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The typical application scenarios of fluid explosion-proof electric heaters include:

The typical application scenarios of fluid explosion-proof electric heaters include:

1. The application of air electric heaters in the chemical industry includes heating chemical materials, drying some powders under certain pressure, chemical processes, and jet drying.

2. Heating of hydrocarbons, including petroleum crude oil, heavy oil, fuel oil, thermal oil, lubricating oil, paraffin, etc

3. Process water, superheated steam, molten salt, nitrogen (air) gas, water gas, and other fluids that require heating.

4. Due to the use of advanced explosion-proof structures, the equipment can be widely used in chemical, military, petroleum, natural gas, offshore platforms, ships, mining areas and other places that require explosion-proof measures.

Effectively extending the service life of electric heaters

Air electric heater is an internationally popular high-quality and long-life electric heating equipment. Used for heating, insulation, and heating of flowing liquid and gaseous media in air electric heaters. When the heating medium of the air electric heater passes through the heating chamber of the electric heater under pressure, the huge heat generated during the operation of the electric heating element is uniformly carried away using the principle of fluid thermodynamics, so that the temperature of the heated medium meets the user's process requirements. The working principle is that the fluid explosion-proof electric heater is a type of electric heater that converts electrical energy into thermal energy and uses an air electric heater to heat the materials to be heated.

In work, low-temperature fluid medium enters its input port through a pipeline under pressure, and follows a specific heat exchange channel inside the air electric heating container. The path is designed using the fluid thermodynamics principle of the air electric heater, taking away the high-temperature thermal energy generated by the electric heating elements inside the air electric heater. This causes the temperature of the heated medium in the air electric heater to rise, and the outlet of the electric heater receives the high-temperature medium required by the process. The internal control system of the electric heater automatically adjusts the output power of the electric heater based on the temperature sensor signal at the output port, so that the medium temperature at the output port is uniform; When the heating element of the air electric heater exceeds the temperature limit, the independent overheating protection device of the heating element of the air electric heater immediately cuts off the heating power supply, avoiding overheating of the heating material that may cause coking, deterioration, and carbonization. In severe cases, it may cause the heating element of the air electric heater to burn out, effectively extending the service life of the electric heater.


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