Degradable display environment-friendly package
By designing biodegradable paper display packaging, and utilizing slots and clamping structures in the upper and lower paper cards, the problems of traditional display packaging materials being difficult to degrade and lacking stability are solved, achieving an environmentally friendly, stable, and easy-to-disassemble packaging protection effect.
Patent Information
- Application Number
- CN202422854763.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Traditional display packaging materials are difficult to degrade, causing an environmental burden, and lack stability and safety during transportation, making them prone to damaging the display.
Design a biodegradable paper display eco-friendly packaging that enables rapid assembly through slots and pressure blocks in the upper and lower paper cards, ensuring the stability and protection of the display. This includes precise engagement and tight contact of the first slot, inner limiting card, second slot, and side buffer blocks.
It achieves environmentally friendly and recyclable packaging materials, improves the stability and protective ability of packaging, reduces the risk of shaking and collision during transportation, reduces the risk of damage, and meets the social demand for green packaging.
Smart Images

Figure CN223546694U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of packaging technology, and in particular to a biodegradable environmentally friendly packaging for displays. Background Technology
[0002] With the development of the times, monitors have become an indispensable electronic product in people's work and life, and the corresponding monitor packaging has also emerged in an endless stream. In terms of monitor packaging, expanded polystyrene (EPS) and pearl cotton (EPE) are commonly used because they are favored by major monitor brands due to their good cushioning performance, ease of molding, and lightweight. However, with the increasing demands for environmental governance, the continuous implementation of environmental protection policies, and the enhancement of consumers' environmental awareness, pollution-free and harmless green packaging has received more and more attention and importance, and EPS and EPE materials have been largely replaced by environmentally friendly materials.
[0003] Traditional monitor packaging materials are often difficult to degrade, placing a significant burden on the environment. Furthermore, traditional packaging methods are insufficient in terms of stability and security, making monitors vulnerable to damage during transportation. Therefore, developing a packaging material that is both environmentally friendly and effectively protects monitors has become a pressing technical challenge. Utility Model Content
[0004] The purpose of this utility model is to address the shortcomings of existing technologies by providing a biodegradable and environmentally friendly packaging for displays. The packaging has a reasonable structural design, with both the upper and lower paper cards made of paper. The upper and lower paper cards are quickly assembled through slots and pressure blocks, ensuring the environmental friendliness and stability of the packaging. It is easy for consumers or recycling organizations to disassemble, thus improving the environmental friendliness, practicality, and convenience of the packaging.
[0005] To achieve the above objectives, this utility model provides a biodegradable and environmentally friendly display packaging, comprising an upper paper card and a lower paper card.
[0006] The upper paper card has a first slot inside that engages with the top of the display, and the top of the upper paper card has a limiting inner card for limiting the deformation of the first slot, and the limiting inner card is connected to the upper paper card.
[0007] The lower paper card has a second slot inside that engages with the bottom of the display. The second slot has a pressure block that abuts against the back cover of the display. Both ends of the second slot have side buffer blocks for limiting the display.
[0008] Preferably, the top of the upper paper card is provided with a locking part, and side slots are provided on both sides of the locking part;
[0009] The restricted internal cards include a main internal card and a side internal card.
[0010] Both the main inner card and the side inner card are provided with a first card slot, and the main inner card and the side inner card are respectively connected to the card engaging part through the first card slot;
[0011] The lower part of the inner side card is provided with a second card slot, and the inner side card is inserted into the side slot through the second card slot.
[0012] Preferably, both the main inner card and the side inner card are provided with a third card slot;
[0013] The bottom sides of the upper paper card are provided with a first folded edge, a second folded edge and a third folded edge in sequence. Fold lines are provided at the connection between the first folded edge and the upper paper card, the connection between the first folded edge and the second folded edge and the second folded edge and the third folded edge.
[0014] The first folded edge, the second folded edge, and the third folded edge are each folded 90° along the crease line to form a first buffer cavity, and the third folded edge is inserted into the third slot.
[0015] Preferably, the engaging portion is provided with a locking strip, and the third folded edge is provided with a locking interface, which engages with the locking strip of the engaging portion.
[0016] Preferably, the main inner card is provided with a first limiting part and a first buffer part, the number of the first limiting parts is at least two, the two first limiting parts are respectively provided on both sides of the first buffer part, and a reinforcing member is also provided between the two first limiting parts;
[0017] The inner side card is provided with a second limiting part and a second buffer part, and the number of the second buffer parts is at least two, with the two second buffer parts respectively disposed on both sides of the second limiting part.
[0018] Preferably, a buffer box is provided between the first limiting part and the second limiting part, and the buffer box is provided with a locking mechanism.
[0019] Both the first limiting part and the second limiting part are provided with latches, and the first limiting part and the second limiting part are respectively connected to the bayonet of the buffer box through the latches.
[0020] Preferably, a first connecting strip is provided on both sides of the lower paper card, and a first connecting port is provided on the top of the side buffer block, and the first connecting strip is inserted into the first connecting port.
[0021] Preferably, a second connecting strip is provided in the second slot, and the pressure block is provided with a second connecting port, into which the second connecting strip is inserted.
[0022] Preferably, it also includes an outer box, the outer box having an internal receiving cavity, and the upper paper card and the lower paper card are both disposed within the receiving cavity.
[0023] Preferably, the outer casing surface is coated with a biodegradable layer.
[0024] The beneficial effects of this utility model are as follows: Both the upper and lower paper cards of this utility model are made of paper materials, making the packaging environmentally friendly and recyclable, significantly reducing the environmental impact of monitor packaging, and meeting the current social demand for green and sustainable packaging materials.
[0025] The first slot inside the top card precisely engages with the top of the monitor, ensuring its stable position within the packaging. Simultaneously, the inner card effectively limits deformation of the first slot, further enhancing the packaging's stability and the monitor's protection.
[0026] The second slot for the lower paper tray not only engages with the bottom of the monitor but also securely contacts the monitor's back cover via a built-in clamping block, effectively preventing the monitor from shaking or bumping during transportation. Furthermore, the side buffer blocks at both ends provide additional side protection for the monitor, reducing the risk of damage caused by external impacts. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the structure of this utility model in its explosive state.
[0028] Figure 2 This is a schematic diagram of the structure of the upper paper card, main inner card, and side inner card of this utility model.
[0029] Figure 3 This is a schematic diagram of the paper lowering card, pressure block, and side buffer block structure of this utility model.
[0030] The reference numerals in the figures include:
[0031] 1. Paper card; 11. First slot; 12. Card engaging part; 121. Card strip; 13. Side slot; 14. First folded edge; 15. Second folded edge; 16. Third folded edge; 17. Card interface;
[0032] 2. Paper drop card; 21. Second slot; 22. First connecting strip; 23. Second connecting strip;
[0033] 3. Restricting inner card; 31. Main inner card; 311. First restricting part; 312. First buffer part; 313. Reinforcing member; 32. Side inner card; 321. Second restricting part; 322. Second buffer part; 33. First card slot; 34. Second card slot; 35. Third card slot; 36. Buffer box; 361. Bayonet;
[0034] 4. Pressure block; 41. Second connection port;
[0035] 5. Side buffer block; 51. First connection port;
[0036] 6. Outer casing; 61. Receiving cavity. Detailed Implementation
[0037] The present invention will now be described in detail with reference to the accompanying drawings.
[0038] See Figures 1 to 3 As shown, this utility model discloses a biodegradable environmentally friendly display packaging, which includes an upper paper card 1 and a lower paper card 2. Both the upper paper card 1 and the lower paper card 2 are made of paper material, making the packaging environmentally friendly and recyclable. This significantly reduces the environmental impact of the display packaging and meets the current social demand for green and sustainable packaging materials.
[0039] The upper paper card 1 has a first slot 11 inside that engages with the top of the display. The top of the upper paper card 1 has a limiting inner card 3 for limiting the deformation of the first slot 11. The limiting inner card 3 is connected to the upper paper card 1.
[0040] The design of the first slot 11 inside the upper card 1 allows for precise engagement with the top of the monitor, ensuring its stable position within the packaging. Simultaneously, the inner card 3 effectively limits the deformation of the first slot 11, further enhancing the packaging's stability and the monitor's protection.
[0041] The lower paper card 2 has a second slot 21 inside that engages with the bottom of the monitor. The second slot 21 has a pressure block 4 that abuts against the back cover of the monitor. Both ends of the second slot 21 have side buffer blocks 5 for limiting the monitor.
[0042] The second slot 21 of the lower paper card 2 not only engages with the bottom of the monitor, but also fits tightly against the back cover of the monitor via a built-in pressure block 4, effectively preventing the monitor from shaking and colliding during transportation. In addition, the side buffer blocks 5 at both ends provide extra side protection for the monitor, reducing the risk of damage caused by external impacts.
[0043] The packaging structure is reasonably designed. Both the upper paper card 1 and the lower paper card 2 are made of paper. The upper paper card 1 and the lower paper card 2 can be quickly assembled through slots and pressure blocks, while ensuring the environmental protection and stability of the packaging. It is easy for consumers or recycling organizations to disassemble, thus improving the environmental protection, practicality and convenience of the packaging.
[0044] See Figure 2 As shown, the top of the upper paper card 1 in this embodiment is provided with a locking part 12, and side slots 13 are provided on both sides of the locking part 12.
[0045] Restricted internal cards 3 include primary internal card 31 and lateral internal card 32.
[0046] Both the main inner card 31 and the side inner card 32 are provided with a first card slot 33. The main inner card 31 and the side inner card 32 are respectively connected to the card engaging part 12 through the first card slot 33, so that the inner card 3 is connected to the upper paper card 1 and the card engaging part 12 is restricted to prevent the first slot 11 from deforming.
[0047] The lower part of the inner side card 32 is provided with a second card slot 34. The inner side card 32 is inserted into the side slot 13 through the second card slot 34, so that the inner side card 32 is fixed to the engaging part 12, thereby restricting the engaging part 12 and preventing the first slot 11 from deforming.
[0048] In actual use, there is at least one main inner card 31 and at least two side inner cards 32. The upper paper card 1 is made into a shape that matches the back cover of the monitor, reducing the amount of paper used for packaging and lowering packaging costs. The gap between the main inner card 31 and the side inner card 32 can also accommodate accessories such as power cords, support frames, and bases, making efficient use of limited space.
[0049] The main inner card 31, side inner cards 32, upper paper card 1, and lower paper card 2 work together to create a clever overall packaging layout that makes the most of limited space. This maximizes space utilization and provides comprehensive protection for the product, reducing breakage rates during transit and minimizing losses caused by damage.
[0050] See Figure 2 As shown, both the main inner card 31 and the side inner card 32 in this embodiment are provided with a third card slot 35.
[0051] The bottom sides of the upper paper card 1 are provided with a first folding edge 14, a second folding edge 15 and a third folding edge 16 in sequence. Fold lines are provided at the connection between the first folding edge 14 and the upper paper card 1, the connection between the first folding edge 14 and the second folding edge 15, and the connection between the second folding edge 15 and the third folding edge 16. The fold lines facilitate the folding of the first folding edge 14, the second folding edge 15 and the third folding edge 16.
[0052] The first folded edge 14, the second folded edge 15, and the third folded edge 16 are each folded 90° along the crease line to form a first buffer cavity, which increases the protection of the display. Furthermore, the third folded edge 16 is inserted into the third slot 35, so that the first buffer cavity can remain stable after it is formed.
[0053] See Figure 2 As shown, in this embodiment, the engaging portion 12 is provided with a locking strip 121, and the third folded edge 16 is provided with a locking interface 17, which engages with the locking strip 121 of the engaging portion 12. Through the connection between the locking interface 17 and the locking strip 121, the third folded edge 16 is connected to the engaging portion 12, ensuring the stability of the first buffer cavity after it is formed.
[0054] See Figure 2 As shown, the main inner card 31 of this embodiment is provided with a first limiting part 311 and a first buffer part 312. The number of first limiting parts 311 is at least two. The two first limiting parts 311 are respectively provided on both sides of the first buffer part 312. A reinforcing member 313 is also provided between the two first limiting parts 311.
[0055] The main inner card 31 significantly enhances structural stability and load-bearing capacity by providing at least two first limiting parts 311 and adding a reinforcing member 313 between the two first limiting parts 311. This design helps prevent deformation or damage to the main inner card 31 due to excessive force during use.
[0056] The inner side card 32 is provided with a second limiting part 321 and a second buffer part 322. There are at least two second buffer parts 322, and the two second buffer parts 322 are respectively provided on both sides of the second limiting part 321.
[0057] The side inner card 32 enhances the stability and load-bearing capacity of the side inner card 32 through the provision of the second limiting part 321 and the second buffer part 322, which helps to prevent the side inner card 32 from deforming or being damaged due to excessive force during use.
[0058] See Figure 2 As shown, in this embodiment, a buffer box 36 is provided between the first limiting part 311 and the second limiting part 321, and the buffer box 36 is provided with a latch 361.
[0059] Both the first limiting part 311 and the second limiting part 321 are provided with latches, and the first limiting part 311 and the second limiting part 321 are respectively connected to the latch 361 of the buffer box 36 through the latches.
[0060] The first limiting part 311 and the second limiting part 321 are connected to the latch 361 of the buffer box 36 via a latch, which provides a stable connection mechanism. The cooperation between the latch and the latch can prevent the buffer box 36 and the first limiting part 311 and the second limiting part 321 from loosening or falling off when subjected to force, thereby enhancing the stability of the overall structure.
[0061] The introduction of the buffer box 36 further enhances the cushioning performance. It not only absorbs and disperses external impact forces, but also provides an additional buffer layer between the main inner card 31 and the side inner card 32, protecting adjacent components from damage.
[0062] See Figure 3 As shown, in this embodiment, the lower paper card 2 is provided with a first connecting strip 22 on both sides, and the side buffer block 5 is provided with a first connecting port 51 on the top. The first connecting strip 22 is inserted into the first connecting port 51 to enhance the stability between the lower paper card 2 and the side buffer block 5.
[0063] See Figure 3 As shown, in this embodiment, a second connecting strip 23 is provided in the second slot 21, and a second connecting port 41 is provided in the pressure block 4. The second connecting strip 23 is inserted into the second connecting port 41, so that the pressure block 4 is fixed in the second slot 21.
[0064] See Figure 1 As shown, this embodiment also includes an outer casing 6, which has a receiving cavity inside. The upper paper card 1 and the lower paper card 2 are both disposed within the receiving cavity 61. The outer casing 6 protects the upper paper card 1, the display, and the lower paper card 2, enhancing the structural protection performance.
[0065] The outer box 6 in this embodiment is coated with a biodegradable layer. This biodegradable layer allows the entire packaging to decompose more easily in the natural environment after disposal, significantly reducing environmental pollution. This design meets the current societal demand for green and sustainable packaging materials and helps promote the development of the environmental protection industry.
[0066] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A biodegradable environmentally friendly packaging for displays, characterized in that: It includes an upper paper card (1) and a lower paper card (2). The upper paper card (1) is provided with a first slot (11) that engages with the top of the display, and the top of the upper paper card (1) is provided with a limiting inner card (3) for limiting the deformation of the first slot (11), and the limiting inner card (3) is connected to the upper paper card (1). The lower paper card (2) is provided with a second slot (21) that engages with the bottom of the display. The second slot (21) is provided with a pressure block (4) that abuts against the back cover of the display. Both ends of the second slot (21) are provided with side buffer blocks (5) for limiting the display.
2. The biodegradable environmentally friendly packaging for displays according to claim 1, characterized in that: The top of the upper paper card (1) is provided with a locking part (12), and side slots (13) are provided on both sides of the locking part (12). The restricted inner card (3) includes a main inner card (31) and a side inner card (32). Both the main inner card (31) and the side inner card (32) are provided with a first card slot (33), and the main inner card (31) and the side inner card (32) are respectively connected to the locking part (12) through the first card slot (33); The lower part of the inner side card (32) is provided with a second card slot (34), and the inner side card (32) is inserted into the side slot (13) through the second card slot (34).
3. The biodegradable environmentally friendly packaging for displays according to claim 2, characterized in that: Both the main inner card (31) and the side inner card (32) are provided with a third card slot (35); The bottom sides of the upper paper card (1) are provided with a first folded edge (14), a second folded edge (15) and a third folded edge (16) in sequence. Crease lines are provided at the connection between the first folded edge (14) and the upper paper card (1), the connection between the first folded edge (14) and the second folded edge (15) and the second folded edge (15) and the third folded edge (16). The first folded edge (14), the second folded edge (15) and the third folded edge (16) are folded 90° along the crease line to form a first buffer cavity, and the third folded edge (16) is inserted into the third slot (35).
4. The biodegradable environmentally friendly packaging for displays according to claim 3, characterized in that: The locking part (12) is provided with a locking strip (121), and the third folded edge (16) is provided with a locking interface (17), which engages with the locking strip (121) of the locking part (12).
5. The biodegradable environmentally friendly packaging for displays according to claim 2, characterized in that: The main inner card (31) is provided with a first limiting part (311) and a first buffer part (312). The number of the first limiting parts (311) is at least two. The two first limiting parts (311) are respectively provided on both sides of the first buffer part (312). A reinforcing member (313) is also provided between the two first limiting parts (311). The inner side card (32) is provided with a second limiting part (321) and a second buffer part (322). The number of the second buffer parts (322) is at least two, and the two second buffer parts (322) are respectively provided on both sides of the second limiting part (321).
6. The biodegradable environmentally friendly packaging for displays according to claim 5, characterized in that: A buffer box (36) is provided between the first limiting part (311) and the second limiting part (321), and the buffer box (36) is provided with a bayonet (361). Both the first limiting part (311) and the second limiting part (321) are provided with latches, and the first limiting part (311) and the second limiting part (321) are respectively connected to the latch (361) of the buffer box (36) through the latches.
7. The biodegradable environmentally friendly packaging for displays according to claim 1, characterized in that: The lower paper card (2) is provided with a first connecting strip (22) on both sides, and the side buffer block (5) is provided with a first connecting port (51) on the top, and the first connecting strip (22) is inserted into the first connecting port (51).
8. The biodegradable environmentally friendly packaging for displays according to claim 1, characterized in that: The second slot (21) is provided with a second connecting strip (23), and the pressure block (4) is provided with a second connecting port (41). The second connecting strip (23) is inserted into the second connecting port (41).
9. The biodegradable environmentally friendly packaging for displays according to claim 1, characterized in that: It also includes an outer box (6), which has a receiving cavity inside, and the upper paper card (1) and the lower paper card (2) are both located in the receiving cavity (61).
10. The biodegradable environmentally friendly packaging for displays according to claim 9, characterized in that: The outer casing (6) is coated with a biodegradable layer.