Heat conductive insulating material and preparation method thereof
A heat-conducting insulating material and heat-conducting powder technology, applied in heat exchange materials, organic insulators, chemical instruments and methods, etc., can solve the problems of increasing thermal resistance, loss, and incompetence, reducing thermal resistance and accelerating heat transfer. Effect
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Embodiment 1
[0036] (1) Put 20g of vinyl silicone resin with a viscosity of 500cps and a hardness of 5 (shore 00) into a stirrer and stir until it is evenly mixed, and the temperature is at room temperature.
[0037] (2) Weigh 5 g of defoamer phenyl silicone oil and 5 g of white carbon black, put them into the stirrer of step (1) and stir for 20 min.
[0038] (3) Weighing 40g of alumina with an average diameter of 40 microns and impregnating it in an ethanol solution containing 1g of n-hexyltrimethoxysilane, after drying, put it into the stirrer of step (2) and vacuumize and stir for 1 hour to prepare Raw material mixture.
[0039] (4) The raw material mixture is solidified at 150°C after being pressed into tablets, and it becomes a thermally conductive insulating material after 30 minutes out.
[0040] (5) Put the thermally conductive insulating material in step (4) into a hardness testing device for testing.
[0041] (6) Put the thermally conductive insulating material in step (4) into...
Embodiment 2
[0045] (1) Put 60g of vinyl silicone resin with a viscosity of 5000cps and a hardness of 25 (shore 00) into a stirrer and stir until it is evenly mixed, and the temperature is at room temperature.
[0046] (2) Weigh 2 g of antifoaming agent methyl hydrogen-containing silicone oil, 2 g of white carbon black, and 4 g of silica powder, put them into the stirrer of step (1) and stir for 20 minutes.
[0047] (3) Weighing 80 g of boron nitride with a diameter of 40 microns, impregnating it in an ethanol solution containing 0.5 g of n-decyltriethoxysilane, drying it, and putting it into the stirrer of step (2) to vacuumize and stir for 1 hour Make a mixture of ingredients.
[0048] (4) Roll-coat the raw material mixture on a 0.1mm thick polyethylene naphthalate (PEN) film coated with an adhesion enhancer at 80°C, and then cure it at 100°C, and it will be a thermally conductive insulating material after 30 minutes. .
[0049] (5) Put the thermally conductive insulating material in s...
Embodiment 3
[0054] (1) Put 40g of vinyl silicone resin with a viscosity of 50cps and a hardness of 15 (shore 00) into a stirrer and stir until it is evenly mixed, and the temperature is at room temperature.
[0055] (2) Weigh 3 g of antifoaming agent methyl ethoxy silicone oil and 3 g of white carbon black, put them into the stirrer of step (1) and stir for 20 min.
[0056] (3) A total of 60 g of magnesia with a diameter of 40 microns and aluminum nitride of 50 microns is taken by dipping in an ethanol solution containing 1 g of n-decyltriethoxysilane, dried and put into the agitator of step (2) A raw material mixture was prepared after stirring under medium vacuum for 1 hour.
[0057] (4) Print the raw material mixture at 80°C on a corona-discharged 0.015mm thick polyimide film, and then cure it at 120°C. After 30 minutes, it will be a thermally conductive insulating material.
[0058] (5) Put the thermally conductive insulating material in step (4) into a hardness testing device for te...
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