Material, performance and characteristics of Multi-functional dispersing reaction kettle

- Oct 11, 2018 -

The multifunctional dispersion reactor material generally has carbon manganese steel, stainless steel, zirconium, nickel-based alloy and other composite materials; usually, it is made of stainless steel materials such as SUS304 and SUS316L. The stirrer of the multifunctional dispersion reaction kettle has anchor type, frame type, paddle type, turbine type, scraper type and combined type; the rotating mechanism can adopt cycloidal pin wheel reducer, stepless speed reducer or frequency conversion speed regulation, etc. It can meet the special reaction requirements of various materials.

 

The sealing device of the multifunctional dispersion reaction kettle may adopt a sealing structure such as a mechanical seal or a packing seal; the heating and cooling may adopt a structure such as a jacket, a half pipe, a coil pipe, a Miller plate, etc., and the heating method includes steam, electric heating, heat conduction oil, To meet the needs of different working environments such as acid resistance, high temperature resistance, wear resistance and corrosion resistance; and design and manufacture according to user's process requirements.

 

There are three types of Multi-functional dispersing reaction kettle, namely, upper feed, post feed and lower feed. At the same time, for the characteristics of chemical materials, there are single drum and double drum. The multi-functional dispersion reaction kettle blade is made of brass, phosphor bronze, nylon, bakelite and alloy steel saw blade; the regular shape and size of the material can ensure the sheet thickness and uniformity of the material.

 

Multi-functional dispersing reaction kettle cooling water uses a packing seal or a rotary joint to reliably prevent water leakage, and a new process is applied to reduce the consumption of cooling water. The drum has heat insulation layer and side scraper at both ends, and the drum does not feed at both ends, so there is no frictional power consumption at both ends of the drum, which eliminates the problem of unstable starting due to the end face.

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