Solutions for dripping of air-assisted spray guns in industrial automation painting
An industrial automation, air-assisted technology, applied to the surface coating device, coating, spray device, etc., can solve the problems of the discharge hole and the ejector pin wear, the spray gun cannot stop transportation, and the speed of closing the gun is reduced. Realize the effect of production cost, reduction of replacement times, and extended shutdown time
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Embodiment 1
[0011] Automatic spray gun COG-R200-1.8, Mitsubishi software programming simulation, the spray gun has wear and tear after one year of use, when the gun is turned off, the test drip time is 0.6S, the material valve closing delay T3 is 0.5S, and the air valve closing delay 0.3S. After the calculation, the PLC program was changed, the material valve closing delay was changed to 0.3S, the air valve closing delay was changed to 0.8S, and the gun was tested again, and there was no dripping phenomenon after closing the gun.
[0012] The experiment was tracked for 8 hours, and the number of spraying was 10,000 pieces. Only for the unqualified products caused by dripping, the unqualified number was 0 pieces, and the defective rate was 0%.
Embodiment 2
[0014] Automatic spray gun COG-R200-1.8, Mitsubishi software programming simulation, the spray gun has wear and tear after one year of use, when the gun is turned off, the test drip time is 0.6S, the material valve closing delay T3 is 0.5S, and the air valve closing delay 0.3S. After calculation, change the PLC program, change the material valve closing delay to 0.5S, and the air valve closing delay to 0.8S, and test the gun again, and there is dripping after closing the gun.
[0015] The experiment was tracked for 8 hours, and the number of spraying was 10,000 pieces. Only for the unqualified products caused by dripping, the number of unqualified products was 200 pieces, and the defective rate was 2%.
Embodiment 3
[0017] Automatic spray gun COG-R200-1.8, Mitsubishi software programming simulation, the spray gun has wear and tear after one year of use, when the gun is turned off, the test drip time is 0.6S, the material valve closing delay T3 is 0.5S, and the air valve closing delay 0.3S. After calculation, change the PLC program, change the material valve closing delay to 0.3S, and the air valve closing delay to 0..5S, and then fire the gun to test again. After closing the gun, there is dripping.
[0018] The experiment was tracked for 8 hours, and the number of spraying was 10,000 pieces. Only for the unqualified products caused by dripping, the number of unqualified products was 400 pieces, and the defective rate was 4%.
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