High-speed rail train window capable of achieving light brightness adjustment and manufacturing method thereof
A production method and brightness technology, applied in the field of transportation, can solve the problems that the window glass cannot adjust the sunlight transmittance, and is inconvenient to use.
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Embodiment 1
[0067] The vehicle window part 10, the electrochromic device 20 and the controller 30 are assembled.
[0068] Making the electrochromic device 20 includes:
[0069] Making electrochromic devices:
[0070] (1)WO 3 Preparation of nano-film 5 material electrochromic electrode:
[0071] a. Magnetron sputtering fluorine-doped tin oxide (FTO) film 2 on the surface of tempered glass 1 with a specific size, the thickness is about 320nm;
[0072] b. Perform high temperature annealing treatment on it to obtain high-strength FTO conductive glass, and then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for use; then, use the magnetron sputtering method Plating W film on FTO glass with a thickness of 220nm; W film is used as WO 3 The growth source of nanowires;
[0073] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, and then add 3mol / L hydrochloric acid dropwise until no precipitation occurs. The precipitate is...
Embodiment 2
[0088] The vehicle window part 10, the electrochromic device 20 and the controller 30 are assembled.
[0089] Making the electrochromic device 20 includes:
[0090] (1)WO 3 Preparation of nano-film 5 material electrochromic electrode:
[0091] a. Magnetron sputtering fluorine-doped tin oxide (FTO) film 2 on the surface of tempered glass 1 of a specific size, the thickness is about 360nm;
[0092] b. Perform high temperature annealing treatment on it to obtain high-strength FTO conductive glass, and then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for use; then, use the magnetron sputtering method Plating W film on FTO glass with a thickness of 200nm; W film is used as WO 3 The growth source of nanowires;
[0093] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, and then add 3mol / L hydrochloric acid dropwise until no precipitation occurs. The precipitate is washed by centrifugation and dissolved i...
Embodiment 3
[0108] The vehicle window part 10, the electrochromic device 20 and the controller 30 are assembled.
[0109] Making the electrochromic device 20 includes:
[0110] (1)WO 3 Preparation of nano-film 5 material electrochromic electrode:
[0111] a. Magnetron sputtering fluorine-doped tin oxide (FTO) film on the surface of tempered glass 1 of specific size, the thickness is about 340nm;
[0112] b. Perform high temperature annealing treatment on it to obtain high-strength FTO conductive glass, and then ultrasonically clean the FTO conductive glass for 15 minutes in the order of ultrapure water, acetone, and ethanol, and dry it for use; then, use the magnetron sputtering method Plating W film on FTO glass with a thickness of 210nm; W film is used as WO 3 The growth source of nanowires;
[0113] c. Prepare a 0.2mol / L sodium tungstate aqueous solution, and then add 3mol / L hydrochloric acid dropwise until no precipitation occurs. The precipitate is washed by centrifugation and dissolved in hy...
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