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The pipe heater consists of two parts: the main body and the control system. The heating element is encased in a stainless steel pipe, utilizing high-temperature resistance alloy wire and magnesium oxide powder. It is formed through compression technology. The control section employs a digital circuit, integrated circuit trigger, and high-voltage silicon-controlled rectifier, etc., to form an adjustable temperature measurement and constant temperature system, ensuring the normal operation of the electric heater.
Product Applications
Pipe HeaterMedium can be heated from the initial temperature to the required temperature, up to 850°C. Applied to many scientific research and production laboratories in aerospace, industry, chemical industry, and universities. Particularly suitable for automatic temperature control and high-flow high-temperature combined systems and component testing. The heating medium of the product is non-conductive, non-flammable, and non-explosive, with no chemical corrosiveness. The heated space warms up quickly (可控).
Terms of Use
Working voltage should not exceed 1.1 times the rated value, and the housing should be effectively grounded.
2. The effective heating size must be fully submerged in water to prevent overheating.
3. Regularly clean the surface scale from the pipes to prevent heat dissipation issues and extend their service life.
4. Components should be stored in a dry place. If the insulation resistance drops below 1MΩ due to long-term storage, voltage can be reduced to heat the components electrically or place them in an oven to dry until the insulation resistance is restored.
Avoid excessive force when tightening the terminal screws.
Heats air to very high temperatures, up to 450°C, with the housing temperature around 50°C.
Rapid heating and cooling rate blocks, up to 10℃/s, with quick and stable adjustment. No temperature control drift due to air temperature overshoot or lag, ideal for automatic control.
Excellent mechanical properties: Due to its alloy material heating element, it is more mechanically durable under the impact of high-pressure air flow than any other heating element.
Under strict adherence to operating procedures, the lifespan extends for over a decade.






