Hexagonal automatic lock catch red wine package

The hexagonal automatic locking red wine packaging that is cut and folded by corrugated cardboard is automatically locked and stable using the principle of reverse folding force, solving the problems of complex structure, uneco-friendly and low practicality of existing red wine packaging, and achieving environmentally friendly and high practical packaging effect.

CN223046132UActive Publication Date: 2025-07-01GUANGDONG VOION ECO PACKAGING IND CO LTD
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Patent Information

Application Number
CN202422361336.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-07-01
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

The existing red wine packaging structure is complex, not environmentally friendly, and has low practicality.

Method used

It adopts hexagonal automatic locking red wine packaging cut and folded from corrugated cardboard, including the cylinder and the base, and automatically locks and stabilizes through the principle of reverse folding force.

Benefits of technology

It has achieved environmental protection, simple structure and convenient molding, with good practicality and box opening experience, reduced quantity and lightweight, convenient and fast production, processing and assembly, low cost and high recycling rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a hexagonal automatic lock catch red wine package which comprises a barrel body and a base arranged at the bottom of the barrel body, and the barrel body comprises a first folding face A, a second folding face A, a third folding face A, a fourth folding face A, a fifth folding face A, a sixth folding face A and a seventh folding face A which are formed by cutting and folding a corrugated board. Abutting surfaces A are formed on one sides of the first folding surface A, the second folding surface A, the third folding surface A, the fifth folding surface A, the sixth folding surface A and the seventh folding surface A in the width direction, and abutting surfaces B are formed on the other sides of the first folding surface A, the second folding surface A, the third folding surface A, the fourth folding surface A, the fifth folding surface A, the sixth folding surface A and the seventh folding surface A in the width direction; the bottom folding surface is formed by cutting and folding a corrugated board, and the first folding surface B, the second folding surface B, the third folding surface B, the fourth folding surface B, the fifth folding surface B and the sixth folding surface B are sequentially formed on the six sides of the bottom folding surface. The packaging box is formed by folding corrugated paper, conforms to the concept of environmental protection and is convenient to form.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, in particular to a hexagonal automatic lock red wine packaging. Background Art

[0002] Chinese authorized publication number CN 215400115 U, with the authorized publication date of January 4, 2022, discloses a split wine box, including a base, a cover sleeve and a positioning tube. A fixing plate is fixed on the upper edge of the base, a protection plate is fixed at the end of the fixing plate, and a channel for the wine bottle to pass through is formed between adjacent protection plates. The cover sleeve is placed on the base. An installation hole is formed on the fixing plate, a positioning hole is formed on the side wall of the cover sleeve, the positioning tube passes through the installation hole and the positioning hole, a clamping plate for abutting against the inner wall of the cover sleeve is hinged on the side wall of the positioning tube, and a locking sleeve for abutting against the outer wall of the fixing plate is threadedly connected to the outer wall of the positioning tube. A transmission mechanism for driving the clamping plate to flip is arranged on the positioning tube. The utility model has the following advantages and effects: This scheme uses a new structure to achieve the purpose of not easily causing the wine bottle to break. The defects of the prior art are: complex structure, not environmentally friendly, and low practicability. In view of this situation, it is urgent to improve. Content of the Utility Model

[0003] Based on this, the purpose of the utility model is to provide a hexagonal automatic lock red wine packaging, which is folded from corrugated paper, conforms to the concept of environmental protection, has a simple structure, is convenient to form, and has high practicability.

[0004] The utility model provides a hexagonal automatic lock red wine packaging, including a cylinder with an opening at the bottom and a base arranged at the bottom of the cylinder. The cylinder includes a first folding surface A, a second folding surface A, a third folding surface A, a fourth folding surface A, a fifth folding surface A, a sixth folding surface A, and a seventh folding surface A which are cut and folded from a corrugated cardboard. Abutting surfaces A are formed on one side in the width direction of the first folding surface A, the second folding surface A, the third folding surface A, the fifth folding surface A, the sixth folding surface A, and the seventh folding surface A. Abutting surfaces B are formed on the other side in the width direction of the first folding surface A, the second folding surface A, the third folding surface A, the fourth folding surface A, the fifth folding surface A, the sixth folding surface A, and the seventh folding surface A. A cover surface is formed on the side of the fourth folding surface A away from the abutting surface B. Pressing parts are cut on the sides of the third folding surface A and the sixth folding surface A close to the abutting surface B.

[0005] When in the formed state, the second folding surface A, the third folding surface A, the fourth folding surface A, the fifth folding surface A, the sixth folding surface A, and the seventh folding surface A are sequentially folded to form a hexahedron-shaped cylinder. The first folding surface A is bonded to the seventh folding surface A. Each abutting surface A is horizontally folded by 90°. Each abutting surface B is folded towards the inner cavity of the cylinder. The cover surface is horizontally folded by 90°.

[0006] The cylindrical body includes a bottom folding surface formed by cutting and folding a corrugated cardboard, and a first folding surface B, a second folding surface B, a third folding surface B, a fourth folding surface B, a fifth folding surface B, and a sixth folding surface B formed successively on six sides of the bottom folding surface. An inward folding surface A is formed at the free end of the second folding surface B, an inward folding surface B is formed at the free end of the third folding surface B, an inward folding surface C is formed at the free end of the fifth folding surface B, and an inward folding surface D is formed at the free end of the sixth folding surface B. Pressing relief grooves for cooperating with the pressing part are respectively provided on the first folding surface B and the fourth folding surface B. A fastening folding surface A is formed at the free end of the first folding surface B, and a fastening folding surface B is formed at the free end of the fourth folding surface B;

[0007] When in the formed state, the first folding surface B, the second folding surface B, the third folding surface B, the fourth folding surface B, the fifth folding surface B, and the sixth folding surface B are all folded upward by 90°, the inward folding surface A, the inward folding surface B, the inward folding surface C, and the inward folding surface D are all folded inward, and the fastening folding surface A and the fastening folding surface B are both folded outward to form a hexahedron-shaped base;

[0008] After the red wine bottle is placed in the base, the base and the red wine bottle are placed into the inner cavity of the cylindrical body from the upper part of the cylindrical body. The fastening folding surface A is correspondingly inserted into the connection between the sixth folding surface A and the abutting surface B, and the fastening folding surface B is correspondingly inserted into the connection between the third folding surface A and the abutting surface B to achieve a locking relationship.

[0009] Preferably, the angle at which each abutting surface B is folded toward the inner cavity of the cylindrical body is M, and M > 120°.

[0010] Preferably, the angle at which the inward folding surface A, the inward folding surface B, the inward folding surface C, and the inward folding surface D are all folded toward the inside of the base is N, and N > 120°.

[0011] The beneficial effects of the present utility model are as follows: The cylindrical body and the base respectively formed by cutting and folding a corrugated cardboard conform to the concept of environmental protection, skillfully utilize the principle of reverse folding force to prevent the base from loosening, facilitate automatic locking when closing, have good practicability and opening experience, realize reduction, light weight in the packaging structure, have a simple structure, are convenient to form, are convenient and fast in production, processing and assembly, have low cost, and have a high recycling rate. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a three-dimensional view of the present utility model in the assembled state.

[0013] Figure 2 It is a schematic diagram of the present utility model in the disassembled state (with the product).

[0014] Figure 3Schematic diagram for comparison of the flat unfolded state and the folded and formed state of the cylinder body.

[0015] Figure 4 Schematic diagram for comparison of the flat unfolded state and the folded and formed state of the base.

[0016] Reference numerals are: cylinder body 10, pressing part 11, red wine bottle 12, base 13, inner folding surface C14, abutting surface B15, abutting surface A16, cover surface 17, first folding surface A18, second folding surface A19, third folding surface A20, fourth folding surface A21, fifth folding surface A22, sixth folding surface A23, seventh folding surface A24, bottom folding surface 25, pressing relief groove 26, fastening folding surface A27, fastening folding surface B28, first folding surface B29, inner folding surface A30, second folding surface B31, third folding surface B32, inner folding surface B33, inner folding surface D34, fourth folding surface B35, fifth folding surface B36, sixth folding surface B37. Detailed implementation manners

[0017] To further understand the features, technical means, specific purposes and functions achieved by the present invention, the present invention will be further described in detail below in conjunction with the detailed implementation manners and the drawings.

[0018] In the present invention, unless otherwise clearly specified and defined, terms such as "installation", "connection", "connection", "fixation" and other terms should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0019] Please refer to Figures 1-4 As shown, the present invention provides a hexagonal automatic locking red wine package, including a cylinder body 10 with an opening at the bottom and a base 13 arranged at the bottom of the cylinder body 10. The cylinder body 10 includes a first folding surface A18, a second folding surface A19, a third folding surface A20, a fourth folding surface A21, a fifth folding surface A22, a sixth folding surface A23, and a seventh folding surface A24 which are cut and folded from a corrugated cardboard. Abutting surfaces A16 are formed on one side in the width direction of the first folding surface A18, the second folding surface A19, the third folding surface A20, the fifth folding surface A22, the sixth folding surface A23, and the seventh folding surface A24. Abutting surfaces B15 are formed on the other side in the width direction of the first folding surface A18, the second folding surface A19, the third folding surface A20, the fourth folding surface A21, the fifth folding surface A22, the sixth folding surface A23, and the seventh folding surface A24. A cover surface 17 is formed on one side of the fourth folding surface A21 away from the abutting surface B15. Pressing parts 11 are cut on one side of the third folding surface A20 and the sixth folding surface A23 close to the abutting surface B15.

[0020] When in the forming state, the second folding surface A19, the third folding surface A20, the fourth folding surface A21, the fifth folding surface A22, the sixth folding surface A23, and the seventh folding surface A24 are folded in sequence to form a hexahedral cylinder 10, the first folding surface A18 is bonded to the seventh folding surface A24, each abutting surface A16 is folded horizontally at 90°, each abutting surface B15 is folded toward the inner cavity of the cylinder 10, and the cover surface 17 is folded horizontally at 90°.

[0021] The cylinder 10 includes a bottom folding surface 25 formed by cutting and folding a corrugated cardboard, and a first folding surface B29, a second folding surface B31, a third folding surface B32, a fourth folding surface B35, a fifth folding surface B36, and a sixth folding surface B37 formed on six sides of the bottom folding surface 25 in sequence. The free end of the second folding surface B31 is formed with an inverted folding surface A30, the free end of the third folding surface B32 is formed with an inverted folding surface B33, the free end of the fifth folding surface B36 is formed with an inverted folding surface C14, and the free end of the sixth folding surface B37 is formed with an inverted folding surface D34. The first folding surface B29 and the fourth folding surface B35 are both provided with a pressing and giving way groove 26 that cooperates with the pressing portion 11. The free end of the first folding surface B29 is formed with a fastening folding surface A27, and the free end of the fourth folding surface B35 is formed with a fastening folding surface B28.

[0022] When in the forming state, the first folding surface B29, the second folding surface B31, the third folding surface B32, the fourth folding surface B35, the fifth folding surface B36, and the sixth folding surface B37 are all folded upwards 90°, the inward folding surface A30, the inward folding surface B33, the inward folding surface C14, and the inward folding surface D34 are all folded inward, and the fastening folding surface A27 and the fastening folding surface B28 are all folded outwards to form a hexahedral base 13.

[0023] When the red wine bottle 12 is placed in the base 13, the base 13 and the red wine bottle 12 are placed from the upper part of the cylinder 10 into the inner cavity of the cylinder 10, and the fastening folded surface A27 is correspondingly inserted into the connection between the sixth folded surface A23 and the abutting surface B15, and the fastening folded surface B28 is correspondingly inserted into the connection between the third folded surface A20 and the abutting surface B15 to achieve a locking relationship. When unlocking is required, the pressing parts 11 on both sides are pressed by hand, so that the fastening folded surface A27 and the fastening folded surface B28 are retracted inwardly in the direction of the pressing clearance groove 26 by a predetermined distance and then separated from the abutting surface B15, and then the base 13 is separated from the outside of the cylinder 10 under the action of gravity.

[0024] Each abutting surface B15 is folded toward the inner cavity of the cylinder 10 at an angle M, M>120°. When in the forming state, after the base 13 is located in the cylinder 10, the physical properties of the corrugated paperboard itself make each abutting surface B15 have a certain elasticity, so as to abut against the outer side surface of the base 13, thereby strengthening the stability of the base 13 in the cylinder 10.

[0025] The angles at which the inner folding surfaces A30, B33, C14, and D34 are folded inwardly towards the base 13 are all N, where N > 120°. When in the formed state, due to the physical properties of the corrugated cardboard itself, the inner folding surfaces A30, B33, C14, and D34 have a certain elasticity, so as to abut against the outer side surface of the red wine bottle 12, strengthening the stability of the red wine bottle 12 within the base 13.

[0026] The utility model is respectively composed of a cylinder body and a base formed by cutting and folding a corrugated cardboard, which conforms to the concept of environmental protection. It cleverly uses the principle of reverse folding force to prevent the base from loosening, is convenient for closing and automatically locking, has good practicability and an excellent box-opening experience. It realizes reduction, lightweight in the packaging structure, has a simple structure, is convenient to form, and is convenient and fast for production, processing, and assembly. It has a low cost and a high recycling rate.

[0027] The above embodiments only represent one implementation mode of the utility model, and the description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the utility model, several modifications and improvements can still be made, and these all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.

Claims

1. A hexagonal automatic locking red wine package, comprising a cylinder (10) with an opening at the bottom and a base (13) arranged at the bottom of the cylinder (10), characterized in that: The cylinder (10) comprises a first folding surface A (18), a second folding surface A (19), a third folding surface A (20), a fourth folding surface A (21), a fifth folding surface A (22), a sixth folding surface A (23), and a seventh folding surface A (24) formed by cutting and folding a corrugated cardboard, wherein one side of the first folding surface A (18), the second folding surface A (19), the third folding surface A (20), the fifth folding surface A (22), the sixth folding surface A (23), and the seventh folding surface A (24) in the width direction is formed with a contact surface A (16), The first folding surface A (18), the second folding surface A (19), the third folding surface A (20), the fourth folding surface A (21), the fifth folding surface A (22), the sixth folding surface A (23), and the seventh folding surface A (24) are all formed with abutting surfaces B (15) on the other side of the width direction; the fourth folding surface A (21) is formed with a cover surface (17) on the side away from the abutting surface B (15); and the third folding surface A (20) and the sixth folding surface A (23) are formed with a pressing portion (11) on the side close to the abutting surface B (15); When in the forming state, the second folding surface A (19), the third folding surface A (20), the fourth folding surface A (21), the fifth folding surface A (22), the sixth folding surface A (23), and the seventh folding surface A (24) are folded in sequence to form a hexahedral cylinder (10), the first folding surface A (18) is bonded to the seventh folding surface A (24), each of the abutting surfaces A (16) is folded horizontally at 90 degrees, each of the abutting surfaces B (15) is folded toward the inner cavity of the cylinder (10), and the cover surface (17) is folded horizontally at 90 degrees; The cylinder (10) comprises a bottom folding surface (25) formed by cutting and folding a corrugated cardboard, and a first folding surface B (29), a second folding surface B (31), a third folding surface B (32), a fourth folding surface B (35), a fifth folding surface B (36), and a sixth folding surface B (37) formed in sequence on six sides of the bottom folding surface (25), wherein the free end of the second folding surface B (31) is formed with an inverted folding surface A (30), and the free end of the third folding surface B (32) is formed with an inverted folding surface B (33 ), the free end of the fifth folding surface B (36) is formed with an inward folding surface C (14), the free end of the sixth folding surface B (37) is formed with an inward folding surface D (34), the first folding surface B (29) and the fourth folding surface B (35) are both provided with a pressing groove (26) cooperating with the pressing portion (11), the free end of the first folding surface B (29) is formed with a fastening folding surface A (27), and the free end of the fourth folding surface B (35) is formed with a fastening folding surface B (28); When in the forming state, the first folding surface B (29), the second folding surface B (31), the third folding surface B (32), the fourth folding surface B (35), the fifth folding surface B (36), and the sixth folding surface B (37) are all folded upward by 90 degrees, the inward folding surface A (30), the inward folding surface B (33), the inward folding surface C (14), and the inward folding surface D (34) are all folded inwardly, and the fastening folding surface A (27) and the fastening folding surface B (28) are all folded outwardly to form a hexahedral base (13); When the red wine bottle (12) is placed in the base (13), the base (13) and the red wine bottle (12) are placed from the upper part of the cylinder (10) into the inner cavity of the cylinder (10), the fastening folded surface A (27) is correspondingly inserted into the connection between the sixth folded surface A (23) and the abutting surface B (15), and the fastening folded surface B (28) is correspondingly inserted into the connection between the third folded surface A (20) and the abutting surface B (15), thereby realizing a locking relationship.

2. The hexagonal automatic locking red wine package according to claim 1, characterized in that: Each of the abutment surfaces B (15) is folded toward the inner cavity of the cylinder (10) at an angle of M, where M>120°.

3. The hexagonal automatic locking red wine package according to claim 1, characterized in that: The inward folding surface A (30), the inward folding surface B (33), the inward folding surface C (14), and the inward folding surface D (34) are all folded inwardly toward the base (13) at an angle of N, where N>120°.