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We specialize in providing high-performance precision cutting tools for the photovoltaic new energy industry. We develop dedicated cutting solutions for special materials such as solar backsheets, separators, and lithium battery packaging materials, ensuring burr-free and clean cuts to meet the high-standard processing requirements of photovoltaic and new energy vehicle battery manufacturing.
Product Types: | Main Applications: | Technical Features: |
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Solar panel backsheet cutting blades | Cutting of photovoltaic backsheet materials | Special coating prevents delamination and ensures clean edges. |
Battery separator slitting blades | Precision slitting of lithium battery separators | Ultra-thin design, burr-free, and anti-static treatment. |
Aluminum/copper strip trimming blades | Precision trimming of conductive tapes | High precision, smooth cut surface, and no loss of conductivity. |
Battery end cap cutting blades | Processing of battery top and bottom caps and side corners | Multi-angle adaptability, one-piece molding without burrs. |
Composite material cutting blades | Cutting of photovoltaic lamination materials | Wear-resistant, anti-sticking, and long-lasting. |
• High-speed steel series: SKH-51 and other high-hardness materials, ensuring long-lasting sharpness
• Carbide series: P10, K10 and other tungsten carbide materials, offering excellent wear resistance
• Special coatings: Anti-stick coating, conductive coating, corrosion-resistant coating
• Micron-level precision edge grinding technology
• Multi-layer composite coating treatment process
• Anti-static and cleaning treatment
• Full-process dust-free production control
• Cutting accuracy: ±0.005mm (depending on the material)
• Cut quality: No burrs, no delamination, no contamination
• Service life: 2-4 times longer than conventional tools
• Applicable speed: Suitable for high-speed automated production lines
• Cleanliness level: Meets the cleanroom requirements for photovoltaic materials
Please provide the following information:
1. Type and thickness specifications of the material to be cut
2. Production equipment model and processing parameters
3. Cutting quality requirements and acceptance standards
4. Production environment and cleanliness requirements
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