Method for preparing heat-resistant resin by using ethylene tar as raw material
A technology of ethylene tar and heat-resistant resin, applied in the direction of adhesives, etc., can solve the problem of low actual utilization rate of ethylene tar, and achieve the effect of improving the quality content
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Embodiment 1
[0010] Example 1 A method for preparing a heat-resistant resin using ethylene tar as a raw material, the steps and conditions are as follows: (1) Take ethylene tar and put it in a distillation bottle, raise the temperature to 140°C, and distill under reduced pressure at a vacuum of 90KPa to obtain Ethylene heavy tar, the mass yield is 79.8%;
[0011] (2) Add ethylene heavy tar and dialdehyde starch with a mass ratio of 5:1 into the reactor, and add lignosulfonic acid with 8% ethylene heavy tar mass, and raise the temperature to 160°C under the protection of nitrogen at 30mL / min. React for 5h to obtain heat-resistant resin. The mass yield of the resin is 96.4%, the softening point is 114°C, and the mass residual carbon rate is 41.5% at 500°C in air. Proven to have good heat resistance. The quality of its bonding performance is expressed by the content of toluene insoluble quinoline soluble matter-β resin, wherein the mass content of toluene insoluble matter is 21.6%, the mass...
Embodiment 2
[0012] Example 2 A method for preparing a heat-resistant resin using ethylene tar as a raw material, the steps and conditions are as follows: (1) Take ethylene tar and put it in a distillation bottle, raise the temperature to 160°C, and distill under reduced pressure at a vacuum of 90KPa to obtain Ethylene heavy tar; the mass yield is 80.0%.
[0013] (2) Add ethylene heavy tar and dialdehyde starch with a mass ratio of 5:1.5 into the reactor, and add lignosulfonic acid with 9% ethylene heavy tar mass, and raise the temperature to 150°C under the protection of nitrogen at 40mL / min. React for 4h to obtain heat-resistant resin. The mass yield of the resin is 96.7%, the softening point is 123°C, and the mass carbon residue rate is 42.1% at 500°C in air, which proves that it has good heat resistance. Its bonding performance is represented by the content of toluene-insoluble quinoline soluble matter-β resin. The mass content of toluene insoluble matter is 33.6%, the mass content o...
Embodiment 3
[0014] Example 3 A method for preparing a heat-resistant resin using ethylene tar as a raw material, the steps and conditions are as follows: Step (1) is the same as Example 1;
[0015] (2) Add ethylene heavy tar and dialdehyde starch with a mass ratio of 5:2 into the reactor, and add lignosulfonic acid with 10% ethylene heavy tar mass, and raise the temperature to 140°C under the protection of nitrogen at 50mL / min. React for 3h to obtain heat-resistant resin. The mass yield of the resin is 96.2%. The softening point is 118° C., and the carbon residue rate is 43.3 percent at 500° C. in air. Proven to have good heat resistance. Its bonding performance is expressed by the content of toluene insoluble quinoline soluble matter—β resin. The mass content of toluene insoluble matter is 24.7%, the mass content of quinoline insoluble matter is 6.5%, and the mass content of beta resin is 18.2%.
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