Tecflame Burner TECFG Gas Burner is a high-precision temperature control burner designed by DYDTEC for medium and high temperature industrial applications. Tecflame is a nozzle mixing burner with the characteristics of high flame velocity, ultra wide power regulation range, sufficient and stable combustion and high heat transfer efficiency. It is widely used, such as ceramic shuttle kiln, glass tempering furnace, tempering furnace, quenching furnace, annealing furnace, RTO, thermal oxidation furnace, drying furnace, preheating furnace, etc. Capacity range: 105kw-5300kw Regulation ratio 50:1 Applicable maximum combustion chamber temperature 1540 °C Maximum flame velocity 150m/s Preheating combustion air can be used Direct ignition with spark plug export.dydtec.com www.airotation.com
Open the catalog to page 1Tecflame Burner Combustion chamber type TECFLAME SERIES BURNER » Parameters Model
Open the catalog to page 2Description Velocity selection: Medium velocity: the flame length is long and the air pressure difference of combustion air is low. High velocity: the flame length is short and the pressure difference of combustion air is high, which can form a temperature field with smaller temperature difference and higher temperature uniformity in the furnace. It is suggested that the medium velocity burner should be preferred under the condition of meeting the requirements of flame size and without high temperature control accuracy. Refractory brick: combustion chamber temperature < 1540 °C Refractory brick...
Open the catalog to page 3Tecflame Burner Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion air pressure tap) Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion chamber structure, excess air coefficient and other factors. TECFG-020 Data Curve Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion...
Open the catalog to page 4Tecflame Burner Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion air pressure tap) Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion chamber structure, excess air coefficient and other factors. TECFG-055 Data Curve Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion...
Open the catalog to page 5Tecflame Burner Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion chamber structure, excess air coefficient and other factors. Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion air pressure tap) esej Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because...
Open the catalog to page 6Tecflame Burner Gas pressure difference (natural gas, detection position: gas pressure tap) Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion chamber structure, excess air coefficient and other factors. Gas pressure difference Combustion air pressure Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion...
Open the catalog to page 7Tecflame Burner Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion air pressure tap) Note: NOx emission data are tested based on 850 °C combustion chamber temperature and high-velocity burner. NOx emission data is only for reference, because NOx emission is also affected by combustion chamber structure, excess air coefficient and other factors. » TECFG-500 Data Curved Gas pressure difference (natural gas, detection position: gas pressure tap) Combustion air pressure difference (detection position: combustion...
Open the catalog to page 8Tecflame Burner Make The Combustion Perfect And Simple
Open the catalog to page 9Tecflame Burner Make The Combustion Perfect And Simple
Open the catalog to page 11Tecflame Burner
Open the catalog to page 123) Combustion air in let (supplied with companion flange)
Open the catalog to page 133) Combustion air in let (supplied with companion flange)
Open the catalog to page 14Tecflame Burner 3) Combustion air in let (supplied with companion flange)
Open the catalog to page 15Tecflame Burner Make The Combustion Perfect And Simple
Open the catalog to page 16Tecflame Burner Installation direction Tecfg burner can be installed by side or top mounting, and side mounting is more recommended.
Open the catalog to page 17Tecflame Burner • Place the sealing gasket (No. 4) on the furnace wall; • Position the burner (No. 5) on the mounting stud (No. 3) and fix it with nuts. When the burner brick extends into the mounting hole and moves inward, check to avoid damage to the refractory fiber insulation layer and displacement of the sealing gasket; • Tighten the nuts on the furnace wall flange and keep them loose, so that the burner bricks of the burner can expand and contract freely during the heating process; • Connect the fuel gas and air pipelines on the burner; • Formulate appropriate first drying curve of kiln...
Open the catalog to page 18Tecflame Burner • If UV cooling air is set, the air volume shall be set with a needle valve to regulate the flow, and the cooling air flow shall not exceed 5nm3/h, so as to avoid the high temperature of the mixing cone caused by the full combustion of the flame in the mixing cone due to the excessive UV cooling air volume, which will affect the service life. • When the burner is shut down, if the temperature in the combustion chamber is higher than 500 °C, a small amount of combustion air shall be reserved to reduce the temperature of the burner. • All installation, maintenance, ignition and...
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