Ceramic raw material coating machine, powder shaping machine, powder modification machine


While raw ceramic fillers possess many excellent properties, their high surface energy and strong polarity in practical applications result in poor compatibility with organic matrices. When mixed with an organic matrix, raw ceramic fillers often exhibit uneven dispersion, a problem particularly prominent in the preparation of composite materials. Poor dispersion of ceramic fillers in the organic matrix leads to an uneven internal structure, affecting the overall material performance. For example, if raw ceramic fillers are unevenly dispersed in plastic products, the strength and toughness of the plastic products will fluctuate significantly, with some areas exhibiting high strength and others low strength, greatly reducing product quality and reliability.

The interfacial bonding strength between raw ceramic fillers and organic matrices is weak, making it difficult for the two to form a stable connection. When the composite material is subjected to external forces, debonding is likely to occur at the interface, significantly reducing the mechanical properties and preventing the full utilization of the advantages of both ceramic fillers and organic matrices. In rubber products, if the interfacial bonding strength is insufficient, when the rubber product is subjected to tensile or bending forces, the ceramic filler and rubber matrix are easily separated, leading to a shorter service life and reduced performance of the rubber product.

Coating Modification Machine Can On the surface of single ceramic filler particles Carry out Uniform Coating Modification. First, the originally agglomerated particles are dispersed to ensure they are fully separated. Then The modifier is sprayed into the grinding chamber in These atomized modifiers uniformly cover the surface of the dispersed ceramic filler particles. On the particle surface Form a nanometer-level modified layer. This modified layer is not only uniform and dense, but also has extremely strong bonding strength with the ceramic filler particles, effectively improving the surface properties of the ceramic filler and enhancing its compatibility and interfacial bonding strength with the organic matrix.

This precise nanometer-level coating ensures that each ceramic filler particle is uniformly coated with the modified layer, preventing agglomeration. This allows the ceramic filler to achieve better dispersion in the composite material, fully exerting its strengthening effect, and thus significantly improving the performance of the composite material. In the preparation of high-performance plastics, ceramic fillers that have undergone nanometer-level coating by the coating modification machine can be uniformly dispersed in the plastic matrix, significantly improving the strength, hardness, and wear resistance of the plastic.

The coating modification machine adopts a modular design and supports continuous production. Continuous production not only Can increases production efficiency and reduces errors caused by manual operation, but also lowers production costs and improves product quality stability.

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