Nano-filler coated modification machine depolymerization machine spheronization machine


The fine processing of nanofillers has become a key step in driving breakthroughs in the performance of composite materials. However, the inherent characteristics of nanoparticles, such as high surface energy, easy agglomeration, and poor interfacial compatibility, have always been bottlenecks restricting their industrial applications. Coating and modification machines, as innovative equipment in the field of nanofiller processing, are injecting new technological impetus into this field with their unique technical architecture and intelligent process design.

The modification machine adopts a modular design, and its energy consumption is lower than that of traditional equipment by more than 40%. The fully enclosed flow path system achieves zero dust leakage, meeting the requirements of clean workshops. The integrated continuous feeding-coating-drying process design allows a single machine to process up to tons per day, perfectly adapting to industrial production lines. By precisely controlling the surface properties of the filler, it releases the potential of nanoscale effects and helps material manufacturers break through the performance ceiling of their products.

Polymer composite materials: Improve the dispersibility of nanofillers in plastics and rubber, giving materials high strength, high barrier properties, or anti-static characteristics, promoting automotive lightweighting, and 5G communication device upgrades.

New energy materials: Optimize the coating carbon layer structure of lithium battery anode materials to improve battery rate performance and cycle life; prepare core-shell structured catalysts to accelerate the development of the hydrogen energy industry.

Functional coatings and coatings: Custom design of nanofiller surface functional groups to develop superhydrophobic, anticorrosion, or photocatalytic coatings, expanding their applications in marine engineering, building energy saving, and other scenarios.

Biomedical carriers: Construct biocompatible coating layers to achieve targeted drug delivery or enhanced medical imaging, promoting the clinical translation of nanomedical technology.

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