Foam generating method and application thereof and fire extinguishing method
A technology for generating methods and foams, applied in chemical instruments and methods, fire rescue, transportation and packaging, etc., can solve the problems of no layout space, large occupied space, large flow of high-pressure compressed gas supply, etc., and achieve independent work ability The effect of strong, small occupied space and long air supply time
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[0025] According to a preferred embodiment of the present invention, the gas source is a liquefied medium, preferably the liquefied medium is at least one of liquid nitrogen, liquid carbon dioxide, liquefied inert gas, and liquefied halogenated hydrocarbon gas.
[0026] When the gas source is a liquefied medium, since the liquefied medium is vaporized into a gas at normal room temperature, the gas can be obtained without additional operations. Therefore, when the gas source is a liquefied medium, the mixing method includes passing the gas source in the form of a liquid flow into the foaming substance for mixing. Since the foaming substance is generally at ambient temperature and mixing is usually carried out at ambient temperature, the liquefied medium is vaporized when entering the mixer and in contact with the foaming substance, generating a large amount of gas, thereby performing foaming.
[0027] Aiming at the supply problem of large-flow compressed gas, the present invent...
preparation example 1
[0135] The nitrocellulose with a water content of 20% by weight (with a nitrogen content of 12% by weight) was dehydrated in a centrifuge so that the water content was not greater than 0.15% by weight.
[0136] 100 parts by weight of the above-mentioned dehydrated nitrocellulose, 2 parts by weight of diphenylamine, 50 parts by weight of nitroguanidine and 7 parts by weight of ferric oxide are dissolved in a mixed solvent of 100 parts by weight of ether and 100 parts by weight of ethanol, and then kneaded Mix and plasticize in the machine at 20°C for 60 minutes.
[0137] Make the above mixture into a cylinder, and dry it at 30°C for 8 hours to obtain a 15kg medicament column, denoted as chemical gas-generating medicament A1, with a density of 1.2g / cm 3 , n is 600, the gas production rate is 125L / s / kg, and the continuous gas production time is 1min. Test method of gas production rate: put 500g of medicine in 1m 3 In the box, start the agent and start the reaction. After the re...
preparation example 2
[0139] Dry the sodium azide, sodium nitrate and ferrous sulfide in an oven at 70°C for 2 hours so that the moisture content is not greater than 0.15%.
[0140] The dried sodium azide is mixed with aluminum oxide and magnesium trisilicate in a weight ratio of 58:0.2:0.2, and then put into a ball mill to grind until the average particle size of the mixture is 15 microns.
[0141] The dried sodium nitrate is mixed with aluminum oxide and magnesium trisilicate in a weight ratio of 3:0.2:0.2, and then put into a ball mill to grind until the average particle size of the mixture is 15 microns.
[0142] Put the ferrous sulfide into a ball mill and grind it until the average particle size is 15 microns.
[0143] Mix the mixture of ferrous sulfide, sodium azide, and sodium nitrate obtained by the above ball milling in a ratio of 38:58:4 by weight and load it into a ball mill for grinding. The ball milling time is 1 hour, and the average particle size is 10 microns. Then, dry it in an ...
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