High-temperature-resistant special ceramic for sparking nozzle of oil-fired machine and preparation method thereof
A technology of special ceramics and high temperature resistance, which is applied in the field of high temperature resistant special ceramics for fuel engine ignition nozzles and its preparation. energy effect
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Embodiment 1
[0015] A high-temperature-resistant special ceramic for ignition nozzles of fuel engines, which is composed of the following raw materials in weight (kg): 30 andalusite, 22 volcanic rocks, 10 diatomite, 15 aluminum oxide, 3 tantalum carbide, 2 cerium sulfide, Titanium 6, magnesium oxide 5, zirconium oxide 4, polyvinylpyrrolidone 3, sodium hydroxypropyl oxidized starch succinate 2.5, sorbitan trioleate 4, cocoyl monoethanolamine 3, sodium methylene dinaphthalene sulfonate 2. Appropriate amount of deionized water.
[0016] A method for preparing high-temperature-resistant special ceramics for ignition nozzles of fuel engines, comprising the following steps:
[0017] (1) Put andalusite, volcanic rock, diatomite, aluminum oxide, tantalum carbide, cerium sulfide, titanium oxide, magnesium oxide, and zirconium oxide into the calciner, ablate for 2 hours, and ablate at a temperature of 680°C;
[0018] (2) Put the product obtained in step (1) into a pulverizer for pulverization, put ...
Embodiment 2
[0024] A high-temperature-resistant special ceramic for a fuel engine ignition nozzle, which is composed of the following raw materials in parts by weight: andalusite 35, volcanic rock 26, diatomite 12, aluminum oxide 20, tantalum carbide 4, cerium sulfide 3, titanium oxide 8 , Magnesium oxide 7, Zirconia 6, Polyvinylpyrrolidone 4, Hydroxypropyl oxidized starch succinate sodium 3.5, Sorbitan trioleate 5, Cocoyl monoethanolamine 4, Sodium methylene dinaphthalene sulfonate 3, Appropriate amount of deionized water.
[0025] A method for preparing high-temperature-resistant special ceramics for ignition nozzles of fuel engines, comprising the following steps:
[0026] (1) Put andalusite, volcanic rock, diatomite, aluminum oxide, tantalum carbide, cerium sulfide, titanium oxide, magnesium oxide, and zirconium oxide into the calciner, ablate for 1.5 hours, and ablate at a temperature of 720°C;
[0027] (2) Put the product obtained in step (1) into a pulverizer for pulverization, pa...
Embodiment 3
[0033] A high-temperature-resistant special ceramic for ignition nozzles of fuel engines, which is composed of the following raw materials in weight (kg): andalusite 40, volcanic rock 28, diatomite 15, aluminum oxide 25, tantalum carbide 6, cerium sulfide 4, oxide Titanium 12, Magnesium Oxide 10, Zirconia 8, Polyvinylpyrrolidone 5, Sodium Hydroxypropyl Oxidized Starch Succinate 4.5, Sorbitan Trioleate 6, Cocoyl Monoethanolamine 5, Sodium Methylene Dinaphthalene Sulfonate 4. Appropriate amount of deionized water.
[0034] A method for preparing high-temperature-resistant special ceramics for ignition nozzles of fuel engines, comprising the following steps:
[0035] (1) Put andalusite, volcanic rock, diatomite, aluminum oxide, tantalum carbide, cerium sulfide, titanium oxide, magnesium oxide, and zirconium oxide into the calciner, ablate for 1 hour, and ablate at a temperature of 760°C;
[0036] (2) Put the product obtained in step (1) into a pulverizer for pulverization, pass ...
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