MIC Special Horizontal Nano Sand Mill for Lithium Iron Phosphate
MIC Special Horizontal Nano Sand Mill for Lithium Iron Phosphate Introduction
MIC Machinery designs the MIC Special Horizontal Nano Sand Mill for Lithium Iron Phosphate for high-precision wet grinding and nano-scale dispersion of battery cathode materials. This model is specifically engineered for lithium iron phosphate (LFP) processing, where strict particle size control, high uniformity, and stable electrochemical performance are essential. It is widely used in modern battery material production lines that require consistent quality and scalable manufacturing capacity.
Nano Grinding Technology for Battery Materials
The core of this equipment is its advanced nano grinding system, which delivers strong shear force and high-energy collision between grinding media and LFP particles, enabling stable refinement into ultra-fine and uniform structures.
A horizontal nano sand mill is essential in lithium battery production because it ensures precise control over particle size and morphology. The system is equipped with an advanced OCS centrifugal separation unit, which improves media separation efficiency and supports higher throughput. In addition, an optimized multi-channel dynamic classification rotor design keeps grinding beads away from the screen, allowing the use of smaller media for more precise grinding. This results in a narrower particle size distribution and improved slurry quality, which is critical for battery performance consistency.
Stable Structure and High-Efficiency Operation
MIC Machinery builds this equipment with a reinforced industrial frame to ensure vibration-free and long-term stable operation. The internal grinding chamber is optimized for continuous flow processing, allowing materials to pass evenly through the grinding zone without blockage or dead zones.
As a high-performance nano horizontal sand mill, the system ensures consistent energy distribution during operation, which is critical for achieving uniform nano-scale particle refinement. The improved separation and circulation design also enhances discharge efficiency, reducing resistance and maintaining stable continuous production performance under high load conditions.
Key performance advantages include:
· Dedicated design for lithium iron phosphate nano grinding
· High-efficiency OCS separation system for improved media control
· Stable continuous operation for large-scale battery production
· Optimized flow structure for uniform slurry output
· Wear-resistant components for extended service life
Precision Process Control and Energy Efficiency
To ensure stable material performance, MIC Machinery integrates an advanced cooling system that effectively controls temperature rise during high-energy grinding. This prevents material degradation and maintains consistent slurry characteristics, which is critical for battery-grade production.
The sealing system is designed for high reliability, minimizing leakage risk and ensuring safe long-term operation. Operators can adjust grinding speed, flow rate, and residence time to achieve different fineness levels, allowing flexible control over final material properties. These features ensure stable and repeatable performance in demanding production environments.
Industrial Applications and Global Supply Capability
The MIC Special Horizontal Nano Sand Mill for Lithium Iron Phosphate is widely used in lithium battery cathode material production, especially for energy storage systems, electric vehicles, and high-performance battery applications. Its strong dispersion capability and stable nano-scale grinding performance make it a key solution for modern battery manufacturing.
MIC Machinery also supports global customers with china horizontal sand mill supply solutions, providing reliable equipment manufacturing, customization, and technical support. The system can be tailored according to production capacity, material characteristics, and fineness requirements, ensuring optimal performance in different industrial environments.
With its combination of nano-level precision, advanced separation technology, and stable mechanical design, this equipment delivers consistent quality and high efficiency for next-generation battery material production.
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Model |
1000 |
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Effective volume(L) |
1000 |
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Motor Power(KW) |
650/690 |
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Grinding Media Diameter(mm) |
0.2-1.2 |
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Linear Speed(m/s)(Adjustable) |
0-16.5 |
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Dimension(mm) |
L |
5700 |
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K |
1900 |
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H |
1900 |
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Weight(kg) |
15000 |
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* The selection depends on factors such as material viscosity, grinding conditions, and the pump conveying method.
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