Method for automatic identification of ignition of intelligent burner controlled by alcohol-based fuel viscosity
A technology of alcohol-based fuel and viscosity control, which is applied in the control of combustion, lighting and heating equipment, etc. It can solve the problems of no mutual automatic identification system, prolong the speed of alcohol-based fuel, damage intelligent burners, etc., and achieve the protection of intellectual property rights of burners , safe and effective use, simple preparation method
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Embodiment 1
[0031] Depend on figure 1 As shown, the method of utilizing the viscosity of alcohol-based fuel to control the automatic identification of ignition of an intelligent burner comprises the following steps:
[0032] (1) Preset opening conditions: Viscosity electrodes are selected, and the upper limit of the preset voltage detection on the electrode sensor controller is 100mV, and the lower limit is 1mV;
[0033] (2) Preparation of alcohol-based fuel: Take 10mL of methanol, 200mL of ethanol, and 10mL of ethylene glycol. The amount of ethylene glycol is 4.55% of the total volume. Stir continuously for 60 minutes. After mixing evenly, the viscosity is 0.50±0.02 Pa·s, 220mL alcohol-based fuel with an open-cup flash point of 20°C±2°C;
[0034] (3) Install the viscosity electrode probe and sensor controller: Install the viscosity electrode probe and sensor controller during the transmission of the alcohol-based fuel to the smart burner, through the sequentially connected fuel liquid s...
Embodiment 2
[0037] Depend on figure 1 As shown, the method for using the viscosity of alcohol-based fuel to control the automatic identification of ignition of an intelligent burner includes the following steps:
[0038] (1) Preset opening conditions: choose a viscosity electrode, and preset the upper limit of current detection on the electrode sensor controller as 100mA and the lower limit as 1mA;
[0039] (2) Preparation of alcohol-based fuel: get the mixed solution of 120mL methanol, 60mL ethanol, and 20mL glycerin, wherein the consumption of glycerol is 10% of the volume of alcohol-based fuel, stir continuously for 90 minutes, and mix well to obtain 200mL alcohol-based fuel with a viscosity of 0.80±0.10Pa·s and an open-cup flash point of 25±2°C;
[0040] (3) Install the viscosity electrode probe and sensor controller: Install the viscosity electrode probe and sensor controller during the transmission of the alcohol-based fuel to the smart burner, through the sequentially connected fu...
Embodiment 3
[0043] Depend on figure 1 As shown, the method for using the viscosity of alcohol-based fuel to control the automatic identification of ignition of an intelligent burner includes the following steps:
[0044] (1) Preset opening conditions: Viscosity electrodes are selected, and the upper limit of the preset voltage detection on the electrode sensor controller is 100mV, and the lower limit is 1mV;
[0045] (2) Preparation of alcohol-based fuel: Take 200mL methanol, 10mL ethanol, 37mL ethylene glycol, 17mL polyethylene glycol, 17mL glycerin, 46mL polyoxybutanol, 46mL methyl methacrylate, 17mL carboxymethyl cellulose , wherein, the consumption of ethylene glycol is 9.49% of the volume of alcohol-based fuel, the consumption of polyethylene glycol is 4.36% of the volume of alcohol-based fuel, the consumption of glycerol is 4.36% of the volume of alcohol-based fuel, polyoxybutanol The consumption of methacrylate is 11.79% of the volume of alcohol-based fuel, the consumption of meth...
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