High-infrared reflectivity high-aluminum light-weight refractory insulation material and preparation method thereof
A technology of infrared reflection, refractory and heat preservation, which is applied in the field of high-alumina lightweight refractory heat preservation materials, can solve the problems of weakening the heat preservation and heat insulation effect of materials, increasing thermal conductivity, and reducing material strength, so as to achieve low production costs, improve material strength, Effect of reducing high temperature thermal conductivity
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Embodiment 1
[0029] A high-infrared reflectivity high-aluminum light-weight refractory and thermal insulation material and a preparation method thereof. The concrete steps of preparation method of the present invention are:
[0030] In the first step, 20~30wt% of anhydrous potassium carbonate, 60~70wt% of titanium dioxide and 8~10wt% of glucose powder were mixed evenly, pressed and formed under the condition of 50~80MPa, and then in an argon atmosphere and 1000~ Heat treatment at 1200°C for 1 to 2 hours to obtain a heat treatment material. Then the heat-treated material is crushed, ground, and sieved to obtain material A with a particle size of 0.088-1 mm and material B with a particle size of less than 0.088 mm.
[0031] In the second step, with 20~30wt% bauxite particles, 15~25wt% bauxite fine powder, 10~15wt% described A material, 10~15wt% described B material, 10~15wt% oxidized Aluminum fine powder and 5-10wt% of anhydrous potassium carbonate are used as a mixture, and 2-5wt% of wate...
Embodiment 2
[0034] A high-infrared reflectivity high-aluminum light-weight refractory and thermal insulation material and a preparation method thereof. The concrete steps of preparation method of the present invention are:
[0035] The first step is to mix 30~40wt% potassium sulfate, 50~60wt% metatitanic acid and 8~10wt% glucose powder evenly, press and form under the condition of 80~100MPa, and then in nitrogen atmosphere and 800~1000℃ Heat treatment under conditions for 0.5 to 1 hour to obtain a heat treatment material. Then the heat-treated material is crushed, ground, and sieved to obtain material A with a particle size of 0.088-1 mm and material B with a particle size of less than 0.088 mm.
[0036] In the second step, with 30~40wt% of bauxite particles, 10~15wt% of bauxite fine powder, 10~15wt% of the A material, 10~15wt% of the B material, 10~15wt% of hydrogen Aluminum oxide fine powder and 5-10wt% potassium sulfate are used as a mixture, and 5-8wt% of water is added to the mixtu...
Embodiment 3
[0039] A high-infrared reflectivity high-aluminum light-weight refractory and thermal insulation material and a preparation method thereof. The concrete steps of preparation method of the present invention are:
[0040] In the first step, 25~35wt% potassium chloride, 60~70wt% metatitanic acid and 5~8wt% industrial dextrin powder are mixed uniformly, pressed and formed under the condition of 50~80MPa, and then in argon atmosphere and Heat treatment at 800-1000°C for 1-2 hours to obtain heat-treated material. Then the heat-treated material is crushed, ground, and sieved to obtain material A with a particle size of 0.088-1 mm and material B with a particle size of less than 0.088 mm.
[0041]In the second step, with 30~40wt% bauxite particles, 15~25wt% bauxite fine powder, 5~10wt% described A material, 10~15wt% described B material, 10~15wt% hydrogen Fine alumina powder and 2-5wt% potassium chloride are used as a mixture, and 2-5wt% of water is added to the mixture, stirred for...
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