The embedded ceramic far-infrared heater not only converts the absorbed radiation heat energy into far-infrared heat energy for transmission
پیام بگذارید
جاسازی شده سرامیک مادون قرمز دور بخاری نه تنها تبدیل جذب تابش گرما انرژی به مادون قرمز دور گرما انرژی برای انتقال
The energy-saving of far-infrared heaters is achieved by the formation of a solidified coating on the radiation surface of the heater using an electric heating coating. Due to its high surface blackness, this coating can absorb a large amount of radiation heat energy, and due to its high emissivity, it can convert the absorbed radiation heat energy into far-infrared heat energy that can be easily absorbed by objects and transmit it in the form of electromagnetic waves. Micron level electric heating coatings have thick coatings, high thermal resistance, and high reflectivity, and are used on the surface of oven boards, Transforming the dissipated heat energy into far-infrared heat energy radiates into the oven in the form of electromagnetic waves, which are absorbed by the heated object inside the oven and are not easily absorbed by moisture, thus keeping the heat energy inside the oven. This not only reduces the moisture discharge temperature, but also increases the temperature inside the oven, making full use of the temperature inside the oven. Nanoscale electric heating coatings have thin coatings and low thermal resistance, and are used on the surface of metal materials that are thermally conductive in the oven, During the heat transfer process, the coating layer not only converts the absorbed radiation heat energy into far-infrared heat energy for transmission, but also becomes a far-infrared radiation heat source due to the increase in surface temperature, resulting in an increase in temperature gradient, enhancing the heat transfer intensity of the heated object and greatly improving its heat absorption ability. In short, the direct effect of converting radiant heat energy into far-infrared heat energy through electric heating coatings is to increase the temperature of the oven, reduce the temperature of moisture loss, and enhance the heat absorption rate of the heated object; Reduced thermal energy loss and achieved the goal of energy conservation.
سرامیک بخاری محصول ساختار٪ 3a
دفن شده سرامیک گرمایش کاشی حرارتی هادی استفاده می کند کوارتز شیشه با سیلیکون محتوا از بیش از 95٪ 25 و درجه حرارت بالا مقاومت از 1800 درجه به عنوان اصلی خام مواد بعد از شیمیایی واکنش٪ 2c سیلیس تشکیل شده است ٪ 4مقاومت٪ 2c ضد خوردگی٪ 2c و غیره حرارت عنصر از سرامیک بخاری ساخته شده توسط سیم پیچ Cr20Ni80 مقاومت سیم به مارپیچ ریخته گری و شلیک در حرارتی هدایت بدن 2٪ 2c عملکرد مزایا و فنی پارامترها از سرامیک بخاری٪ 3a
The overall flexural strength of the ceramic heater is 440Kg/CM2; Heat the whole to 800 degree and place it in cold water repeatedly dozens of times without cracking; The insulation resistance value is greater than 100 megaohms, the radiation rate is about 0.9, and the radiation wavelength is 1-25 micrometers or more. The chemical properties are very stable, and in a dilute sulfuric acid solution, the heating element will not undergo corrosive damage after being fully immersed for 24 hours. Ceramic heaters are widely used in industries such as plastic, chemical, light industry, electronics, pharmaceuticals, and food due to their advantages in thermal efficiency, radiation rate, safety factor, and energy conservation.
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