High molecular solid/solid phase changing material with net type and comb type mixed structure and its preparing method
A solid-solid phase change material and hybrid structure technology, applied in heat exchange materials, chemical instruments and methods, etc., can solve the problems of decreased mechanical strength, poor processing performance, and the use temperature cannot be too high, and achieve long service life and cost. The effect of low, suitable phase transition temperature
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Embodiment 1
[0026] Weigh 22.8 grams of polyethylene glycol with an average molecular mass of 6,000 and 1.2 grams of polyethylene glycol monomethyl ether with an average molecular mass of 6,000 and dissolve them in 60 mL of toluene, heat under nitrogen protection, and control the temperature at 100-120°C , to obtain solution A. 0.18 g of sodium metal was added to solution A, and solution C was obtained after 20 hours of reaction. Weigh 0.43 g of chlorinated polypropylene, add 30 mL of toluene, and heat under the protection of nitrogen at an optimum temperature of 80-100° C. to obtain solution B. Evenly add solution C to solution B dropwise, fully react for 10 hours, volatilize the toluene therein, wash and thoroughly dry, and obtain the solid-solid phase change material of the present invention. After testing, the phase change enthalpy of the phase change material is 114.2J / g, and the phase change temperature is 56.76°C. In the reactant, by mass fraction: two polyethylene glycols are 97....
Embodiment 2
[0028] Weigh 10 grams of polyethylene glycol with an average molecular weight of 10,000 and 10 grams of polyethylene glycol monomethyl ether with an average molecular weight of 5,000 and dissolve them in 40 mL of xylene, heat under nitrogen protection, and control the temperature at 150-170 °C, solution A was obtained. 0.10 g of sodium metal was added to solution A, and solution C was obtained after 24 hours of reaction. Add 30 mL of xylene to 0.54 g of chlorinated polypropylene, heat under nitrogen protection, and control the temperature between 80 and 100° C. to obtain solution B. The solution C is evenly added dropwise into the solution B, and after fully reacting for 12 hours, the xylene in it is volatilized, washed and thoroughly dried to obtain the solid-solid phase change material of the present invention. The phase transition enthalpy of the material is 89.05 J / g, and the phase transition temperature is 52.86 °C. In the reactants by mass fraction: the two polyethylen...
Embodiment 3
[0030]Weigh 20 grams of polyethylene glycol with an average molecular weight of 4000 and 10 grams of polyethylene glycol monomethyl ether with an average molecular weight of 4000, dissolve them in 40 mL of toluene, heat under nitrogen protection, and control the temperature at 60-80 ° C. Solution A is obtained. Add 0.49 g of potassium metal to solution A, and react to obtain solution C after 20 hours. Solution B was obtained by dissolving 1.48 g of chloromethyl polystyrene in 50 mL of toluene at 80-100° C. under nitrogen protection. Add solution C dropwise to solution B evenly. After fully reacting for 10 hours, volatilize the toluene therein, wash and thoroughly dry to obtain the solid-solid phase change material of the present invention. In the reactant, by mass fraction: two polyethylene glycols are 93.84%, potassium is 1.53%, and chloromethyl polystyrene is 4.63%.
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