Hydrated salt thermal chemical heat storage composite material as well as preparation method and application thereof
A technology of composite materials and heat storage materials, applied in the field of thermochemical heat storage model and its establishment process, hydrated salt thermochemical heat storage composite materials and its preparation, can solve the problems of difficult heating rate, large battery heat release, and material heating speed Fast and other problems, to curb the spread of thermal runaway, alleviate the thermal runaway of the battery, and achieve the effect of good thermal conductivity
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Embodiment 1
[0039] (1) 100 mesh expanded graphite is selected, and the expanded graphite is placed in a 120 ℃ oven for 24 hours to remove the moisture in the adsorbed air. The expanded graphite and Tween 60 are mixed in a sealed stirred tank according to the mass ratio of 96:4, and stirred at 60 ° C for 3 hours. The Tween 60 needs to be dissolved in pure water first, and the aqueous solution of Tween 60 must be completely moistened. Wet expanded graphite. Then, the modified expanded graphite was dried in an oven at 120 °C for 24 h to remove the modifier, thereby obtaining hydrophilic modified expanded graphite.
[0040] (2) Blend disodium hydrogen phosphate dodecahydrate and sodium acetate trihydrate in a mass ratio of 97:3, and melt them completely in an oven at 65°C; dry the alumina fibers cut into small sections in an oven at 120°C for 24 hours .
[0041] (3) Mix the hydrophilic modified expanded graphite, blended salt, and alumina fiber in a sealed stirring tank in a ratio of 20:70:...
Embodiment 2
[0044] (1) Select 50 mesh expanded graphite, and place the expanded graphite in a 100 ℃ oven for 48 hours to remove moisture from the adsorbed air. The expanded graphite and octyl phenyl polyoxyethylene ether were mixed in a sealed stirred tank according to the mass ratio of 96:4, and stirred at 65 ° C for 2 hours, wherein octyl phenyl polyoxyethylene ether should be dissolved in pure water first. , and ensure that the aqueous solution of octylphenyl polyoxyethylene ether completely wets the expanded graphite. Then, the modified expanded graphite was dried in an oven at 110 °C for 36 h to remove the modifier, thereby obtaining hydrophilic modified expanded graphite.
[0045] (2) blend disodium hydrogen phosphate dodecahydrate and sodium acetate trihydrate in a mass ratio of 90:10, and melt completely in a 70°C oven; the aluminum nitride fibers cut into small sections are dried in a 110°C oven 36h.
[0046] (3) Mix the hydrophilic modified expanded graphite, blended salt, and...
Embodiment 3
[0049] (1) Select silicon carbide powder, and place the silicon carbide powder in a 110°C oven for 36 hours to remove the absorbed moisture in the air. Mix silicon carbide and Tween 60 in a sealed stirred tank in a mass ratio of 96:4, and stir at 70 ° C for 1 hour, wherein Tween 60 needs to be dissolved in pure water first, and ensure that the aqueous solution of Tween 60 is completely moistened. Wet silicon carbide powder. Then, the modified silicon carbide was dried in an oven at 100 °C for 48 h to remove the modifier, thereby obtaining hydrophilic modified silicon carbide.
[0050] (2) Blend disodium hydrogen phosphate dodecahydrate and sodium acetate trihydrate in a mass ratio of 98:2, and melt them completely in a 60°C oven; dry the alumina fibers cut into small sections for 48h in a 100°C oven .
[0051] (3) Mix the hydrophilic modified silicon carbide, blended salt, and alumina fiber in a sealed stirring tank in a ratio of 15:80:5, and seal and stir at 60 °C for 6 hou...
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