Fecralloy metal fiber, also known as heat-resistant fiber, is an ideal combustion medium for infrared burners. This article will introduce the advantages of using Fecralloy fiber as a combustion medium in infrared burners.
Firstly, Fecralloy fiber has excellent thermal stability and heat resistance. It can withstand high temperatures up to 1300°C, making it suitable for use in high-temperature infrared combustion applications. The fibers maintain their structure and strength even at high temperatures, which enhances the durability and longevity of the burner system.
Secondly, the Fecralloy metal fiber has excellent thermal conductivity. The fibers rapidly transfer heat from the combustion zone to the outer surface of the fiber, resulting in fast and efficient combustion. This feature also ensures uniform heating across the entire burner surface, resulting in consistent and efficient heat output.
Thirdly, the FeCrAl fiber has a low thermal mass, which means it heats up and cools down quickly. This feature makes it possible for the burner to attain its desired temperature rapidly, thus reducing start-up times and energy consumption. Additionally, as the fibers quickly cool down when the burner is turned off, there is no need for an additional cooling system.
Lastly, the use of Fecralloy metal fiber mesh as a combustion medium results in clean combustion with minimal emissions. This is due to the high combustion efficiency achieved by the rapid transfer of heat from the combustion zone to the fiber surface, enabling complete combustion with very low levels of harmful emissions such as carbon monoxide (CO) and nitrogen oxides (NOx).
The advantages of using Fecralloy metal fiber as a combustion medium in infrared burners include excellent heat resistance, thermal conductivity, low thermal mass, and clean combustion. These properties make Fecralloy metal fiber an ideal choice for infrared burners and other high-temperature combustion applications.
RONDATEX is a professional supplier of Fecralloy metal fibers for infrared burners. These fibers are highly resistant to thermal shock, corrosion, and oxidation, making them ideal for use in high-temperature environments.