Superconductive heat pipe and heat transfer medium thereof
A technology of heat transfer medium and superconducting heat pipe, applied in indirect heat exchangers, heat exchange materials, lighting and heating equipment, etc., can solve the problems of superconducting heat pipes such as easy corrosion, poor pressure resistance, and low service life, and achieve The effect of stable heat transfer speed, good thermal conductivity and faster heat transfer speed
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Embodiment 1
[0022] The superconducting heat pipe includes a vacuum heat pipe and a heat transfer medium, the heat transfer medium is located in the inner cavity of the vacuum heat transfer pipe; the heat transfer medium includes the following substances: 2 parts of zinc permanganate, 5 parts of magnesium chloride, and 10 parts of sodium tetraborate , 6 parts of potassium dichromate, 6 parts of ferrous chloride, 4 parts of strontium chloride, and 900 parts of water.
[0023] The volume of the heat transfer medium accounts for 0.8% of the inner cavity of the vacuum heat pipe.
Embodiment 2
[0025] The superconducting heat pipe includes a vacuum heat pipe and a heat transfer medium, the heat transfer medium is located in the inner cavity of the vacuum heat transfer pipe; the heat transfer medium includes the following substances: 1 part of zinc permanganate, 3 parts of magnesium chloride, and 5 parts of sodium tetraborate , 3 parts of potassium dichromate, 2 parts of ferrous chloride, 2 parts of strontium chloride, and 800 parts of water.
Embodiment 3
[0027] The superconducting heat pipe includes a vacuum heat pipe and a heat transfer medium, the heat transfer medium is located in the inner cavity of the vacuum heat transfer pipe; the heat transfer medium includes the following substances: 3 parts of zinc permanganate, 8 parts of magnesium chloride, and 15 parts of sodium tetraborate , 8 parts of potassium dichromate, 8 parts of ferrous chloride, 6 parts of strontium chloride, and 1000 parts of water.
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