CN208407562U - A kind of cracking resistance water burnt-in sand coating structure - Google Patents

A kind of cracking resistance water burnt-in sand coating structure Download PDF

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Publication number
CN208407562U
CN208407562U CN201820739260.4U CN201820739260U CN208407562U CN 208407562 U CN208407562 U CN 208407562U CN 201820739260 U CN201820739260 U CN 201820739260U CN 208407562 U CN208407562 U CN 208407562U
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layer
sand
water burnt
cracking resistance
coating
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CN201820739260.4U
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周航帆
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Zhejiang Tai Ji Coating Co Ltd
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Zhejiang Tai Ji Coating Co Ltd
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Abstract

The utility model discloses a kind of cracking resistance water burnt-in sand coating structures, it is related to water burnt-in sand multicolor finish field, the water burnt-in sand coating structure, including base, base putty layer, prime coat, water burnt-in sand polychrome finish are successively uniformly coated in the base, it is uniformly coated with anticracking grout layer between the base putty layer and the prime coat, is provided with meshed grooves on the base putty layer, the netted lug boss chimeric with the meshed grooves is provided in the anticracking grout layer;The water burnt-in sand polychrome finish is uniformly coated with cracking resistance away from finishing coat side and reinforces coating, and the water burnt-in sand polychrome finish other side is successively uniformly coated with UV-absorbing layer, finishing coat;Above structure solves the problems, such as that existing cracking resistance water burnt-in sand coating structure cracking resistance is bad, each painting interlayer cracking resistance of water burnt-in sand coating structure can be enhanced, enhance the tension degree of water burnt-in sand coating structure, final a possibility that reducing water burnt-in sand coating structure cracking simultaneously.

Description

A kind of cracking resistance water burnt-in sand coating structure
Technical field
The utility model relates to a kind of water burnt-in sand multicolor finish, in particular to a kind of cracking resistance water burnt-in sand coating structure.
Background technique
Water burnt-in sand multicolor finish is that upgrading is optimized on the basis of water-in-water multicolor coating, and water burnt-in sand multicolor finish is exactly Add quartz sand in the color dot of aqueous colorful and continuous phase, while making it have the fidelity of water-in-water multicolor coating, and it is simultaneous Having the texture of lacquer, coating stereoscopic effect is strong, and it is uneven, there is natural true natural colour.
Authorization Notice No. is that the Chinese patent of CN207131000U discloses a kind of imitative stone heat-insulating integral of high hardness water burnt-in sand Plate, including base, insulating layer, fiberglass mesh layer of cloth and lacquer painting layer, base and insulating layer are Nian Jie at an entirety by adhesive, Lacquer painting layer includes the base paint mixed and protective glue, and lacquer painting layer surface coats fluororine-carbon coating.
It is in place of the deficiencies in the prior art, since the base paint outer wall of above-mentioned water burnt-in sand coating is provided only with one layer of protection The cracking resistance of glue, basic lacquer coat is weaker, it is easy to be influenced by extraneous adverse circumstances, water burnt-in sand coat inside is easy to appear Crack situation, or even cracking expands, falls off, and influences the service life of entire metope.
Utility model content
The purpose of the utility model is to provide a kind of cracking resistance water burnt-in sand coating structures, and which solve the paintings of existing cracking resistance water burnt-in sand The bad problem of layer structure cracking resistance, has the advantages that high cracking resistance energy.
The above-mentioned technical purpose of the utility model has the technical scheme that
A kind of cracking resistance water burnt-in sand coating structure, including base are successively uniformly coated with base putty layer, bottom in the base Paint layer, water burnt-in sand polychrome finish, finishing coat are uniformly coated with anticracking grout between the base putty layer and the prime coat Layer, meshed grooves are provided on the base putty layer, are provided in the anticracking grout layer chimeric with the meshed grooves Netted lug boss;The water burnt-in sand polychrome finish is uniformly coated with cracking resistance away from finishing coat side and reinforces coating, the water burnt-in sand The polychrome finish other side is uniformly coated with UV-absorbing layer.
Using the above scheme, in actual use, finishing coat protects other coatings to hit friction from extraneous hard object; Meanwhile most of ultraviolet light in adverse circumstances is absorbed by UV-absorbing layer, considerably reduces ultraviolet light to water burnt-in sand The influence that polychrome finish generates;In addition, the raising of the cracking resistance of water burnt-in sand coating structure is reinforced by anticracking grout layer, cracking resistance Coating is realized, while enhancing the tension degree of water burnt-in sand coating structure;It is anti-by being arranged between base putty layer and prime coat Splitting the reticular structure that screed formation cracking resistance is reinforced has water burnt-in sand coating structure to improve whole cracking resistance More preferably anti-dropout ability;It is embedding for anticracking grout layer with this meanwhile by opening up meshed grooves in base putty layer surface Enter, increase the rugosity of reticular structure, to reach better cracking resistance and anti-dropout effect.
In conclusion reinforcing the protection layer by layer of coating, UV absorbing layer, finishing coat etc. by anticracking grout layer, cracking resistance, together When be aided with reticular structure that base putty layer and anticracking grout layer are formed as bottom reinforcing, water burnt-in sand coating structure is enhanced with this Each painting interlayer cracking resistance, effective protection water burnt-in sand coating structure can be played the role of, it is final to reduce water burnt-in sand coating structure A possibility that cracking.
Further preferably are as follows: be provided with the silk screen to form the meshed grooves in the base putty layer.
Using the above scheme, meshed grooves at processing are carried out to base putty layer by silk screen in advance, and are aided with silk screen work Directly reinforce the adhesion strength between base putty layer and anticracking grout layer to obtain reticular structure for skeletal support;Due to each A meshed grooves shape and structure is close, avoids reticular structure each section discontinuity with this, so as to cause water burnt-in sand coating knot The deformation of structure, cracking, further reach better cracking resistance and anti-dropout effect.
Further preferably are as follows: the base putty layer is flexible break resistant putty layer.
Using the above scheme, since flexible break resistant putty layer can effectively enhance the anti-crack ability of wall, and flexible break resistant Putty adhesive strength is high, water-fast moisture-proof, as the basis of entire water burnt-in sand coating structure, convenient for the painting of anticracking grout coating It covers, directly the adhesion strength between reinforcing base putty layer and anticracking grout coating.
Further preferably are as follows: the anticracking grout layer and the priming paint interlayer are uniformly coated with illite composite coating.
Using the above scheme, since anticracking grout layer surface has certain roughness, illite composite coating can be directly Enhance the adhesion strength between anticracking grout layer and prime coat;Meanwhile illite composite coating has preferable fungistatic effect, and The a variety of harmful heavy metals of absorption and pernicious gas of energy take into account ring while the adhesion strength of further strengthened coat structure Protect effect.
Further preferably are as follows: the prime coat is alkali-resistant sealing primer layer, the illite composite coating and the priming paint Defoaming oxidant layer is uniformly coated between layer.
Using the above scheme, alkali resistant bottom closing paint can eliminate base putty layer accumulation of salt in the surface soil because of caused by water translocation, floating Phenomena such as, while the main layer of water burnt-in sand polychrome finish structure and the adhesive force of base are also increased, avoid water burnt-in sand polychrome finish Cracking and loosen;In addition, whether prime coat smears uniform and its internal bubbles volume, entire coating structure can be directly determined Service life, outside base putty layer first coating defoaming oxidant layer, later again defoaming oxidant layer on primer coating layer, can significantly drop There are the probabilities of bubble in low prime coat, guarantee the adhesion strength between each coating.
Further preferably are as follows: the water burnt-in sand polychrome finish is uniformly coated with two layers of water burnt-in sand multicolor finish, the cracking resistance Reinforcement coating is Elastic anti-crack waterproof coating, and the cracking resistance is reinforced uniformly being coated with oil between coating and the water burnt-in sand polychrome finish Property smooth surface putty layer.
Using the above scheme, Elastic anti-crack water-repellent paint cracking resistance is good, and fracture elongation can reach 300% or more, with this The resistance for improving polychrome finish structure becomes ability, while having excellent composite water-proof, high-low temperature resistant, acid and alkali-resistance, weather resistance; Oiliness smooth surface putty has very strong adhesive force, and it can sufficiently fill up various small pores, and cracking resistance is made to reinforce coating surface more light It is sliding, fine and smooth, keep it higher with the adhesion strength of water burnt-in sand polychrome finish, further reaches better cracking resistance and anti-dropout effect Fruit.
Further preferably are as follows: the UV-absorbing layer is made of ultraviolet absorbent UV-531, and the water burnt-in sand is colorful Coating and the ultraviolet radiation absorption interlayer are uniformly coated with transparent safety layer, and the transparent safety layer includes one layer and uniformly coats PE synthetic fibers and the seccotine for being evenly applied to clear PE synthetic fibers two sides.
Using the above scheme, ultraviolet absorbent UV-531 is a kind of efficient anti-aging auxiliary agent, can absorb most of purple Outer light considerably reduces the influence that ultraviolet light generates coating, while also having many advantages, such as that color is shallow, nontoxic, compatibility is good;PE Synthetic fibers toughness is higher, has extraordinary impact resistance and tear resistance, when water burnt-in sand coating structure is hit by strong external force It breaks up after splitting, water burnt-in sand polychrome finish and UV-absorbing layer are still adhered on PE synthetic fiber layer by seccotine, are avoided each A coating explosion, which is dispersed, generates injury to user, so that product is more safe and reliable.
Further preferably are as follows: the finishing coat is organic inorganic hybridization photocatalysis overlay coating.
Using the above scheme, organic inorganic hybridization photocatalysis overlay coating has photocatalysis and the self-cleaning characteristic of light, Under the premise of not influencing water burnt-in sand coating structure appearance, weatherability, the automatically cleaning of water burnt-in sand coating structure are improved, it is permanent reaching While reflecting heat insulation effect, reduce daily cleaning operation;Meanwhile organic inorganic hybridization photocatalysis finishing coat The toxic gases such as nitric oxide, the sulfur dioxide that can be degraded in air, have the advantages that environmentally protective.
In conclusion the utility model has the following beneficial effects: passing through anticracking grout layer, cracking resistance reinforces coating, transparent The protection layer by layer of safe floor, UV-absorbing layer, while the reticular structure for being aided with base putty layer and anticracking grout layer formation is made For bottom reinforcing, enhance each painting interlayer cracking resistance of water burnt-in sand coating structure with this, while enhancing water burnt-in sand coating structure Tension degree can play the role of effective protection water burnt-in sand coating structure, the final possibility for reducing water burnt-in sand coating structure cracking Property.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the water burnt-in sand coating structure of embodiment.
In figure, 1, base;2, base putty layer;21, meshed grooves;22, silk screen;3, anticracking grout layer;31, netted protrusion Portion;4, illite composite coating;5, oxidant layer is defoamed;6, prime coat;7, cracking resistance reinforces coating;8, oiliness smooth surface putty layer;9, water Burnt-in sand polychrome finish;10, transparent safety layer;11, UV-absorbing layer;12, finishing coat.
Specific embodiment
The utility model is described in further detail below in conjunction with attached drawing.
A kind of water burnt-in sand coating structure is successively uniformly coated with base putty in base 1 as shown in Figure 1, including base 1 Layer 2, anticracking grout layer 3, illite composite coating 4, defoaming oxidant layer 5, prime coat 6, cracking resistance reinforce coating 7, oiliness smooth surface putty Layer 8, water burnt-in sand polychrome finish 9, transparent safety layer 10, UV-absorbing layer 11, finishing coat 12;Wherein, pre- in base putty layer 2 First be provided with silk screen 22, silk screen 22 is used to be formed meshed grooves 21 on base putty layer 2, be provided in anticracking grout layer 3 with The chimeric netted lug boss 31 of meshed grooves 21.
Wherein, base putty layer 2 is flexible break resistant putty layer, and prime coat 6 is alkali-resistant sealing primer layer 6, and cracking resistance is reinforced applying Layer 7 is 819 Elastic anti-crack water-repellent paints, and transparent safety layer 10 includes one layer of PE synthetic fibers uniformly coated and is evenly applied to The seccotine of clear PE synthetic fibers two sides, UV-absorbing layer 11 are made of ultraviolet absorbent UV-531, and finishing coat 12 is Organic inorganic hybridization photocatalysis overlay coating.
Smearing process:
S1 preparation, take-up uniform coating flexible anti-crack mastic layer in base 1, then immediately in base putty layer 2 Upper pressing silk screen 22, obtains meshed grooves 21;
S2 waits for base putty layer 2 and 21 coagulation forming of meshed grooves, the full-filling anticracking grout at meshed grooves 21, then One layer of anticracking grout is uniformly coated on base putty layer 2;
S3 then in anticracking grout layer 3 successively uniformly coating illite composite coating 4, defoaming oxidant layer 5, prime coat 6, Cracking resistance reinforces coating 7, oiliness smooth surface putty layer 8, water burnt-in sand polychrome finish 9, transparent safety layer 10, UV-absorbing layer 11, cover Surface layer 12.
This specific embodiment is only the explanation to the utility model, is not limitations of the present invention, ability Field technique personnel can according to need the modification that not creative contribution is made to the present embodiment after reading this specification, but As long as within the protection scope of the present utility model all by the protection of Patent Law.

Claims (8)

1. a kind of cracking resistance water burnt-in sand coating structure, including base (1), base putty is successively uniformly coated on the base (1) Layer (2), prime coat (6), water burnt-in sand polychrome finish (9), it is characterized in that: the base putty layer (2) and the prime coat (6) it Between be uniformly coated with anticracking grout layer (3), be provided with meshed grooves (21), the anticracking grout on the base putty layer (2) The netted lug boss (31) chimeric with the meshed grooves (21) is provided on layer (3);The water burnt-in sand polychrome finish (9) is deviated from Finishing coat (12) side is uniformly coated with cracking resistance and reinforces coating (7), and water burnt-in sand polychrome finish (9) other side successively uniformly applies It is covered with UV-absorbing layer (11), finishing coat (12).
2. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that: setting in the base putty layer (2) Have to form the silk screen of the meshed grooves (21) (22).
3. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that: the base putty layer (2) is flexibility Anti-crack mastic layer.
4. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that: the anticracking grout layer (3) with it is described Uniformly illite composite coating (4) are coated between prime coat (6).
5. a kind of cracking resistance water burnt-in sand coating structure according to claim 4, it is characterized in that: the prime coat (6) is alkali resistant closing Prime coat (6) is uniformly coated with defoaming oxidant layer (5) between the illite composite coating (4) and the prime coat (6).
6. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that the water burnt-in sand polychrome finish (9) is uniform Coated with two layers of water burnt-in sand multicolor finish, it is Elastic anti-crack waterproof coating that the cracking resistance, which reinforces coating (7), and the cracking resistance is reinforced applying Oiliness smooth surface putty layer (8) is uniformly coated between layer (7) and the water burnt-in sand polychrome finish (9).
7. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that: the UV-absorbing layer (11) is by purple Ultraviolet absorbers UV-531 is constituted, and is uniformly coated between the water burnt-in sand polychrome finish (9) and the UV-absorbing layer (11) Transparent safety layer (10), the transparent safety layer (10) include one layer of PE synthetic fibers uniformly coated and are evenly applied to transparent The seccotine of PE synthetic fibers two sides.
8. a kind of cracking resistance water burnt-in sand coating structure according to claim 1, it is characterized in that: finishing coat (12) is organic inorganic hybridization Photocatalysis overlay coating.
CN201820739260.4U 2018-05-17 2018-05-17 A kind of cracking resistance water burnt-in sand coating structure Active CN208407562U (en)

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Application Number Priority Date Filing Date Title
CN201820739260.4U CN208407562U (en) 2018-05-17 2018-05-17 A kind of cracking resistance water burnt-in sand coating structure

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112521104A (en) * 2020-12-24 2021-03-19 陕西省建筑科学研究院有限公司 Cement mortar for geogrid reinforced masonry structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112521104A (en) * 2020-12-24 2021-03-19 陕西省建筑科学研究院有限公司 Cement mortar for geogrid reinforced masonry structure
CN112521104B (en) * 2020-12-24 2021-12-03 陕西省建筑科学研究院有限公司 Cement mortar for geogrid reinforced masonry structure

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