The electric heating conversion efficiency is high. The carbon fiber heating element is made of pure blackbody material. During the electric heating conversion process, the visible light is very small, and the electric heating conversion efficiency reaches over 95%. Compared to materials such as nickel chromium and tungsten molybdenum used as heating elements, it can save 30% energy.

High efficiency and energy saving: The electrothermal conversion efficiency of carbon fiber heating lamps is high, which can reach 95%-98%. Compared with the 60% efficiency of traditional resistance wire quartz heating tubes, it is significantly improved. It can effectively reduce energy consumption and production costs, and is in line with the industrial field. Development requirements for energy conservation and emission reduction.

Rapid heating and precise temperature control: It has low thermal inertia and fast heating speed. It can generally reach the set temperature in 5-10 seconds, and can achieve more precise temperature control, which helps to improve production efficiency and product quality. It is especially suitable for Industrial production processes that require strict temperature control, such as plastic processing, metal heat treatment, etc.

Uniform heating: The heating range is wide and uniform, which avoids the problems of local overheating or uneven heating that are easy to occur in traditional heating methods. It can make the heated object heated more evenly, thus improving the consistency and stability of the product. For large areas or Heating complex-shaped objects has obvious advantages, such as in processes such as glass annealing and printing ink drying.

Safe and reliable: The carbon fiber heating lamp uses electric energy for heating, with no open flame and no waste gas emissions, reducing fire risks and environmental pollution; at the same time, the carbon fiber material itself has good high temperature resistance, wear resistance and corrosion resistance, long service life, and can be used in Long-term stable operation in harsh industrial environments, reducing equipment maintenance costs and replacement frequency

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