What is ball mill trunnion liner?
Ball mill trunnion liner is a high-density ceramic grinding medium made from high-alumina ceramic (typically high-alumina where specified), used to protect equipment from abrasive and impact wear. High-alumina ceramic gives hardness and chemical stability that defeat abrasion. In mining, cement, steel, power-plant ash handling, chemical processing and lithium-battery material plants, they extend equipment life and cut maintenance.
What is ball mill trunnion liner used for?
They are charged into ball mills, bead mills and attritors to grind minerals, cements, glazes, pigments and battery materials to fine powder. Ball mill trunnion liner keep contamination low and grinding efficiency high across mining, cement and chemical plants.
What material and properties make ball mill trunnion liner effective?
High-alumina ceramic gives hardness and chemical stability that defeat abrasion. These properties let ball mill trunnion liner outlast steel and rubber in abrasive service.
Why choose ball mill trunnion liner over steel or rubber alternatives?
Ball mill trunnion liner beat unlined steel or rubber on abrasive duties: steel erodes in months and can contaminate product, while rubber gouges under lump impact. Ball mill trunnion liner hold dimension, cut downtime and typically last 5–10× longer in mining, cement, steel, power-plant ash handling, chemical processing and lithium-battery material plants.
How do I select and specify ball mill trunnion liner?
Match the grade to your product: 92%/95% alumina for minerals and cement, 99% or zirconia for low-contamination glaze, pigment and pharma. Choose ball or bead size to your mill and target fineness, and confirm sphericity and batch density with FIRSTAR.
Can ball mill trunnion liner be used in both wet and dry milling?
Yes. Ball mill trunnion liner is used in both wet and dry mills; in wet grinding they resist corrosion and keep the slurry clean, while in dry milling their high density improves grinding efficiency. FIRSTAR supplies grades matched to each process.
