Functions of three-stage high shear disperser

Jul 13, 2022

The three-stage high shear disperser can be widely used in efficient equipment for mixing, dispersing and dissolving coatings and solids, as well as chemical products such as coatings, inks, pigments, adhesives, etc.

The functions of the three-stage high shear disperser are diverse. First, it has a hydraulic lifting system to control the direction of operation, and then it has a 360 degree rotation, which is combined with the way of stepless speed regulation. The disperser can be equipped with 2-4 containers at the same time, and there are several hydraulic lifting strokes, including 1000 mm, 1200mm, etc.

In fact, the 360 degree rotation function is to better meet the multi-purpose scheme of one machine. It can change one cylinder to another in a very short time, which can improve the work efficiency, help the processing plant reduce the labor intensity, and allow operators to spend more time on equipment maintenance; The hydraulic cylinder component of the lifting system of the double shaft dispersing machine is a professional design concept adopted by relevant scientific researchers, which makes the equipment of the machine more safe and reliable, so as to completely solve the trouble caused by oil cylinder leakage. In order to make the operation more flexible and convenient, the lifting system and the main body are configured separately.

The three-stage high shear disperser is a standard heavy-duty machine used in the coating industry. It is an economical and relatively simple mixing equipment component. Its main function is to add powder to the liquid to separate the loose agglomerates to obtain an acceptable level of dispersion, and then grind it.

The running speed of the blade tip is as high as about 5000 feet / minute, and the open disc blade of the disperser can form violent turbulence in low viscosity materials. It will also produce a unique vortex, so that dry materials can be quickly wetted after adding. The dispersing blades can be in the center or off center, depending on the depth of the vortex (eccentric blades produce a small vortex, which can reduce the retention of air). As the material thickens or the volume increases, adjust the blade speed to maintain the vortex and speed of material turnover.


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