Lithium Battery Industry Dedicated Small-Particle Screening Machine

Lithium Battery Industry Dedicated Small-Particle Screening Machine
【Material Requirements】:New energy battery materials, powder coatings, photovoltaic silicon powder, advanced functional materials, and chemical powders
【Product Overview】:The Navector Lithium Battery Industry Dedicated Small-Particle Screening Machine is specifically developed for the lithium battery sector. It features advanced ultrasonic screening technology combined with a 3D vibration + tumbler vibration mode, effectively preventing clogging and particle embedding on 50–635 mesh screens, significantly extending screen life and screening capacity. Its stable performance ensures continuous production and precise material distribution, delivering 2–4 times higher screening capacity compared to conventional machines of the same size.
Product Introduction
Principle Introduction
The Navector Lithium Battery Industry Dedicated Small-Particle Screening Machine is specially developed for the lithium battery sector. It utilizes advanced ultrasonic screening technology combined with a 3D vibration plus tumbler vibration mode, effectively preventing clogging and particle embedding on 50–635 mesh screens, significantly extending screen life and screening capacity. Its stable operation ensures continuous production and precise material distribution, achieving 2–4 times higher screening capacity compared to conventional machines of the same size.
Equipment Advantages
- The equipment can rapidly separate agglomerates, reduce the proportion of oversized particles, increase screening throughput, and clearly distinguish fine particles of similar diameters, all while preserving the material’s original properties.
- The system offers excellent matching performance, operates with low temperature rise, and can run stably for extended periods, meeting strict temperature control requirements.
- This machine is suitable for powders ranging from 20 to 300 µm, particularly those that are highly adsorptive, electrostatically charged, prone to agglomeration, or of low bulk density.
- Widely applied in new energy battery materials, powder coatings, photovoltaic silicon powder, advanced functional materials, and chemical powders, it provides an ideal solution for achieving high-precision, high-efficiency screening.
Applications
It is widely used in fields such as new energy battery materials, powder coatings, photovoltaic silicon powder, advanced functional materials, and chemical powders, making it an ideal solution for achieving high-precision and high-efficiency screening.
