Stereo buckle self-standing box

CN224782580UActive Publication Date: 2026-09-22SUZHOU YIXIANG BOUNDLESS CULTURE CO LTD
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Patent Information

Application Number
CN202521482805.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-16
Publication Date
2026-09-22
Estimated Expiration
2035-07-16

AI Technical Summary

Technical Problem

[0002]目前的纸质(食品)包装盒,大都为千篇一律的长方体形,虽然可以通过在盒体表面印刷或压刻图案配合色彩来提升其外形美观度,但盒体那呆板的长方体外形终归没有改变,视觉上易给人以十分普通的感觉,致使包装盒的视觉美观度、新颖性、趣味性都难以得到突破性提升

Benefits of technology

[0007]本实用新型的有益效果是:该立体卡扣自立盒突破了目前包装盒常规的长方体形设计局限,造型新颖别致,能够给人以“图案立体”的视觉效果,不仅美观,且富趣味性;并且,其通体采用一体成型的卡扣式设计(即插扣与扣槽相配合的扣接方式),免胶折装,生产便利、无污染,盒体的打开也十分方便,不会损坏盒体。

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Abstract

The utility model relates to a kind of three-dimensional buckle self-standing box, which is folded and assembled by paperboard after die cutting and indentation.The paperboard has a three-dimensional surface, a bottom surface, a back surface and a front surface from top to bottom.The upper part of the three-dimensional surface has an outline surface, and linear creases I are formed between the three-dimensional surface and the bottom surface.Linear creases II are formed between the bottom surface and the back surface, and linear creases III are formed between the back surface and the front surface.Each side of the three-dimensional surface has an insertion buckle I and an insertion buckle II.Each side of the back surface has a side surface I and a side surface II, which are approximately isosceles triangles.Each side of the front surface has a side surface III and a side surface IV, which are approximately isosceles triangles.The three-dimensional buckle self-standing box has a novel and unique shape, which can provide a visual effect of "three-dimensional pattern".It is not only beautiful, but also interesting.The entire box is designed in a one-piece buckle type, which is glue-free, convenient to produce, pollution-free, easy to open and will not damage the box.
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Description

Technical Field

[0001] This utility model relates to the field of packaging box technology, and in particular to a three-dimensional snap-lock self-standing box. Background Technology

[0002] Most current paper (food) packaging boxes are rectangular in shape. Although the appearance can be improved by printing or embossing patterns and colors on the surface of the box, the rigid rectangular shape of the box remains unchanged. Visually, it gives people a very ordinary feeling, making it difficult to achieve a breakthrough in the visual appeal, novelty, and fun of the packaging box. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a three-dimensional snap-lock self-standing box to overcome the defects and shortcomings of the existing technology and products as described in the background art.

[0004] The technical solution adopted by this utility model to solve its technical problem is as follows: a three-dimensional snap-on self-standing box, which is made of cardboard that has been die-cut and creasing. The cardboard has a three-dimensional surface, a bottom surface, a back surface, and a front surface from top to bottom. The upper part of the three-dimensional surface has an outline. A straight crease I is formed between the three-dimensional surface and the bottom surface, a straight crease II is formed between the bottom surface and the back surface, and a straight crease III is formed between the back surface and the front surface. Each side of the three-dimensional surface has a snap fastener I and a snap fastener II. Straight creases IV and V are formed between the three-dimensional surface and snap fasteners I and II, respectively. Snap grooves I and II are punched on straight creases IV and V, respectively. Each side of the back surface has an approximately isosceles triangle side 1 and a side 2. Side 1 and side 2 are symmetrical about the back surface. The back surface and side 1 and side 2 are respectively symmetrical. The front has two curved creases, I and II, with grooves III and IV punched on them respectively. On each side of the front, there are approximately isosceles triangular sides III and IV, symmetrical about the front. Curved creases III and IV are formed between the front and sides III and IV respectively, with grooves V and VI punched on them, and buckles III and IV formed simultaneously. Each side of side III and IV has buckles V and VI along its edge, with curved crease V between side III and buckle V, and curved crease VI between side IV and buckle VI. Each side of side III and IV has a bottom fold I and bottom fold II, with a straight crease VI between side III and bottom fold I, and a straight crease VII between side IV and bottom fold II.

[0005] When folding cardboard into a box:

[0006] The back and front are folded together along straight crease III to form the two main sides of the box. Side I overlaps with side III to form one side of the box, with side I on the inside and side III on the outside. Snap V is fastened into snap groove III. Side II overlaps with side IV to form the other side of the box, with side II on the inside and side IV on the outside. Snap VI is fastened into snap groove IV. Bottom folds I and II are folded inwards along straight creases VI and VII, respectively. The bottom surface is folded along straight crease II to form the bottom of the box, covering and supporting bottom folds I and II. The three-dimensional surface is raised along straight crease I and positioned in front of the front. Snap I is fastened into snap groove V, and simultaneously snap III is fastened into snap groove I, forming a cross snap. Snap II is fastened into snap groove VI, and simultaneously snap IV is fastened into snap groove II, forming a cross snap.

[0007] The beneficial effects of this utility model are: the three-dimensional snap-lock self-standing box breaks through the conventional rectangular shape design limitations of current packaging boxes, with a novel and unique shape that gives people a "three-dimensional pattern" visual effect, which is not only beautiful but also interesting; in addition, the whole body adopts an integrated snap-lock design (that is, the snap-locking method in which the snap and the snap slot cooperate), which eliminates the need for glue disassembly and assembly, making production convenient and pollution-free, and the box is also very easy to open without damaging the box. Attached Figure Description

[0008] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0009] Figure 1 This is a schematic diagram of the planar structure of the present invention after it is unfolded into a cardboard (dashed lines represent folds).

[0010] Figure 2 This is a side view of the structure of this utility model;

[0011] Figure 3 This is a three-dimensional structural diagram of the present invention.

[0012] In the diagram: 1. Three-dimensional surface; 1-1. Buckle I; 1-2. Buckle II; 1-3. Straight crease IV; 1-4. Straight crease V; 1-5. Snap groove I; 1-6. Snap groove II; 1-7. Outline view; 2. Bottom surface; 3. Back; 4. Front; 5. Straight crease I; 6. Straight crease II; 7. Straight crease III; 8. Side I; 9. Side II; 10. Curved crease I; 10-1. Snap groove III; 11. Curved crease II; 11-1. Snap groove IV; 12. Side III; 12-1. Buckle V; 12-2. Curved crease V; 12-3. Bottom overlap I; 12-4. Straight crease VI; 13. Side IV; 13-1. Buckle VI; 13-2. Curved crease VI; 13-3. Bottom overlap II; 13-4. Straight crease VII; 14. Curved crease III; 14-1. Button groove V; 14-2. Button III; 15. Curved crease IV; 15-1. Button groove VI; 15-2. Button IV. Detailed Implementation

[0013] A three-dimensional snap-on self-standing box, such as Figures 1 to 3As shown, it is made of die-cut and creasing cardboard folded together. The cardboard has, from top to bottom, a three-dimensional surface 1, a bottom surface 2, a back surface 3, and a front surface 4. The upper part of the three-dimensional surface 1 has outline patterns 1-7. A straight crease I5 is formed between the three-dimensional surface 1 and the bottom surface 2, a straight crease II6 is formed between the bottom surface 2 and the back surface 3, and a straight crease III7 is formed between the back surface 3 and the front surface 4. Each side of the three-dimensional surface 1 has a snap fastener I1-1 and a snap fastener II1-2. The three-dimensional surface 1 is connected to the snap fasteners I1-1 and II1-2 respectively. Straight creases IV1-3 and V1-4 are formed, with notch I1-5 and notch II1-6 punched on them respectively. On both sides of the back face 3, approximately isosceles triangular lateral faces I8 and II9 are formed, symmetrical about the back face 3. Between the back face 3 and lateral faces I8 and II9, curved creases I10 and II11 are formed, with notch III10 punched on them respectively. 1. The front side 4 has approximately isosceles triangular side surfaces Ⅲ12 and Ⅳ13 on both sides. Side surfaces Ⅲ12 and Ⅳ13 are symmetrical about the front side 4. Arc-shaped creases Ⅲ14 and Ⅳ15 are formed between the front side 4 and side surfaces Ⅲ12 and Ⅳ13 respectively. Fastening grooves Ⅴ14-1 and Ⅵ15-1 are punched on arc-shaped creases Ⅲ14 and Ⅳ15 respectively, and buckles Ⅲ14-2 and Ⅳ15-2 are formed simultaneously. Side surfaces Ⅲ12 and Ⅳ13... Each side edge of 13 has a buckle V12-1 and a buckle VI13-1. An arc crease V12-2 is formed between side III12 and buckle V12-1, and an arc crease VI13-2 is formed between side IV13 and buckle VI13-1. The lower edges of side III12 and side IV13 each have a bottom fold I12-3 and a bottom fold II13-3. A straight crease VI12-4 is formed between side III12 and bottom fold I12-3, and a straight crease VII13-4 is formed between side IV13 and bottom fold II13-3.

[0014] Fold the cardboard into a box. Fold the back (3) and front (4) along straight crease III7 to form the two main sides of the box. Overlap side I (8) and side III (12) to form one side of the box, with side I (8) on the inside and side III (12) on the outside. Fastener V (12-1) is inserted into fastener slot III (10-1). Overlap side II (9) and side IV (13) to form the other side of the box, with side II (9) on the inside and side IV (13) on the outside. Fastener VI (13-1) is inserted into fastener slot IV (11-1). The bottom overlaps I (12-3) and II (13-3) are folded along straight crease III (7) to form the two main sides of the box. Fold Ⅵ12-4 and straight fold Ⅶ13-4 inwards, and bottom surface 2 is folded through straight fold Ⅱ6 to form the bottom of the box. Bottom surface 2 covers and supports bottom clasp Ⅰ12-3 and bottom clasp Ⅱ13-3. Three-dimensional surface 1 is raised through straight fold Ⅰ5 and is located in front of front surface 4. Snap Ⅰ1-1 is inserted into snap groove Ⅴ14-1 and snap Ⅲ14-2 is inserted into snap groove Ⅰ1-5 to form a cross snap. Snap Ⅱ1-2 is inserted into snap groove Ⅵ15-1 and snap Ⅳ15-2 is inserted into snap groove Ⅱ1-6 to form a cross snap.

[0015] See Figure 2 , Figure 3 Because the sides of the box are approximately isosceles triangles (with two curved sides), the entire box has a shape that is narrow at the top and wide at the bottom, making it a vertical box. Its two main surfaces (front 4 and back 3) are also curved. Because the cardboard has a certain degree of elasticity, the upper part of the three-dimensional surface 1 and its outline 1-7 will not adhere to the surface of the front 4 (the further up you go, the greater the distance between the outline 1-7 and the front 4 (i.e., the further apart they are)). Instead, it will float in front of the front 4. In this way, the outline 1-7 on the upper part of the three-dimensional surface 1 will give people a "three-dimensional pattern" visual effect, thereby enhancing the visual aesthetics of the box and giving people a sense of fun.

[0016] It should be noted that the outlines 1-7 on the upper part of the three-dimensional surface 1 can be freely designed and changed as needed (such as buildings, flowers, trees, people, animals, etc.). For example, in the attached drawings of this embodiment, it is designed as a pagoda outline.

[0017] This three-dimensional snap-lock self-standing box adopts a one-piece snap-lock design (that is, the snap-locking method in which the snap and the snap slot match), which eliminates the need for glue and makes production convenient and pollution-free. The box is also very easy to open without damaging it.

[0018] The above embodiments are only used to explain the present utility model and are not intended to limit the protection of the present utility model. Any non-substantial modifications made based on the essential solution of the present utility model shall fall within the protection scope of the present utility model.

Claims

1. A three-dimensional snap-lock self-standing box, characterized in that: It is made of cardboard that has been die-cut and creasing. The cardboard has a three-dimensional surface (1), a bottom surface (2), a back surface (3), and a front surface (4) from top to bottom. The upper part of the three-dimensional surface (1) has an outline surface (1-7). A straight crease I (5) is formed between the three-dimensional surface (1) and the bottom surface (2). A straight crease II (6) is formed between the bottom surface (2) and the back surface (3). A straight crease III (7) is formed between the back surface (3) and the front surface (4). The three-dimensional surface (1) has buckles I (1-1) and buckles II (1-2) on both sides. Straight creases IV (1-3) and V (1-4) are formed between the three-dimensional surface (1) and buckles I (1-1) and buckles II (1-2), respectively. Buckle grooves I (1-5) and II (1-6) are punched on straight creases IV (1-3) and V (1-4), respectively. On both sides of the back (3), there are approximately isosceles triangles I (8) and II (9). I (8) and II (9) are symmetrical about the back (3). Arc crease I (10) and arc crease II (11) are formed between the back (3) and I (8) and II (9), respectively. On arc crease I (10) and arc crease II (11), buckle grooves III (10-1) and IV (11-1) are punched, respectively. On both sides of the front (4), there are approximately isosceles triangle side surfaces Ⅲ (12) and Ⅳ (13). Side surfaces Ⅲ (12) and Ⅳ (13) are symmetrical about the front (4). Arc creases Ⅲ (14) and Ⅳ (15) are formed between the front (4) and side surfaces Ⅲ (12) and Ⅳ (13), respectively. On arc creases Ⅲ (14) and Ⅳ (15), buckle grooves Ⅴ (14-1) and Ⅵ (15-1) are punched, and buckle Ⅲ (14-2) and buckle Ⅳ (15-2) are formed at the same time. The side edges of side Ⅲ (12) and side Ⅳ (13) are each equipped with buckle Ⅴ (12-1) and buckle Ⅵ (13-1). An arc crease Ⅴ (12-2) is formed between side Ⅲ (12) and buckle Ⅴ (12-1), and an arc crease Ⅵ (13-2) is formed between side Ⅳ (13) and buckle Ⅵ (13-1). The lower edges of side Ⅲ (12) and side Ⅳ (13) are each equipped with bottom lining Ⅰ (12-3) and bottom lining Ⅱ (13-3). A straight crease Ⅵ (12-4) is formed between side Ⅲ (12) and bottom lining Ⅰ (12-3), and a straight crease Ⅶ (13-4) is formed between side Ⅳ (13) and bottom lining Ⅱ (13-3). When folding cardboard into a box: The back (3) and front (4) are folded together along the straight crease III (7) to form the two main sides of the box; Side I (8) and side III (12) overlap to form one side of the box, with side I (8) on the inside and side III (12) on the outside. Snap V (12-1) is inserted into snap groove III (10-1). Side II (9) and side IV (13) overlap to form the other side of the box, with side II (9) on the inside and side IV (13) on the outside. Snap VI (13-1) is inserted into snap groove IV (11-1). Bottom layer I (12-3) and bottom layer II (13-3) are folded inwards through straight fold lines VI (12-4) and VII (13-4) respectively. The bottom surface (2) is folded inwards through straight fold line II (6) to form the bottom of the box. The bottom surface (2) covers and supports bottom layer I (12-3) and bottom layer II (13-3). The three-dimensional surface (1) is erected through the straight fold line I (5) and is located in front of the front (4). The buckle I (1-1) is inserted into the buckle groove V (14-1) and the buckle III (14-2) is inserted into the buckle groove I (1-5) at the same time, forming a cross buckle; the buckle II (1-2) is inserted into the buckle groove VI (15-1) and the buckle IV (15-2) is inserted into the buckle groove II (1-6) at the same time, forming a cross buckle.