Ceramic filler activation equipment, coating equipment, drying equipment


In industrial manufacturing, ceramic fillers are widely used in environmental purification, catalytic reactions, and filtration separation due to their high strength, high temperature resistance, and corrosion resistance. However, traditional processing technologies have limitations in particle size control, dispersibility, and production efficiency, which restricts further improvement of their performance.

The honeycomb mill, with its unique structural design and intelligent functions, brings a revolutionary breakthrough to ceramic filler processing. The core component of the honeycomb mill is a honeycomb-like depolymerization wheel system, which integrates four functional modules: air volume control, drying, crushing, and mixing. By precisely controlling the airflow velocity and intra-cavity pressure, the equipment can achieve efficient depolymerization and dispersion of powder materials, avoiding agglomeration. The equipment is equipped with multiple surface dispersant inlets, which can simultaneously complete the chemical modification of the powder, significantly improving the compatibility of the filler with the matrix material. Ceramic fillers processed by the honeycomb mill have excellent fluidity and particle morphology and can be widely used in rubber, plastics, coatings, and pharmaceuticals, helping downstream companies improve product performance.

Through sol -gel technology and the synergistic effect of the honeycomb mill, nano-scale porous ceramic membranes can be produced for use in microfiltration, ultrafiltration, and nanofiltration systems. These membrane materials exhibit excellent separation performance in nuclear wastewater treatment, heavy metal recovery, and biopharmaceutical fields, and have the advantages of high temperature resistance and corrosion resistance.

For mineral fillers such as calcium carbonate and talc powder, the honeycomb mill can simultaneously complete crushing and surface activation treatment to produce high-activity functional fillers. The modified fillers exhibit excellent reinforcing and toughening effects in plastic and rubber products, while also improving processing fluidity.

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