Intelligent screen cushion packaging structure

Through the smart screen buffer packaging structure of the base box made of die-cut corrugated cardboard and the pearl cotton top cover, the balance between structural strength and cost is solved, and efficient protection and low-cost production are achieved.

CN223253569UActive Publication Date: 2025-08-22GREE ELECTRIC APPLIANCE INC OF ZHUHAI +1
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Patent Information

Application Number
CN202422770267.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-08-22
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

In the process of protecting smart screens, it is difficult to effectively balance the relationship between structural strength and production cost, and the material consumption is high.

Method used

The buffer packaging structure of the bottom box made of die-cut corrugated cardboard and the pearl cotton top cover is adopted. The support cavity distributed around the bottom box is formed with a "well" character, and the limit cavity accommodates the base, and the top cover protects the screen body, combining the heat shrink bag and the packaging box for multi-layer protection.

Benefits of technology

It improves the structural strength of the buffer packaging structure, reduces material consumption and production costs, and provides comprehensive protection effects and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent screen cushion packaging structure which comprises a bottom box and a top cover. The bottom box comprises a first supporting cavity, a second supporting cavity, a third supporting cavity, a fourth supporting cavity, a fifth supporting cavity, a sixth supporting cavity, a seventh supporting cavity and an eighth supporting cavity which are distributed in a # shape along the periphery of the bottom box. The tops of the eight supporting cavities jointly form a supporting face capable of supporting the bottom of the screen body, and the second supporting cavity, the fourth supporting cavity, the fifth supporting cavity and the seventh supporting cavity define a limiting cavity capable of containing and transversely limiting an intelligent screen base. The top cover is matched with the bottom box, and a protection cavity matched with the screen body is formed in the bottom of the top cover and can wrap the top and the periphery of the screen body. The intelligent screen cushion packaging structure is high in structural strength, good in protection effect and easy to manufacture, consumption of packaging materials can be reduced, and the production cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of packaging boxes, and in particular to a smart screen buffer packaging structure. Background Art

[0002] Smart screen is a display device that integrates intelligent operating system and multiple Internet service functions. It is usually used in various scenarios such as home entertainment, office meeting, education and learning. Figure 1 As shown in the figure, a smart screen generally includes a screen body and a base protruding from the bottom of the screen body. Because smart screens usually contain precision components such as liquid crystal panels and circuit boards, and these components are very sensitive to external factors such as physical shock and vibration, an effective cushioning packaging structure is required to protect the smart screen from damage due to external shock and vibration during transportation and storage.

[0003] In practical applications, common cushioning packaging materials include: (1) Pulp molded packaging: using pulp materials to form a top cover and base of a specific shape through a mold to provide support and protection for the smart screen; (2) Foam plastic packaging: using polyethylene (PE), polystyrene (EPS) and other materials to make foam plastic, and cutting it into corresponding pads or frames according to the size and shape of the smart screen to fill the gap between the product and the outer packaging; (3) Bubble film packaging: tightly wrapping the bubble film around the smart screen, especially the edges and corners and other vulnerable parts, so as to effectively absorb the impact and protect the product from damage; (4) Corrugated cardboard packaging: using multiple layers of corrugated cardboard to make inner and outer boxes, through reasonable structural design, to provide support and protection for the smart screen. Among them, corrugated cardboard packaging is widely used in the box body manufacturing and molding of cushioning packaging structure because of its advantages such as good cushioning performance, light weight, low cost, good environmental protection, and easy processing and molding. Of course, sometimes in order to provide more comprehensive protection for the smart screen, the above multiple materials can also be used in combination.

[0004] In the existing technology, when designing the cushioning packaging structure and selecting the cushioning packaging material, how to better balance the relationship between the structural strength of the cushioning packaging structure and the production cost is a highly concerned issue. That is, not only the structural strength of the cushioning packaging structure must be ensured so that it can effectively protect the smart screen from external physical impact and vibration damage, but also the difficulty of mold opening and manufacturing costs of the cushioning packaging structure must be reduced as much as possible, the consumption of packaging materials must be reduced, and production costs must be reduced. Utility Model Content

[0005] This utility model provides a smart screen cushioning packaging structure, which can improve the structural strength of the cushioning packaging structure, reduce the consumption of packaging materials, and reduce production costs. The specific technical solution is as follows:

[0006] A smart screen buffering packaging structure is used for buffering and packaging the smart screen. The smart screen includes a screen body and a base protruding from the bottom of the screen body, including a bottom box and a top cover adapted to the bottom box; the bottom box includes a first supporting cavity, a second supporting cavity, a third supporting cavity, a fourth supporting cavity, a fifth supporting cavity, a sixth supporting cavity, a seventh supporting cavity and an eighth supporting cavity distributed in a "well" shape around the bottom box; the tops of the first supporting cavity, the second supporting cavity, the third supporting cavity, the fourth supporting cavity, the fifth supporting cavity, the sixth supporting cavity, the seventh supporting cavity and the eighth supporting cavity jointly form a supporting surface that can support the bottom of the screen body, and the second supporting cavity, the fourth supporting cavity, the fifth supporting cavity and the seventh supporting cavity together form a limiting cavity that can accommodate and laterally limit the base.

[0007] Furthermore, the bottom box is formed by folding and splicing a whole piece of die-cut cardboard.

[0008] Furthermore, the first supporting cavity, the second supporting cavity, the third supporting cavity, the fourth supporting cavity, the fifth supporting cavity, the sixth supporting cavity, the seventh supporting cavity and the eighth supporting cavity are closed cavities.

[0009] Furthermore, the limiting cavity is located at the center of the bottom box.

[0010] Furthermore, the first support cavity, the second support cavity, the third support cavity, the fourth support cavity, the fifth support cavity, the sixth support cavity, the seventh support cavity and the eighth support cavity are provided with an outer flange extending laterally outward from the cavity and contacting the bottom box surface at the bottom of the side close to the limiting cavity.

[0011] Furthermore, the height of the limiting cavity is greater than the height of the base.

[0012] Furthermore, the top cover is made of pearl cotton material.

[0013] Furthermore, the material thickness around the top cover is greater than or equal to 20 mm.

[0014] Furthermore, the bottom box and the top cover are provided with heat shrink bags, and a packaging box is also provided outside the heat shrink bags.

[0015] As another embodiment, the first supporting cavity, the third supporting cavity, the sixth supporting cavity and the eighth supporting cavity located at the four corners of the bottom box are missing.

[0016] The smart screen buffer packaging structure provided by the present invention forms a stable structural space through the supporting cavity around the bottom box, which can firmly support the screen body, and has high structural strength and is not easy to deform; the base can be accommodated and laterally limited by the limiting cavity to prevent the base from displacement or damage; the protective cavity at the bottom of the top cover can wrap the top and four sides of the screen body to protect the screen body; thereby, the smart screen buffer packaging structure can provide comprehensive buffering protection for the smart screen, so that the smart screen is protected from damage by external physical impact and vibration. The smart screen buffer packaging structure has high structural strength, good protection effect, and is simple to manufacture. It can also reduce the consumption of packaging materials and reduce production costs.

[0017] Furthermore, the height of the limiting cavity is greater than the height of the base. On the one hand, buffer space can be left to prevent the bottom of the base from rubbing against the bottom of the bottom box. On the other hand, it can be used to fix the relevant accessory package, thereby improving the space utilization of the smart screen buffer packaging structure, making the smart screen buffer packaging structure more practical and providing a better user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the smart screen structure.

[0019] Figure 2 This is a schematic diagram of the cardboard structure of the first embodiment.

[0020] Figure 3 Schematic diagram of the bottom box forming process of the first embodiment Figure 1 .

[0021] Figure 4 Schematic diagram of the bottom box forming process of the first embodiment Figure 2 .

[0022] Figure 5 Schematic diagram of the bottom box forming process of the first embodiment Figure 3 .

[0023] Figure 6 Schematic diagram of the bottom box forming process of the first embodiment Figure 4 .

[0024] Figure 7 This is a schematic diagram of the bottom box structure of the first embodiment (in a perspective state).

[0025] Figure 8 This is a schematic diagram of the usage status of the smart screen buffer packaging structure of the first embodiment Figure 1 .

[0026] Figure 9 This is a schematic diagram of the usage status of the smart screen buffer packaging structure of the first embodiment Figure 2 .

[0027] Figure 10 Schematic diagram of the bottom box structure of the second embodiment (perspective state).

[0028] The figure numbers are as follows: 1 is the smart screen, 11 is the screen body, 12 is the base, 2 is the bottom box, 21 is the first supporting cavity, 22 is the second supporting cavity, 23 is the third supporting cavity, 24 is the fourth supporting cavity, 25 is the fifth supporting cavity, 26 is the sixth supporting cavity, 27 is the seventh supporting cavity, 28 is the eighth supporting cavity, 29 is the limiting cavity, 210 is the outer flange, 3 is the top cover, 31 is the protective cavity, 4 is the cardboard, 41 is the first folding part, 42 is the second folding part, 43 is the third folding part, 44 is the fourth folding part, 45 is the fifth folding part, 46 is the sixth folding part, 47 is the seventh folding part, 48 is the eighth folding part, and 49 is the bottom of the cardboard. DETAILED DESCRIPTION

[0029] The following is a further description of the specific embodiments of the present invention in conjunction with the accompanying drawings. For ease of description, the terms "front," "back," "front," "back," "left," "right," "top," "bottom," "up," "down," "inside," "outside," and "inner" used in the present invention to indicate positions or locations are based on the positions or locations shown in the accompanying drawings. They are intended solely to facilitate description of the present invention and simplify the description, and are not intended to indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention or the actual orientation of the product or device during production, use, or sale. Furthermore, the terms "first," "second," "third," "fourth," "fifth," "sixth," "seventh," and "eighth," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features referred to. Furthermore, in the embodiments of the present invention, unless otherwise expressly specified or limited, the terms "installed," "disposed," "connected," "fixed," and "composed" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integration; direct connections, or indirect connections through an intermediary. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0030] The utility model provides a smart screen buffer packaging structure for buffering the smart screen 1. Figure 1Taking the smart screen structure shown as an example, the smart screen 1 includes a screen body 11 and a base 12. The base 12 is located at the bottom of the screen body 11 and protrudes from the bottom of the screen body 11. The smart screen buffer packaging structure can limit and protect the smart screen 1 so that it can be protected from damage by external physical impact and vibration; of course, buffer packaging of other products with similar structures can also be applied, and there is no restriction here.

[0031] First embodiment

[0032] In this embodiment, the smart screen buffer packaging structure comprises a bottom box 2 and a top cover 3. The top cover 3 is adapted to the bottom box 2 and can be covered on the bottom box 2. The bottom box 2 is formed by folding and plugging a whole piece of cardboard 4 formed by die-cutting. The forming steps are as follows:

[0033] (1) Figure 2 As shown, a complete piece of corrugated cardboard is precisely cut according to a predetermined shape and size using a pre-designed mold to form relevant folds and card slots on the cardboard 4. Specifically, it includes a cardboard bottom 49 located in the middle, and a first folding portion 41, a second folding portion 42, a third folding portion 43, and a fourth folding portion 44 located on the upper side of the cardboard bottom 49 and distributed from the inside to the outside, and a fifth folding portion 45, a sixth folding portion 46, a seventh folding portion 47, and an eighth folding portion 48 located on the left side of the cardboard bottom 49 and distributed from the inside to the outside. In addition, the lower side structure of the cardboard bottom 49 is the same as the upper side structure, and also has the same first folding portion 41, second folding portion 42, third folding portion 43, and fourth folding portion 44. The right side structure of the cardboard bottom 49 is the same as the left side structure, and also has the same fifth folding portion 45, sixth folding portion 46, seventh folding portion 47, and eighth folding portion 48. Among them, the second folding portion 42 and the third folding portion 43 are provided with card slots to allow the seventh folding portion 47 to be inserted.

[0034] (2) Figure 3 As shown, the first folding portion 41, the second folding portion 42, the third folding portion 43, and the fourth folding portion 44 located on the upper side of the paperboard bottom 49 are folded 90 degrees in sequence, so that the fourth folding portion 44 forms surface contact with the paperboard bottom 49;

[0035] (3) Figure 4 As shown, the first folding portion 41, the second folding portion 42, the third folding portion 43, and the fourth folding portion 44 located on the lower side of the paperboard bottom 49 are also folded in the same manner as in step (2) above;

[0036] (4) Figure 5As shown, the fifth folding portion 45, the sixth folding portion 46, the seventh folding portion 47, and the eighth folding portion 48 located on the right side of the paperboard bottom 49 are folded 90 degrees in sequence, and the seventh folding portion 47 is inserted into the slots of the second folding portion 42 and the third folding portion 43, so that the eighth folding portion 48 is in surface contact with the paperboard bottom 49;

[0037] (5) Figure 6 As shown, the fifth folding portion 45, the sixth folding portion 46, the seventh folding portion 47, and the eighth folding portion 48 located on the left side of the cardboard bottom 49 are also folded in the same manner as in the above step (5), and are finally formed into the bottom box 2.

[0038] Of course, the above molding steps and material selection are only used as an example of one embodiment. There are other manufacturing methods or molding steps, which are not limited in this utility model. Figure 7 As shown, the final bottom box 2 includes a first supporting cavity 21, a second supporting cavity 22, a third supporting cavity 23, a fourth supporting cavity 24, a fifth supporting cavity 25, a sixth supporting cavity 26, a seventh supporting cavity 27 and an eighth supporting cavity 28 distributed in a "well" shape around the bottom box 2 (in the present invention, the meaning of the supporting cavity is a cavity that can play a supporting role. The cavity can be fully enclosed or semi-enclosed. The semi-enclosed cavity refers to at least three surfaces, and the three surfaces form a partially enclosed space); the first supporting cavity 21, the second supporting cavity 22, the third supporting cavity 23, the fourth supporting cavity 24, the fifth supporting cavity 25, the sixth supporting cavity 26, the seventh supporting cavity 27 and the eighth supporting cavity 28 are arranged in a "well" shape around the bottom box 2; The tops of the cavity 24, the fifth support cavity 25, the sixth support cavity 26, the seventh support cavity 27 and the eighth support cavity 28 together form a support surface that can support the bottom of the screen body 11, and the sides of the second support cavity 22, the fourth support cavity 24, the fifth support cavity 25 and the seventh support cavity 27 are surrounded to form a limiting cavity 29, that is, the limiting cavity 29 is located in the middle of the second support cavity 22, the fourth support cavity 24, the fifth support cavity 25 and the seventh support cavity 27, and the limiting cavity 29 is adapted to the base 12, can accommodate and laterally limit the base 12, and the lateral limitation refers to the limitation in the front, back, left and right directions.

[0039] In addition, if Figure 8 、 Figure 9 As shown, a protection cavity 31 adapted to the screen body 11 is provided at the bottom of the top cover 3 , which can wrap the top and surrounding areas of the screen body 11 to protect the screen body 11 .

[0040] The smart screen buffer packaging structure adopts the above structure, through the first support cavity 21, the second support cavity 22, the third support cavity 23, the fourth support cavity 24, the fifth support cavity 25, the sixth support cavity 26, the seventh support cavity 27 and the eighth support cavity 28 distributed in a "well" shape around the bottom box 2, a stable structural space is formed, which can firmly support the screen main body 11, and the structure has high strength and is not easy to deform; the limiting cavity 29 can accommodate and laterally limit the base 12 to prevent the base 12 from being displaced or damaged; the protective cavity 31 at the bottom of the top cover 3 can wrap the top and four sides of the screen main body 11 to protect the screen main body 11; thereby, the smart screen buffer packaging structure can provide comprehensive buffering protection for the smart screen 1, so that the smart screen is protected from external physical impact and vibration damage. The smart screen buffer packaging structure has high structural strength, good protection effect, and simple manufacturing. It can also reduce the consumption of packaging materials and reduce production costs.

[0041] In some embodiments, the first supporting cavity 21 , the second supporting cavity 22 , the third supporting cavity 23 , the fourth supporting cavity 24 , the fifth supporting cavity 25 , the sixth supporting cavity 26 , the seventh supporting cavity 27 and the eighth supporting cavity 28 are closed cavities.

[0042] The smart screen buffer packaging structure adopts the above structure, and the first support cavity 21, the second support cavity 22, the third support cavity 23, the fourth support cavity 24, the fifth support cavity 25, the sixth support cavity 26, the seventh support cavity 27 and the eighth support cavity 28 are all set as closed cavities, which can further enhance the structural strength of the smart screen buffer packaging structure and improve the buffer protection effect.

[0043] In some embodiments, the limiting cavity 29 is located at the center of the bottom box 2, that is, the support cavities on the left and right sides of the limiting cavity 29 are symmetrically arranged, and the support cavities on the front and back sides of the limiting cavity 29 are also symmetrically arranged.

[0044] The smart screen buffer packaging structure adopts the above structure, and the limiting cavity 29 is set in the center of the bottom box 2. This not only makes the buffering force of the entire smart screen buffer packaging structure more balanced and the structural strength better, but also improves the operational convenience when placing the base 12, thereby enhancing the workers' operating experience.

[0045] In some embodiments, as Figure 7As shown in the figure, the first support cavity 21, the second support cavity 22, the third support cavity 23, the fourth support cavity 24, the fifth support cavity 25, the sixth support cavity 26, the seventh support cavity 27 and the eighth support cavity 28 are provided with an outer flange 210 extending laterally outward from the cavity and contacting the surface of the bottom box 2 at the bottom of the side near the limiting cavity 29. The outer flange 210 is formed by the fourth folding portion 44 and the eighth folding portion 48 of the cardboard 4.

[0046] The smart screen buffer packaging structure adopts the above structure, and by setting an outer flange 210 extending laterally out of the cavity and in contact with the surface of the bottom box 2 at the bottom of the side of each support cavity, it can provide a more stable rebound support force, thereby further improving the buffering protection effect of the smart screen buffer packaging structure.

[0047] In some embodiments, the height of the limiting cavity 29 is greater than the height of the base 12. For example, in this embodiment, the height of the limiting cavity 29 is 25 mm greater than the height of the base 12. The bottom space of the limiting cavity 29 can be used to fix related accessories such as screw accessory kits.

[0048] The smart screen buffer packaging structure adopts the above structure, and the height of the limiting cavity 29 is set to be greater than the height of the base 12. On the one hand, buffer space can be left to prevent the bottom of the base 12 from rubbing against the bottom of the bottom box 2. On the other hand, it can be used to fix the relevant accessory package, thereby improving the space utilization of the smart screen buffer packaging structure, making the smart screen buffer packaging structure more practical and providing a better user experience.

[0049] In some embodiments, the bottom box 2 is made of corrugated cardboard, and the top cover 3 is made of EPE material, that is, pearl cotton material; corrugated cardboard and pearl cotton are both high-performance environmentally friendly packaging materials, which not only have low density, light weight, and are easy to transport and carry, but also have excellent cushioning properties, can effectively absorb and disperse impact force, and can provide good cushioning protection for the smart screen 1.

[0050] In some embodiments, the thickness of the material around the top cover 3 is greater than or equal to 20 mm. The material around the top cover 3 refers to the material that wraps and protects the sides of the screen body 11; thereby effectively preventing other external parts from squeezing the screen body 11.

[0051] In some embodiments, the bottom box 2 and the top cover 3 are relatively fixed by connecting parts; there can be various connecting parts, such as sticking relevant sealing stickers on the side, or connecting by gluing adhesive materials, or setting snap parts for bayonet connection, etc.

[0052] By adopting the smart screen buffer packaging structure of the above structure, the bottom box 2 and the top cover 3 are relatively fixed through connecting parts, which can further enhance the buffering protection effect of the smart screen buffer packaging structure on the smart screen 1.

[0053] In some embodiments, the bottom box 2 and the top cover 3 are covered with heat shrink bags. Heat shrink bags are a commonly used protective material that shrinks after heating and tightly wraps the bottom box 2 and the top cover 3 to form a tight protective layer, which can be used to provide additional protection and fixation to prevent the product from being affected by external factors such as scratches, dust, and moisture during transportation.

[0054] In some embodiments, the heat shrink bag is further provided with a packaging box, which can further enhance the buffering protection effect of the smart screen buffering packaging structure.

[0055] Second embodiment

[0056] As another embodiment, the difference from the first embodiment is that, Figure 10 As shown, in this embodiment, the first support cavity 21, the third support cavity 23, the sixth support cavity 26 and the eighth support cavity 28 located at the four corners of the bottom box 2 are missing, that is, the bottom box 2 includes a second support cavity 22, a fourth support cavity 24, a fifth support cavity 25 and a seventh support cavity 27 distributed in a "cross" shape, and the tops of the second support cavity 22, the fourth support cavity 24, the fifth support cavity 25 and the seventh support cavity 27 together form a support surface that can support the bottom of the screen body 11, and the sides of the second support cavity 22, the fourth support cavity 24, the fifth support cavity 25 and the seventh support cavity 27 are surrounded to form a limiting cavity 29, that is, the limiting cavity 29 is located in the middle of the second support cavity 22, the fourth support cavity 24, the fifth support cavity 25 and the seventh support cavity 27, and the limiting cavity 29 is adapted to the base 12, can accommodate and laterally limit the base 12, and the lateral limitation refers to the limitation in the front, back, left and right directions.

[0057] The smart screen buffer packaging structure using the above structure can further reduce the consumption of packaging materials and reduce production costs.

[0058] The above embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of implementation of the present invention. Any equivalent changes based on the shape, structure and principle of the present invention should be included in the scope of protection of the present invention.

Claims

1. A smart screen buffer packaging structure for buffering and packaging a smart screen (1), wherein the smart screen (1) comprises a screen body (11) and a base (12) protruding from the bottom of the screen body (11), characterized in that: The invention comprises a bottom box (2) and a top cover (3) adapted to the bottom box (2); the bottom box (2) comprises a first supporting cavity (21), a second supporting cavity (22), a third supporting cavity (23), a fourth supporting cavity (24), a fifth supporting cavity (25), a sixth supporting cavity (26), a seventh supporting cavity (27) and an eighth supporting cavity (28) distributed in a "well" shape around the bottom box (2); the tops of the first supporting cavity (21), the second supporting cavity (22), the third supporting cavity (23), the fourth supporting cavity (24), the fifth supporting cavity (25), the sixth supporting cavity (26), the seventh supporting cavity (27) and the eighth supporting cavity (28) jointly form a supporting surface capable of supporting the bottom of the screen body (11), and the second supporting cavity (22), the fourth supporting cavity (24), the fifth supporting cavity (25) and the seventh supporting cavity (27) together form a limiting cavity (29) capable of accommodating and laterally limiting the base (12).

2. The smart screen buffer packaging structure according to claim 1, characterized in that: The bottom box (2) is formed by folding and splicing a die-cut whole piece of cardboard (4).

3. The smart screen buffer packaging structure according to claim 1, characterized in that: The first supporting cavity (21), the second supporting cavity (22), the third supporting cavity (23), the fourth supporting cavity (24), the fifth supporting cavity (25), the sixth supporting cavity (26), the seventh supporting cavity (27) and the eighth supporting cavity (28) are closed cavities.

4. The smart screen buffer packaging structure according to claim 1, characterized in that: The limiting cavity (29) is located at the center of the bottom box (2).

5. The smart screen buffer packaging structure according to claim 1, characterized in that: The first supporting cavity (21), the second supporting cavity (22), the third supporting cavity (23), the fourth supporting cavity (24), the fifth supporting cavity (25), the sixth supporting cavity (26), the seventh supporting cavity (27) and the eighth supporting cavity (28) are provided with an outer flange (210) extending laterally outward from the cavity and contacting the surface of the bottom box (2) at the bottom of the side surface close to the limiting cavity (29).

6. The smart screen buffer packaging structure according to claim 1, characterized in that: The height of the limiting cavity (29) is greater than the height of the base (12).

7. The smart screen buffer packaging structure according to any one of claims 1 to 6, characterized in that: The top cover (3) is made of pearl cotton material.

8. The smart screen buffer packaging structure according to claim 7, characterized in that: The material thickness around the top cover (3) is greater than or equal to 20 mm.

9. The smart screen buffer packaging structure according to any one of claims 1 to 6, characterized in that: The bottom box (2) and the top cover (3) are provided with heat shrink bags, and a packaging box is also provided outside the heat shrink bags.

10. The smart screen buffer packaging structure according to claim 1, characterized in that: The first supporting cavity (21), the third supporting cavity (23), the sixth supporting cavity (26) and the eighth supporting cavity (28) located at the four corners of the bottom box (2) are missing.