AntiStatic Metal Fiber Mixing Strip China Factory and Suppliers
The Metal Fiber Mixing Strip is a high-performance additive engineered specifically for industrial filtration systems. By integrating stable electrical conductivity into non-woven fabrics, this innovative material eliminates the risk of static buildup, ensuring a safer and more efficient operational environment for dust collection and air purification systems.
Designed for seamless blending, adding just 10% of these conductive broken slivers as raw materials achieves a permanent anti-static effect. With uniform gram weight and superior dispersion, our mixing strips are compatible with a variety of high-temperature and chemical-resistant fibers, providing a customizable solution for specialized environmental protection equipment.
Detailed Parameters
| Material Base 1 | Polyester with metal fiber mixed strip | Weight/meter | 2-10 g/m |
|---|---|---|---|
| Material Base 2 | Aramid with metal fiber mixing strip | Weight/meter | 2-10 g/m |
| Material Base 3 | PPS with metal fiber mixed strip | Weight/meter | 2-10 g/m |
| Mixing Ratio | Standard 50/50 (Customizable) | Electrical Property | Stable Conductivity |
| Application | Anti-static Dust Filter Bags | Packaging | Air-tight shrunk plastic bags & cardboard box |
Key Advantages
Permanent Anti-Static
Achieves lasting electrostatic discharge (ESD) protection, reducing the risk of explosions in combustible dust environments.
High Efficiency
Only 10% blending ratio is required to ensure full electrical conductivity across the non-woven fabric.
Uniform Dispersion
Engineered for consistent gram weight and balanced distribution to avoid weak spots in filter bags.
Multi-Material Compatibility
Fully compatible with Polyester, Aramid, and PPS fibers for diverse industrial requirements.
Customizable Ratios
Fiber content ratios can be tailored to meet specific customer conductivity and strength standards.
Secure Packaging
Shipped in air-tight shrunk plastic bags to prevent contamination and moisture during transit.
Product Gallery
Management Platforms
Material Quality Control
Strict monitoring of metal fiber purity and weight per meter for every batch produced.
Customization Workflow
Flexible production lines allowing for precise ratio adjustments based on client specs.
Conductivity Testing
Advanced electrical testing to verify the anti-static performance of the blended fabric.
Environmental Compliance
Manufacturing processes aligned with international environmental protection standards.
Inventory Management
Optimized logistics to ensure rapid delivery of critical filter additives worldwide.
Technical Support
Expert guidance on the optimal blending ratios for various filter bag applications.
Investment Return Comparison
| Performance Metric | Standard Fibers | Metal Fiber Mixing Strip |
|---|---|---|
| Static Risk | High Risk | Near Zero Risk |
| Durability | Moderate | High (Permanent Effect) |
| Blending Efficiency | N/A | High (10% Addition) |
| Maintenance Cost | Frequent Replacement | Reduced Downtime |
| Safety Rating | Standard | Industrial Grade ESD |
Frequently Asked Questions
Its primary purpose is to provide permanent anti-static properties to non-woven filter fabrics, preventing electrostatic discharge and enhancing safety in industrial dust collection.
Adding approximately 10% of the blended broken slivers as raw material into the non-woven fabric is sufficient to achieve a permanent anti-static effect.
They are highly compatible with Polyester, Aramid, and PPS (Polyphenylene Sulfide) fibers, making them versatile for various temperature and chemical environments.
Yes, the fiber content ratio of metal fiber and other materials can be fully customized to meet the specific conductivity and mechanical requirements of your application.
The products are packed in air-tight shrunk plastic bags and then placed in sturdy cardboard boxes to prevent moisture and contamination.
It is widely used in the environmental protection equipment industry, specifically for manufacturing anti-static dust filter bags for chemical, pharmaceutical, and metallurgical plants.





