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Details: Introduction to Gas Infrared Burner The working principle of the gas infrared burner produced by our company is: the gas/air mixing design allows for sufficient mixing of gas and air. The mixed gas enters the inner chamber of the burner shell, is distributed and guided, and then evenly burns from the small holes of the heat storage body, causing the heat storage body to turn red, store heat, and release heat outward in the form of radiating infrared rays. Principles of infrared and far infrared drying: Infrared and far infrared dryers are a method of drying that utilizes radiation heat transfer. The electromagnetic waves generated by infrared or far-infrared radiators propagate linearly at the speed of light to reach the dried material. When the emission frequency of infrared or far-infrared rays matches the natural frequency of molecular motion in the dried material (i.e. the emission wavelength of infrared or far-infrared rays and the absorption wavelength of the dried material), it causes strong vibrations of the molecules in the material, Intense friction occurs inside the material to generate heat and achieve drying. Characteristics of gas infrared burner: 1. Direct heating: Directly transfer heat to objects in the form of infrared radiation, without using air as a medium. It is an efficient heat source that can locally heat necessary parts. 2. High thermal efficiency: 70% of the heat generated by gas combustion is radiated outward in infrared form, effectively releasing heat. 3. Universal radiation: The combustion method of the infrared burner is surface combustion, so the combustion surface can face up, down, or sideways in any direction. 4. Natural premixing: The unique air/gas mixing device enables the burner to achieve the optimal gas/air ratio. The entire process does not require manual intervention and is completed automatically. 5. Reliable quality: The heat storage body is made of ceramic materials with excellent resistance to sudden heating and sudden cooling, which is durable and cost-effective; The surface of the heat storage body adopts our company's unique concave plate surface, which emits less heat and heats up quickly; Adopting elastic installation technology to ensure stable operation of the thermal storage body. Alloy materials have the characteristics of sensitive temperature control response, strong temperature resistance, low tempering tendency, and long service life. 6. Cost savings: Compared to the hot air circulation method, it saves heat exchangers and air ducts; Reasonable piping and installation will also significantly reduce gas consumption; Its full life operating cost is lower than that of the hot air circulation heating method. 7. Environmental protection: Due to almost complete combustion of gas, there are no exhaust emissions; Due to the lack of a fan and almost silent combustion, there is no noise pollution; Therefore, infrared burners can maximize environmental protection. 8. Suitable for baking: The infrared wavelength emitted by the burner is 2-4 μ M. The infrared radiation within this wavelength range has the highest heat and is particularly easily absorbed by water, making it very suitable for baking and drying items. |