Transformer cabinet with electrochromic device outer box and production method
An electrochromic device and electrochromic technology, applied in the direction of electrical components, substation/power distribution device shell, substation/switch layout details, etc., can solve the problems of unfavorable real-time viewing and monitoring internal conditions, etc.
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Embodiment 1
[0067] Assemble the main body 10 of the transformer cabinet, the outer box 20 of the electrochromic device and the electric adjustment device 30 .
[0068] Making the electrochromic device 20 includes:
[0069] (1) WO 3 Nano film 5 material electrochromic electrode preparation:
[0070] a. Magnetron sputtering a fluorine-doped tin oxide (FTO) film 2 on the surface of tempered glass 1 with a specific size, with a thickness of about 320nm;
[0071] b. Perform high-temperature annealing treatment on it to obtain FTO conductive glass with higher strength, then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for later use; then, use magnetron sputtering method Coating W film on FTO glass with a thickness of 220nm; W film is used as WO 3 a growth source for the nanowires;
[0072] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, then add 3mol / L hydrochloric acid dropwise until no precipitation...
Embodiment 2
[0087] Assemble the main body 10 of the transformer cabinet, the outer box 20 of the electrochromic device and the electric adjustment device 30 .
[0088] Making the electrochromic device 20 includes:
[0089] (1) WO 3 Nano film 5 material electrochromic electrode preparation:
[0090] a. Magnetron sputtering a fluorine-doped tin oxide (FTO) film 2 on the surface of tempered glass 1 with a specific size, with a thickness of about 360nm;
[0091] b. Perform high-temperature annealing treatment on it to obtain FTO conductive glass with higher strength, then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for later use; then, use magnetron sputtering method Coating W film on FTO glass with a thickness of 200nm; W film is used as WO 3 a growth source for the nanowires;
[0092] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, then add 3mol / L hydrochloric acid dropwise until no precipitation o...
Embodiment 3
[0107] Assemble the main body 10 of the transformer cabinet, the outer box 20 of the electrochromic device and the electric adjustment device 30 .
[0108] Making the electrochromic device 20 includes:
[0109] (1) WO 3 Nano film 5 material electrochromic electrode preparation:
[0110] a. Magnetron sputtering a fluorine-doped tin oxide (FTO) film on the surface of tempered glass 1 with a specific size, with a thickness of about 340nm;
[0111] b. Perform high-temperature annealing treatment on it to obtain FTO conductive glass with higher strength, then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for later use; then, use magnetron sputtering method Coating W film on FTO glass with a thickness of 210nm; W film is used as WO 3 a growth source for the nanowires;
[0112] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, then add 3mol / L hydrochloric acid dropwise until no precipitation o...
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