Horizontal Mixer
During mixing, the material inside a horizontal mixer is acted upon by two rotors rotating in opposite directions, producing a compound motion. The paddles drive the material to rotate counter-clockwise along the inner wall of the trough, while also causing it to tumble from side to side. In the weightless zone formed by the overlapping area of the two rotors, the material briefly enters a weightless state regardless of its shape, size, or density. This allows the material to form an all-round, continuous circulating tumbling motion inside the trough, with interlaced shearing between particles, thereby achieving fast, gentle, and uniform mixing.
Twin-Shaft Mixer
A twin-shaft mixer uses two symmetrical spiral shafts rotating synchronously to add water and mix while conveying dry powder materials such as fly ash. It uniformly moistens dry powders so that the moistened material neither generates dust nor releases free water, making it easier to load for transport or transfer to other conveying equipment. It is mainly used in thermal power plants, mines, and similar industries for humidifying fly ash or similar materials prior to loading.
Twin-shaft mixers offer fast mixing speed and good uniformity, and can handle viscous materials with up to 30% liquid addition. During operation, two paddle rotors rotating in opposite directions agitate the material in the center. Thanks to the specially angled paddles, materials can be mixed rapidly and effectively regardless of their shape, size, or density. The bottom discharge door enables fast unloading with minimal residue.
Pan Mixer
A pan mixer is mainly used for raw material mixing. The mixing pan is lined with polypropylene or stainless steel plates, making it resistant to material sticking and wear. Equipped with a cycloidal pinwheel reducer, it features a compact structure, easy operation, uniform mixing, and convenient discharge and conveying.
The material is thoroughly mixed, improving mixing uniformity. Its advanced rotor design allows the clearance between the rotor and the shell to be adjusted to nearly zero, effectively reducing material residue. With polypropylene or stainless steel lining inside the pan, the equipment resists sticking and wear. The cycloidal reducer further contributes to its compact structure, ease of operation, uniform mixing, and convenient discharge. The overall design is more rational, with an attractive appearance and easy operation and maintenance.
