Polyurethane adhesive, preparation method thereof and heat-conducting adhesive tape
A polyurethane adhesive and adhesive tape technology, applied in the direction of polyurea/polyurethane adhesives, adhesives, adhesive types, etc., can solve problems such as low thermal conductivity and affect heat dissipation, so as to improve thermal conductivity, improve thermal conductivity, and improve performance Effect
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Embodiment 1
[0028] The present embodiment provides a kind of preparation method of polyurethane adhesive, comprises the steps:
[0029] Step 1: Add 10 parts by weight of polyester polyol into the reaction kettle, and vacuum dehydrate for 4 hours;
[0030] Wherein, the polyester polyol is polycarbonate polyol, specifically, polycarbonate diol, a white waxy solid with a hydroxyl value of 100 mgKOH / g, which can provide high cohesive force and high bonding strength. prepolymer.
[0031] Step 2: 1 part by weight of a silane coupling agent couples 6 parts by weight of graphene oxide to obtain the processed graphene oxide, and adds the processed graphene oxide and 70 parts by weight of the combined solvent to the compound prepared in step 1. Said reactor, ultrasonic 2.5 hours;
[0032] Wherein, the combined solvent includes a composition of methylene chloride and acetoketone, wherein the mass ratio of methylene chloride and acetoketone is 4:1, and the compatibility of each raw material can be ...
Embodiment 2
[0054] Step 1: Add 12 parts by weight of polycaprolactone polyol into the reaction kettle, and vacuum dehydrate for 5 hours.
[0055] Step 2: 3 parts by weight of a silane coupling agent couples 10 parts by weight of graphene oxide to obtain the treated graphene oxide, and adds the treated graphene oxide and 77 parts by weight of the combined solvent to the compound prepared in step 1. Said reactor, ultrasonic 4 hours;
[0056] Wherein, the combined solvent comprises a composition of dichloromethane and acetone, wherein the mass ratio of dichloromethane and acetone is: 6:1.
[0057] Step 3: Add 38 parts by weight of isocyanate, 3 parts by weight of catalyst and 6 parts by weight of chain extender into the reactor described in step 2, and heat at 80-90°C for 5 hours;
[0058] Wherein, the isocyanate includes a composition of toluene diisocyanate and diphenylmethane diisocyanate, wherein the mass ratio of toluene diisocyanate to diphenylmethane diisocyanate is 12:1; the catalys...
Embodiment 3
[0062] Step 1: Add 14 parts by weight of polycaprolactone polyol into the reaction kettle, and vacuum dehydrate for 6 hours.
[0063] Step 2: 5 parts by weight of a silane coupling agent couples 6 parts by weight of graphene oxide to obtain the treated graphene oxide, and adds the treated graphene oxide and 80 parts by weight of a combined solvent to the one prepared in step one. Described reactor, ultrasonic 8 hours;
[0064] Wherein, the combined solvent comprises a composition of dichloromethane and acetone, wherein the mass ratio of dichloromethane and acetone is: 8:1.
[0065] Step 3: Add 38 parts by weight of isocyanate, 3 parts by weight of catalyst, and 6 parts by weight of chain extender into the reactor described in step 2, and heat at 80-90°C for 5 hours;
[0066] Wherein, the isocyanate comprises a composition of toluene diisocyanate and diphenylmethane diisocyanate, wherein the mass ratio of toluene diisocyanate to diphenylmethane diisocyanate is 15:1; the cataly...
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