Light efficient heat protection and insulation integrated thermal protection material and preparation method thereof
A thermal protection material and high-efficiency technology, applied in the field of high-temperature-resistant and heat-insulating materials, can solve the problems of low overall strength of materials and immature preparation technology of high-temperature-resistant and heat-resistant materials, so as to improve mechanical strength, improve heat insulation performance, and ensure normal The effect of using
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Embodiment 1
[0029] A method for preparing a light-weight, high-efficiency heat-insulating integrated thermal protection material, the method includes the following process steps:
[0030] Preparation of high temperature resistant heat insulation tile: use pretreated quartz fiber and mullite fiber (fiber length 30-300μm), mix according to the mass ratio of 9:1 and add it to water 20 times the fiber mass, add 1% of the fiber mass nitrogen Add boron powder, add silica sol with 1 times the mass of fiber, press filter to form, pressure 3MPa, demold and dry at 50°C, and then sinter at 1100°C;
[0031] The organic airgel is configured as resorcinol + formaldehyde (RF airgel), and the mass is 20% of the mass of the high-temperature heat-resistant insulation tile. The sintered high-temperature-resistant heat-resistant tile is put into vacuum impregnation, and the vacuum degree of impregnation is controlled at -0.1 MPa.
[0032] Obtain a lightweight and highly efficient thermal insulation integrat...
Embodiment 2
[0034] Preparation of high temperature resistant heat insulation tile: use pretreated quartz fiber and alumina fiber (fiber length 30-300μm), mix according to the mass ratio of 5:5 and add it to water 60 times the fiber mass, add 10% fiber mass nitriding Boron powder, add silica sol 4 times the fiber mass, press filter molding, pressure 5MPa, demolding and drying, drying temperature 150°C, and then sintering, sintering temperature 1300°C;
[0035] The organic airgel is configured as melamine + formaldehyde (MF airgel), and the mass is 95% of the mass of the high-temperature-resistant heat-insulating tile. Put the sintered high-temperature-resistant heat-resistant tile into vacuum impregnation, and the vacuum degree of impregnation is controlled at 0.05MPa .
[0036] Obtain a lightweight and efficient anti-heat insulation integrated thermal protection material with a density of 0.8g / cm 3 , the compressive strength is greater than 10MPa, the tensile strength is greater than 2.5...
Embodiment 3
[0038] Preparation of high temperature resistant heat insulation tile: use pretreated mullite fiber and alumina fiber (fiber length 30-300μm), add ingredients according to the ratio of mass ratio 7:3 to water 40 times the fiber mass, add 6% fiber mass Boron carbide powder, adding silica sol 2.5 times the fiber mass, press filter molding, pressure 4MPa, demolding and drying, drying temperature 100°C, and then sintering, sintering temperature 1500°C;
[0039]The organic airgel is configured as melamine + formaldehyde (MF airgel), and the mass is 60% of the mass of the high-temperature heat-resistant insulation tile. Put the sintered high-temperature-resistant heat-resistant tile into vacuum impregnation, and the vacuum degree of impregnation is controlled at 0.01MPa .
[0040] Obtain light and high-efficiency anti-heat insulation integrated thermal protection material with a density of 0.6g / cm 3 , the compressive strength is greater than 3MPa, the tensile strength is greater th...
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