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Why do quartz tubes in electric heaters need to be white plated

Why do quartz tubes in electric heaters need to be white plated

Infrared semi plated white heating lamp tube can convert 95% of electrical energy into thermal energy, far exceeding traditional heating methods. A new heating method that directly heats objects without heating the surrounding air; It can directly heat objects in a vacuum environment. 100% avoids the loss of heat transfer between the heat source and the heating object in traditional heating methods. A clean, green, and safe heating method, using high-quality quartz pipes, will not cause corrosion or detachment, and will not produce harmful gases or odors to the heating object and environment. High quality quartz pipes belong to high-temperature resistant materials, which have good plasticity in high-temperature environments and will not cause pipe bursts. The safety level is very high. Reflective effect, fast reaction time, utilizing the characteristics of fast reaction time and high-quality quartz pipes with minimal thermal inertia, enables quick control of the heating process. The heating process (module) can be set to any power output of 0-100%, achieving good temperature control process effect. The primary coil experiences high current at low voltage standards. For magnetic induction heaters, the rolling bearing is a primary coil with a short circuit fault in a single turn, which generates a very large amount of heat under low AC current standards based on high current. The heater itself and magnetic yoke persist at room temperature. Due to the fact that this type of heating method can magnetically induce current, the rolling bearings will be magnetized. The key is to ensure that the rolling bearings are demagnetized in the future, so that they are not easily attracted to metal magnetic debris during the operation process. FAG magnetic induction heaters all have a fully automatic demagnetization function. It is the application of metals that undergo vortices in alternating electromagnetic fields, causing them to become hot. It is generally used in metal heat treatment processes and other aspects. The basic principle is that when a thick metal is exposed to alternating electromagnetic fields, it will generate current due to the magnetic effect of the current.

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