
The equipment operates by introducing compressed gas into the grinding chamber through a feeding ejector. This gas is propelled by high-speed airflow from multiple nozzles, which spray tangentially onto the grinding wall to create friction grinding. The fineness of the grinding process can be controlled by adjusting parameters such as the longitudinal depth of the grinding chamber, grinding pressure, and feeding speed. Compared to fluidized bed air jet mills, this system offers lower controllability of grinding fineness.
Optional features include on-line cleaning (CIP) and on-line sterilization (SIP) designs, enhancing maintenance and hygiene capabilities.
The document implies the equipment is designed for powder processing with adjustable grinding fineness and optional cleaning and sterilization functions, suitable for various application fields.
While specific numerical parameters are not provided in the excerpt, key adjustable parameters include:
The equipment is intended for powder processing in diverse project scenarios and application fields, although detailed examples are not included in the provided text.
Working Principle Features Technical Parameters Projects Scenes Application Fields
Open the catalog to page 1Working Principle • eject町, and driven by the high speed airflow of multiple nozzles, it is sprayed 帽 on the grinding wall in a tangent way to achieve the effect of f 『iction grinding. The grinding fineness can be controlled by adjusting the longitudinal depth of the grinding chamber, the grinding pressure or the feeding speed. Compared with the fluidized bed air jet mill, the controllability of g 『inding fineness is Iowe 『 . On幡line cleaning {CIP) and on-line sterilization (SIP) design is optional Compressed gas is introduced into the grinding chamber through the
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