CN215106752U - Mould-resistant antibacterial nano-coating layer with waterproof function - Google Patents

Mould-resistant antibacterial nano-coating layer with waterproof function Download PDF

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CN215106752U
CN215106752U CN202121470921.6U CN202121470921U CN215106752U CN 215106752 U CN215106752 U CN 215106752U CN 202121470921 U CN202121470921 U CN 202121470921U CN 215106752 U CN215106752 U CN 215106752U
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coating
layer
waterproof
antibacterial
nano
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刘学影
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Nanjing Andeli Energy Saving Building Materials Co ltd
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Nanjing Andeli Energy Saving Building Materials Co ltd
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Abstract

The utility model provides an anti mould antibacterial nano-coating layer with waterproof function belongs to wireless communication's infrared monitoring devices technical field, including basic unit putty layer, the one side of basic unit putty layer is provided with interior waterproof coating, waterproof coating's one side in thermal barrier coating keeps away from is provided with interior antibacterial coating, the one side that interior antibacterial coating was kept away from on interior putty layer is provided with the puigging, the both sides of puigging all are provided with the raised grain, the one side of keeping away from outer putty layer of outer anti mould antibacterial coating is provided with outer waterproof coating, the one side that anti mould antibacterial coating was kept away from to outer waterproof coating is provided with wear-resistant coating. The utility model provides a current nanometer dope layer mould proof antibacterial effect poor, still lead to the damage of object easily, also can appear the infiltration simultaneously, waterproof ability is poor, and the wearability on coating surface is poor, and life is low to and the thermal-insulated effect of sound insulation is poor, seriously influences experience effect, has reduced the problem of nanometer dope layer's practicality.

Description

Mould-resistant antibacterial nano-coating layer with waterproof function
The technical field is as follows:
the utility model belongs to the technical field of the nanometer dope layer, concretely relates to mould-resistant antibiotic nanometer dope layer with waterproof function.
Background art:
the paint layer is formed by coating one or more layers of paint on the surface of an object to protect the coated object, and the nano paint layer is a novel paint layer and is mainly formed by coating nano paint.
The existing nano coating layer is poor in mildew-resistant and antibacterial effects, still easily causes damage to objects, can seep water, is poor in waterproof capability, poor in wear resistance of the surface of the coating, short in service life, poor in sound and heat insulation effects, seriously influences the experience effect, and reduces the practicability of the nano coating layer.
The invention content is as follows:
the utility model provides an antibiotic nanometer dope layer of mould resistance with waterproof function, its purpose is in having solved current nanometer dope layer mould resistance antibacterial effect poor, still leads to the damage of object easily, also can appear the infiltration simultaneously, and waterproof capability is poor, and the wearability on coating surface is poor, and life is low to and the thermal-insulated effect that gives sound insulation is poor, seriously influences experience effect, has reduced the problem of nanometer dope layer's practicality.
The embodiment of the utility model provides an anti-mildew and anti-bacterial nano-coating layer with waterproof function, which comprises a base putty layer, one side of the base putty layer is provided with an inner waterproof coating, one side of the inner waterproof coating, which is far away from the base putty layer, is provided with a heat insulation coating, an inner antibacterial coating is arranged on one side of the heat-insulating coating far away from the inner waterproof coating, an inner putty layer is arranged on one side of the inner antibacterial coating far away from the heat-insulating coating, the surface of the inner putty layer far away from the inner antibacterial coating is provided with a sound insulation layer, the surface of the sound insulation layer far away from the inner putty layer is provided with an outer putty layer, both sides of the sound insulation layer are provided with raised grains, one side of the outer putty layer, which is far away from the sound insulation layer, is provided with an outer anti-mildew antibacterial coating, the outer mould proof antibacterial coating keep away from the one side of outer putty layer and be provided with outer waterproof coating, the one side that outer mould proof antibacterial coating was kept away from to outer waterproof coating is provided with wear-resistant coating.
Through adopting the above-mentioned technical scheme, utilize interior antibacterial coating and outer anti-mildew antibacterial coating to realize the dual antibiotic of dope layer, improve the anti-mildew antibiotic effect of dope layer, simultaneously through mutually supporting of interior waterproof coating and outer waterproof coating, realize the dual waterproof of dope layer, the effectual infiltration of avoiding the dope layer, and through thermal-insulated coating and puigging add, the thermal-insulated sound insulation effect of dope layer has been improved, through the interpolation of wear-resistant coating, can effectually protect the coating surface, the wearability of dope layer has been improved, the life of dope layer has been guaranteed, the practicality improves greatly.
Furthermore, the base putty layer, the inner putty layer and the outer putty layer are all made of flexible putty.
By adopting the technical scheme, the overall dynamic crack resistance and flexibility of the coating layer are improved by adopting the flexible putty.
Furthermore, the inner waterproof coating and the outer waterproof coating are both formed by coating inorganic nano waterproof paint.
Through adopting above-mentioned technical scheme, waterproof simultaneously inside and outside to the dope layer has realized the dual waterproof of dope layer, has improved the water-proof effects of dope layer.
Further, the thermal insulation coating is formed by uniformly coating a silicon dioxide aerogel nanometer thermal insulation coating.
Through adopting above-mentioned technical scheme, the distinctive nanopore and the multidimension network structure make thermal barrier coating have extremely low coefficient of heat conductivity in the silica aerogel, and the efficiency to the flow heat transfer is close to zero simultaneously, has improved the thermal-insulated effect of dope layer.
Furthermore, the inner antibacterial coating is formed by uniformly coating a nano natural horseradish coating.
By adopting the technical scheme, the nano natural horseradish coating has a strong antibacterial effect, and the antibacterial effect of the coating layer is realized.
Furthermore, the sound insulation layer is made of a flame-retardant extruded sheet, and the thickness of the sound insulation layer is 1 cm-2 cm.
By adopting the technical scheme, the flame-retardant extruded sheet is a sheet material with a closed-cell honeycomb structure, has low-value heat conductivity coefficient and durable excellent heat preservation and compression resistance, has a strong flame-retardant function, and greatly improves the heat and sound insulation effect of a coating layer.
Furthermore, the outer anti-mildew and antibacterial coating is formed by uniformly coating a nano-silver coating.
By adopting the technical scheme, the nano silver coating has strong mildew-resistant and antibacterial effects, so that the mildew-resistant and antibacterial effects of the coating layer are improved.
Furthermore, the wear-resistant coating is formed by uniformly coating nano wear-resistant ceramic paint.
By adopting the technical scheme, the nano wear-resistant ceramic coating not only resists high temperature, but also has the performances of thermal shock resistance, wear resistance and the like, and can carry out surface layer modification on the surfaces of various refractory materials so as to improve the service performance of a matrix material and realize the wear resistance and the integral performance of a coating layer.
The utility model has the advantages that:
1. the utility model discloses an interior antibacterial coating and outer anti-mildew antibacterial coating's setting adopts inside and outside dual antibiotic, has improved the anti-mildew antibiotic effect of dope layer greatly.
2. The utility model discloses an interior waterproof coating and outer waterproof coating's setting adopts inside and outside dual waterproof, can effectually prevent the infiltration of dope layer, has improved the water-proof effects of whole dope layer. The sound insulation and heat insulation effects are poor, the experience effect is seriously influenced, and the practicability of the nano coating layer is reduced
3. The utility model discloses a thermal barrier coating and puigging's setting can absorb heat and noise, has improved the syllable-dividing and thermal-insulated effect of dope layer, has improved the experience effect of dope layer, has guaranteed the practicality of nanometer coating.
4. The utility model discloses a wear-resisting coating's setting utilizes wear-resisting coating to improve the wearability of dope layer, also has certain high temperature resistance, has guaranteed the life of dope layer.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of the invention. The objectives and other advantages of the invention may be realized and attained by the structure particularly pointed out in the written description and drawings.
Description of the drawings:
the accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic overall structure diagram of an embodiment of the present invention;
FIG. 2 is a schematic view of a main sectional structure of an embodiment of the present invention;
fig. 3 is a schematic structural view of a soundproof layer according to an embodiment of the present invention;
reference numerals: 1. a base putty layer; 2. an inner waterproof coating; 3. a thermal barrier coating; 4. an inner antimicrobial coating; 5. an inner putty layer; 6. a sound insulating layer; 7. an outer putty layer; 8. wave lines; 9. an outer anti-mold and anti-bacterial coating; 10. an outer waterproof coating; 11. and (3) wear-resistant coating.
The specific implementation mode is as follows:
in order to make the technical solution of the present invention's purpose, technical solution and advantages clearer, the following description will be combined with the drawings of the specific embodiments of the present invention, to carry out clear and complete description on the technical solution of the embodiments of the present invention. Like reference symbols in the various drawings indicate like elements. It should be noted that the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments, which can be obtained by a person skilled in the art without any inventive work based on the described embodiments of the present invention, belong to the protection scope of the present invention.
Referring to fig. 1, fig. 2 and fig. 3, the embodiment of the present invention provides an anti-mildew and antibacterial nano-coating layer with a waterproof function, including a base putty layer 1, an inner waterproof coating layer 2 is disposed on one side of the base putty layer 1, a thermal insulation coating layer 3 is disposed on one side of the inner waterproof coating layer 2 away from the base putty layer 1, the thermal insulation coating layer 3 is formed by uniformly coating silica aerogel nano-thermal insulation coating, the thermal insulation coating layer 3 has a very low thermal conductivity due to unique nano-holes and a multi-dimensional network structure in the silica aerogel, meanwhile, the efficiency of heat transfer is close to zero, the thermal insulation effect of the coating layer is improved, an inner antibacterial coating layer 4 is disposed on one side of the thermal insulation coating layer 3 away from the inner waterproof coating layer 2, the inner antibacterial coating layer 4 is formed by uniformly coating nano-silica coating, the nano-natural horseradish coating has a very strong antibacterial effect, and the antibacterial property of the coating layer is realized, the side of the inner antibacterial coating 4 far away from the heat insulation coating 3 is provided with an inner putty layer 5, the side of the inner putty layer 5 far away from the inner antibacterial coating 4 is provided with a sound insulation layer 6, the sound insulation layer 6 is made of flame-retardant extruded sheet, the thickness of the sound insulation layer 6 is 1 cm-2 cm, the flame-retardant extruded sheet is a sheet material with a closed-cell honeycomb structure, the sheet material has low heat conductivity coefficient and good heat preservation and compression resistance performance which is durable and does not fade, and simultaneously has strong flame-retardant function, the heat insulation and sound insulation effects of the coating layer are greatly improved, the side of the sound insulation layer 6 far away from the inner putty layer 5 is provided with an outer putty layer 7, the base putty layer 1, the inner putty layer 5 and the outer putty layer 7 are made of flexible putty, the dynamic cracking resistance and flexibility of the whole coating layer are improved by the flexible putty, both sides of the sound insulation layer 6 are provided with wavy lines 8, and the side of the outer putty layer 7 far away from the sound insulation layer 6 is provided with an outer mildew-resistant antibacterial coating 9, the outer mildew-resistant antibacterial coating 9 is formed by uniformly coating a nano-silver coating, the nano-silver coating has a strong mildew-resistant antibacterial effect, and further improves the mildew-resistant antibacterial effect of the coating layer, one surface, far away from the outer putty layer 7, of the outer mildew-resistant antibacterial coating 9 is provided with an outer waterproof coating 10, the inner waterproof coating 2 and the outer waterproof coating 10 are both formed by coating inorganic nano-waterproof coatings, the inner side and the outer side of the coating layer are simultaneously waterproof, double waterproofing of the coating layer is realized, and the waterproof effect of the coating layer is improved.
Referring to fig. 1 and 2, a wear-resistant coating 11 is arranged on one surface of the outer waterproof coating 10, which is far away from the outer anti-mildew antibacterial coating 9, the wear-resistant coating 11 is formed by uniformly coating nano wear-resistant ceramic paint, and the nano wear-resistant ceramic paint has the performances of high temperature resistance, thermal shock resistance, wear resistance and the like, and can be used for carrying out surface layer modification on the surfaces of various refractory materials so as to improve the service performance of a base material and realize the wear resistance and the integral performance of the coating layer.
The implementation mode is specifically as follows: the mildew-resistant antibacterial nano-coating layer with the waterproof function is characterized in that the ground or the wall surface is cleaned firstly, flexible putty is batched on the ground or the wall surface to form a base putty layer 1, inorganic nano-coating is uniformly coated on the surface of the base putty layer 1 to form an inner waterproof coating 2 after the base putty layer 1 is dried, silica aerogel nano-thermal insulation coating is uniformly coated on the surface of the inner waterproof coating 2 to form a thermal insulation coating 3 after the inner waterproof coating 2 is dried, nano natural horseradish coating is uniformly coated on the surface of the thermal insulation coating 3 to form an inner antibacterial coating 4 after the thermal insulation coating 3 is dried, flexible putty is batched on the surface of the inner antibacterial coating 4 to form an inner putty layer 5 after the inner putty layer 4 is dried, a flame-retardant extrusion molding plate is pressed on the surface of the inner putty layer 5 to form a sound insulation layer 6 before the inner putty layer 5 is dried, and flexible putty is batched on the surface of the sound insulation layer 6 to form an outer putty layer 7, under the action of the raised grains 8, the inner putty layer 5 and the outer putty layer 7 are firmly adhered to two sides of the sound insulation layer 6, after the outer putty layer 7 is dried, the nano silver coating is uniformly coated on the surface of the outer putty layer 7 to form an outer mildew-resistant antibacterial coating 9, after the outer mildew-resistant antibacterial coating 9 is dried, the inorganic nano waterproof coating is uniformly coated on the surface of the outer mildew-resistant antibacterial coating 9 to form an outer waterproof coating 10, after the outer waterproof coating 10 is dried, the nano wear-resistant ceramic coating is uniformly coated on the surface of the outer waterproof coating 10 to form a wear-resistant coating 11, after the wear-resistant coating 11 is completely dried, the construction of the coating layer is completed, the double antibiosis of the coating layer is realized by utilizing the inner antibacterial coating 4 and the outer mildew-resistant antibacterial coating 9 to improve the mildew-resistant antibacterial effect of the coating layer, and simultaneously, the double waterproofing of the coating layer is realized by the mutual matching of the inner waterproof coating 2 and the outer waterproof coating 10, the effectual infiltration of avoiding the dope layer to and through the adduction of thermal barrier coating 3 with puigging 6, improved the thermal-insulated sound insulation effect of dope layer, through the interpolation of wear-resistant coating 11, can effectually protect the coating surface, improved the wearability of dope layer, guaranteed the life of dope layer, the practicality improves greatly.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides an antibiotic dope layer of mould resistance with waterproof function, includes basic unit putty layer (1), its characterized in that, the one side of basic unit putty layer (1) is provided with interior waterproof coating (2), the one side that basic unit putty layer (1) was kept away from in interior waterproof coating (2) is provided with thermal-insulated coating (3), the one side that interior waterproof coating (2) were kept away from in thermal-insulated coating (3) is provided with interior antibacterial coating (4), the one side that interior antibacterial coating (3) were kept away from in interior antibacterial coating (4) is provided with interior putty layer (5), the one side that interior antibacterial coating (4) were kept away from in interior putty layer (5) is provided with puigging (6), the one side that interior putty layer (5) were kept away from in puigging (6) is provided with outer putty layer (7), the two sides of puigging (8) all are provided with ripples line (8), the one side that puigging (6) were kept away from in outer putty layer (7) is provided with outer antibiotic coating (9), the outer mildew-resistant antibacterial coating (9) is provided with an outer waterproof coating (10) on the surface far away from the outer putty layer (7), and the outer waterproof coating (10) is provided with a wear-resistant coating (11) on the surface far away from the outer mildew-resistant antibacterial coating (9).
2. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the base putty layer (1), the inner putty layer (5) and the outer putty layer (7) are all flexible putty.
3. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the inner waterproof coating (2) and the outer waterproof coating (10) are both formed by coating inorganic nano waterproof paint.
4. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the thermal insulation coating (3) is formed by uniformly coating a silicon dioxide aerogel nano thermal insulation coating.
5. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the inner antibacterial coating (4) is formed by uniformly coating a nano natural horseradish coating.
6. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the sound insulation layer (6) is made of a flame-retardant extruded sheet, and the thickness of the sound insulation layer (6) is 1 cm-2 cm.
7. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the outer anti-mildew and antibacterial coating (9) is formed by uniformly coating a nano-silver coating.
8. The mildew-resistant antibacterial nano-coating layer with the waterproof function of claim 1, characterized in that: the wear-resistant coating (11) is formed by uniformly coating nano wear-resistant ceramic paint.
CN202121470921.6U 2021-06-30 2021-06-30 Mould-resistant antibacterial nano-coating layer with waterproof function Active CN215106752U (en)

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CN202121470921.6U CN215106752U (en) 2021-06-30 2021-06-30 Mould-resistant antibacterial nano-coating layer with waterproof function

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Application Number Priority Date Filing Date Title
CN202121470921.6U CN215106752U (en) 2021-06-30 2021-06-30 Mould-resistant antibacterial nano-coating layer with waterproof function

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Publication Number Publication Date
CN215106752U true CN215106752U (en) 2021-12-10

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