Double bottle packaging box
The double-bottle packaging box design, which uses corrugated cardboard with integrated cutting and crease lines, solves the problems of weak fixation and insufficient cushioning in existing technologies. It achieves simple and efficient bottle fixation and protection, reduces costs, and improves stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN JINDONG HUAMING CARTON FACTORY
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-21
Smart Images

Figure CN224529286U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of packaging box technology, and in particular relates to a double-bottle packaging box. Background Technology
[0002] Cardboard boxes are widely used in bottled product packaging, covering the packaging needs of various products such as beverages, alcoholic beverages, and condiments. They not only provide robust external protection for bottled products, preventing breakage or deformation due to collisions and compression during transportation and storage, but also offer stable support and collective protection for glass or plastic bottles, ensuring product safety at every stage. Furthermore, cardboard boxes are highly customizable, allowing for flexible design based on the shape, size, and quantity of bottled products, achieving efficient packaging combinations, saving space, and facilitating stacking and handling.
[0003] In practical applications of bottled packaging, it has been found that a single packaging box is needed to accommodate the storage of two bottles. Existing double-bottle packaging boxes have some defects and shortcomings. First, many double-bottle packaging boxes use a separate structure for the outer box and inner liner. The inner liner is relatively simple, with poor fixing and shock absorption performance, causing the bottles to easily shake inside the packaging and be easily damaged during transportation. Second, while some packaging boxes have better cushioning performance, their complex structure makes it impossible to achieve a single-piece molding process, resulting in higher raw material consumption and costs. Summary of the Invention
[0004] To address the problems existing in the prior art, this utility model provides a double-bottle packaging box that avoids the issues of insecure padding and insufficient cushioning performance in split structures. By using crease lines to achieve the bending and insertion of inserts, the inner cavity of the packaging box can be divided into two independent storage areas, effectively securing the two bottled products, preventing them from colliding or shaking during transportation, providing good cushioning protection, and ensuring that each bottle remains stable in its own area, avoiding shaking.
[0005] This utility model is implemented as follows: a double-bottle packaging box, which is made of corrugated paper cut in one piece and folded with crease lines. It includes four side panels that can be bent and connected in sequence. Each side panel has a top panel that can be bent at the upper end. Two top panels that are spaced apart are respectively provided with insertion holes and insertion plates. Crease lines are provided at the connection between the insertion plate and the top panel. The insertion plate is bent through the crease lines and inserted into the insertion hole, dividing the inner cavity of the packaging box into two storage areas.
[0006] Furthermore, the four side panels respectively include a first side panel, a second side panel, a third side panel, and a fourth side panel. A first indentation line is provided at the connection between the first side panel and the second side panel, a second indentation line is provided at the connection between the second side panel and the third side panel, and a third indentation line is provided at the connection between the third side panel and the fourth side panel.
[0007] Furthermore, a first top plate is provided at the upper end of the first side plate, a fourth indentation line is provided at the connection between the first side plate and the first top plate, a first insert plate is provided at the upper end of the first top plate, and a fifth indentation line is provided at the connection between the first insert plate and the first top plate.
[0008] The upper end of the second side plate is provided with a second top plate, and a sixth indentation line is provided at the connection between the second side plate and the second top plate. A first insertion hole is provided on the second top plate along the vertical direction, and a seventh indentation line and an eighth indentation line are provided on the second top plate at intervals.
[0009] The upper end of the third side plate is provided with a third top plate, and a ninth indentation line is provided at the connection between the third side plate and the third top plate. The upper end of the third top plate is provided with a second insert plate, and a tenth indentation line is provided at the connection between the second insert plate and the second top plate.
[0010] The upper end of the fourth side plate is provided with a fourth top plate. An eleventh indentation line is provided at the connection between the fourth side plate and the fourth top plate. A second insertion hole is provided on the fourth top plate along the vertical direction. A twelfth indentation line and a thirteenth indentation line are provided on the fourth top plate at intervals.
[0011] Furthermore, toothed lines are arranged overlappingly on the seventh, eighth, twelfth, and thirteenth indentation lines.
[0012] Furthermore, the lower end of the first side plate is provided with a first base plate, and the connection between the first side plate and the first base plate is provided with a fourteenth indentation line; the lower end of the second side plate is provided with a second base plate, and the connection between the second side plate and the second base plate is provided with a fifteenth indentation line; the lower end of the third side plate is provided with a third base plate, and the connection between the third side plate and the third base plate is provided with a sixteenth indentation line; the lower end of the fourth side plate is provided with a fourth base plate, and the connection between the fourth side plate and the fourth base plate is provided with a seventeenth indentation line.
[0013] Furthermore, a tongue is provided at the right end of the first side plate, and an eighteenth indentation line is provided at the connection between the tongue and the first side plate.
[0014] Furthermore, the insertion hole is an elongated hole with an opening width of 8 mm.
[0015] The advantages and technical effects of this utility model are as follows: Due to the adoption of the above-mentioned technical solution, the corrugated paper is integrally cut and formed, resulting in a simple structure and low cost. This reduces production processes and material waste, and avoids the problems of insecure padding and insufficient cushioning performance in split structures. Assembly is simple and quick through the folding method using crease lines, facilitating mass production. Secondly, by setting insertion holes and plates on the top plate, and using crease lines to achieve bending and insertion of the plates, the inner cavity of the packaging box can be divided into two independent storage areas, effectively securing the two bottled products and preventing them from colliding or shaking during transportation. This provides good cushioning protection, ensuring that each bottle remains stable within its respective area and avoiding shaking. Furthermore, this design fully utilizes the strength and cushioning performance of corrugated paper, enhancing the overall stability of the packaging box. Attached Figure Description
[0016] Figure 1 This is a plan view of the double-bottle packaging box provided in this embodiment of the utility model.
[0017] In the diagram: 1. First side panel; 2. Second side panel; 3. Third side panel; 4. Fourth side panel; 5. First top panel; 6. Second top panel; 7. Third top panel; 8. Fourth top panel; 9. First bottom panel; 10. Second bottom panel; 11. Third bottom panel; 12. Fourth bottom panel; 13. First insert plate; 14. First insertion hole; 15. Second insert plate; 16. Second insertion hole; 17. Side tongue; 18. First crease line; 19. Second crease line; 20. 21. Third indentation line; 22. Fourth indentation line; 23. Fifth indentation line; 24. Sixth indentation line; 25. Seventh indentation line; 26. Eighth indentation line; 27. Ninth indentation line; 28. Tenth indentation line; 29. Eleventh indentation line; 30. Twelfth indentation line; 31. Thirteenth indentation line; 32. Fourteenth indentation line; 33. Fifteenth indentation line; 34. Sixteenth indentation line; 35. Seventeenth indentation line; 36. Eighteenth indentation line. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this utility model.
[0019] It should be noted that the terms "upper", "lower", "left", "right", "top", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model 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. Therefore, they should not be construed as limitations on this utility model.
[0020] like Figure 1As shown, this application provides a double-bottle packaging box. The packaging box is made of corrugated paper cut in one piece and folded with crease lines. It includes four side panels that can be bent and connected in sequence. Each side panel has a top panel that can be bent at the upper end. Two top panels that are spaced apart are respectively provided with insertion holes and insertion plates. Crease lines are provided at the connection between the insertion plate and the top panel. The insertion plate is bent through the crease lines and inserted into the insertion hole, dividing the inner cavity of the packaging box into two storage areas.
[0021] Furthermore, the four side panels respectively include a first side panel 1, a second side panel 2, a third side panel 3, and a fourth side panel 4. A first indentation line 18 is provided at the connection between the first side panel 1 and the second side panel 2, a second indentation line 19 is provided at the connection between the second side panel 2 and the third side panel 3, and a third indentation line 20 is provided at the connection between the third side panel 3 and the fourth side panel 4.
[0022] Furthermore, a first top plate 5 is provided at the upper end of the first side plate 1, a fourth indentation line 21 is provided at the connection between the first side plate 1 and the first top plate 5, a first insert plate 13 is provided at the upper end of the first top plate 5, and a fifth indentation line 22 is provided at the connection between the first insert plate 13 and the first top plate 5.
[0023] The upper end of the second side plate 2 is provided with a second top plate 6. A sixth indentation line 23 is provided at the connection between the second side plate 2 and the second top plate 6. A first insertion hole 14 is provided on the second top plate 6 along the vertical direction. A seventh indentation line 24 and an eighth indentation line 25 are provided on the second top plate 6 at intervals.
[0024] The upper end of the third side plate 3 is provided with a third top plate 7, and a ninth indentation line 26 is provided at the connection between the third side plate 3 and the third top plate 7. The upper end of the third top plate 7 is provided with a second insert plate 15, and a tenth indentation line 27 is provided at the connection between the second insert plate 15 and the second top plate 6.
[0025] The upper end of the fourth side plate 4 is provided with a fourth top plate 8. An eleventh indentation line 28 is provided at the connection between the fourth side plate 4 and the fourth top plate 8. A second insertion hole 16 is provided on the fourth top plate 8 along the vertical direction. A twelfth indentation line 29 and a thirteenth indentation line 30 are provided on the fourth top plate 8 at intervals.
[0026] Furthermore, toothed lines are overlapped on the seventh indentation line 24, the eighth indentation line 25, the twelfth indentation line 29, and the thirteenth indentation line 30.
[0027] Furthermore, the lower end of the first side plate 1 is provided with a first base plate 9, and the connection between the first side plate 1 and the first base plate 9 is provided with a fourteenth indentation line 31; the lower end of the second side plate 2 is provided with a second base plate 10, and the connection between the second side plate 2 and the second base plate 10 is provided with a fifteenth indentation line 32; the lower end of the third side plate 3 is provided with a third base plate 11, and the connection between the third side plate 3 and the third base plate 11 is provided with a sixteenth indentation line 33; the lower end of the fourth side plate 4 is provided with a fourth base plate 12, and the connection between the fourth side plate 4 and the fourth base plate 12 is provided with a seventeenth indentation line 34.
[0028] Furthermore, a tongue 17 is provided at the right end of the first side plate 1, and an eighteenth indentation line 35 is provided at the connection between the tongue 17 and the first side plate 1.
[0029] Furthermore, the insertion hole is an elongated hole with an opening width of 8 mm.
[0030] The advantages and technical effects of this utility model are as follows: Due to the adoption of the above-mentioned technical solution, the corrugated paper is integrally cut and formed, resulting in a simple structure and low cost. This reduces production processes and material waste, and avoids the problems of insecure padding and insufficient cushioning performance in split structures. Assembly is simple and quick through the folding method using crease lines, facilitating mass production. Secondly, by setting insertion holes and plates on the top plate, and using crease lines to achieve bending and insertion of the plates, the inner cavity of the packaging box can be divided into two independent storage areas, effectively securing the two bottled products and preventing them from colliding or shaking during transportation. This provides good cushioning protection, ensuring that each bottle remains stable within its respective area and avoiding shaking. Furthermore, this design fully utilizes the strength and cushioning performance of corrugated paper, enhancing the overall stability of the packaging box.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A double-bottle packaging box, characterized in that, The packaging box is made of corrugated cardboard cut into one piece and folded with crease lines. It includes four side panels that can be bent and connected in sequence. Each side panel has a top panel that can be bent at the upper end. Two top panels that are spaced apart are respectively provided with insertion holes and insertion plates. Crease lines are provided at the connection between the insertion plates and the top panels. The insertion plates are bent through the crease lines and inserted into the insertion holes, dividing the inner cavity of the packaging box into two storage areas.
2. The dual vial packaging case of claim 1, wherein, The four side panels include a first side panel, a second side panel, a third side panel, and a fourth side panel. A first indentation line is provided at the connection between the first side panel and the second side panel, a second indentation line is provided at the connection between the second side panel and the third side panel, and a third indentation line is provided at the connection between the third side panel and the fourth side panel.
3. The dual vial packaging case of claim 2, wherein, The upper end of the first side plate is provided with a first top plate, and a fourth indentation line is provided at the connection between the first side plate and the first top plate. The upper end of the first top plate is provided with a first insert plate, and a fifth indentation line is provided at the connection between the first insert plate and the first top plate. The upper end of the second side plate is provided with a second top plate, and a sixth indentation line is provided at the connection between the second side plate and the second top plate. A first insertion hole is provided on the second top plate along the vertical direction, and a seventh indentation line and an eighth indentation line are provided on the second top plate at intervals. The upper end of the third side plate is provided with a third top plate, and a ninth indentation line is provided at the connection between the third side plate and the third top plate. The upper end of the third top plate is provided with a second insert plate, and a tenth indentation line is provided at the connection between the second insert plate and the second top plate. The upper end of the fourth side plate is provided with a fourth top plate. An eleventh indentation line is provided at the connection between the fourth side plate and the fourth top plate. A second insertion hole is provided on the fourth top plate along the vertical direction. A twelfth indentation line and a thirteenth indentation line are provided on the fourth top plate at intervals.
4. The dual vial packaging case of claim 3, wherein, Toothed lines are arranged on the seventh, eighth, twelfth, and thirteenth indentation lines.
5. The dual vial packaging case of claim 2, wherein, The lower end of the first side plate is provided with a first base plate, and the connection between the first side plate and the first base plate is provided with a fourteenth indentation line; the lower end of the second side plate is provided with a second base plate, and the connection between the second side plate and the second base plate is provided with a fifteenth indentation line; the lower end of the third side plate is provided with a third base plate, and the connection between the third side plate and the third base plate is provided with a sixteenth indentation line; the lower end of the fourth side plate is provided with a fourth base plate, and the connection between the fourth side plate and the fourth base plate is provided with a seventeenth indentation line.
6. The dual vial packaging carton of claim 2, wherein, The right end of the first side plate is provided with a tongue, and the connection between the tongue and the first side plate is provided with an eighteenth indentation line.
7. The dual vial packaging carton of claim 1, wherein, The insertion hole is an elongated hole with an opening width of 8 mm.