Method for producing surface antibiotic product using physical gas phase deposition technology

A physical vapor deposition, surface antibacterial technology, applied in ion implantation plating, metal material coating process, coating and other directions, can solve the problems of affecting the sputtering effect, decrease of argon ion concentration, target poisoning, etc., to achieve simple process production Convenience, low cost and high efficiency

Active Publication Date: 2009-07-29
JIANGSU TRAUVOR BIOLOGICAL TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] 3. Target poisoning is prone to occur in the process of magnetron sputtering black film coating. This is because excessive hydrocarbon gas is filled into the furnace cavity for coating pure black products, which causes the concentration of argon ions to drop and affects the sputtering effect.

Method used

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  • Method for producing surface antibiotic product using physical gas phase deposition technology
  • Method for producing surface antibiotic product using physical gas phase deposition technology
  • Method for producing surface antibiotic product using physical gas phase deposition technology

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] Evaporation coating technology is used to coat the surface of the object with an antibacterial layer.

[0041] The coating technology is carried out in the existing activation reaction evaporation deposition device: the substrate is made of dry solid materials, such as metal materials, non-metal materials, fiber products, polymer materials, dry plant materials or leather materials, antibacterial Evaporation materials are selected from Ti, Zn, Ca, Si, Mg, Zr, Cd, As, Sb, Se, Ce, Re, Cu, Ag, Pb, Hg, Co, Ni, Al, Fe and their oxides, sulfides, One or more of nitrides and carbides are used in an amount of 0.01% to 100% of the weight of the entire film layer, and the reaction gas is O 2 , N 2 , NH 3 、CH 4 、C 2 h 6 or H 2 S.

Embodiment 2

[0043] The multi-arc plating technology is used to coat the surface of the object with an antibacterial layer.

[0044] The coating technology is carried out in the existing multi-arc ion coating machine: the substrate is made of dry solid materials, such as metal materials, non-metal materials, fiber products, polymer materials, dry plant materials or leather materials, antibacterial The target materials are Ti, Zn, Ca, Si, Mg, Zr, Cd, As, Sb, Se, Ce, Re, Cu, Ag, Pb, Hg, Co, Ni, Al, Fe and their oxides, sulfides, One or more of nitrides and carbides are used in an amount of 0.01% to 100% of the weight of the entire film layer. figure 1 . figure 2 As shown in , at this time, micro air holes 1 need to be drilled on the antibacterial target material 3 , and the reaction gas is introduced into the air holes 1 through the gas pipe 2 . A magnetron sputtering antibacterial target is also provided in the multi-arc coating furnace, and the antibacterial target 3 is a cylindrical ta...

Embodiment 3

[0046] The surface antibacterial products were prepared by magnetron sputtering coating technology.

[0047] The coating technology is carried out in the existing magnetron sputtering ion coating machine: the substrate is made of dry solid materials, such as metal materials, non-metal materials, fiber products, polymer materials, dry plant materials or leather materials , the antibacterial target materials are Ti, Zn, Ca, Si, Mg, Zr, Cd, As, Sb, Se, Ce, Re, Cu, Ag, Pb, Hg, Co, Ni, Al, Fe and their oxides, sulfur One or more of compounds, nitrides, and carbides are used in an amount of 0.01% to 100% of the weight of the entire film layer. At this time, it is necessary to arrange a ventilation line on the surface of the substrate. And the antibacterial target 3 is a cylindrical target, Figure 4 The cylindrical target shown is that the cylindrical target is composed of an inner core 3-1 made of a copper tube and an outer jacket 3-2 made of an antibacterial material, and the inn...

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Abstract

The invention relates to a method for manufacturing surface antibacterial products using physical vapor deposition technology. The technology includes using physical vapor deposition technology to plate antibacterial targets or evaporation materials on the surface of a substrate to form an antibacterial film layer. It is characterized in that: the antibacterial Target or evaporation materials are Ti, Zn, Ca, Si, Mg, Zr, Cd, As, Sb, Se, Ce, Re, Cu, Ag, Pb, Hg, Co, Ni, Al, Fe and their oxides, One or more of sulfides, nitrides, and carbides, the reactive gas charged in the physical vapor deposition technology is O2, N2, NH3, CH4, C2H6 or H2S. The present invention utilizes punching holes 1 on the surface of the target material 3 to pass gas through the gas pipe 2, thereby effectively preventing target poisoning, realizing multi-arc plating and magnetron sputtering plating, improving the coating efficiency and coating quality, and the production is simple and convenient, and the cost is low. Surface antibacterial products suitable for different technical fields can be obtained.

Description

technical field [0001] The invention relates to a method for preparing a surface antibacterial product, in particular to a method for manufacturing a surface antibacterial product by using physical vapor deposition technology. Background technique [0002] The antibacterial ability of antibacterial products is mainly reflected in the surface of antibacterial products. Traditional antibacterial products are made by directly mixing antibacterial materials into metal materials, polymer materials, glazed porcelain and other substrates. This method causes a lot of waste of antibacterial materials, and the manufacturing process is complicated and the processing cost is too high. Some new technologies that adopt physical vapor deposition technology to manufacture surface antibacterial products have appeared in the prior art, such as the Chinese patent application "a surface antibacterial, wear-resistant stainless steel product and its preparation method" (application number: 200410...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C23C14/06C23C14/22C23C14/35
Inventor 姜培齐
Owner JIANGSU TRAUVOR BIOLOGICAL TECH
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