High-stability corrosion-resistant long-life communication transformer and manufacturing method thereof
A manufacturing method and transformer technology, applied in the manufacture of inductors/transformers/magnets, chemical instruments and methods, transformer/inductor shells, etc., can solve the problems of easy surface oxidation, poor economy, shielding and stability attenuation, etc., to achieve Improved corrosion resistance and improved service life
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Embodiment 1
[0039] Such as figure 1 A communication transformer with high stability, anti-corrosion and long life is shown, including skeleton, winding 4, magnetic core 3, shielding cover 1, packaging material, wherein the skeleton is an alumina-based porous foam ceramic skeleton with a porosity of 20%-30% 2. The winding 4 is made of copper wire with 1140 epoxy polyester insulating paint; the magnetic core 3 is a Japanese-shaped molybdenum permal magnetic core 3; the gap between the shielding cover 1 and other components is filled with self-circulating insulating heat transfer filler 5, The self-circulating insulating heat transfer filler 5 is a mixture of alumina-based porous foam ceramics and gum rosin; the shielding cover 1 is made of surface-activated and passivated titanium-containing low-carbon steel, and is packaged in a fully enclosed structure.
[0040] The manufacturing method of the communication transformer comprises the following steps:
[0041] 1) Selection and preparation ...
Embodiment 2
[0067] The whole is consistent with Example 1, the difference is:
[0068] The manufacturing method of the communication transformer comprises the following steps:
[0069] 3) Manufacturing method of self-circulating insulating heat transfer filler 5
[0070] 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 58%;
[0071] ③ After step ② is completed, continue to vibrate at high frequency for 30 minutes, then place the solution to be treated in step ② in a constant temperature environment of 25 ° C, and mechanically stir for 30 minutes to obtain a prefabricated solution;
[0072] 4. Slowly add dilute hydrochloric acid solution dropwise and stir in the prefabricated solution obtained in step 3., until the pH value of the solution is 5.2, leave standstill to obtain the original sol;
[0073] ⑤ Place the original sol solution obtained in step ④ at...
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