Method for preparing temperature-resistant hard polyurethane foam
A rigid polyurethane and temperature-resistant technology, applied in the field of preparation of temperature-resistant rigid polyurethane foam, can solve the problems of foam production cost increase, loss, poor processing performance, etc.
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Embodiment 1
[0039] Synthesis of Sorbitan Polyether Polyols
[0040] In a 3-liter stainless steel high-pressure reactor, put 486 grams of solid sorbitol, 6 grams of potassium hydroxide, nitrogen replacement 3 times, heat to 110°C under negative pressure (-0.1Mpa), pre-dosing PO 100 grams, and wait for the pressure to drop gradually. At the beginning of the reaction, continuously add PO / EO mixture, among which, 1264 grams of PO and 150 grams of EO are refined after the reaction. The measured hydroxyl value is 450±50mgKOH / g, and the viscosity is 750mPa·s / 25°C.
Embodiment 2
[0041] Embodiment 2: the synthesis of sucrose polyether polyol
[0042] 3-liter stainless steel high-pressure reactor, put 525 grams of solid sucrose, 199 grams of diethylene glycol, 4 grams of dimethylethanolamine, nitrogen replacement 3 times, heated to 110 °C under negative pressure (-0.1Mpa), and continuously put in PO / EO Mixed materials, including PO1140 grams, EO136 grams, the hydroxyl value measured after the reaction is 450±50mgKOH / g, and the viscosity is 10000mpa·s / 25°C.
Embodiment 3
[0043] Embodiment 3: the synthesis of phthalic anhydride series polyester polyol
[0044] 3 liter stainless steel autoclave with distillation unit. Add 792 grams of phthalic anhydride, 1251 grams of diethylene glycol, and 0.63 grams of tetrabutyl titanate, replace with nitrogen 3 times, heat to 220°C, and react for 4 hours, distill most of the stoichiometric amount of by-product water, heat up to 240°C, and react After 2 hours, cool down and discharge, the acid value is 2mgKOH / g, the hydroxyl value is 350±30mgKOH / g, and the viscosity is 1500mPa·s / 25°C.
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