Breakthrough in Mass Production of Oxides: Modified Equipment Enables Precise Mechanical-Force Modification


Oxide-based solid electrolytes are highly favored for their superior safety; however, the high interfacial impedance resulting from the facile agglomeration of nanoscale powders has long been a major bottleneck hindering commercialization. Honeycomb Mill As an advanced Modified equipment , offering a one-stop powder optimization solution. The equipment features a modular design that highly integrates deep drying, classification and deagglomeration, and surface modification. For precursor filter cakes, the system allows flexible adjustment of temperature-control parameters to ensure that no impurities are introduced during drying and that crystal stability is not compromised.

Its core advantage lies in Coating and Modification Machine Synchronous implementation of functions. At the instant of powder deagglomeration, the modifier is uniformly sprayed via an atomization system, forming a coating coverage on the particle surfaces that reaches 99.2% of the single-molecule encapsulation film. This integrated process significantly reduces the semi-solid / The interfacial impedance of solid-state batteries causes the impedance value to increase from 500 Ω·cm² Decrease to 150 Ω·cm² Below. Meanwhile, the equipment’s negative-pressure operating environment complies with green manufacturing standards, which not only enhances the tapped density and flowability of powders but also enables leading enterprises to achieve batch-to-batch consistency ( PDI < 0.1 ) has provided reliable technical support, helping oxide electrolytes reach a new milestone in mass production.

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