Three-dimensional point diamond handicraft

By splicing multiple panels to form a three-dimensional structure and then applying diamond dots to it, and using connectors and slots for connection, the problem of insufficient fun and aesthetics caused by the flat structure of existing diamond craft paintings is solved, thus achieving a high level of fun and aesthetics in three-dimensional diamond dotting crafts.

CN223443190UActive Publication Date: 2025-10-17ZHEJIANG LIFESHINE ARTS CO LTD
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Patent Information

Application Number
CN202422944811.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-17
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The canvas and drawing board of the existing diamond craft painting are flat structures, resulting in low interest and aesthetics.

Method used

A three-dimensional structure is formed by splicing multiple panels together, and spot drilling is performed on the three-dimensional structure. Connectors and slots are used to connect the panels, and adhesive and protective layers are combined to ensure the bonding of the diamond units.

Benefits of technology

It enhances the fun and aesthetics of the handicrafts, making the rhinestone handicrafts appear three-dimensional and improving their appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a three-dimensional point diamond handicraft which comprises a plurality of splice plates and a plurality of diamond units, and the splice plates are spliced and combined to form a three-dimensional structure; at least one side of the splice plate is provided with a diamond surface, the diamond surface is provided with a pattern layer, the pattern layer comprises a diamond area and a pattern area, the diamond area is provided with an adhesive layer, and the adhesive layer is provided with a protective layer which can be torn off from the adhesive layer; inserting pieces are arranged on the peripheries of the splicing plates in a protruding mode, and / or inserting grooves are formed in the splicing plates in the thickness direction in a penetrating mode; the two mutually connected splice plates are connected by inserting and matching the inserting pieces and the inserting grooves; the diamond unit is used for covering the diamond dispensing area through the adhesive layer after the protective layer is torn off from the splice plate. By the adoption of the scheme, the three-dimensional diamond-dotted artware is provided, a plurality of splice plates are spliced and combined to form a three-dimensional structure, and diamond dotting is conducted on the three-dimensional structure.
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Description

Technical Field

[0001] The utility model belongs to the field of handicrafts, and in particular relates to a three-dimensional point drilling handicraft. Background Art

[0002] Diamond craft paintings are handicrafts in which designers combine exquisite and sparkling flat-bottomed diamonds with well-designed patterns. The painter only needs to stick the diamonds extracted by the dot drill tool on the corresponding symbols on the canvas or drawing board to complete the pasting of a diamond, and then slowly fill in the area corresponding to each symbol, which is quite interesting.

[0003] The shortcomings of existing diamond craft paintings are that the canvas and the drawing board are both flat structures, and the painter only performs point drilling on the plane of the canvas and the drawing board, which is less interesting; and the processed diamond craft paintings are only presented in a flat surface, which is less beautiful. Utility Model Content

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a three-dimensional spot drilling handicraft which is formed by splicing and assembling multiple splicing plates into a three-dimensional structure and performing spot drilling on the three-dimensional structure.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A three-dimensional spot drilling handicraft, characterized in that: it comprises multiple splicing panels and multiple diamond units, each of the splicing panels is used to be spliced ​​and combined to form a three-dimensional structure; at least one side of the splicing panel is provided with a spot drilling surface, and the spot drilling surface is provided with a pattern layer, the pattern layer includes a spot drilling area and a graphic area, an adhesive layer is provided on the spot drilling area, and a protective layer that can be peeled off from the adhesive layer is provided on the adhesive layer; the outer periphery of the splicing panel is protruded with a plug-in piece, and / or the splicing panel is provided with a plug-in slot along the thickness direction; the two splicing panels connected to each other are connected by plugging the plug-in piece into the plug-in slot; the diamond unit is used to cover the spot drilling area through the adhesive layer after the protective layer is peeled off from the splicing panel.

[0007] The utility model is further configured as follows: a plurality of spot drill marks arranged at intervals are provided in the spot drill area, the spot drill marks are used to indicate specific spot drill positions of the diamond unit, and the diamond unit is spot drilled to the spot drill marks to cover the spot drill marks.

[0008] The utility model is further configured such that the shape and size of the protective layer are adapted to the shape and size of the spot drilling surface so as to cover the spot drilling surface.

[0009] The utility model further sets up: the plug groove is long rectangular parallelepiped setting, and the width size of plug groove and the thickness size of splicing board are compatible, the plug piece is the trapezoidal body setting with the shape size adaptation of plug groove, the plug piece is provided with two opposite first side and two opposite second side, two first side is respectively with the two side of splicing board is coplanar, two second side is far from splicing board direction and mutually close.

[0010] The utility model further sets up: the plug groove is provided with third side which is surrounded by length side and depth side, at least one third side is provided with the ridge.

[0011] The utility model further sets up: the ridge is long strip shape along the depth direction of plug groove, and the length both ends of ridge and the two side of splicing board are coplanar, and / or, the ridge is three prism, and one side of ridge and third side are coincident.

[0012] The utility model further sets up: the material quality of splicing board selects plank or plastic board or rubber board.

[0013] The utility model further sets up: each splicing board is divided into: bottom plate, only one point drill surface is set up on bottom plate, and the point drill surface is set up on the upper surface of bottom plate, only the plug groove is set up on bottom plate, at least one first side plate, the lower end of first side plate is provided with plug piece, so that the plug piece on first side plate and the plug groove on bottom plate are inserted and cooperate to realize the connection of bottom plate and first side plate, at least one second side plate, the first side plate and second side plate form annular structure, the second side plate is connected with first side plate through the plug piece and the plug groove, and / or, the lower end of second side plate is provided with plug piece to make the plug piece on second side plate and the plug groove on bottom plate are inserted and cooperate to realize the connection of bottom plate and second side plate, and / or, two circumferential adjacent second side plates are connected through the plug piece and the plug groove.

[0014] The utility model further sets up: only one point drill surface is set up on first side plate and / or second side plate, and the point drill surface is set up on the outer circumferences of annular structure.

[0015] The utility model further sets up: each splicing board is further divided into: top plate, the top plate is connected with first side plate and / or second side plate through the plug piece and the plug groove.

[0016] By adopting the technical scheme, the designer firstly forms a three-dimensional structure by orderly splicing the splicing plates, then uncovers the protective layer on the splicing plates, and then orderly attaches the diamond units to the dot diamond area, and the existence of the adhesive layer in the dot diamond area can guarantee effective bonding of the diamond units, so that the dot diamond craftwork is more interesting, and the finished dot diamond craftwork is three-dimensional and more beautiful. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0018] Figure 1 is an assembly drawing of the specific embodiment of the present application;

[0019] Figure 2 is an assembly drawing of the specific embodiment of the present application;

[0020] Figure 3 is a sectional view of the splicing plate in the specific embodiment of the present application;

[0021] Figure 4 is Figure 2 is an enlarged view of A in the specific embodiment of the present application;

[0022] Figure 5 is Figure 2 is an enlarged view of B in the specific embodiment of the present application.

[0023] Explanation of reference signs: 1, splicing plate; 11, dot diamond surface; 2, pattern layer; 21, dot diamond area; 22, graphic area; 211, dot diamond mark; 3, adhesive layer; 4, protective layer; 5, plug-in part; 51, first side; 52, second side; 6, plug-in slot; 61, third side; 62, convex rib; 7, bottom plate; 8, first side plate; 9, second side plate; 10, top plate. DETAILED DESCRIPTION

[0024] In order to make the person skilled in the art better understand the utility model, so that the scope of protection of the utility model is more clearly limited, the utility model is described in detail below according to some specific embodiments of the utility model. It should be noted that the following is only some specific embodiments of the utility model concept, and only a part of the utility model, and the specific and direct description of the related structure is only for the convenience of understanding the utility model, and each specific feature does not limit the implementation range of the utility model directly and directly. The routine selection and replacement made by the person skilled in the art under the guidance of the utility model concept should be regarded as being within the scope of protection of the utility model.

[0025] As shown in Figures 1-5 The utility model discloses a three-dimensional dot drill handicraft, including many splicing boards 1 and many diamond units, each splicing board 1 is used to splice and combine to form Figure 1 As shown, the shape of the three-dimensional structure can be changed according to design, such as forming the shape of building, the shape of plant and animal, etc., wherein the diamond unit adopts flat bottom diamond, and the upper surface can be simple arc surface, also can be many rhombus combination surface, Figure 1 It is the state of splicing board 1 combination but not dot drilling, and the diamond unit is not shown in the embodiment.

[0026] In addition, at least one side of the splicing board 1 is provided with a dot drilling surface 11, the dot drilling surface 11 is provided with a pattern layer 2 by printing, pasting and the like, the pattern layer 2 includes a dot drilling area 21 and a graphic area 22, the dot drilling area 21 is provided with an adhesive layer 3, and the adhesive layer 3 is provided with a protective layer 4 that can be peeled off from the adhesive layer 3.

[0027] In addition, the outer periphery of the splicing board 1 is provided with a plug-in part 5, and / or the plug-in groove 6 is provided in the thickness direction on the splicing board 1, so that the two splicing boards 1 connected with each other are connected by plug-in cooperation of the plug-in part 5 and the plug-in groove 6.

[0028] The diamond unit is used to cover the dot drilling area 21 through the adhesive layer 3 after the protective layer 4 is peeled off from the splicing board 1.

[0029] Therefore, the designer first forms a three-dimensional structure by orderly splicing the splicing boards 1 with each other, then peels off the protective layer 4 on the splicing board 1, and then can orderly attach the diamond unit to the dot drilling area 21, and the existence of the adhesive layer 3 of the dot drilling area 21 can guarantee effective adhesion of the diamond unit, so that the interesting degree is higher, and the dot drilling handicraft after production is three-dimensional, more beautiful.

[0030] The splicing board 1 in the embodiment adopts a wooden board, and a plastic board, a rubber board and the like can be adopted in other embodiments.

[0031] Preferably, the spot drilling area 21 of this embodiment is provided with a plurality of spaced apart spot drilling marks 211. The spot drilling marks 211 are used to indicate the specific spot drilling positions of the diamond units. The diamond units are then drilled to the spot drilling marks 211 to cover the spot drilling marks 211. Specifically, the spot drilling marks 211 are circular and substantially conform to the outer shape of the diamond units. Different spot drilling marks 211 can be distinguished by internal numbers, graphics, text, or colors to correspond to diamond units of different shapes, colors, and sizes, making the finished spot drilling craftwork more beautiful.

[0032] Preferably, the shape and size of the protective layer 4 are adapted to the shape and size of the spot drilling surface 11 so as to cover the spot drilling surface 11, so that the protective layer 4 not only covers the adhesive layer 3 to prevent the adhesive layer 3 from sticking dust and affecting the viscosity, but also the protective layer 4 covers the spot drilling surface 11 to protect it from being scratched.

[0033] Preferably, the plug-in slot 6 in this embodiment is arranged in a rectangular parallelepiped, and the width of the plug-in slot 6 is adapted to the thickness of the splicing plate 1; correspondingly, the connector 5 is arranged in a trapezoidal body adapted to the shape and size of the plug-in slot 6, and the connector 5 is provided with two opposite first side surfaces 51 and two opposite second side surfaces 52, the two first side surfaces 51 are respectively coplanar with the two side surfaces of the splicing plate 1, and the two second side surfaces 52 are close to each other in the direction away from the splicing plate 1.

[0034] Therefore, the connector 5 is inserted into the insertion slot 6 so that a transition or interference fit is achieved under the action of the two first side surfaces 51, thereby ensuring the stability of the insertion. During the insertion process, due to the inclined setting of the two second side surfaces 52, the connector 5 is inserted into the insertion slot 6 from the end with a smaller area first, making the insertion smoother, and then gradually increasing the filling to ensure the positioning of the two ends of the length after the insertion is completed.

[0035] In addition, the plug-in slot 6 in this embodiment is provided with two third side surfaces 61 formed by the length side and the depth side, and at least one of the third side surfaces 61 is provided with a ridge 62, so that the gap between the first side surface 51 and the other three side surfaces is effectively filled by the ridge 62, thereby further improving the stability after the plug-in is completed.

[0036] Preferably, the ridge 62 is in the shape of a long strip extending along the depth direction of the plug-in slot 6, and the two end faces of the ridge 62 are coplanar with the two side faces of the splicing plate 1, so that when opening the plug-in slot 6, it is only necessary to move the cutting tool along the trajectory of the surface of the combined shape of the third side face 61 and the ridge 62, which makes processing more convenient.

[0037] Preferably, the ridge 62 is in the shape of a triangular prism, and one side of the ridge 62 coincides with the third side 61, so that the tip of the triangular prism-shaped ridge 62 is damaged after the connector 5 is inserted to make room for the connector 5 to be inserted, and the remaining ridge 62 after the insertion is completed effectively fills the gap between the first side 51 and the third side 61 to achieve a high-strength connection. In addition, when an unassembled splicing plate 1 is obtained, it can be determined whether it has been assembled by observing whether the ridge 62 is intact.

[0038] Specifically, each splicing plate 1 is divided into:

[0039] The bottom plate 7 is provided with only one spot-drilled surface 11, and the spot-drilled surface 11 is provided on the upper surface of the bottom plate 7, and only the plug-in slot 6 is provided on the bottom plate 7;

[0040] Two first side panels 8, with connectors 5 provided at the lower ends of the first side panels 8, so that the connectors 5 on the first side panels 8 and the connector slots 6 on the bottom panel 7 are plugged in and matched to realize the connection between the bottom panel 7 and the first side panels 8;

[0041] Two second side panels 9, a first side panel 8 and a second side panel 9 are arranged at intervals and enclosed to form an annular structure. The second side panels 9 are provided with connectors 5 on one side facing each first side panel 8 so that they are connected to the first side panels 8 through the connectors 5 and the connector grooves 6. The connectors 5 are provided at the lower ends of the second side panels 9 so that the connectors 5 on the second side panels 9 and the connector grooves 6 on the bottom panel 7 are plugged in and matched to realize the connection between the bottom panel 7 and the second side panels 9.

[0042] In other embodiments, two first side panels 8 are spliced ​​together, two second side panels 9 are spliced ​​together, and then the unspliced ​​ends are spliced ​​together.

[0043] The first side plate 8 and the second side plate 9 are each provided with only one spot-drilled surface 11 , and the spot-drilled surface 11 is provided on the outer periphery of the enclosed annular structure.

[0044] Therefore, in the three-dimensional structure formed by splicing, the designer can drill easily because the drilling surface 11 on the bottom plate 7 faces upward, and the designer can drill easily because the drilling surfaces 11 on the first side plate 8 and the second side plate 9 face outward.

[0045] In addition, each splicing plate 1 is further divided into:

[0046] The top plate 10 is provided with a plug-in slot 6 , and the plug-in component 5 is provided above the second side plate 9 so that the plug-in component 5 is plugged into and fitted with the plug-in slot 6 to connect with the second side plate 9 .

[0047] The above description of disclosed embodiments enables one of ordinary skill in the art to make or use the application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A three-dimensional point drilling craft, characterized by: It comprises a plurality of splicing plates (1) and a plurality of diamond units, wherein each of the splicing plates (1) is used for splicing and combining to form a three-dimensional structure; At least one side of the splicing plate (1) is provided with a drilled surface (11), a pattern layer (2) is provided on the drilled surface (11), the pattern layer (2) comprises a drilled area (21) and a graphic area (22), an adhesive layer (3) is provided on the drilled area (21), and a protective layer (4) that can be peeled off from the adhesive layer (3) is provided on the adhesive layer (3); The outer periphery of the splicing plate (1) is provided with a plug-in piece (5) protruding therefrom, and / or the splicing plate (1) is provided with a plug-in groove (6) penetrating along the thickness direction; The two interconnected splicing plates (1) are connected by plugging and fitting the plug-in piece (5) and the plug-in slot (6); the diamond unit is used to cover the spot drilling area (21) through the adhesive layer (3) after the protective layer (4) is peeled off from the splicing plate (1).

2. The three-dimensional spot drilling craft according to claim 1, characterized in that: A plurality of spot drill marks (211) are arranged at intervals in the spot drill area (21), and the spot drill marks (211) are used to indicate specific spot drill positions of the diamond unit, and the diamond unit is spot drilled to the spot drill marks (211) to cover the spot drill marks (211).

3. The three-dimensional spot drilling craft according to claim 1, characterized in that: The shape and size of the protective layer (4) are adapted to the shape and size of the spot-drilled surface (11) so as to cover the spot-drilled surface (11).

4. The three-dimensional spot drilling craft according to claim 1, characterized in that: The plug-in slot (6) is arranged in a rectangular parallelepiped, and the width of the plug-in slot (6) is adapted to the thickness of the splicing plate (1); The plug-in connector (5) is arranged in a trapezoidal shape that matches the shape and size of the plug-in slot (6). The plug-in connector (5) is provided with two opposite first side surfaces (51) and two opposite second side surfaces (52). The two first side surfaces (51) are respectively coplanar with the two side surfaces of the splicing plate (1), and the two second side surfaces (52) are close to each other in a direction away from the splicing plate (1).

5. The three-dimensional spot drilling craft according to claim 4, characterized in that: The plug-in slot (6) is provided with two third side surfaces (61) formed by enclosing length sides and depth sides, and at least one of the third side surfaces (61) is provided with a ridge (62).

6. The three-dimensional spot drilling craft according to claim 5, characterized in that: The ridge (62) is in the shape of a long strip extending along the depth direction of the insertion slot (6), and the two end faces of the ridge (62) are coplanar with the two side faces of the splicing plate (1); and / or, The ridge (62) is in the shape of a triangular prism, and one side surface of the ridge (62) overlaps with the third side surface (61).

7. The three-dimensional spot drilling craft according to claim 1, characterized in that: The material of the splicing plate (1) is a wooden board, a plastic board or a rubber board.

8. The three-dimensional spot drilling craft according to any one of claims 1 to 7, characterized in that: Each of the splicing plates (1) is divided into: A bottom plate (7), wherein only one of the spot-drilling surfaces (11) is provided on the bottom plate (7), and the spot-drilling surface (11) is provided on the upper surface of the bottom plate (7), and only the plug-in slot (6) is provided on the bottom plate (7); At least one first side panel (8), the lower end of the first side panel (8) being provided with the plug-in component (5), so that the plug-in component (5) on the first side panel (8) and the plug-in slot (6) on the bottom panel (7) are plugged into and matched with each other to realize the connection between the bottom panel (7) and the first side panel (8); At least one second side panel (9), the first side panel (8) and the second side panel (9) are enclosed to form an annular structure, the second side panel (9) is connected to the first side panel (8) by plugging and matching the plug-in component (5) and the plug-in slot (6), and / or, the plug-in component (5) is arranged at the lower end of the second side panel (9) so that the plug-in component (5) on the second side panel (9) and the plug-in slot (6) on the bottom panel (7) are plug-fitted to realize the connection between the bottom panel (7) and the second side panel (9), and / or, two circumferentially adjacent second side panels (9) are connected by plugging and matching the plug-in component (5) and the plug-in slot (6).

9. The three-dimensional spot drilling craft according to claim 8, characterized in that: The first side plate (8) and / or the second side plate (9) is provided with only one spot-drilled surface (11), and the spot-drilled surface (11) is provided on the outer periphery of the enclosed annular structure.

10. The three-dimensional spot drilling craft according to claim 8, characterized in that: Each of the splicing panels (1) is further divided into a top panel (10), and the top panel (10) is connected to the first side panel (8) and / or the second side panel (9) by plugging and fitting the plug-in component (5) and the plug-in slot (6).