CN215382981U - Double glazing product with 3D printed pattern - Google Patents

Double glazing product with 3D printed pattern Download PDF

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Publication number
CN215382981U
CN215382981U CN202121024983.4U CN202121024983U CN215382981U CN 215382981 U CN215382981 U CN 215382981U CN 202121024983 U CN202121024983 U CN 202121024983U CN 215382981 U CN215382981 U CN 215382981U
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layer
pattern
printing
double
outer layer
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CN202121024983.4U
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Chinese (zh)
Inventor
李冰
刘彦博
黄海强
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Alegant Co ltd
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Alegant Co ltd
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Priority to CN202121024983.4U priority Critical patent/CN215382981U/en
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Abstract

The utility model relates to the technical field of glass products, in particular to a double-layer glass product with 3D printed patterns, which comprises an outer layer and an inner layer, wherein the inner layer is sleeved in the outer layer, and the outer layer is made of transparent materials; according to the double-layer glass product, the raised 3D printing patterns are formed on the outer surface of the inner layer and/or the inner surface of the outer layer, the three-dimensional effect of the patterns on the surface of the double-layer glass product is improved, the attractive effect is improved, and the 3D printing patterns are formed in the area between the inner layer and the outer layer, so that the problems of abrasion or scratching and the like caused by the outer protrusions are avoided.

Description

Double glazing product with 3D printed pattern
Technical Field
The utility model relates to the technical field of glass products, in particular to a double-layer glass product with a 3D printed pattern.
Background
At present, along with the living needs of people, a large number of double-layer glass products such as double-layer glass cups, double-layer glass medals and the like come into the lives of people, great convenience is brought to the life of people, particularly, the double-layer glass vacuum cups with printed patterns are appeared, the life of people is more rich in poetry and painting, however, as for products made of the double-layer glass materials, plane patterns are usually formed on the surfaces of the double-layer glass vacuum cups, the patterns have no three-dimensional effect, and the patterns printed on the outer surfaces are easy to wear or scratch after being used for a long time, so that the attractiveness is influenced.
SUMMERY OF THE UTILITY MODEL
The technical scheme adopted by the utility model for solving the technical problems is as follows: the double-layer glass product with the 3D printed patterns comprises an outer layer and an inner layer, wherein the inner layer is sleeved in the outer layer, the outer layer is made of a transparent material, and the outer surface of the inner layer and/or the inner surface of the outer layer are/is provided with the raised 3D printed patterns.
Further, the outer surface of the inner layer and/or the inner surface of the outer layer are/is provided with a raised printing support, and the 3D printing pattern is formed on the surface of the printing support.
Further, the surface of the printing support has an engraved pattern along which the 3D printed pattern is formed.
Further, the printing support is sheet-shaped or column-shaped.
Further, a containing groove corresponding to the 3D printing pattern is formed on the outer surface of the inner layer and/or the inner surface of the outer layer.
Further, the outer surface of the inner layer and/or the inner surface of the outer layer are/is also provided with crackle lines.
Furthermore, wire inlay lines are formed on the outer surface of the inner layer and/or the inner surface of the outer layer.
Further, the crack color lines or the wire inlay lines are arranged along the periphery of the 3D printing pattern to form a three-dimensional landscape painting pattern.
The utility model has the following beneficial effects: according to the double-layer glass product, the raised 3D printing patterns are formed on the outer surface of the inner layer and/or the inner surface of the outer layer, the three-dimensional effect of the patterns on the surface of the double-layer glass product is improved, the attractive effect is improved, and the 3D printing patterns are formed in the area between the inner layer and the outer layer, so that the problems of abrasion or scratching and the like caused by the outer protrusions are avoided.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is a schematic cross-sectional view of a double-glazing article according to an embodiment of the utility model;
FIG. 2 is an enlarged schematic view of the first embodiment at A in FIG. 1;
FIG. 3 is an enlarged schematic view of embodiment two at A in FIG. 1;
fig. 4 is an enlarged schematic view of the third embodiment at a in fig. 1.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1 to 4, a double-glazing product having a 3D printed pattern, which may be a double-glazing glass or an article formed by combining double-glazing glass or multi-glazing glass, such as a trophy, a medal, etc., the present invention is illustrated by the double-glazing glass; the double-layer glass product comprises an inner layer 200 and an outer layer 100, wherein the inner layer 200 is sleeved in the outer layer 100, the outer layer 100 is made of transparent materials, such as glass, plastic and the like, the inner layer 200 can be made of glass or stainless steel, wherein a 3D printing pattern 300 with protrusions is formed on the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100, specifically, protrusions can be formed on the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100, then 3D printing is performed on the protrusions to form a pattern, the protrusions can be integrally formed with the inner layer 200 or the outer layer 100, or fixed on the outer surface of the inner layer 200 or the inner surface of the outer layer 100 by means of adhesion, or 3D printing can be directly performed on the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100 to form a three-dimensional pattern, which needs to be explained, the gap between the inner layer 200 and the outer layer 100 is greater than the protruding height of the 3D printed pattern 300, so that the inner layer 200 can be sleeved into the outer layer 100, and an adhesive can be injected between the inner layer 200 and the outer layer 100 to realize fixed connection, and certainly, the upper end of the inner layer 200 is connected with a cup opening, and can also realize fixed connection by bonding the lower end surface of the cup opening with the upper end surface of the outer layer 100; the three-dimensional effect of the 3D printing pattern 300 can be clearly seen when the double-layer glass product is obliquely viewed from the side or the upper surface, the attractiveness of the double-layer glass product is improved, meanwhile, the protruding 3D printing pattern 300 is formed in the area between the inner layer 200 and the outer layer 100, the outer surface of the double-layer glass product is smooth, and the problem of abrasion or scratching after long-time use is avoided.
In some embodiments, referring to fig. 3 and 4, a raised printing support 400 is formed on the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100, and the printing support 400 ensures the formation basis of the 3D printing effect, so as to avoid the problem that the 3D printing pattern 300 falls off from the outer surface of the inner layer 200 or the inner surface of the outer layer 100 due to severe shaking of the double-glazing product, which is suitable for the 3D printing pattern 300 with a large height of the raised portion, and the 3D printing pattern 300 is formed on the surface of the printing support 400.
In some embodiments, referring to fig. 3 and 4, the surface of the printing support 400 has an engraved pattern, and the 3D printing pattern 300 is formed along the engraved pattern, specifically, a designed pattern, such as an outline shape of a landscape painting, may be engraved on the printing support 400, and then a raised mountain pattern may be formed on the printing support 400 through 3D printing, and further, different colors, such as a raised mountain pattern may be sprayed on the outline shape of the landscape painting through 3D printing, and a raised mountain pattern may be sprayed on a recessed river, such as blue or sky blue, to further enhance the three-dimensional aesthetic effect.
In some embodiments, as shown in fig. 2 to 4, the printing support 400 is in a sheet shape or a column shape, in an embodiment of the sheet-shaped printing support 400, a pair of complete three-dimensional 3D printing patterns 300 can be formed on the surface of the printing support 400 through 3D printing, and in an embodiment of the column-shaped printing support 400, the column-shaped printing support 400 can be used as a raised mountain, and the outer surface of the column-shaped printing support 400 is sprayed with green or emerald to improve the three-dimensional aesthetic effect, and the column-shaped printing support 400 is used as a plane picture formed by matching the mountain with the outer surface of the inner layer 200, so as to further improve the aesthetic effect; of course, the printing support 400 may be designed to be conical or irregular convex according to the shape of the mountain.
In some embodiments, referring to fig. 4, the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100 is formed with a receiving groove 500 corresponding to the 3D printed pattern 300, in this embodiment, the 3D printed pattern 300 is disposed on the outer surface of the inner layer 200, and the receiving groove 500 is disposed on the inner surface of the outer layer 100, at this time, the protrusion height of the 3D printed pattern 300 is greater than the distance between the inner layer 200 and the outer layer 100, and the 3D printed pattern 300 is closer to the outer surface of the outer layer 100, so as to improve the vivid effect of 3D printing.
In some embodiments, referring to fig. 3 or 4, the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100 are further formed with a crack color pattern 600, the crack color pattern 600 is used as a water flow pattern of a landscape painting, the raised 3D printed pattern 300 is used as a mountain pattern of the landscape painting, and the crack color pattern 600 and the 3D printed pattern 300 form a concave-convex three-dimensional landscape painting pattern, so as to further improve the aesthetic effect.
In some embodiments, referring to fig. 3 or 4, the outer surface of the inner layer 200 and/or the inner surface of the outer layer 100 are further formed with a wire inlay pattern 700, the wire inlay pattern 700 can protrude from the outer surface of the inner layer 200 or the inner surface of the outer layer 100, and the protruding height of the wire inlay pattern 700 is smaller than the protruding height of the 3D printed pattern 300, at this time, the wire inlay pattern 700 can be used as a three-dimensional pattern of a mountain, and the 3D printed pattern 300 can be used as a high-rise mountain pattern, so as to further improve the three-dimensional aesthetic effect of the mountain.
In some embodiments, the crackle lines 600 or the wire inlay lines 700 are arranged along the periphery of the 3D printed pattern 300 to form a three-dimensional landscape painting pattern, and the three-dimensional landscape painting pattern with staggered mountains, mountains and rivers can be formed on the surface of the double-layer glass product through the combination of the crackle lines 600, the wire inlay lines 700 and the 3D printed pattern 300, so that the three-dimensional aesthetic effect is further improved.
While the foregoing is directed to the preferred embodiment of the present invention, it will be understood by those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the utility model.

Claims (8)

1. A double-layer glass product with a 3D printed pattern comprises an outer layer (100) and an inner layer (200), wherein the inner layer (200) is sleeved in the outer layer (100), the outer layer (100) is made of a transparent material, and the double-layer glass product is characterized in that a convex 3D printed pattern (300) is formed on the outer surface of the inner layer (200) and/or the inner surface of the outer layer (100).
2. The double glazing product with the 3D printing pattern according to claim 1, wherein the outer surface of the inner layer (200) and/or the inner surface of the outer layer (100) is formed with a raised printing support (400), and the 3D printing pattern (300) is formed on the surface of the printing support (400).
3. The double glazing product with a 3D printed pattern according to claim 2, wherein the surface of the printing support (400) has an engraved pattern along which the 3D printed pattern (300) is formed.
4. The double glazing product with a 3D printed pattern according to claim 2, wherein the printing support (400) is sheet-like or cylindrical.
5. The double glazing product with the 3D printing pattern according to claim 1, wherein the outer surface of the inner layer (200) and/or the inner surface of the outer layer (100) is formed with a receiving groove (500) corresponding to the 3D printing pattern (300).
6. The double glazing product with the 3D printed pattern according to claim 1, wherein the outer surface of the inner layer (200) and/or the inner surface of the outer layer (100) is further formed with a crackle (600).
7. The double-glazing product with the 3D printing pattern according to claim 1, wherein the outer surface of the inner layer (200) and/or the inner surface of the outer layer (100) is/are further formed with a wire inlay (700).
8. The double glazing with a 3D printing pattern according to claim 6 or 7, wherein the crackle lines (600) or the filigree lines (700) are arranged along the periphery of the 3D printing pattern (300) to form a three-dimensional landscape painting pattern.
CN202121024983.4U 2021-05-13 2021-05-13 Double glazing product with 3D printed pattern Active CN215382981U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121024983.4U CN215382981U (en) 2021-05-13 2021-05-13 Double glazing product with 3D printed pattern

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121024983.4U CN215382981U (en) 2021-05-13 2021-05-13 Double glazing product with 3D printed pattern

Publications (1)

Publication Number Publication Date
CN215382981U true CN215382981U (en) 2022-01-04

Family

ID=79675337

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121024983.4U Active CN215382981U (en) 2021-05-13 2021-05-13 Double glazing product with 3D printed pattern

Country Status (1)

Country Link
CN (1) CN215382981U (en)

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