Electronic component dispensing device
A technology for dispensing devices and electronic components, which is applied in the direction of surface coating liquid devices, coatings, epoxy resin coatings, etc., and can solve problems such as dripping and affecting the work of dispensing devices
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Embodiment 1
[0027] see Figure 1-3 , the present invention provides a technical solution: a dispensing device for electronic components, including a base 1, a dispensing device 2 and a dispensing cylinder 3, the bottom of the base 1 is provided with a foot pad 11, and the foot pad 11 is fixedly connected to the base 1 , the top of the base 1 is provided with a workbench 12, the workbench 12 is fixedly connected with the base 1, the top of the workbench 12 is provided with a slide rail 13, the slide rail 13 is fixedly connected with the workbench 12, and the top of the slide rail 13 is provided with a sliding plate 14, the sliding plate 14 is slidingly connected with the slide rail 13, the left and right sides of the base 1 are provided with supports 15, the support 15 is fixedly connected with the base 1, the inner wall of the support 15 is provided with a top plate 16, and the top plate 16 is fixedly connected with the support 15, The top of top plate 16 is provided with transmission cha...
Embodiment 2
[0042] The difference from Example 1 is that the surface of the workbench 12 is coated with a protective layer, and the preparation method of the protective layer is:
[0043] Take the following components by weight for later use: 5 parts of urea-formaldehyde resin, 2 parts of polyacrylic acid, 5 parts of lime water, 16 parts of photosensitive novolac epoxy acrylate, 5 parts of phthalocyanine blue, 3 parts of copper powder, trifluoroiodomethane 10 parts, 30 parts of low phenyl methyl silicone resin, 6 parts of talcum powder, 5 parts of sorbitol, 1 part of sodium pyrophosphate, 1 part of polyoxypropylene glyceryl ether, 1 part of xanthan gum, 1 part of propylene glycol butyl ether, 20 parts of deionized water.
[0044] S1. Prefabricated organic solvent: mix urea-formaldehyde resin, polyacrylic acid, lime water, photosensitive novolac epoxy acrylate, phthalocyanine blue, copper powder, trifluoroiodomethane, low-phenylmethyl silicone resin, and talcum powder, and then stir evenly...
Embodiment 3
[0051] The difference from Example 2 is the preparation of protective coating, and its preparation process is as follows:
[0052] Take the following components by weight for later use: 10 parts of urea-formaldehyde resin, 3 parts of polyacrylic acid, 10 parts of lime water, 18 parts of photosensitive novolac epoxy acrylate, 10 parts of phthalocyanine blue, 4 parts of copper powder, trifluoroiodomethane 20 parts, 40 parts of low phenyl methyl silicone resin, 16 parts of talc powder, 7 parts of sorbitol, 2 parts of sodium pyrophosphate, 2 parts of polyoxypropylene glyceryl ether, 2 parts of xanthan gum, 3 parts of propylene glycol butyl ether, 30 parts of deionized water.
[0053] S1. Prefabricated organic solvent: mix urea-formaldehyde resin, polyacrylic acid, lime water, photosensitive novolac epoxy acrylate, phthalocyanine blue, copper powder, trifluoroiodomethane, low-phenylmethyl silicone resin, and talcum powder, and then stir evenly;
[0054] S2. Preparation of color pa...
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