ANTIBACTERIAL COATING LAYER AND COATING METHOD
20200317934 ยท 2020-10-08
Inventors
Cpc classification
C09D5/14
CHEMISTRY; METALLURGY
A61P31/00
HUMAN NECESSITIES
A01N25/34
HUMAN NECESSITIES
B82Y40/00
PERFORMING OPERATIONS; TRANSPORTING
A01N25/34
HUMAN NECESSITIES
C08K2201/005
CHEMISTRY; METALLURGY
B82Y30/00
PERFORMING OPERATIONS; TRANSPORTING
C09D133/08
CHEMISTRY; METALLURGY
B05D5/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
C09D5/14
CHEMISTRY; METALLURGY
B05D5/00
PERFORMING OPERATIONS; TRANSPORTING
C09D133/08
CHEMISTRY; METALLURGY
Abstract
An antibacterial coating layer comprises a coating material; and a plurality of antibacterial nano-particles, all located near a surface of the coating material. For example, the antibacterial nano-particles are exposed from the surface of the coating material, so that the antibacterial effect of the antibacterial coating layer is not limited, and the best antibacterial effect is achieved.
Claims
1. An antibacterial coating layer, comprising: a coating; and a plurality of antibacterial nano-particles, all located near a surface of the coating material.
2. The antibacterial coating layer according to claim 1, wherein the antibacterial nano-particles are embedded, inserted, or stuck to the surface of the coating material, and there is an adhesion force between the coating material and the antibacterial nano-particles, to immobilize the antibacterial nano-particles near the surface of the coating material.
3. The antibacterial coating layer according to claim 2, wherein after being completely dried, the antibacterial nano-particles and the coating have a scratch resistance of more than 200 cycles and an adhesion of 5 b therebetween, as shown by a scratch resistance test by steel wool #0000 at 500 g.
4. The antibacterial coating layer according to claim 1, wherein the antibacterial nano-particles are a nano metal, or a nano metal oxide.
5. The antibacterial coating layer according to claim 4, wherein the nano metal is nano-silver, and the nano metal oxide is nano-titania or nano-zinc oxide.
6. The antibacterial coating layer according to claim 1, further comprising a substrate, wherein the coating material is provided on the substrate, and the substrate is an organic substrate or an inorganic substrate.
7. The antibacterial coating layer according to claim 1, wherein the particle size of these antibacterial nano-particles is less than 10 nanometers.
8. The antibacterial coating layer according to claim 7, wherein the particle size of these antibacterial nano-particles is between about 3 and 5 nanometers.
9. The antibacterial coating layer according to claim 1, wherein as for the density of the antibacterial nano-particles located near the surface of the coating material, a 10,000 to 12000 ppm of nano-antibacterial solution containing antibacterial nano-particles is used, and then 8 to 20 grams of the nano-antibacterial solution is sprayed on one square meter of the coating material.
10. A coating method for an antibacterial coating layer, comprising the following steps of: applying a coating onto a substrate; when the coating material is in a semi-dried state, spraying a nano-antibacterial solution containing a plurality of antibacterial nano-particles on the coating material; and forming an antibacterial coating layer when the coating material and the antibacterial nano-particles are in a completely dried stage, wherein the antibacterial nano-particles are all located near the surface of the coating material.
11. The coating method for an antibacterial coating layer according to claim 10, wherein the completely dried stage has a completion time, to allow the coating material to reach the completely dried state; and the semi-dried state continues for a predetermined time, wherein the predetermined time of the semi-dried state is shorter than the completion time of the completely dried stage, so that the coating material is allowed to reach the semi-dried state.
12. The coating method for an antibacterial coating layer according to claim 11, wherein the predetermined time of the semi-dried state is from 1 to 60 minutes.
13. The coating method for an antibacterial coating layer according to claim 12, wherein between the predetermined time of the semi-dried state is 1 to 30 minutes.
14. The coating method for an antibacterial coating layer according to claim 13, wherein between the predetermined time of the semi-dried state is 1 to 10 minutes.
15. The coating method for an antibacterial coating layer according to claim 10, wherein the antibacterial nano-particles are embedded, inserted, or stuck to the surface of the coating material, and there is an adhesion force between the coating material and the antibacterial nano-particles, to immobilize the antibacterial nano-particles near the surface of the coating material.
16. The coating method for an antibacterial coating layer according to claim 15, wherein after being completely dried, the antibacterial nano-particles and the coating have a scratch resistance of more than 200 cycles and an adhesion of 5 b therebetween, as shown by a scratch resistance test by steel wool #0000 at 500 g.
17. The coating method for an antibacterial coating layer according to claim 10, wherein the antibacterial nano-particles are a nano metal, or a nano metal oxide.
18. The coating method for an antibacterial coating layer according to claim 17, wherein the nano metal is nano-silver, and the nano metal oxide is nano-titania or nano-zinc oxide.
19. The coating method for an antibacterial coating layer according to claim 10, wherein the particle size of these antibacterial nano-particles is between about 3 and 5 nanometers.
20. The coating method for an antibacterial coating layer according to claim 10, wherein as for the density of the antibacterial nano-particles located near the surface of the coating material, a 10,000 to 12000 ppm of nano-antibacterial solution containing antibacterial nano-particles is used, and then 8 to 20 grams of the nano-antibacterial solution is sprayed on one square meter of the coating material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0017] To make the foregoing objects, features, and characteristics of the present disclosure more comprehensible, related embodiments of the present disclosure are described in detail below with reference to the drawings.
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[0019] Referring to
[0020] Referring to
[0021] Referring to
[0022] Referring to
[0023] According to the antibacterial coating layer of the present disclosure, no antibacterial nano-particles are dispersed deeply inside the coating material, so no waste is caused, and thus the cost is reduced. All the antibacterial nano-particles are located near the surface of the coating material, for example, the antibacterial nano-particles can be exposed from the surface of the coating material, so that the antibacterial effect of the antibacterial coating layer is not limited, and the best antibacterial effect can be achieved.
[0024] In summary, the present disclosure has been described with reference to preferred embodiments or examples of the present disclosure, which however are not intended to limit the scope of the present disclosure. Equal changes and modifications made according to, or without departing from the scope of the present disclosure are covered in the scope of claims of the present disclosure.