Introduction of stainless steel cartridge heater for radiator

Dec 19, 2019

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Introduction of stainless steel cartridge heater for radiator


Classification of stainless steel cartridge heater for radiator

1. Classified according to the outlet method, it can be divided into cartridge heater and tubular heater.

2. According to material classification, it can be divided into stainless steel electric heating element, quartz heater, Teflon heater, titanium heating element.

3. According to the shape classification, it can be divided into straight type electric heating tubular, U type tubular heater, L type tubular heater, W type tubular heater, fin electric heating element, special-shaped electric heating element

4. According to the use classification, it can be divided into dry-fired electric heating elements and water-fired electric heating tubular element.

5. Classified according to the heating method, it can be divided into conventional resistance heating tubes and radiant electric heating element.

 

Function and characteristics of stainless steel cartridge heater for radiator

      Small size and high power: The heater is mainly a bundled tubular electric heating element. Fast thermal response, high temperature control accuracy and high comprehensive thermal efficiency. High heating temperature: The maximum design temperature of the heater is 850 ° C. The outlet temperature of the medium is average, and the temperature control accuracy is high. Wide application limitations and strong compliance: The heater can be used in explosion-proof or popular places, the explosion-proof grade can reach dⅡB and C grade, and the pressure can reach 20MPa.

      Long life and high reliability: The heater is made of extraordinary electric heating materials, designed with low external power load, and adopts multiple maintenance to greatly increase the safety and life of the electric heater. Fully automatic control: According to the requirements, the heater circuit design can facilitate the automatic control of parameters such as outlet temperature, flow, and pressure, and can be networked with computers. The energy saving result is obvious, and the heat generated by the electric energy is almost 100% transferred to the heating medium.