A kind of high temperature resistant, high strength cast nylon 6 composite material and preparation method thereof
A technology of casting nylon and composite materials, applied in the field of casting nylon modification, to achieve the effect of improving heat resistance and mechanical strength, simple operation process and superior performance
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Embodiment 1
[0031] (1) Weigh 100 parts by weight of polycaprolactam, place it in a reaction vessel, and heat it to melt under the protection of nitrogen atmosphere;
[0032] (2) Vacuum dehydration of (1) molten polycaprolactam at 120°C for 10 minutes;
[0033] (3) Take 2 parts by weight of diatomaceous earth and place it in 10% γ-aminopropyltriethoxysilane (KH550) methanol solution for surface treatment for 10 minutes;
[0034] (4) Adding diatomite treated in (3) to caprolactam after dehydration treatment in (2) under the protection of nitrogen atmosphere, and ultrasonically dispersing to prepare diatomite suspension;
[0035] (5) Add 0.1 parts by weight of sodium hydroxide to the diatomite suspension, and vacuum dehydrate at 120°C for 20 minutes;
[0036] (6) Add 0.1 parts by weight of toluene diisocyanate to the dehydrated solution in (5) for mixing. After mixing evenly, quickly pour it into a mold preheated to 160°C. After thermal insulation polymerization for 25 minutes, cool and dem...
Embodiment 2
[0038] (1) Weigh 100 parts by weight of caprolactam, place it in a reaction vessel, and heat it to melt under the protection of nitrogen atmosphere;
[0039] (2) Vacuum dehydration of the above molten caprolactam at 120°C for 10 minutes;
[0040] (3) Take 4 parts by weight of diatomite and place it in 10% KH550 methanol solution for surface treatment for 10 minutes;
[0041] (4) Under the protection of a nitrogen atmosphere, the above-mentioned surface-treated diatomite is added to the dehydrated caprolactam in (2), and the diatomite suspension is prepared by ultrasonic dispersion;
[0042] (5) Add 0.1 parts by weight of sodium hydroxide to the diatomaceous earth suspension, and vacuum dehydrate at 135°C for 20 minutes;
[0043] (6) Add 0.1 parts by weight of toluene diisocyanate to the above-prepared solution, mix it evenly, and quickly pour it into a mold preheated to 160°C. After heat preservation and polymerization for 25 minutes, cool and demould at room temperature to o...
Embodiment 3
[0045] (1) Weigh 100 parts by weight of caprolactam, place it in a reaction vessel, and heat it to melt under the protection of nitrogen atmosphere;
[0046] (2) Vacuum dehydrate the above caprolactam at 130°C for 10 minutes;
[0047] (3) Take 6 parts by weight of diatomite and place it in 10% KH550 methanol solution for surface treatment for 10 minutes;
[0048] (4) Under the protection of a nitrogen atmosphere, the above-mentioned surface-treated diatomite is added to the dehydrated caprolactam in (2), and the diatomite suspension is prepared by ultrasonic dispersion;
[0049] (5) Add 0.3 parts by weight of sodium hydroxide to the diatomite suspension, and vacuum dehydrate at 135°C for 20 minutes;
[0050] (6) Add 0.2 parts by weight of toluene diisocyanate to the above-prepared solution, mix it evenly, and quickly pour it into a mold preheated to 160°C, heat-preserve polymerization for 25 minutes, and then cool and demould at room temperature to obtain a high-temperature-r...
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