FIELD: chemistry.
SUBSTANCE: device comprises a reaction chamber, a mixer components, silos with initial components container with distilled water, freeze-drying of the material, a source of inert gas chamber for an additional composite processing tank for dispersing the composite container receiving nanocomposite communication with a slit die for nanocomposite coating on the substrate, and a drying chamber with an exhaust pump for the heat treatment of the resulting nanocomposite material. Thus hoppers are connected with mixer fitted with a transmitter of ultrasonic waves for treatment of the initial components fed by a pump into the reaction chamber. The reaction chamber is equipped with a heat jacket and has the additional perforated bottom, under which the cavity is connected to a drain pipe, having a metering device, and communicates with the inert gas source. The drain pipe communicates with a reservoir filled with distilled water, the cavity of which is connected to a device for freeze drying a material which, in turn, communicates with the chamber for further processing of the material. The chamber is equipped with additional treatment material embedded emitter of ultrasonic waves, connected to a source of inert gas, and the cavity chamber coupled with the container of nanocomposite dispersion and at the bottom it has a microcellular multilayer grid. Dispersing capacity equipped composite impeller for mixing active composite.
EFFECT: efficient preparation of controlled nanocomposite material with high physical-mechanical characteristics.
4 cl, 1 dwg
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Authors
Dates
2017-05-17—Published
2016-01-27—Filed