Filled magnesium oxide mineral insulated cable and preparation method thereof
A mineral insulated cable, magnesium oxide technology, applied in the direction of insulated cables, oxide conductors, cable/conductor manufacturing, etc., can solve the problems of low compactness, impact resistance and poor uniformity, and achieve increased compactness and fire resistance It has no effect on the insulation performance and the effect of improving the insulation resistance
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Embodiment 1
[0026] A preparation method for filling magnesium oxide mineral insulated cables, comprising the following steps:
[0027] (1) The heavy magnesium oxide powder is subjected to high-temperature dehumidification treatment first, and the heavy magnesium oxide powder is first sent to an electric heating drum furnace to be calcined at a high temperature of 850-950°C to remove impurities, and then mixed evenly with potassium tetrafluoroaluminate powder Pack it into a box and keep it in a holding furnace at 250-350°C to prevent the mixture from absorbing water and getting damp. The addition ratio of heavy magnesia and potassium tetrafluoroaluminate is: in parts by weight, 95 parts by weight of heavy magnesia, and 2 parts by weight of potassium tetrafluoroaluminate.
[0028] (2) Clean and decontaminate the copper tube and core material, put the required core material into the copper tube on the assembly table for blank assembly, and fix one end of the copper tube.
[0029] (3) Take o...
Embodiment 2
[0033] A preparation method for filling magnesium oxide mineral insulated cables, comprising the following steps:
[0034] (1) The heavy magnesium oxide powder is subjected to high-temperature dehumidification treatment first, and the heavy magnesium oxide powder is first sent to an electric heating drum furnace to be calcined at a high temperature of 850-950°C to remove impurities, and then mixed evenly with potassium tetrafluoroaluminate powder Pack it into a box and keep it in a holding furnace at 250-350°C to prevent the mixture from absorbing water and getting damp. The addition ratio of heavy magnesia and potassium tetrafluoroaluminate is: in parts by weight, 98 parts by weight of heavy magnesia, and 5 parts by weight of potassium tetrafluoroaluminate.
[0035] (2) Clean and decontaminate the copper tube and core material, put the required core material into the copper tube on the assembly table for blank assembly, and fix one end of the copper tube.
[0036](3) Take ou...
Embodiment 3
[0040] A preparation method for filling magnesium oxide mineral insulated cables, comprising the following steps:
[0041] (1) The heavy magnesium oxide powder is subjected to high-temperature dehumidification treatment first, and the heavy magnesium oxide powder is first sent to an electric heating drum furnace to be calcined at a high temperature of 850-950°C to remove impurities, and then mixed evenly with potassium tetrafluoroaluminate powder Pack it into a box and keep it in a holding furnace at 250-350°C to prevent the mixture from absorbing water and getting damp. The addition ratio of heavy magnesia and potassium tetrafluoroaluminate is: in parts by weight, 95 parts by weight of heavy magnesia, and 4 parts by weight of potassium tetrafluoroaluminate.
[0042] (2) Clean and decontaminate the copper tube and core material, put the required core material into the copper tube on the assembly table for blank assembly, and fix one end of the copper tube.
[0043] (3) Take o...
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