High-stability high-reliability self-circulating three-winding autotransformer and manufacturing method thereof
A technology of autotransformer and manufacturing method, which is applied in the manufacture of inductors/transformers/magnets, fixed transformers, transformers, etc., can solve the problems of poor heat dissipation conditions of dry-type transformers, the capacity cannot be enlarged, and the loss is small, so as to improve the volume resistance High efficiency, excellent solid heat transfer efficiency, poor functional stability
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Embodiment 1
[0040] Such as figure 1 A high-stability and high-reliability self-circulating three-winding autotransformer is shown, including a skeleton, a winding 5, a magnetic core 4, a shielding cover 1, and a packaging material, wherein the skeleton is alumina-based sparse material with a porosity of 20%-30%. Hole foam ceramic skeleton 3; winding 5 adopts copper wire with 1140 epoxy polyester insulating varnish; Filler 2, the self-circulating insulating heat transfer filler 2 is a mixture of alumina-based porous foam ceramics, non-vulcanized silica gel, and gum rosin; the shielding cover 1 is made of aluminum alloy and packaged in a fully enclosed structure.
[0041] The manufacturing method of the three-winding autotransformer comprises the following steps:
[0042] 1) Selection and preparation of various components
[0043] ① The skeleton is made of alumina-based porous foam ceramic skeleton 3 that matches the Japanese-shaped magnetic core 4, and the selection is: volume resistivit...
Embodiment 2
[0070] The whole is consistent with Example 1, the difference is:
[0071] The manufacturing method of the three-winding autotransformer comprises the following steps:
[0072] 2) Manufacturing method of self-circulating insulating heat transfer filler 2
[0073] ① Mix aluminum chloride hexahydrate with an appropriate amount of pure water, stir and filter impurities, and prepare to obtain an aluminum chloride solution with a mass percentage of 65%, and add sodium silicate with a weight of 55% aluminum chloride hexahydrate to the aluminum chloride solution , stir until dissolved evenly;
[0074] ③ After step ② is completed, continue to vibrate at high frequency for 40 minutes, then place the solution to be treated in step ② in a constant temperature environment of 30°C, and stir it mechanically for 40 minutes to obtain a prefabricated solution;
[0075] ④ Slowly add dilute hydrochloric acid solution dropwise to the prefabricated solution obtained in step ③ and stir until the ...
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