An anti-pollution device for hard chrome plating during micro-arc oxidation treatment
A micro-arc oxidation and hard chrome plating technology, applied in anodizing, coating, electrolytic components and other directions, can solve the problems of inability to mix hard chrome plating solutions, ions cannot be well attached, and the plating layer is uneven and firm. Avoid polluting the surrounding environment, the coating is uniform and firm, and the effect of increasing the coating efficiency
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Embodiment 1
[0029] see Figure 1-8, The present invention provides a technical solution: an anti-pollution device for hard chrome plating processing during micro-arc oxidation treatment, comprising a plating bath 2, the outer wall of the bath 2 is fixedly sleeved with a thermal insulation layer 15, The outer wall of the other side is fixedly installed with a cleaning tank 1, and the top outer surfaces of the cleaning tank 1 and the plating bath 2 are fixedly connected with a support plate 3, and the adjacent side walls of the two groups of support plates 3 are fixedly connected with a back plate 4, and the back plate 4 is provided with a conveying mechanism 5, the conveying mechanism 5 is provided with a fixing mechanism 6, both the cleaning tank 1 and the plating bath 2 are provided with an anti-overflow mechanism 7, and one side outer wall of the anti-overflow mechanism 7 is provided with a liquid adding mechanism 8, The inside of the plating bath 2 is provided with a stirring mechanism...
Embodiment 2
[0031] see Figure 1-8 , on the basis of the first embodiment, the conveying mechanism 5 includes a sliding rod 504, a servo motor 505, a short rotating rod 506, a turntable 507, a connecting rod 508, a first bevel gear 509, a second bevel gear 510, a long rotating rod 511, The first pulley 512, the second pulley 513 and the first belt 514, the adjacent side walls of the two sets of support plates 3 are rotatably installed with long threaded rods 501, the inside of the sliding rod sleeve 503 is slidably installed with the sliding rod 504, and the back plate 4 is slidably installed. A short lever 506 is rotatably installed on the outer surface of the front side, a servo motor 505 is fixedly installed on the outer surface of the rear side of the back plate 4, and the output shaft of the servo motor 505 is extended to the outer surface of the front side of the back plate 4 through a coupling and is connected with the short shaft. One end of the rotating rod 506 is fixedly connect...
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