decorative piece

By setting alternating light and dark pixel grids on the display surface of the decorative parts, the problem of displaying multiple images on the same display surface is solved, and the decorative parts achieve diversified display effects.

CN224539615UActive Publication Date: 2026-07-24CHOW TAI FOOK JEWELLERY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHOW TAI FOOK JEWELLERY CO LTD
Filing Date
2025-10-15
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

In existing technologies, decorative structures cannot display different images on the same display surface, which limits the decorative effect.

Method used

The first pixel grid and the second pixel grid are set on the display end face of the decorative part, and the bright side and the dark side are set in different directions. By combining them, multiple display patterns are formed to achieve display effects in different directions.

Benefits of technology

By adjusting the display direction, decorative items can display different patterns on the same display surface, enhancing their display and diversity and meeting user needs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224539615U_ABST
Patent Text Reader

Abstract

The application relates to the technical field of decoration structures, and provides a decoration piece, which comprises a display end face, a plurality of first pixel grids and a plurality of second pixel grids are arranged on the display end face, a first display direction, a first pixel surface of the plurality of first pixel grids and a third pixel surface of the plurality of second pixel grids are combined to form a first display pattern, and along a second display direction, a second pixel surface of the plurality of first pixel grids and a fourth pixel surface of the plurality of second pixel grids are combined to form a second display pattern; the decoration piece provided by the embodiment of the application can display different first display patterns and second display patterns by adjusting the first display direction or the second display direction on one side of the display end face, so that the display property of the decoration piece can be effectively improved, and the use requirement of a user can be met.
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Description

Technical Field

[0001] This application relates to the field of decorative structure technology, and in particular provides a decorative component. Background Technology

[0002] Currently, with the improvement of living standards and the increasing purchasing power of people, jewelry and other decorative items are becoming increasingly popular due to their decorative attributes and the diversity of their combinations.

[0003] To enhance the diversity of decorative structures, various patterns and designs are often incorporated into the surface of decorative components. However, in related technologies, the limited area of ​​the decorative structure's display surface makes it difficult to showcase different designs on the same surface, thus restricting the overall display effect. Utility Model Content

[0004] The purpose of this application is to provide a decorative component that addresses the problem in related technologies where decorative structures cannot display different images on the same display surface.

[0005] To achieve the above objectives, the technical solution adopted in the embodiments of this application is as follows: This application provides a decorative component, which includes a display end face. The display end face has a first display direction and a second display direction that intersect. A plurality of first pixel grids and a plurality of second pixel grids are formed on the display end face. Along the first display direction, each first pixel grid has a first pixel surface, which is perpendicular to the first display direction and is configured to be a bright surface in the first display direction. Along the second display direction, each first pixel grid has a second pixel surface, which is perpendicular to the display end face and is configured to be a dark surface in the second display direction. Along the first display direction, each second pixel grid has a third pixel surface. The third pixel face is perpendicular to the display end face, and the third pixel face is configured to be dark in the first display direction; along the second display direction, the second pixel grid has a fourth pixel face, the fourth pixel face is perpendicular to the second display direction, and the second pixel face is configured to be bright in the second display direction; the first pixel grid and the second pixel grid are arranged on the display end face, and along the first display direction, the first pixel faces of multiple first pixel grids and the third pixel faces of multiple second pixel grids are combined to form a first display pattern, and along the second display direction, the second pixel faces of multiple first pixel grids and the fourth pixel faces of multiple second pixel grids are combined to form a second display pattern.

[0006] The beneficial effects of the embodiments of this application are as follows: The decorative component provided in the embodiments of this application, by setting a first pixel grid and a second pixel grid on the display end face, and in the first display direction, the first pixel surface of the first pixel grid is a bright surface and the third pixel surface of the second pixel grid is a dark surface, thereby, a first display pattern can be formed by combining the first pixel surfaces of multiple first pixel grids and the third pixel surfaces of multiple second pixel grids; at the same time, in the second display direction, the second pixel surface of the first pixel grid is a dark surface and the fourth pixel surface of the second pixel grid is a bright surface, thereby, a second display pattern can be formed by combining the second pixel surfaces of multiple first pixel grids and the fourth pixel surfaces of multiple second pixel grids; thus, the decorative component provided in the embodiments of this application can display different first and second display patterns by adjusting one side of the display end face to the first or second display direction, thereby effectively improving the display performance of the decorative component and meeting the user's usage needs.

[0007] In some embodiments, a third pixel grid is further provided on the display end face. Along the first display direction, the third pixel grid has a fifth pixel surface, which is perpendicular to the first display direction and is configured to be a bright surface in the first display direction. Along the second display direction, the third pixel grid has a sixth pixel surface, which is perpendicular to the second display direction and is configured to be a bright surface in the second display direction. Along the first display direction, the first pixel surfaces of multiple first pixel grids, the third pixel surfaces of multiple second pixel grids, and the fifth pixel surfaces of multiple third pixel grids are combined to form a first display pattern. Along the second display direction, the second pixel surfaces of multiple first pixel grids, the fourth pixel surfaces of multiple second pixel grids, and the sixth pixel surfaces of multiple third pixel grids are combined to form a second display pattern.

[0008] In some embodiments, a fourth pixel grid is further provided on the display end face. Along the first display direction, the fourth pixel grid has a seventh pixel surface, which is perpendicular to the display end face and is configured to be dark in the first display direction. Along the second display direction, the fourth pixel grid has an eighth pixel surface, which is perpendicular to the display end face and is configured to be dark in the second display direction. Along the first display direction, the first pixel surfaces of multiple first pixel grids, the third pixel surfaces of multiple second pixel grids, the fifth pixel surfaces of multiple third pixel grids, and the seventh pixel surfaces of multiple fourth pixel grids are combined to form a first display pattern. Along the second display direction, the second pixel surfaces of multiple first pixel grids, the fourth pixel surfaces of multiple second pixel grids, the sixth pixel surfaces of multiple third pixel grids, and the eighth pixel surfaces of multiple fourth pixel grids are combined to form a second display pattern.

[0009] In some embodiments, the first display direction and the second display direction are located in the same plane.

[0010] In some embodiments, the angle between the first display direction and the display end face is α, where 0° < α < 90°.

[0011] In some embodiments, the angle between the first display direction and the display end face is 45°, and the angle between the first pixel face and the display end face is 45°.

[0012] In some embodiments, the angle between the second display direction and the display end face is β, where 0° < β < 90°.

[0013] In some embodiments, the angle between the second display direction and the display end face is 135°, and the angle between the fourth pixel face and the display end face is 45°.

[0014] In some embodiments, the angle between the fifth pixel surface and the display end surface is 45°.

[0015] In some embodiments, the angle between the sixth pixel surface and the display end surface is 45°. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 A cross-sectional view of the first type of decorative component provided in the embodiments of this application; Figure 2 A cross-sectional view of a second type of decorative element provided in an embodiment of this application; Figure 3 A cross-sectional view of a third type of decorative element provided in an embodiment of this application; Figure 4 A schematic diagram of a decorative component whose display end face forms a first display pattern along a first display direction, provided in an embodiment of this application; Figure 5 This is a schematic diagram of a decorative component whose display end face forms a second display pattern along a second display direction, according to an embodiment of this application.

[0018] The following are the labeling elements in the figure: 100. Decorative component; 100a. Display end face; 110. First display pattern; 120. Second display pattern; 10. First pixel grid; 11. First pixel face; 21. Second pixel face; 20. Second pixel grid; 21. Third pixel face; 22. Fourth pixel face; 30. Third pixel grid; 31. Fifth pixel face; 32. Sixth pixel face; 40. Fourth pixel grid; 41. Seventh pixel face; 42. Eighth pixel face; a) First display direction; b) Second display direction. Detailed Implementation

[0019] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.

[0020] In the description of this application, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0021] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0022] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0023] Currently, with the improvement of living standards and the increasing purchasing power of people, jewelry and other decorative items are increasingly favored due to their decorative attributes and the diversity of their combinations. To enhance the diversity of decorative structures, various patterns and designs are often incorporated into the surface of decorative pieces. However, in related technologies, the limited area of ​​the decorative structure's display surface makes it difficult to display different designs on the same surface, thus restricting the overall display effect.

[0024] Based on the above considerations, in order to solve the problem that decorative structures in related technologies cannot display different display images on the same display surface, a decorative component is designed. This involves setting a first pixel grid and a second pixel grid on the display end face of the decorative component. In a first display direction, the first pixel surface of the first pixel grid is bright, and the third pixel surface of the second pixel grid is dark. Thus, a first display pattern can be formed by combining the first pixel surfaces of multiple first pixel grids and the third pixel surfaces of multiple second pixel grids. Simultaneously, in a second display direction, the second pixel surface of the first pixel grid is dark, and the fourth pixel surface of the second pixel grid is bright. Thus, a second display pattern can be formed by combining the second pixel surfaces of multiple first pixel grids and the fourth pixel surfaces of multiple second pixel grids. Therefore, the decorative component provided in this application embodiment can display different first and second display patterns on one side of the display end face by adjusting to either the first or second display direction, thereby effectively improving the displayability of the decorative component and meeting user needs.

[0025] The device provided in this application will now be described in detail with reference to specific embodiments.

[0026] Please refer to Figures 1 to 5This application provides a decorative component 100, which includes a display end face 100a. The display end face 100a has a first display direction a and a second display direction b that intersect. The display end face 100a has a plurality of first pixel grids 10 and a plurality of second pixel grids 20. Along the first display direction a, the first pixel grid 10 has a first pixel surface 11, which is perpendicular to the first display direction a and is configured to be a bright surface in the first display direction a. Along the second display direction b, the first pixel grid 10 has a second pixel surface 12, which is perpendicular to the display end face 100a and is configured to be a dark surface in the second display direction b. Along the first display direction a, the second pixel grids 20 have a third pixel surface 21. The third pixel surface 21 is perpendicular to the display end surface 100a, and the third pixel surface 21 is configured to be dark in the first display direction a; along the second display direction b, the second pixel grid 20 has a fourth pixel surface 22, the fourth pixel surface 22 is perpendicular to the second display direction b, and the second pixel surface 12 is configured to be bright in the second display direction b; the first pixel grid 10 and the second pixel grid 20 are arranged on the display end surface 100a, and along the first display direction a, the first pixel surfaces 11 of multiple first pixel grids 10 and the third pixel surfaces 21 of multiple second pixel grids 20 are combined to form a first display pattern 110, and along the second display direction b, the second pixel surfaces 12 of multiple first pixel grids 10 and the fourth pixel surfaces 22 of multiple second pixel grids 20 are combined to form a second display pattern 120.

[0027] Understandably, decorative element 100 refers to a structural component used for wearing to present a decorative or display function. Optionally, decorative element 100 may be, but is not limited to, precious metals (gold, platinum, silver, etc.), gemstones, diamonds, agate, or other materials with decorative value. Decorative element 100 can be a structure such as a necklace, earrings, jewelry, bracelet, pendant, or commemorative coin.

[0028] The decorative element 100 includes a display end face 100a; the display end face 100a refers to one side surface of the decorative element 100 used for outward display. Optionally, there may be one or more display end faces 100a; for example, in some embodiments, there may be one display end face 100a, such as the outer surface of a ring, one side surface of a pendant, one side surface of a commemorative coin, etc.; or, there may be two display end faces 100a, such as opposite sides of a necklace, opposite sides of an earring pendant, opposite sides of a commemorative coin, etc.

[0029] Here, the first display direction a and the second display direction b refer to two different directions used for observing the display end face 100a. Optionally, the first display direction a and the second display direction b can be intersecting at opposite angles, such as being perpendicular to each other; or, the first display direction a and the second display direction b can be located in the same plane, such as being intersecting (e.g., perpendicular) in the same plane.

[0030] The display end face 100a has a plurality of first pixel grids 10 and a plurality of second pixel grids 20. Optionally, the number of first pixel grids 10 can be any number, such as two, three or more. Similarly, the number of second pixel grids 20 can be any number, such as two, three or more.

[0031] The multiple first pixel grids 10 and multiple second pixel grids 20 can be arranged in any way on the display end face 100a as needed; for example, the multiple first pixel grids 10 and multiple second pixel grids 20 can be distributed in an array, the multiple first pixel grids 10 and multiple second pixel grids 20 can cover the display end face 100a, or the multiple first pixel grids 10 and multiple second pixel grids 20 can be distributed in a local area of ​​the display end face 100a.

[0032] It should be understood that the first pixel grid 10 and the second pixel grid 20 are recessed hole structures formed on the display end face 100a. Here, the first pixel surface 11 refers to an inner wall surface corresponding to the first pixel grid 10 along the first display direction a; for example, when a user observes along the first display direction a and into the first pixel grid 10, the corresponding inner wall surface observed by the user's line of sight is the first pixel surface 11.

[0033] Wherein, the first pixel surface 11 is perpendicular to the first display direction a. Thus, when the user observes along the first display direction a and into the first pixel grid 10, the first pixel surface 11 can reflect light to the user along the first display direction a, so that the first pixel surface 11 is a bright surface when displayed along the first display direction a.

[0034] The second pixel surface 12 refers to the other inner wall surface corresponding to the first pixel grid 10 along the second display direction b; for example, when the user observes along the second display direction b and into the first pixel grid 10, the corresponding inner wall surface observed by the user's line of sight is the second pixel surface 12.

[0035] The second pixel surface 12 is set perpendicular to the display end surface 100a. Therefore, when the user observes the first pixel grid 10 along the second display direction b, the second pixel surface 12 cannot directly reflect light along the second display direction b. Thus, when the user observes the first pixel grid 10 along the second display direction b, the second pixel surface 12 appears as a dark surface.

[0036] When the first pixel grid 10 is observed along the first display direction a, the first pixel grid 10 appears as a bright pixel grid; when the first pixel grid 10 is observed along the second display direction b, the first pixel grid 10 appears as a dark pixel grid.

[0037] The third pixel surface 21 refers to an inner wall surface of the second pixel grid 20 along the first display direction a; for example, when the user observes along the first display direction a and into the second pixel grid 20, the corresponding inner wall surface observed by the user's line of sight is the third pixel surface 21.

[0038] The third pixel surface 21 is set perpendicular to the display end surface 100a. Therefore, when the user observes the second pixel grid 20 along the first display direction a, the third pixel surface 21 cannot directly reflect light along the first display direction a. Thus, when the user observes the second pixel grid 20 along the first display direction a, the third pixel surface 21 appears as a dark surface.

[0039] The fourth pixel surface 22 refers to the other inner wall surface of the second pixel grid 20 along the second display direction b; for example, when the user observes along the second display direction b and into the second pixel grid 20, the corresponding inner wall surface observed by the user's line of sight is the fourth pixel surface 22.

[0040] The fourth pixel surface 22 is perpendicular to the display end surface 100a. Therefore, when the user observes along the second display direction b and into the second pixel grid 20, the fourth pixel surface 22 can reflect light to the user along the second display direction b, so that the fourth pixel surface 22 is a bright surface when displayed along the second display direction b.

[0041] That is, when the second pixel grid 20 is observed along the first display direction a, the second pixel grid 20 appears as a dark pixel grid, and when the second pixel grid 20 is observed along the second display direction b, the second pixel grid 20 appears as a bright pixel grid.

[0042] Therefore, based on the arrangement and combination of the first pixel grid 10 and the second pixel grid 20, when the user observes the display end face 100a of the decorative element 100 from the first display direction a, the bright first pixel grid 10 and the dark second pixel grid 20 can be combined to form the first display pattern 110; similarly, when the user observes the display end face 100a of the decorative element 100 from the second display direction b, the dark first pixel grid 10 and the bright second pixel grid 20 can be combined to form the second display pattern 120.

[0043] The decorative component 100 provided in this application embodiment has a first pixel grid 10 and a second pixel grid 20 set on the display end face 100a. In the first display direction a, the first pixel surface 11 of the first pixel grid 10 is a bright surface, and the third pixel surface 21 of the second pixel grid 20 is a dark surface. Thus, a first display pattern 110 can be formed by combining the first pixel surfaces 11 of multiple first pixel grids 10 and the third pixel surfaces 21 of multiple second pixel grids 20. At the same time, in the second display direction b, the second pixel surface 12 of the first pixel grid 10 is a dark surface. The fourth pixel surface 22 of the second pixel grid 20 is a bright surface. Therefore, the second pixel surface 12 of multiple first pixel grids 10 and the fourth pixel surface 22 of multiple second pixel grids 20 can be combined to form a second display pattern 120. Thus, the decorative part 100 provided in this application embodiment can display different first display patterns 110 and second display patterns 120 on the display end face 100a side by adjusting to the first display direction a or the second display direction b, thereby effectively improving the display performance of the decorative part 100 to meet the user's usage needs.

[0044] Please refer to Figures 1 to 5 In some embodiments, a third pixel grid 30 is further provided on the display end face 100a. Along the first display direction a, the third pixel grid 30 has a fifth pixel surface 31, which is perpendicular to the first display direction a and is configured to be a bright surface in the first display direction a. Along the second display direction b, the third pixel grid 30 has a sixth pixel surface 32, which is perpendicular to the second display direction b and is configured to be a bright surface in the second display direction b. Along the first display direction a, the first pixel surfaces 11 of multiple first pixel grids 10, the third pixel surfaces 21 of multiple second pixel grids 20, and the fifth pixel surfaces 31 of multiple third pixel grids 30 are combined to form a first display pattern 110. Along the second display direction b, the second pixel surfaces 12 of multiple first pixel grids 10, the fourth pixel surfaces 22 of multiple second pixel grids 20, and the sixth pixel surfaces 32 of multiple third pixel grids 30 are combined to form a second display pattern 120.

[0045] The number of third pixel grids 30 can be any number, such as one, two, three, or more than three. The third pixel grids 30 can be set at any location on the display end face 100a, so that the third pixel grids 30 can work together with the first pixel grids 10 and the second pixel grids 20 to form a display effect.

[0046] It should be understood that the third pixel grid 30 is a recessed hole structure formed on the display end face 100a. The fifth pixel surface 31 refers to an inner wall surface of the third pixel grid 30 along the first display direction a; for example, when a user observes along the first display direction a and into the third pixel grid 30, the corresponding inner wall surface observed by the user's line of sight is the fifth pixel surface 31.

[0047] The fifth pixel surface 31 is perpendicular to the first display direction a. Therefore, when the user observes along the first display direction a and into the third pixel grid 30, the fifth pixel surface 31 can reflect light to the user along the first display direction a, so that the fifth pixel surface 31 is a bright surface when displayed along the first display direction a.

[0048] The sixth pixel surface 32 refers to the other inner wall surface of the third pixel grid 30 along the second display direction b; for example, when the user observes along the second display direction b and into the third pixel grid 30, the corresponding inner wall surface observed by the user's line of sight is the sixth pixel surface 32.

[0049] The sixth pixel surface 32 is perpendicular to the second display direction b. Therefore, when the user observes along the second display direction b and into the third pixel grid 30, the sixth pixel surface 32 can reflect light to the user along the second display direction b, so that the sixth pixel surface 32 is a bright surface when displayed along the second display direction b.

[0050] When the third pixel grid 30 is observed along the first display direction a, the third pixel grid 30 appears as a bright pixel grid; when the third pixel grid 30 is observed along the second display direction b, the third pixel grid 30 appears as a bright pixel grid.

[0051] With this configuration, the third pixel grid 30 can be combined and arranged with the first pixel grid 10 and the second pixel grid 20 on the display end face 100a. When the user observes the display end face 100a of the decorative element 100 along the first display direction a, the first pixel surface 11 of multiple first pixel grids 10, the third pixel surface 21 of multiple second pixel grids 20, and the fifth pixel surface 31 of multiple third pixel grids 30 combine to form a first display pattern 110. Simultaneously, when the user observes the display end face 100a of the decorative element 100 along the second display direction b, the second pixel surface 12 of multiple first pixel grids 10, the fourth pixel surface 22 of multiple second pixel grids 20, and the sixth pixel surface 32 of multiple third pixel grids 30 combine to form a second display pattern 120. The third pixel grid 30, which can simultaneously display a bright color in both the first display direction a and the second display direction b, enhances the display effect of the display end face 100a, providing a wider selection of the first display pattern 110 and the second display pattern 120, thereby further enhancing the displayability of the decorative element 100.

[0052] Please refer to Figures 1 to 5 In some embodiments, a fourth pixel grid 40 is further formed on the display end face 100a. Along the first display direction a, the fourth pixel grid 40 has a seventh pixel surface 41, which is perpendicular to the display end face 100a and is configured to be dark in the first display direction a; along the second display direction b, the fourth pixel grid 40 has an eighth pixel surface 42, which is perpendicular to the display end face 100a and is configured to be dark in the second display direction b; along the first display direction a, a plurality of first The first pixel surface 11 of pixel grid 10, the third pixel surface 21 of multiple second pixel grids 20, the fifth pixel surface 31 of multiple third pixel grids 30, and the seventh pixel surface 41 of multiple fourth pixel grids 40 are combined to form a first display pattern 110; along the second display direction b, the second pixel surface 12 of multiple first pixel grids 10, the fourth pixel surface 22 of multiple second pixel grids 20, the sixth pixel surface 32 of multiple third pixel grids 30, and the eighth pixel surface 42 of multiple fourth pixel grids 40 are combined to form a second display pattern 120.

[0053] The number of fourth pixel grids 40 can be any number, such as one, two, three, or more than three. The fourth pixel grids 40 can be set at any location on the display end face 100a, so that the fourth pixel grids 40 can be used together with the first pixel grid 10, the second pixel grid 20, and the third pixel grid 30 to form a display effect.

[0054] It should be understood that the fourth pixel grid 40 is a recessed hole structure formed on the display end face 100a. The seventh pixel surface 41 refers to an inner wall surface of the fourth pixel grid 40 along the first display direction a; for example, when a user observes along the first display direction a and into the fourth pixel grid 40, the corresponding inner wall surface observed by the user's line of sight is the seventh pixel surface 41.

[0055] The seventh pixel surface 41 is set perpendicular to the display end surface 100a. Therefore, when the user observes the fourth pixel grid 40 along the first display direction a, the seventh pixel surface 41 cannot directly reflect light along the first display direction a. Thus, when the user observes the fourth pixel grid 40 along the first display direction a, the seventh pixel surface 41 appears as a dark surface.

[0056] The eighth pixel surface 42 refers to the other inner wall surface corresponding to the fourth pixel grid 40 along the second display direction b; for example, when the user observes along the second display direction b and into the fourth pixel grid 40, the corresponding inner wall surface observed by the user's line of sight is the eighth pixel surface 42.

[0057] The eighth pixel surface 42 is set perpendicular to the display end surface 100a. Therefore, when the user observes the fourth pixel grid 40 along the second display direction b, the eighth pixel surface 42 cannot directly reflect light along the second display direction b. Thus, when the user observes the fourth pixel grid 40 along the second display direction b, the eighth pixel surface 42 appears as a dark surface.

[0058] When the fourth pixel 40 is observed along the first display direction a, the fourth pixel 40 appears as a dark pixel; when the fourth pixel 40 is observed along the second display direction b, the fourth pixel 40 appears as a dark pixel.

[0059] With this configuration, the fourth pixel grid 40 can be combined with the first pixel grid 10, the second pixel grid 20, and the third pixel grid 30 and arranged on the display end face 100a. This allows the user to observe the display end face 100a of the decorative element 100 along the first display direction a, where the first pixel face 11 of the multiple first pixel grids 10, the third pixel face 21 of the multiple second pixel grids 20, the fifth pixel face 31 of the multiple third pixel grids 30, and the seventh pixel face 41 of the multiple fourth pixel grids 40 combine to form the first display pattern 110. At the same time, when the user observes the display end face 100a of the decorative element 100 along the second display direction b, the second pixel face 12 of the multiple first pixel grids 10, the fourth pixel face 22 of the multiple second pixel grids 20, the sixth pixel face 32 of the multiple third pixel grids 30, and the eighth pixel face 42 of the multiple fourth pixel grids 40 combine to form the second display pattern 120. Among them, the fourth pixel grid 40, which can simultaneously present a dark color in the first display direction a and the second display direction b, can further improve the display effect of the display end face 100a, so that the first display pattern 110 and the second display pattern 120 can have more choices, thereby further improving the display of the decorative part 100.

[0060] Please refer to Figures 1 to 5 In some embodiments, the first display direction a and the second display direction b are located in the same plane.

[0061] In this embodiment, the first display direction a and the second display direction b can be set to be located in the same plane; for example, the first display direction a and the second display direction b can be located in either plane perpendicular to the display end face 100a.

[0062] With this configuration, by setting the first display direction a and the second display direction b to be located in the same plane, when observing, the user only needs to flip the decorative piece 100 along the same angle to switch the observation direction to the first display direction a or the second display direction b, which can effectively improve the display effect of the decorative piece 100.

[0063] Please refer to Figures 1 to 5 In some embodiments, the angle between the first display direction a and the display end face 100a is α, where 0° < α < 90°.

[0064] In this embodiment, the angle α between the first display direction a and the display end face 100a is limited to greater than 0° and less than 90°, that is, the angle α between the first display direction a and the display end face 100a is an acute angle.

[0065] Optionally, the angle α between the first display direction a and the display end face 100a can be, but is not limited to, 10°, 15°, 20°, 25°, 30°, 35°, 40°, 45°, 50°, 55°, 60°, 65°, 70°, 75°, 80°, 85°, etc.

[0066] With this configuration, the angle α between the first display direction a and the display end face 100a can be set to an acute angle, so that the user can observe the display end face 100a at an angle tilted to the display end face 100a, so as to facilitate the display of the first display pattern 110.

[0067] In some embodiments, preferably, the angle α between the first display direction a and the display end face 100a can be further limited to greater than or equal to 30° and less than or equal to 75°, so as to further optimize the angle between the first display direction a and the display end face 100a, thereby facilitating the user to observe and operate the display end face 100a through the first display direction a.

[0068] Please refer to Figures 1 to 5 In some embodiments, the angle between the first display direction a and the display end face 100a is 45°, and the angle between the first pixel surface 11 and the display end face 100a is 45°.

[0069] In this embodiment, the angle between the first display direction a and the display end face 100a is further defined as 45°, so that the angle between the first pixel surface 11 and the display end face 100a is 45°.

[0070] Under these conditions, when a user observes the display end face 100a along the first display direction a, the user will not get too close to the display end face 100a, thus affecting the observation. At the same time, the angle between the first display direction a and the display end face 100a will not be set too large, resulting in the angle between the first pixel surface 11 and the display end face 100a being too small, thereby avoiding affecting the switching observation process between the first display pattern 110 and the second display pattern 120. In this way, the display effect of the decorative part 100 can be effectively improved.

[0071] Please refer to Figures 1 to 5 In some embodiments, the angle between the second display direction b and the display end face 100a is β, where 0° < β < 90°.

[0072] In this embodiment, the angle β between the second display direction b and the display end face 100a is limited to greater than 0° and less than 90°, that is, the angle β between the second display direction b and the display end face 100a is an acute angle.

[0073] Optionally, the angle β between the second display direction b and the display end face 100a may be, but is not limited to, 10°, 15°, 20°, 25°, 30°, 35°, 40°, 45°, 50°, 55°, 60°, 65°, 70°, 75°, 80°, 85°, etc.

[0074] With this configuration, the angle β between the second display direction b and the display end face 100a can be set to an acute angle, so that the user can observe the display end face 100a at an angle tilted to the display end face 100a, so as to facilitate the display of the second display pattern 120.

[0075] Please refer to Figures 1 to 5 In some embodiments, the angle between the second display direction b and the display end face 100a is 135°, and the angle between the fourth pixel surface 22 and the display end face 100a is 45°.

[0076] In this embodiment, the angle between the second display direction b and the display end face 100a is further defined as 45°, so that the angle between the fourth pixel surface 22 and the display end face 100a is 45°.

[0077] Under these conditions, when a user observes the display surface 100a along the second display direction b, the user will not get too close to the display surface 100a, thus affecting the observation. At the same time, the angle between the second display direction b and the display surface 100a will not be set too large, resulting in the angle between the fourth pixel surface 22 and the display surface 100a being too small, thereby avoiding affecting the switching observation process between the first display pattern 110 and the second display pattern 120. In this way, the display effect of the decorative piece 100 can be effectively improved.

[0078] Please refer to Figures 1 to 5 In some embodiments, the angle between the fifth pixel surface 31 and the display end surface 100a is 45°.

[0079] In this embodiment, the angle between the fifth pixel surface 31 and the display end surface 100a is 45°.

[0080] Under these conditions, when a user observes the display end face 100a along the first display direction a, the user will not get too close to the display end face 100a, thus affecting the observation action. At the same time, the angle between the fifth pixel surface 31 and the display end face 100a will not be too small, thereby effectively reducing the impact on the switching observation process of the first display pattern 110 and the second display pattern 120. In this way, the display effect of the decorative part 100 can be effectively improved.

[0081] Please refer to Figures 1 to 5 In some embodiments, the angle between the sixth pixel surface 32 and the display end surface 100a is 45°.

[0082] In this embodiment, the angle between the sixth pixel surface 32 and the display end surface 100a is 45°.

[0083] Under these conditions, when a user observes the display end face 100a along the second display direction b, the user will not get too close to the display end face 100a, thus affecting the observation action. At the same time, the angle between the sixth pixel surface 32 and the display end face 100a will not be too small, thereby effectively reducing the impact on the switching observation process of the first display pattern 110 and the second display pattern 120. In this way, the display effect of the decorative part 100 can be effectively improved.

[0084] For example, in some embodiments, taking a commemorative coin as an example, one side of the commemorative coin can serve as a display surface 100a, and a first pixel grid 10, a second pixel grid 20, a third pixel grid 30, and a fourth pixel grid 40 can be simultaneously arranged on the display surface 100a. The first pixel grid 10, the second pixel grid 20, the third pixel grid 30, and the fourth pixel grid 40 can be arranged in an array and fill the display surface 100a. In this way, in the first display direction a, the user can observe as follows: Figure 4 The first display pattern 110 shown can be observed by the user in the second display direction b, as follows: Figure 5 The second display pattern 120 is shown.

[0085] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A decorative element, characterized in that: The decorative component includes a display end face, which has a first display direction and a second display direction that intersect each other, and a plurality of first pixel grids and a plurality of second pixel grids are formed on the display end face; Along the first display direction, the first pixel grid has a first pixel surface, which is perpendicular to the first display direction and is configured to be a bright surface in the first display direction; along the second display direction, the first pixel grid has a second pixel surface, which is perpendicular to the display end face and is configured to be a dark surface in the second display direction. Along the first display direction, the second pixel grid has a third pixel surface; the third pixel surface is perpendicular to the display end surface and is configured to be a dark surface in the first display direction; along the second display direction, the second pixel grid has a fourth pixel surface, the fourth pixel surface is perpendicular to the second display direction and is configured to be a bright surface in the second display direction; The first pixel grid and the second pixel grid are arranged on the display end face. Along the first display direction, the first pixel face of the first pixel grid and the third pixel face of the second pixel grid are combined to form a first display pattern. Along the second display direction, the second pixel face of the first pixel grid and the fourth pixel face of the second pixel grid are combined to form a second display pattern.

2. The decorative component according to claim 1, characterized in that: The display end face is also provided with a third pixel grid. Along the first display direction, the third pixel grid has a fifth pixel surface, which is perpendicular to the first display direction and is configured to be a bright surface in the first display direction. Along the second display direction, the third pixel grid has a sixth pixel surface, which is perpendicular to the second display direction and is configured to be a bright surface in the second display direction. Along the first display direction, the first pixel face of a plurality of first pixel grids, the third pixel face of a plurality of second pixel grids, and the fifth pixel face of a plurality of third pixel grids are combined to form a first display pattern; Along the second display direction, the second pixel face of a plurality of first pixel grids, the fourth pixel face of a plurality of second pixel grids, and the sixth pixel face of a plurality of third pixel grids are combined to form a second display pattern.

3. The decorative component according to claim 2, characterized in that: The display end face is also provided with a fourth pixel grid. Along the first display direction, the fourth pixel grid has a seventh pixel surface, which is perpendicular to the display end face and is configured to be dark in the first display direction. Along the second display direction, the fourth pixel grid has an eighth pixel surface, which is perpendicular to the display end face and is configured to be dark in the second display direction. Along the first display direction, the first pixel face of a plurality of first pixel grids, the third pixel face of a plurality of second pixel grids, the fifth pixel face of a plurality of third pixel grids, and the seventh pixel face of a plurality of fourth pixel grids are combined to form a first display pattern; Along the second display direction, the second pixel face of a plurality of first pixel grids, the fourth pixel face of a plurality of second pixel grids, the sixth pixel face of a plurality of third pixel grids, and the eighth pixel face of a plurality of fourth pixel grids are combined to form a second display pattern.

4. The decorative component according to claim 3, characterized in that: The first display direction and the second display direction are located in the same plane.

5. The decorative element according to claim 4, characterized in that: The angle between the first display direction and the display end face is α, where 0° < α < 90°.

6. The decorative element according to claim 5, characterized in that: The angle between the first display direction and the display end face is 45°, and the angle between the first pixel surface and the display end face is 45°.

7. The decorative element according to any one of claims 4 to 6, characterized in that: The angle between the second display direction and the display end face is β, where 0° < β < 90°.

8. The decorative element according to claim 7, characterized in that: The angle between the second display direction and the display end face is 135°, and the angle between the fourth pixel face and the display end face is 45°.

9. The decorative element according to claim 7, characterized in that: The angle between the fifth pixel surface and the display end surface is 45°.

10. The decorative element according to claim 8, characterized in that: The angle between the sixth pixel surface and the display end surface is 45°.