CN213405639U - Holographic imaging cup - Google Patents

Holographic imaging cup Download PDF

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Publication number
CN213405639U
CN213405639U CN202020801582.4U CN202020801582U CN213405639U CN 213405639 U CN213405639 U CN 213405639U CN 202020801582 U CN202020801582 U CN 202020801582U CN 213405639 U CN213405639 U CN 213405639U
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CN
China
Prior art keywords
cup
inner bottom
holographic imaging
cup body
pyramid
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Expired - Fee Related
Application number
CN202020801582.4U
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Chinese (zh)
Inventor
刘成芳
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Individual
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Individual
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Priority to CN202020801582.4U priority Critical patent/CN213405639U/en
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Publication of CN213405639U publication Critical patent/CN213405639U/en
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Abstract

The utility model provides a holographic imaging cup, comprising a cup body, the interior bottom of cup includes the interior bottom surface of four triangles, connects in order between four interior bottoms and forms interior bottom of positive pyramid or the interior bottom of inverted pyramid shape. The utility model discloses use pyramid holographic projection principle, four videos or pictures before using promptly, back, left and right, give holographic image's illusion through four transparent surface reflections of centrum. The utility model discloses a holographic imaging cup can realize that cup utensil decorative pattern changes at any time and decorates the kinematization, and the user can be according to hobby, selects the pattern of oneself liking for the cup utensil, perhaps projects the animation of oneself liking and plays the music simultaneously, has increased its sight and has used the enjoyment, for the user brings new experience, has also increased the fresh sense of user to the cup utensil, has prolonged the time that the cup utensil was changed, increases its life. When the holographic imaging cup is used as a drinking cup, the mood can be relaxed, and the psychological pressure brought by life can be relieved.

Description

Holographic imaging cup
Technical Field
The utility model relates to a cup technical field specifically, relates to a holographic imaging cup.
Background
Under the faster rhythm of life of modern society, people often need to relax their mood through some entertainment ways to relieve the psychological pressure brought by life. The tea and wine drinking belongs to the relaxation mode which people like.
The cup used for daily drinking tea and wine is mostly transparent or ceramic material, and in order to increase the ornamental value and the use pleasure, the cup can be designed with diversified shapes and various exquisite patterns. However, once the existing cup is produced and formed, the pattern of the cup is difficult to change, and the pattern is fixed, so that the cup cannot be moved, so that the use pleasure of people to the cup is easy to decline, and the cup replacement speed is faster and faster.
Therefore, in order to enable a set of cup to meet the use enthusiasm of users for a long time, the pattern on the cup can be replaced, or the cup can be decorated to realize the picture, thereby prolonging the service time of the cup. However, at present, there is no technology that can realize the replacement of the decorative pattern of the cup and the dynamic decoration at any time.
Disclosure of Invention
The to-be-solved technical problem of the utility model lies in, the utility model provides a holographic imaging cup, with the interior bottom of cup for invering or just putting the pyramid, use pyramid holographic projection principle, with before, back, four videos or pictures on a left side, the right side, give the illusion that holographic image was given to through four transparent surface reflections of centrum, in order to realize through changing projection picture or video, realize changing the pattern on the cup, perhaps decorate the cup and realize the kinematical, thereby improve the live time of cup.
The utility model provides a holographic imaging cup, comprising a cup body, the interior bottom of cup includes the interior bottom surface of four triangles, connects in order between four interior bottoms and forms interior bottom of positive pyramid or the interior bottom of inverted pyramid shape.
Preferably, the included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
Preferably, the outer bottom of the cup body is a square outer bottom, and an air layer or an entity is arranged between the square outer bottom and the inner bottom of the regular pyramid shape or the inner bottom of the inverted pyramid shape.
Preferably, the outer bottom of the cup body is an inverted pyramid-shaped outer bottom which is consistent with the inner bottom of the inverted pyramid, and the cup seat is connected below the middle of the outer bottom.
Preferably, the outer bottom of the cup body is a regular pyramid-shaped outer bottom which is consistent with the inner bottom of the regular pyramid.
Preferably, the outer wall of the cup body is in a quadrangular prism shape.
Preferably, a cup handle is arranged on the outer wall of the cup body.
Preferably, the cup mat and the cup cover are both square and the size of the cup mat and the size of the cup cover are consistent with the outer contour of the cup body.
Preferably, the coaster and/or the cup lid are divided into A, B, C, D four areas, the four areas are respectively the projection surfaces of the four inner bottom surfaces on the coaster and/or the cup lid, and each area is printed with a projection pattern.
Preferably, the cup also comprises a filter funnel arranged in the cup body, and the shape of the funnel is consistent with the shape of the inner part of the cup body.
The utility model discloses a theory of operation: the utility model discloses a main innovation point lies in, the interior bottom of cup is for invering or just putting the pyramid shape, the utility model discloses use pyramid holographic projection principle, with before, after, four videos or pictures on a left side, the right side, give the illusion that holographic image was given through four transparent surface reflections of centrum. The holographic imaging cup can also be used in combination with a specially designed cup pad and a cup cover, and the length and width of the image part matched with the cup pad and the cup cover do not exceed the length and width of the bottom edge of the pyramid. The cup body can be made of transparent materials such as glass, crystal or plastic or colored semitransparent materials.
The utility model has the advantages that: the utility model discloses a holographic imaging cup can realize that cup utensil decorative pattern changes at any time and decorates the kinematization, and the user can be according to hobby, selects the pattern of oneself liking for the cup utensil, perhaps projects the animation of oneself liking and plays the music simultaneously, has increased its sight and has used the enjoyment, for the user brings new experience, has also increased the fresh sense of user to the cup utensil, has prolonged the time that the cup utensil was changed, increases its life. When the holographic imaging cup is used as a drinking cup, the mood can be relaxed, and the psychological pressure brought by life can be relieved.
Drawings
Fig. 1 is a schematic structural view of a holographic imaging cup according to embodiment 1 of the present invention;
fig. 2 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 2 of the present invention;
fig. 3 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 3 of the present invention;
fig. 4 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 4 of the present invention;
fig. 5 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 5 of the present invention;
fig. 6 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 6 of the present invention;
fig. 7 is a schematic structural view of a cup body in a holographic imaging cup according to embodiment 7 of the present invention;
fig. 8 is a schematic structural view of a cup cover in the holographic imaging cup according to embodiments 1 to 3 of the present invention;
fig. 9 is a schematic structural diagram of a cup pad in a holographic imaging cup according to embodiments 4 to 7 of the present invention.
In the figure: the cup comprises a cup body 1, a regular pyramid-shaped inner bottom 11-1, an inverted pyramid-shaped inner bottom 11-2, a square outer bottom 12-1, an inverted pyramid-shaped outer bottom 12-2, a regular pyramid-shaped outer bottom 12-3, an air layer 13-1, an entity 13-2, a cup base 14, an outer wall 15, a cup handle 16, a cup mat 2, a cup cover 3 and a filter funnel 4.
Detailed Description
In order to make the technical solution of the present invention easier to understand, the present invention adopts the mode of the specific embodiment with reference to the attached drawings, and the technical solution of the present invention is clearly and completely described.
Example 1:
as shown in FIG. 1, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form a regular pyramid-shaped inner bottom 11-1.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a square outer bottom 12-1, and an air layer 13-1 is arranged between the square outer bottom 12-1 and the inner bottom 11-1 of the regular pyramid shape.
The outer wall 15 of the cup body 1 is quadrangular in profile.
The cup lid is characterized by further comprising a square cup lid 3, wherein the size of the square cup lid 3 is consistent with the outer contour of the cup body 1.
The cup cover 3 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup cover 3, and each area is printed with a projection pattern.
Example 2:
as shown in FIG. 2, the holographic imaging cup of the present embodiment comprises a cup body 1, wherein the inner bottom of the cup body 1 comprises four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form a regular pyramid-shaped inner bottom 11-1.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a square outer bottom 12-1, and a solid body 13-2 is arranged between the square outer bottom 12-1 and the inner bottom 11-1 of the regular pyramid shape.
The outer wall 15 of the cup body 1 is quadrangular in profile.
The cup lid is characterized by further comprising a square cup lid 3, wherein the size of the square cup lid 3 is consistent with the outer contour of the cup body 1.
The cup cover 3 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup cover 3, and each area is printed with a projection pattern.
Example 3:
as shown in FIG. 3, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form a regular pyramid-shaped inner bottom 11-1.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a regular pyramid-shaped outer bottom 12-3 which is consistent with the regular pyramid-shaped inner bottom 11-1.
The outer wall 15 of the cup body 1 is quadrangular in profile.
The cup lid is characterized by further comprising a square cup lid 3, wherein the size of the square cup lid 3 is consistent with the outer contour of the cup body 1.
The cup cover 3 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup cover 3, and each area is printed with a projection pattern.
Example 4:
as shown in FIG. 4, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form an inverted pyramid-shaped inner bottom 11-2.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a square outer bottom 12-1, and an air layer 13-1 is arranged between the square outer bottom 12-1 and the inverted pyramid-shaped inner bottom 11-2.
The outer wall 15 of the cup body 1 is quadrangular in profile.
The cup pad is characterized by further comprising a cup pad 2, wherein the size of the square cup pad 2 is consistent with the outer contour of the cup body 1.
The cup mat 2 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup mat 2, and a projection pattern is printed on each area.
Example 5:
as shown in FIG. 5, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form an inverted pyramid-shaped inner bottom 11-2.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a square outer bottom 12-1, and a solid body 13-2 is arranged between the square outer bottom 12-1 and the inverted pyramid-shaped inner bottom 11-2.
The outer wall 15 of the cup body 1 is quadrangular in profile.
The cup pad is characterized by further comprising a cup pad 2, wherein the size of the square cup pad 2 is consistent with the outer contour of the cup body 1.
The cup mat 2 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup mat 2, and a projection pattern is printed on each area.
Example 6:
as shown in FIG. 6, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form an inverted pyramid-shaped inner bottom 11-2.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is a square outer bottom 12-1, and an air layer 13-1 is arranged between the square outer bottom 12-1 and the inverted pyramid-shaped inner bottom 11-2.
The outer wall 15 of the cup body 1 is quadrangular in profile.
A cup handle 16 is arranged on the outer wall 15 of the cup body 1.
The cup pad is characterized by further comprising a cup pad 2, wherein the size of the square cup pad 2 is consistent with the outer contour of the cup body 1.
The cup mat 2 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup mat 2, and a projection pattern is printed on each area.
The cup body is characterized by further comprising a filtering funnel 4 arranged in the cup body 1, and the shape of the filtering funnel is consistent with that of the inside of the cup body 1.
Example 7:
as shown in FIG. 7, the holographic imaging cup of the present embodiment includes a cup body 1, the inner bottom of the cup body 1 includes four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form an inverted pyramid-shaped inner bottom 11-2.
The included angle between every two adjacent inner bottom surfaces and the included angle between every two opposite inner bottom surfaces are both 90 degrees.
The outer bottom of the cup body 1 is an inverted pyramid-shaped outer bottom 12-2 which is consistent with the inverted pyramid-shaped inner bottom 11-2, and a cup seat 14 is connected below the middle of the outer bottom.
The cup pad is characterized by further comprising a cup pad 2, wherein the size of the square cup pad 2 is consistent with the outer contour of the cup body 1.
The cup mat 2 is divided into A, B, C, D four areas, the four areas are the projection surfaces of the four inner bottom surfaces on the cup mat 2, and a projection pattern is printed on each area.
It should be noted that the embodiments described herein are only some of the embodiments of the present invention, not all implementations of the present invention, and the embodiments are only exemplary, and only serve to provide examiners and the public with a more intuitive and clear way to understand the contents of the present invention, but not to limit the technical solutions of the present invention. Without departing from the concept of the present invention, all the other embodiments that can be conceived by those skilled in the art without creative efforts, and other simple replacements and various changes to the technical solution of the present invention, all belong to the protection scope of the present invention.

Claims (10)

1. The holographic imaging cup is characterized by comprising a cup body (1), wherein the inner bottom of the cup body (1) comprises four triangular inner bottom surfaces, and the four inner bottom surfaces are sequentially connected to form a regular pyramid-shaped inner bottom (11-1) or an inverted pyramid-shaped inner bottom (11-2).
2. The holographic imaging cup of claim 1, wherein the included angle between each adjacent two of said inner bottom surfaces and the included angle between each opposing two of said inner bottom surfaces are both 90 °.
3. The holographic imaging cup as claimed in claim 1, wherein the outer bottom of the cup body (1) is a square outer bottom (12-1), and an air layer (13-1) or a solid body (13-2) is formed between the square outer bottom (12-1) and the inner bottom (11-1) of the regular pyramid shape or the inner bottom (11-2) of the inverted pyramid shape.
4. The holographic imaging cup as claimed in claim 1, wherein the outer bottom of the cup body (1) is an inverted pyramid-shaped outer bottom (12-2) corresponding to the inverted pyramid-shaped inner bottom (11-2), and the cup base (14) is attached below the middle of the outer bottom.
5. The holographic imaging cup according to claim 1, characterized in that the outer bottom of the cup body (1) is a regular pyramidal outer bottom (12-3) coinciding with the regular pyramidal inner bottom (11-1).
6. Holographic imaging cup according to claim 3, characterized in that the outer wall (15) of the cup body (1) is quadrangular prism shaped in profile.
7. Holographic imaging cup according to claim 1, characterized in that a cup handle (16) is provided on the outer wall (15) of the cup body (1).
8. The holographic imaging cup set according to claim 1, further comprising a cup mat (2) and/or a cup lid (3), wherein the cup mat (2) and the cup lid (3) are both square and have the size consistent with the outer contour of the cup body (1).
9. The holographic imaging cup as claimed in claim 8, wherein the coaster (2) and/or the cup lid (3) is divided into A, B, C, D four regions, the four regions are respectively the projection surfaces of the four inner bottom surfaces on the coaster (2) and/or the cup lid (3), and each region is printed with a projection pattern.
10. The holographic imaging cup according to claim 1, further comprising a filter funnel (4) disposed within the cup body (1), the funnel having a shape conforming to an interior shape of the cup body (1).
CN202020801582.4U 2020-05-14 2020-05-14 Holographic imaging cup Expired - Fee Related CN213405639U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020801582.4U CN213405639U (en) 2020-05-14 2020-05-14 Holographic imaging cup

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020801582.4U CN213405639U (en) 2020-05-14 2020-05-14 Holographic imaging cup

Publications (1)

Publication Number Publication Date
CN213405639U true CN213405639U (en) 2021-06-11

Family

ID=76223214

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020801582.4U Expired - Fee Related CN213405639U (en) 2020-05-14 2020-05-14 Holographic imaging cup

Country Status (1)

Country Link
CN (1) CN213405639U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210611