Mechanical-enhanced SiO2 aerogel material and preparation method thereof
A silica and aerogel technology, applied in the direction of silica and silica, can solve problems such as unsatisfactory effects and unsolved problems, achieve a compact skeleton structure, increase elastic modulus, and particle accumulation high effect
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Embodiment 1
[0030] The first step is to use methyl silicate, methanol, insufficient water and appropriate amount of hydrochloric acid according to the molar ratio of 1: 2.4: 1.5: 10 -5 mix. The mixed solution was refluxed at 85°C for 20 hours to achieve full mixing and increase the rate of hydrolysis, and then distilled at 95°C for 4 hours to remove the methanol generated by the reaction to obtain partially hydrolyzed and partially polycondensed silica sol (CS), the size of colloidal particles Smaller; the second step reaction is to mix CS with acetonitrile, water and ammonia according to the volume ratio of 1:5: 1.2: 0.02 (A) and 1:50: 2.5: 0.06 (B).
[0031] Stir the high-concentration A sol and low-concentration B sol for 30 min, and then pour the sols into a polytetrafluoroethylene-lined stainless steel shell hydrothermal kettle. The hydrothermal kettle was placed in a constant temperature box at 50° C. and kept warm for 24 hours. After this process, the high concentration A sol and t...
Embodiment 2
[0035] The first step is to use methyl silicate, methanol, insufficient water and appropriate amount of hydrochloric acid according to the molar ratio of 1: 2.2: 1.3: 10 -5 mix. The mixed solution was refluxed at 85°C for 20 hours to achieve full mixing and increase the rate of hydrolysis, and then distilled at 95°C for 4 hours to remove the methanol generated by the reaction to obtain partially hydrolyzed and partially polycondensed silica sol (CS), the size of colloidal particles Smaller; the second step reaction is to mix CS with acetonitrile, water and ammonia according to the volume ratio of 1:5: 1.2: 0.02 (A) and 1:50: 2.5: 0.06 (B).
[0036] Stir the high-concentration A sol and low-concentration B sol for 40 min, and then pour the sols into a polytetrafluoroethylene-lined stainless steel shell hydrothermal kettle. The hydrothermal kettle was placed in a thermostat at 40° C. and kept warm for 24 hours. After this process, the high concentration A sol and the low conce...
Embodiment 3
[0040] In the first step, the molar ratio of methyl silicate, methanol, insufficient water and appropriate amount of hydrochloric acid is 1: 2.8: 1.4: 4×10 -5 mix. The mixed solution was refluxed at 85°C for 20 hours to achieve full mixing and increase the rate of hydrolysis, and then distilled at 95°C for 4 hours to remove the methanol generated by the reaction to obtain partially hydrolyzed and partially polycondensed silica sol (CS), the size of colloidal particles Smaller; the second step reaction is to mix CS with acetonitrile, water and ammonia according to the volume ratio of 1:5: 1.2: 0.02 (A) and 1:50: 2.5: 0.06 (B).
[0041] Stir the high-concentration A sol and low-concentration B sol for 30 min, and then pour the sols into a polytetrafluoroethylene-lined stainless steel shell hydrothermal kettle. The hydrothermal kettle was placed in a constant temperature box at 60° C. and kept warm for 18 hours. After this process, the high concentration A sol and the low conce...
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