Environment-friendly waterborne fire retardant coating
A flame retardant coating and water-based technology, applied in the field of building decoration materials, can solve the problems of reducing the environmental protection of water-based coatings, poor compatibility of organic components, poor flame retardant effect of flame retardants, etc., to achieve enhanced film-forming effect and high adhesion. The effect of stability and fast curing
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Synthetic example 2
[0029] Synthesis of Synthesis Example 2 Phosphate Ester
[0030] Add 12mL of n-pentane bromide, 8ml of diethanolamine, 30ml of absolute ethanol and 4g of potassium silanolate to the three-necked flask, reflux and stir for 3 hours, cool, and filter to obtain the liquid; add 1.5ml of 85% phosphoric acid, 50ml of Acetone and 2g of phosphorus pentoxide were heated to 60°C, stirred and reacted for 2 hours, and the acetone was distilled off to obtain a light yellow liquid, which was phosphoric acid ester.
Synthetic example 3
[0031] Preparation of Synthetic Example 3 Composite Filler
[0032] Mix 300g of raw shell powder with 100g of aluminum phosphate and sinter at 500°C for 22min, then pulverize the sintered body and select powder with a particle size of 0.1-1.2μm; then carry out surface treatment on the powder, specifically put 200g of powder into Add 1800g of ethanol and 2.3g of hydroxyl-terminated polysiloxane powder into the container, stir for 45min, and finally dry to obtain the composite filler.
Synthetic example 4
[0033] The preparation of the alcohol ester of synthetic example 4 epoxy modification
[0034] In a nitrogen atmosphere, add 36g of bisphenol A epoxy resin, 100g of maleic anhydride and 240g of ethylene glycol into the reactor, react at 108°C for 50min, then add 6 drops of hydrochloric acid, and continue the reaction for 12min to obtain the epoxy resin Modified Alcohol Esters.
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