Silver ion antibacterial sealant
A technology of silver ions and beautifying agents, applied in the field of beautifying agents, can solve the problems of limited bactericidal performance of beautifying agents, difficult to clean, affect appearance and hygiene, etc., and achieve the effect of reducing the reproduction of fungi and improving the bactericidal performance.
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Embodiment 1
[0017] The silver ion antibacterial beautifying agent of the present invention is composed of the following raw materials in parts by weight: 300 parts by weight of phenylacrylic acid emulsion, 5 parts by weight of calcium phosphate, 1 part by weight of titanium dioxide, 5 parts by weight of silver ions, 50 parts by weight of epoxy resin, 60 parts by weight of fumed silica.
[0018] Wherein, the silver ion is silver sulfadiazine.
[0019] The bacteria resistance test was carried out on the silver ion antibacterial seam joint agent of Example 1 of the present invention, and the results are shown in the table below.
[0020]
Embodiment 2
[0022] The silver ion antibacterial beautifying agent of the present invention is composed of the following raw materials in parts by weight: 300 parts by weight of phenylacrylic acid emulsion, 5 parts by weight of calcium phosphate, 1 part by weight of titanium dioxide, 5 parts by weight of silver ions, 50 parts by weight of epoxy resin, 60 parts by weight of fumed silica.
[0023] Wherein, the silver ion is composed of the following raw materials in parts by weight: 5 parts by weight of silver chloride, 20 parts by weight of aminoacrylate, and 30 parts by weight of water. The preparation method is as follows: mixing silver chloride, aminoacrylate and water, and refluxing for 72 hours to obtain the mixed solution as silver ions.
[0024] The bacteria resistance test was carried out on the silver ion antibacterial seam joint agent of Example 2 of the present invention, and the results are shown in the table below.
[0025]
[0026]
Embodiment 3
[0028] The silver ion antibacterial beautifying agent of the present invention is composed of the following raw materials in parts by weight: 300 parts by weight of phenylacrylic acid emulsion, 5 parts by weight of calcium phosphate, 1 part by weight of titanium dioxide, 5 parts by weight of silver ions, 50 parts by weight of epoxy resin, 60 parts by weight of fumed silica, 5 parts by weight of pearl powder, 0.5 parts by weight of photoinitiator, and 1 part by weight of fluorescent powder.
[0029] Wherein, the silver ion is composed of the following raw materials in parts by weight: 5 parts by weight of silver chloride, 20 parts by weight of aminoacrylate, and 30 parts by weight of water. The preparation method is as follows: mixing silver chloride, aminoacrylate and water, and refluxing for 72 hours to obtain the mixed solution as silver ions. The photoinitiator is diphenyl ethyl ketone.
[0030] The bacteria resistance test was carried out on the silver ion antibacterial s...
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