An epoxy intumescent steel structure fireproof coating used in jet fire
A fire retardant coating and epoxy technology, applied in fire retardant coatings, epoxy resin coatings, anti-corrosion coatings, etc., can solve the problems of low fire resistance attenuation, inability to meet high corrosion resistance and other problems, achieve low fire resistance performance attenuation, improve compactness, The effect of reducing smoke production
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Embodiment 1
[0045] Step 1: Preparation of Modified Epoxy Resin
[0046] 47 parts of bisphenol A epoxy resin E51, 37 parts of 300 mesh zinc powder, 10 parts of dispersant BYK111, 5 parts of nitrile rubber, 1 part of KH550 silane coupling agent. The material was weighed in parts by weight and put into a planetary ball mill at one time, and zirconium beads five times the weight of the material were added, and ball milled continuously for 60 hours to obtain a modified epoxy resin.
[0047] Step 2: Prepare Component A
[0048] According to the proportion in the first component, 30 parts of modified epoxy resin prepared in step 1, 40 parts of ammonium polyphosphate coated with catalyst epoxy resin, 15 parts of char-forming agent pentaerythritol, and flame retardant triaryl 20 parts of phosphate ester, 2 parts of aluminum silicate reinforcing fiber, 1.5 parts of BYK111 dispersant, 1.5 parts of BYK-065 defoamer, all raw materials are put into planetary mixer at one time, after mixing for 40 minu...
Embodiment 2
[0058] Step 1: Preparation of Modified Epoxy Resin
[0059] 55 parts of bisphenol F epoxy resin, 30 parts of 200 mesh titanium powder, 10 parts of dispersant BYK111, 6 parts of nitrile rubber, 2 parts of KH550 silane coupling agent. The material was weighed in parts by weight and put into a planetary ball mill at one time, and zirconium beads five times the weight of the material were added, and ball milled continuously for 60 hours to obtain a modified epoxy resin.
[0060] Step 2: Prepare Component A
[0061] According to the proportion in the first component, 25 parts of the modified epoxy resin prepared in step 1, 45 parts of ammonium polyphosphate with a molecular weight greater than 1500 coated with melamine formaldehyde as catalyst, 10 parts of dipentaerythritol char-forming agent, phosphoric acid 15 parts of tricresyl flame retardant, 1 part of carbon fiber reinforced fiber, 0.8 part of BYK102 dispersant, 0.2 part of BYK-066N defoamer All raw materials are put into th...
Embodiment 3
[0068] Step 1: Preparation of Modified Epoxy Resin
[0069] 40 parts of bisphenol F epoxy resin, 40 parts of 200 mesh zirconium powder, 5 parts of dispersant BYK111, 4 parts of nitrile rubber, 0.5 parts of KH550 silane coupling agent. The material was weighed in parts by weight and put into a planetary ball mill at one time, and zirconium beads five times the weight of the material were added, and ball milled continuously for 60 hours to obtain a modified epoxy resin.
[0070] Step 2: Prepare Component A
[0071] According to the proportion in the first component, 40 parts of modified epoxy resin prepared in step 1, 30 parts of ammonium polyphosphate with a molecular weight greater than 1500 coated by catalyst silane, 15 parts of char-forming agent pentaerythritol, 5 parts of dipentaerythritol 25 parts of flame retardant tris(xylene) phosphate, 5 parts of No. 52 chlorinated paraffin, 3 parts of sepiolite reinforcing fiber, 2 parts of BYK103 dispersant, 2 parts of BYK-065 defo...
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