High-temperature-resistant thermal-insulation material prepared with industrial tailings and preparation method thereof
A thermal insulation and industrial tailings technology, applied in the field of thermal insulation materials, can solve problems such as complex operation, high preparation cost, and difficult quality control, and achieve low thermal conductivity, not easy to crack and fall off, and good sealing performance
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[0027] Correspondingly, the embodiment of the present invention also provides a method for preparing a high-temperature-resistant thermal insulation material using industrial tailings, including the following preparation steps:
[0028] S01. Weigh each component according to the formula of the above-mentioned high temperature resistant heat insulation material;
[0029] S02, carrying out the mixing treatment of the weighed components to obtain a thick mixed material;
[0030] S03. Seal and preserve the viscous mixture material.
[0031] Specifically, in step S01, each component is weighed according to the formula of the above-mentioned high-temperature-resistant thermal insulation material, for example, weighed according to the weight percentage of the above-mentioned industrial tailings, perlite, asbestos wool, bentonite, curing system and penetrating agent.
[0032] In the above step S02, the time for each component to be mixed can be flexibly adjusted according to actual p...
Embodiment 1
[0037] A heat-resistant and heat-insulating material using industrial tailings, including 40% industrial tailings, 5% perlite, 10% asbestos wool, 14% bentonite, 16% potassium silicate, 4% aluminum tripolyphosphate, and penetrating agent 1% and water 10%.
[0038] The preparation steps are:
[0039] The first step: take each raw material according to the above mass ratio;
[0040] Step 2: Soak the asbestos wool with clean water for more than 5 hours, add industrial tailings, perlite, bentonite and penetrant and stir evenly, finally add potassium silicate and aluminum tripolyphosphate and mix evenly, add appropriate amount of water during the process to keep thick shape.
[0041] The third step: bagging and airtight storage.
[0042] After testing, the properties of the product obtained after curing at 80°C are: 1) Density 697Kg / m 3 ;2) The compressive strength after 24h is 1.52Mpa; 3) The curing time is 5.5h; 4) The thermal conductivity is 0.113W / m; 5) There is no crack aft...
Embodiment 2
[0044] A heat-resistant and thermal insulation material using industrial tailings, including 45% industrial tailings, 5% perlite, 14% asbestos wool, 10% bentonite, 10% sodium silicate, 5% aluminum tripolyphosphate, and penetrating agent 1% and water 10%.
[0045] The preparation steps are:
[0046] The first step: take each raw material according to the above mass ratio;
[0047] Step 2: Soak the asbestos wool with clean water for more than 5 hours, add industrial tailings, perlite, bentonite and penetrant and stir evenly, finally add potassium silicate and aluminum tripolyphosphate and mix evenly, add appropriate amount of water during the process to keep thick shape.
[0048] The third step: bagging and airtight storage.
[0049] After testing, the properties of the product obtained after curing at room temperature are: 1) Density 655Kg / m 3 ; 2) The compressive strength after 24 hours is 1.39Mpa; 3) The curing time is 7 hours; 4) The thermal conductivity is 0.106W / m; 5) ...
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