Permanent magnetic separators are designed to effectively remove these iron contaminants. They use high-intensity magnetic fields to attract and capture iron particles in the material flow, ensuring that only pure non-magnetic materials can enter the next production stage. This process is essential to maintain the integrity of the battery's cathode and anode materials, which directly affects the battery's capacity, charge and discharge efficiency, and thermal stability.
Sunight Magnetics has become a trusted brand in the energy storage battery industry with over 13 years of experience in providing high-quality magnetic separation solutions. The company specializes in the design and manufacture of permanent magnetic separators, offering a wide range of customized products to meet the specific needs of battery manufacturers.
One of Sunight Magnetics' key strengths is its commitment to innovation. The company continuously invests in research and development to improve the performance and efficiency of its magnetic separators. Its products are known for their rugged construction, high magnetic strength, and easy integration into existing production lines. This ensures that battery manufacturers can achieve consistent and reliable results even in high-volume production environments.
Over the past 13 years, Sunight Magnetics has successfully implemented its magnetic separation solutions in numerous energy storage battery production facilities around the world. Their equipment has played an important role in improving the quality and yield of battery materials, helping manufacturers meet the industry's stringent requirements.
For example, in the production of lithium-ion batteries, Sunaite's permanent magnetic separators have been used to remove iron contaminants from lithium carbonate and lithium hydroxide, ensuring the purity of these key materials. Similarly, in the processing of nickel and cobalt, their separators effectively eliminate iron impurities, improving the performance and safety of the final battery products.