Steam-resistant solvent-free laminating adhesive and preparation method thereof
A solvent-free, cooking-resistant technology, applied in the direction of adhesive types, adhesives, polyurea/polyurethane adhesives, etc., can solve the problems of low initial viscosity, high viscosity, low bonding strength, etc., to improve heat resistance And the effect of water repellency, high bond strength and fast compounding speed
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Embodiment 1
[0027] 1. Raw materials, ratio and process of component A:
[0028]Raw materials and proportioning: polytetrahydrofuran diol (molecular weight 1500) 100g, refined castor oil polyol (hydroxyl value 162mgKOH / g) 100g, liquefied MDI 110g;
[0029] Process: Vacuum dry polytetrahydrofuran diol and refined castor oil polyol at 105°C-120°C and a vacuum degree of 0.05-0.09MPa for 1-2 hours, so that the water content of the polyol is less than 0.05%, and then cool down to 50℃~60℃, add liquefied MDI and increase the stirring speed to fully mix with polyols, and at the same time pass through industrial nitrogen protection, then raise the temperature to 70℃~90℃ and react for 2 to 4 hours to form isocyanate-terminated polyurethane prepolymer body;
[0030] Properties of component A: It is a clear, transparent viscous liquid at room temperature, and its viscosity is 1800cP at 60°C.
[0031] 2. Raw materials, ratio and process of component B:
[0032] Raw materials and proportioning: Refin...
Embodiment 2
[0043] 1. Raw materials, ratio and process of component A:
[0044] Raw materials and proportioning: 1,4-butylene adipate (molecular weight 1000) 100g, refined castor oil polyol (hydroxyl value 162mgKOH / g) 100g, liquefied MDI 80g, IPDI 20g;
[0045] Process: Vacuum-dry 1,4-butylene adipate and refined castor oil polyol at 105°C-120°C and vacuum degree of 0.05-0.09MPa for 1-2 hours, so that the content of polyol The water content is less than 0.05%, then lower the temperature to 50°C-60°C, add liquefied MDI and IPDI and increase the stirring speed to fully mix with polyols, and at the same time pass through industrial nitrogen protection, and then heat up to 70°C-90°C to react for 2-4 hours, generate isocyanate-terminated polyurethane prepolymer;
[0046] Properties of component A: It is a clear, transparent viscous liquid at room temperature, and its viscosity is 1500cP at 60°C.
[0047] 2. Raw materials, ratio and process of component B:
[0048] Raw materials and proporti...
Embodiment 3
[0059] 1. Raw materials, ratio and process of component A:
[0060] Raw materials and proportioning: polytetrahydrofuran diol (molecular weight 1500) 100g, poly-1,4-butylene adipate (molecular weight 1000) 100g, soybean oil polyol (hydroxyl value 130mgKOH / g) 200g, IPDI 210g;
[0061] Process: vacuum-dry polytetrahydrofuran diol, poly-1,4-butylene adipate, and soybean oil polyol for 1 to 2 hours at a temperature of 105°C to 120°C and a vacuum degree of 0.05 to 0.09MPa to make The water content of the polyol is less than 0.05%, then lower the temperature to 50°C-60°C, add IPDI and increase the stirring speed to fully mix with the polyol, and at the same time pass through industrial nitrogen protection, and then raise the temperature to 70°C-90°C to react 2 ~4 hours to generate isocyanate-terminated polyurethane prepolymer;
[0062] Properties of component A: It is a clear, transparent viscous liquid at room temperature, and its viscosity is 1500cP at 60°C.
[0063] 2. Raw mate...
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