Preparation method for non-crystalline low-melting point polyester hot melt adhesive
A low-melting point polyester and hot-melt adhesive technology, applied in the direction of adhesives, etc., can solve the problems of difficulty in coating time and speed, high viscosity, and easy crystallization
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Embodiment 1
[0019] Add 166 grams of terephthalic acid, 31.1 grams of isophthalic acid, 9.1 grams of 1,6-adipic acid and 89.3 grams of ethylene glycol into a 2000ml glass reaction kettle equipped with a thermometer, a strong stirrer, a fractionating column and a condenser , 28.6 grams of diethylene glycol, 9.4 grams of 1,5-pentanediol, and 0.21 grams of tetra-n-butyl titanate. Start stirring and heat up. When the temperature rises to about 180 degrees, water droplets begin to slip out, and the temperature is 95-105°C, and the temperature continues to rise slowly until the temperature in the kettle reaches about 220°C. After the amount of water slipping out reaches the theoretical value, the esterification reaction is over, and phosphoric acid is added. Trimethyl ester 0.103 g, antioxidant 1010 0.18 g, continue to gradually increase the temperature to about 250 ° C, use a vacuum pump to decompress and evacuate, keep the vacuum degree of the reaction system less than 133 Pa, and continue to ...
Embodiment 2
[0022] Add 166 grams of terephthalic acid, 20.8 grams of isophthalic acid, 18.3 grams of 1,6-adipic acid, and 89.3 grams of ethylene glycol into a 2000ml glass reaction kettle equipped with a thermometer, a strong stirrer, a fractionating column and a condenser , 19 grams of diethylene glycol, 18.7 grams of 1,5-pentanediol, and 0.32 grams of tetra-n-butyl titanate. Start stirring and heat up. When the temperature rises to about 180 degrees, water droplets begin to slip out, and the temperature is 95-105°C, and the temperature continues to rise slowly until the temperature in the kettle reaches about 220°C. After the amount of water slipping out reaches the theoretical value, the esterification reaction is over, and phosphoric acid is added. Trimethyl ester 0.25 g, antioxidant 10100.492 g, continue to gradually heat up to about 250 ° C, use a vacuum pump to decompress and evacuate, keep the vacuum degree of the reaction system less than 133 Pa, and continue to react at 250-260 ...
Embodiment 3-10
[0025] Proceed under the same steps and conditions as in Example 2, except that the raw materials used and their proportioning ratios are shown in the table below. The test results of the obtained products are also listed in the table.
[0026] Raw material ratio and product performance of table 1 embodiment 3~6
[0027] Example 3 4 5 6
[0028] Terephthalic acid, g 132.8 129.5 127.8 124.5 Isophthalic acid, g 24.9 36.5 29.9 33.2 1,6-Hexanedioic acid, g 7.3 1,10-Sebacic acid, g 10.1 Dodecanedioic acid, g 11.5 Ethylene glycol, g 83.7 66.2 83.7 89.3 1,4-Butanediol, g 8.2 1,5-pentanediol, g 9.4 1,6-Hexanediol,g 68.5 Diethylene glycol,g 38.2 31.8 38.2 35.775 Trimethyl phosphate, g 0.215 Triphenyl phosphite, g 0.166 0.20 0.238 Antioxidant 285, g ...
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