the electrode material from going off-course, along with a Tension Transmission System that controls consistent tension levels for uniform cutting.
The machine features a scrap collection mechanism that gathers side scraps concurrently while the winding mechanism collects the processed electrode strips into separate rolls.
The WS-SDFTJ is a manual/semi-automatic system weighing 400KG with a compact dimension of L1000*700*800mm. The WS-ZDFTJ is a fully automatic industrial system weighing 1200KG with dimensions of L2000*1700*1900mm and offers advanced winding accuracy and burr control.
The WS-ZDFTJ model ensures extremely low burr levels, achieving a vertical slitting burr of less than 6μm and a horizontal metal burr of less than 8μm.

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