Filling rubber for preparing high-strength transparence room-temperature curing silicon rubber
A room temperature curing and filling technology, which is applied in adhesives, other chemical processes, chemical instruments and methods, etc., can solve the problem of the mechanical properties of room temperature curing silicone structural sealing silicone rubber, the limited effect of agglomeration and growth of silica particles, Affect the high transparency of sealing silicone rubber, and achieve the effect of inhibiting filler agglomeration, good optical properties and mechanical properties, and high transparency and mechanical properties
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Embodiment 1
[0019] Add 306.0g of methyl silicate (2.01mol) into alcohol water composed of 853.0g of absolute ethanol (concentration 99.5wt.%; the following examples are the same; the amount of substance converted into ethanol is 18.45mol) and 94.0g of distilled water In the solution, stir and dissolve, then add 50.0g of strong ammonia water (concentration 25wt.%, the same as in the following examples; the amount of substance converted into ammonia is 0.74mol, and the sum of the amount of substance contained in water and distilled water in ammonia is 7.54mol , the following calculation method is the same) and 70.0g hexamethyldisilazane (the amount of the hydrophobic group provided after hydrolysis is 0.87mol, the following calculation method is the same), stirred and reacted for 4 hours to obtain hydrophobic nano-silica alcohol water dispersion.
[0020] In a KL-2HV type kneader, premix the prepared hydrophobic nano-silica dispersion containing 7.7 parts by mass with 100 parts by mass of p...
Embodiment 2
[0024] Add 305.0g of methyl silicate (2.01mol) into the alcohol-water mixed solution composed of 855.0g of absolute ethanol (18.49mol) and 109.0g of distilled water, stir to dissolve, then add 32.0g of concentrated ammonia water (ammonia is 0.47mol, water The total amount is 7.63 mol) and 75.0 g of hexamethyldisilazane (0.87 mol of hydrophobic group), stirred and reacted for 2 hours to obtain a hydrophobic nano-silica dispersion.
[0025] In a KL-2HV type kneader, premix the prepared hydrophobic nano-silica dispersion containing 5.0 parts by mass with 100 parts by mass of polydimethylsiloxane for 5 minutes, then raise the temperature to 120°C, Mix at normal pressure for 2 hours, and then continue to mix for 1.5 hours under vacuum to obtain a colorless and transparent filler.
[0026] The acid glue was prepared according to the method of Example 1, and the test results: the tensile bond strength was 0.37MPa, the tensile strength was 1.02MPa, and the light transmittance was 89.6...
Embodiment 3
[0028] Add 305.0g of methyl silicate (2.01mol) into the mixed solution of alcohol and water consisting of 920.0g of absolute ethanol (19.90mol) and 70.0g of distilled water, stir to dissolve, then add 30.0g of concentrated ammonia water (ammonia is 0.44mol, water The total amount is 5.39 mol) and 71.0 g of hexamethyldisilazane (0.88 mol of hydrophobic group), stirred and reacted for 3 hours to obtain a hydrophobic nano-silica dispersion.
[0029] In a KL-2HV type kneader, premix the prepared hydrophobic nano-silica dispersion containing 7.0 parts by mass with 100 parts by mass of polydimethylsiloxane for 5 minutes, then raise the temperature to 130°C, Mix at normal pressure for 1.5 hours, and then continue to mix for 1.5 hours under vacuum to obtain a colorless and transparent filler.
[0030] The acid glue was prepared according to the method of Example 1, and the test results: the tensile bond strength was 0.49MPa, the tensile strength was 1.54MPa, and the light transmittanc...
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