High-thermal-conductivity composite material tank and preparation method thereof
A composite material and high thermal conductivity technology, applied in cooling/ventilation/heating transformation, electrical equipment shell/cabinet/drawer, climate change adaptation, etc. Problems such as poor heat dissipation of FRP materials, to achieve the effect of controllable and adjustable thermal conductivity, efficient heat exchange, and thermal conductivity
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Embodiment 1
[0059] like figure 1 As shown, a high thermal conductivity composite material tank body described in this embodiment includes a tank body; the tank body includes:
[0060] Cylinder 1; first butterfly head 2; and second butterfly head 3. The first butterfly-shaped head 2 is arranged at one end of the cylinder body 1, and is connected with the cylinder body 1 through a first flange. The first butterfly-shaped head 2 is provided with a can opening 4, which is used for The submarine photoelectric composite cable is routed, and is connected with the shore station to realize tasks such as power transmission and signal transmission; the second butterfly head 3 is arranged at the other end of the cylinder body 1, and is connected with the cylinder body 1 through a second flange . The first flange and the second flange are provided with through holes for bolt connection.
[0061] Wherein, the tank wall 6 of the tank body is made of fiber-reinforced resin-based composite material, an...
Embodiment 2
[0075] For a high thermal conductivity composite material tank described in this example, the rest of the structure and the overall preparation method are the same as those in Example 1, the difference is that the heat pipes are arranged in two adjacent rows or four adjacent rows in two columns. The heat pipes are distributed in a square, such as Figure 4 shown.
[0076] It is experimentally determined that the thermal conductivity of the can wall of the high thermal conductivity composite can body obtained in this example is 15.8 W / (m·K).
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Abstract
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