
The stainless steel reaction kettle manufactured by our factory consists of a kettle body, kettle cover, stirrer, heating and cooling jacket, support and transmission device, shaft seal device, overflow tank, etc., and is equipped with electric heating rods, temperature and pressure gauges, etc.
Due to differences in production processes and operating conditions among users, mixing forms generally include anchor type, slurry type, turbine type, propulsion type, or frame type. The outer wall of the jacket is welded with supports, which can be suspended or supported. The lower part of the pot has a discharge port.
Thermal oil is placed inside the jacket of the electric heating stainless steel reactor, heated by an electric heating rod. The jacket is provided with inlet and outlet holes for oil, overflow measurement, venting, as well as connecting holes for electric heating rods, temperature measurement, etc. The stainless steel reaction kettle using steam heating is directly filled with steam heating inside the jacket. The steam heating reaction kettle requires a stable steam heat source supply and is usually equipped with a boiler.
Characteristics of Stainless Steel Reactor:
- Stainless steel material has excellent mechanical properties, can withstand high working pressure, and can also withstand the impact of solid block materials during feeding.
- Good heat resistance and a wide operating temperature range (-196~600 ℃). It will not oxidize or peel at higher temperatures, so it can be used for direct fire heating.
- Has good corrosion resistance and no rusting phenomenon.
- The heat transfer effect is better than that of enamel reaction vessels, with faster heating and cooling rates.
- Has good processing performance and can be made into various shapes and structures of reaction vessels according to process requirements. The kettle wall can be polished and polished to prevent material hanging and facilitate cleaning.
Overall, the electric heating reactor consumes more energy and heats up slower than the steam heating reactor due to the higher power of the electric heating rod; But steam heating reactors require the addition of coal-fired boilers, and the basic investment is slightly higher than that of electric heating reactors.
Main technical parameters of electric heating stainless steel reaction kettle (tank):
Nominal capacity |
Actual capacity |
Electric heating power |
Jacket capacity |
Inner pot size |
Outer pot size |
Reducer |
Motor power |
Mixing speed |
50L |
61L |
3×2 |
95L |
400 |
600 |
m3 |
1450/0.6 |
60-80 |
100L |
120L |
6×2 |
120L |
500 |
700 |
m3 |
1450/0.6 |
60-80 |
200L |
247L |
6×3 |
200L |
600 |
800 |
m4 |
1450/1.5 |
60-80 |
300L |
355L |
6×3 |
250L |
700 |
900 |
m4 |
1450/1.5 |
60-80 |
500L |
589L |
9×4 |
290L |
900 |
1100 |
m6 |
1450/2.2 |
60-80 |
1000L |
1215L |
12×4 |
560L |
1200 |
1400 |
m8 |
1450/4 |
60-80 |
2000L |
2244L |
15×5 |
750L |
1400 |
1600 |
m8 |
1450/4 |
60-80 |
3000L |
3201L |
15×5 |
1015L |
1600 |
1800 |
m8 |
1450/7.5 |
60-80 |
4000L |
4020L |
15×5 |
1226L |
1600 |
1800 |
m10 |
1450/7.5 |
60-80 |
5000L |
5170L |
18×5 |
1400L |
1800 |
2000 |
m10 |
1450/7.5 |
60-80 |
Note: The above stainless steel reactor parameters are for reference only. The product is subject to the actual reactor delivered to the customer.

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