With the continuous increase in requirements for energy density and rate performance in the new energy industry, the tamanho da partícula distribution (PSD) of fosfato de ferro e lítio (LFP) has become a key factor determining slurry revestimento quality and electrochemical performance.

To address these demands, a leading domestic manufacturer focused on lithium battery cathode materials grinding to achieve shorter ion diffusion paths and higher material activity. The company required its LFP material to be ground to D50 1.30μm, while strictly controlling the increase of metallic impurities (such as zinc wear) and maintaining a narrow particle size distribution.

1. Core Equipment Selection for Lithium Battery Cathode Materials Grinding

Moagem ultrafina de fosfato de ferro-lítio
Moagem ultrafina de fosfato de ferro-lítio

Equipamento: Pó épico Série MQW Moinho a jato de leito fluidizado

Características técnicas:

2. Production Parameters and Measured Results

During on-site commissioning for the target of 1.30 μm, the following data were recorded:

ItemProcess Parameter / Test Result
Feed particle sizeD50 ≈ 15–20 μm
pressão de moagem0,7–0,8 MPa
Velocidade da roda classificadora3,500–4,200 RPM (adjusted according to model)
Final product D501,30 μm
PSD characteristicNarrow distribution curve, with D100 effectively controlled

3. Core Advantages

4. Conclusion

By adopting the Pó épico MQW series jet mill, the customer successfully achieved a stable transition of lithium iron phosphate from fine to ultrafine particle size. Precise control at 1.30 μm not only improved the rate discharge performance of the material da bateria, but also provided strong technical support for the company’s competitiveness in the high-power battery market.

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