Anti-flaming phase-change energy storage, heat preservation and heat insulation material and preparation method thereof
A technology of thermal insulation and phase change energy storage, which is applied in the direction of heat exchange materials, chemical instruments and methods, etc., can solve the problems of non-reduction, achieve improved thermal insulation performance, reduce fire risk, and good flame retardant effect Effect
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Embodiment 1
[0039] A flame-retardant phase-change energy storage material, comprising the following components by weight:
[0040] 100 parts of modified polyether polyol, 20 parts of diethanolamine, 150 parts of polymethylene polyphenylisocyanate, 2.0 parts of triethylenediamine, 0.3 parts of stannous octoate, 2.0 parts of silicone oil, 15 parts of n-hexane, ammonium polyphosphate 10 parts, melamine 10 parts and water 2 parts.
[0041] The preparation process of the modified polyether polyol is as follows: using phosphorus oxychloride as a coupling agent, through the sufficient reaction of its P-Cl bond and OH, the phase change energy storage material polyethylene glycol is bonded to glycerol base polyoxypropylene ether;
[0042] Specifically include the following steps:
[0043] (1) Add 30ml of tetrahydrofuran into a three-necked round-bottomed flask, then slowly add 15g of polyethylene glycol-800, stir rapidly at room temperature, and obtain solution A after dissolving;
[0044] (2) ...
Embodiment 2
[0050] A flame-retardant phase-change energy storage material, comprising the following components by weight:
[0051] 120 parts of modified polyether polyol, 25 parts of diethanolamine, 146 parts of polymethylene polyphenylisocyanate, 2.5 parts of triethylenediamine, 0.5 part of stannous octoate, 3.0 parts of silicone oil, 10 parts of n-hexane, ammonium polyphosphate 30 parts, 30 parts of melamine and 1.5 parts of water.
[0052] The preparation process of the modified polyether polyol is as follows: using phosphorus oxychloride as a coupling agent, through the sufficient reaction of its P-Cl bond and OH, the phase change energy storage material polyethylene glycol is bonded to trimethylol Propane polyoxypropylene ether;
[0053] Specifically include the following steps:
[0054] (1) Add 50ml of tetrahydrofuran into a three-necked round-bottomed flask, then slowly add 25g of polyethylene glycol-800, stir rapidly at room temperature, and obtain solution A after dissolving; ...
Embodiment 3
[0061] A flame-retardant phase-change energy storage material, comprising the following components by weight:
[0062] 80 parts of modified polyether polyol, 23 parts of diethanolamine, 153 parts of polymethylene polyphenylisocyanate, 2.3 parts of triethylenediamine, 0.4 part of stannous octoate, 2.5 parts of silicone oil, 13 parts of n-hexane and 1.8 parts of water .
[0063] The preparation process of the modified polyether polyol is as follows: using phosphorus oxychloride as a coupling agent, through the sufficient reaction of its P-Cl bond and OH, the phase-change energy storage material polyethylene glycol is bonded to the pentaerythritol-based polyol. Propylene oxide ether;
[0064] Specifically include the following steps:
[0065] (1) Add 70ml of tetrahydrofuran into a three-necked round-bottomed flask, then slowly add 30g of polyethylene glycol-600, stir rapidly at room temperature, and obtain solution A after dissolving;
[0066] (2) At room temperature, add 11.5...
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