Ceramic ball mills are fully capable of grinding raw materials at high temperatures of 90°C. Their core grinding components utilize high-alumina or zirconia ceramics, which offer excellent high-temperature resistance; standard ceramic liners and grinding media can withstand temperatures of several hundred degrees Celsius for extended periods. Since the 90°C operating condition is well within the equipment's thermal limits, issues such as cracking, deformation, or aging do not occur, making them suitable for both dry and wet grinding of high-temperature materials.

There are clear standards regarding the core specifications of ceramic ball mills designed for high-temperature grinding. The equipment lining typically consists of high-alumina ceramics (92% purity or higher), which are wear-resistant, heat-resistant, and chemically stable, capable of withstanding the corrosive impact of high-temperature materials. The grinding media—high-purity alumina or zirconia ceramic balls—offer superior thermal stability, ensuring they do not fracture or contaminate the material at high temperatures. Standard operating temperature ranges extend from ambient to 150°C, fully meeting the requirements for grinding 90°C materials; additionally, the sealing structure is designed for high-temperature conditions, effectively preventing dust leakage and material loss through volatilization.
Model recommendations are based on specific operating conditions. For small-batch laboratory grinding of high-temperature materials, compact ceramic ball mills (30L–100L) are suitable options, offering stable rotation speeds, good temperature control compatibility, and operational flexibility. For industrial-scale production, medium-sized ceramic ball mills (500L–2000L) are preferred; they feature a robust cylinder structure for trouble-free high-temperature operation, ensuring uniform grinding fineness and low energy consumption. These models are ideal for the precision grinding of 90°C materials in industries such as chemicals, ceramics, and building materials, offering an excellent balance of cost-effectiveness and practicality.