Cover plate glass containing box

By designing the support and limiting components of the cover glass container, the problem of glass damage caused by the container's compression during transportation was solved, achieving better protection and a more convenient transportation process.

CN223533907UActive Publication Date: 2025-11-11HENAN QUXIAN PHOTOELECTRIC TECH CO LTD +1

Patent Information

Application Number
CN202423096102.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-11
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

During the transportation of cover glass, the box is squeezed, causing the internal glass panels to collide and squeeze against each other, resulting in product damage.

Method used

A glass cover box is designed, including a box body assembly, a support assembly, and a limiting assembly. The support assembly consists of multiple support structures, and the limiting assemblies are spaced apart. There is a gap between the support structure and the inner wall of the box. Guide grooves and recesses are provided between the limiting assemblies and the support structure. The box is made of aluminum alloy and polyethylene. The support structure is crisscross shaped. The reinforced structure enhances stability. The adsorption assembly contains desiccant and activated carbon to prevent moisture.

Benefits of technology

It effectively avoids glass deformation and friction damage caused by the box squeezing during transportation, improves the protection effect during transportation, reduces the risk of glass breakage, and facilitates the removal and handling of the glass.

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Abstract

The utility model provides a cover plate glass containing box. The cover plate glass containing box comprises a box body assembly; the supporting assembly comprises a plurality of supporting structures, the multiple supporting structures are sequentially connected end to end, the multiple supporting structures are arranged in the box body assembly, and gaps are formed between the supporting structures and the inner wall of the box body assembly; and the number of the limiting assemblies is multiple, the multiple limiting assemblies are arranged among the multiple supporting structures at intervals, and cover plate glass is arranged between the adjacent limiting assemblies. According to the technical scheme, the problem that in the prior art, in the transportation process of cover plate glass, in the prior art, due to the fact that the box body is extruded, internal glass collides and extrudes one another, and products are damaged is effectively solved.
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Description

Technical Field

[0001] This application relates to the technical field of glass transfer, and more particularly to a cover glass container. Background Technology

[0002] With the continuous development of technology, cover glass is used in many different fields, such as buildings, homes and electronic products, which are indispensable in daily life.

[0003] After the glass is produced, a large quantity of glass needs to be transported to factories, construction sites, and other locations and installed in suitable positions. During the transportation process, multiple cover glass panels are usually placed inside the same transport box.

[0004] Currently, the commonly used cardboard boxes for loading with lids have poor structural stability and compression resistance. During transportation, the products inside the boxes are damaged due to collisions and squeezing between the boxes, such as CN1112509A. Utility Model Content

[0005] One of the technical problems this application aims to solve is that during the transportation of cover glass, there is a problem that the internal glass may collide and be squeezed together due to the compression of the box, resulting in product damage.

[0006] To address the aforementioned technical problems, this application provides a cover glass container.

[0007] According to this application, a cover glass container includes: a container assembly; a support assembly, the support assembly including multiple support structures connected sequentially, the multiple support structures being disposed inside the container assembly, and there being a gap between the support structures and the inner wall of the container assembly; and a limiting assembly, the limiting assembly including multiple, the multiple limiting assemblies being disposed at intervals between the multiple support structures, and a cover glass being disposed between adjacent limiting assemblies.

[0008] In some embodiments, the support structure has a plurality of guide grooves arranged in parallel to each other, and the limiting component is located within the guide grooves.

[0009] In some embodiments, the four support structures are connected in sequence to form a grid-like structure, with the ends of each support structure abutting against the inner wall of the housing assembly, and the limiting component is disposed in the internal accommodating space formed by the four support structures.

[0010] In some embodiments, the four support structures each have a first groove, a second groove, a third groove, and a fourth groove, and the groove widths of the first groove, the second groove, the third groove, and the fourth groove are all different. The limiting component includes a first limiting structure, a second limiting structure, a third limiting structure, and a fourth limiting structure, and the first limiting structure, the second limiting structure, the third limiting structure, and the fourth limiting structure are respectively configured to correspond to the first groove, the second groove, the third groove, and the fourth groove.

[0011] In some embodiments, the limiting component has an opening located on the side of the limiting component away from the bottom of the housing component.

[0012] In some embodiments, the support component further includes a reinforcing structure connected to the support structure.

[0013] In some embodiments, the reinforcing structure is L-shaped, and is disposed at the connection between the two supporting structures and is connected to the two supporting structures respectively.

[0014] In some embodiments, the reinforcing structure is made of aluminum alloy, and the multiple supporting structures are made of polyethylene.

[0015] In some embodiments, the multiple support structures are integrally formed.

[0016] In some embodiments, the cover glass housing further includes an adsorption assembly disposed between the support assembly and the housing assembly.

[0017] Through the above technical solution, the cover glass container provided in this application uses a support component to support the container assembly, effectively preventing the lower cover glass container from being easily squeezed and deformed when multiple cover glass containers are stacked together. The support component isolates the cover glass from the container assembly, preventing the impact force from the external container assembly from directly acting on the glass and causing breakage. Multiple limiting components isolate each cover glass from each other, preventing friction between adjacent cover glass when the entire cover glass container shakes, thus preventing damage to the glass surface quality. The technical solution of this application effectively solves the problem in the prior art where, during the transportation of cover glass, the container is squeezed, causing the internal glass to collide and squeeze each other, leading to product damage. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 A schematic diagram of the structure of the cover glass receiving box disclosed in Embodiment 1 of this application is shown;

[0020] Figure 2 It shows Figure 1 A schematic diagram of the main structure of the glass cover container;

[0021] Figure 3 It shows Figure 1 A top view of the glass-enclosed container.

[0022] Figure 4 It shows Figure 1 A schematic diagram of the left-side structure of the glass-enclosed container with a cover plate;

[0023] Figure 5 It shows Figure 1 A schematic diagram of the limiting assembly of the cover glass container;

[0024] Figure 6 This shows a top view of the cover glass receiving box disclosed in Embodiment 2 of this application;

[0025] Figure 7 This paper shows a top view of the first limiting structure of the cover glass receiving box disclosed in Embodiment 3 of this application;

[0026] Figure 8 It shows Figure 7 A top view of the third limiting structure of the cover glass container.

[0027] Explanation of reference numerals in the attached figures:

[0028] 10. Housing assembly; 20. Support assembly; 21. Support structure; 211. Guide groove; 212. First groove; 213. Second groove; 214. Third groove; 215. Fourth groove; 22. Reinforcing structure; 30. Limiting assembly; 31. First limiting structure; 32. Second limiting structure; 33. Third limiting structure; 34. Fourth limiting structure; 35. Opening. Detailed Implementation

[0029] The embodiments of this application will be further described in detail below with reference to the accompanying drawings and examples. The detailed description of the following embodiments and the accompanying drawings are used to illustrate the principles of this application by way of example, but should not be used to limit the scope of this application. This application can be implemented in many different forms and is not limited to the specific embodiments of the application herein, but includes all technical solutions falling within the scope of the claims.

[0030] These embodiments are provided to make the application thorough and complete, and to fully express the scope of the application to those skilled in the art. It should be noted that, unless otherwise specifically stated, the relative arrangement of components and steps, material composition, numerical expressions, and values ​​illustrated in these embodiments should be interpreted as merely exemplary and not as limiting.

[0031] It should be noted that, in the description of this application, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," and "outer," etc., indicating orientation or positional relationship, are only for the convenience of describing this application 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, and therefore should not be construed as a limitation of this application. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0032] Furthermore, the terms "first," "second," and similar terms used in this application do not indicate any order, quantity, or importance, but are merely used to distinguish different parts. "Vertical" is not strictly vertical, but within the permissible margin of error. "Parallel" is not strictly parallel, but within the permissible margin of error. Terms such as "including" or "contains" mean that the element preceding the word encompasses the element listed after it, and do not exclude the possibility of encompassing other elements as well.

[0033] It should also be noted that, in the description of this application, unless otherwise expressly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application depending on the specific circumstances. When a specific device is described as being located between a first device and a second device, an intermediary device may or may not be present between the specific device and the first or second device.

[0034] All terms used in this application have the same meaning as understood by one of ordinary skill in the art to which this application pertains, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and not as idealized or highly formalized, unless expressly defined herein.

[0035] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, they should be considered part of the specification.

[0036] like Figures 1 to 5 As shown, the cover glass receiving box disclosed in Embodiment 1 of this application includes: a box assembly 10, a support assembly 20, and a limiting assembly 30. The support assembly 20 includes a plurality of support structures 21, which are connected sequentially. The plurality of support structures 21 are disposed inside the box assembly 10, and there is a gap between the support structures 21 and the inner wall of the box assembly 10. The limiting assembly 30 includes a plurality of limiting assemblies, which are disposed at intervals between the plurality of support structures 21. A cover glass is disposed between adjacent limiting assemblies 30.

[0037] The technical solution of Embodiment 1 uses a support component to support the housing component, effectively preventing the lower housing from being easily squeezed and deformed when multiple cover glass housings are stacked together. The support component isolates the cover glass from the housing component, preventing impact from the external housing component from directly affecting the glass and causing breakage. Multiple limiting components isolate the individual cover glass panels from each other, preventing friction between adjacent cover glass panels when the entire housing shakes, thus avoiding damage to the glass surface. The technical solution of this application effectively solves the problem in the prior art where, during the transportation of cover glass, the housing is squeezed, causing the internal glass panels to collide and be squeezed, leading to product damage.

[0038] like Figure 1 and Figure 3 As shown, in the technical solution of Embodiment 1, four support structures 21 are connected sequentially in a grid-like structure. The ends of each support structure 21 abut against the inner wall of the housing assembly 10, and the limiting component 30 is disposed in the internal accommodating space formed by the four support structures 21. The two ends of each support structure 21 abut against the side walls of two oppositely arranged housing assemblies 10, and there is a predetermined gap between each support structure 21 and the side walls of the other two housing assemblies 10. All four support structures 21 are arranged sequentially in this manner. This arrangement of support structures 21 provides support for the housing assembly 10, reducing deformation of the housing assembly 10 under external force. Furthermore, it creates a separate space for the glass inside the housing assembly 10, making it less likely to affect the internal glass when the side walls of the housing assembly 10 deform, further preventing glass breakage under external force. Figure 1 , Figure 2 and Figure 5 As shown, in the technical solution of Embodiment 1, the limiting component 30 has an opening 35, which is located on the side of the limiting component 30 away from the bottom of the housing component 10. The opening 35 creates a gap between the cover glass on both sides of the corresponding limiting component 30, making it easier for workers to remove the cover glass. This avoids the problem of difficulty in removing the cover glass due to it being tightly attached to the limiting component 30. At the same time, it reduces the overall weight of the cover glass housing, making it easier to handle and transport.

[0039] like Figures 1 to 4 As shown, in the technical solution of Embodiment 1, the support component 20 further includes a reinforcing structure 22, which is connected to the support structure 21. The reinforcing structure 22 further improves the stability of the support structure 21, preventing the support structure 21 from failing due to external impact.

[0040] like Figures 1 to 4 As shown, in the technical solution of Embodiment 1, the reinforcing structure 22 is L-shaped and is located at the connection point of the two supporting structures 21, and is connected to each of the two supporting structures 21 respectively. The two intersecting supporting structures 21 generate four included angles, and a reinforcing structure 22 is provided at each included angle. The corners of the reinforcing structures 22 are fitted to the included angles, and the two reinforcing structures 22 located on both sides of the same supporting structure 21 are fixed by bolts. The reinforcing structure 22 improves the stability of the supporting structure 21, making the supporting structure 21 less prone to deformation and better protecting the internal cover glass.

[0041] like Figures 1 to 4 As shown, in the technical solution of Embodiment 1, the reinforcing structure 22 is made of aluminum alloy, and the multiple support structures 21 are made of polyethylene. The limiting component 30 is also made of polyethylene. The support structure 21 made of polyethylene has a smooth and soft surface with a certain degree of elasticity, and will not scratch the glass surface when rubbing against it, thus avoiding the problem of poor glass appearance quality. The aluminum alloy material has a certain strength, effectively preventing deformation of the support structure 21 supported by polyethylene. Furthermore, the aluminum alloy and polyethylene materials are relatively lightweight, facilitating subsequent handling and transportation of the cover glass container. At the same time, both materials have low cost, which helps to reduce the overall cost of the cover glass container.

[0042] like Figures 1 to 4 As shown, in the technical solution of Embodiment 1, the multiple support structures 21 are integrally formed. That is, the entire grid-shaped structure is an integrally formed structure. By using integrally formed support structures 21, the deformation of the support structures 21 under external pressure is further reduced, the stability of the entire support structure 21 is improved, and the protection effect on the internal cover glass is better.

[0043] like Figures 1 to 4 As shown, in the technical solution of Embodiment 1, the box assembly 10 can be made of corrugated cardboard. Corrugated cardboard boxes have a special structure with a corrugated layer between their inner and outer layers, making them less prone to deformation, and they are also lighter and cheaper.

[0044] like Figures 1 to 4As shown, in the technical solution of Embodiment 1, the cover glass housing also includes an adsorption component, which is disposed between the support component 20 and the housing component 10. The adsorption component includes a desiccant and activated carbon. The desiccant is used to prevent excessive moisture from causing the housing component 10 to become damp and easily deformed or damaged; on the other hand, it prevents moisture from condensing on the surface of the cover glass and forming watermarks, which would affect the appearance of the glass.

[0045] like Figure 6 As shown, the difference between the technical solution of Embodiment 2 and Embodiment 1 is that the support structure 21 has multiple guide grooves 211 arranged parallel to each other, and the limiting component 30 is partially located within the guide grooves 211. The guide grooves 211 facilitate the installation of the multiple limiting components 30 within the support structure 21. The width of the guide grooves 211 is greater than the thickness of the limiting component 30, and the two are in an interference fit, ensuring that their connection is not easily lost under the influence of external forces. The multiple guide grooves 211 limit the position of the limiting components 30, ensuring that the spacing between each limiting component 30 meets the preset requirement. Furthermore, during transport, the internal limiting components 30 are less prone to shaking, resulting in better limiting effect on the glass.

[0046] like Figure 7 and Figure 8As shown, the difference between the technical solution of Embodiment 3 and the technical solution of Embodiment 1 is that the four support structures 21 respectively have a first groove 212, a second groove 213, a third groove 214 and a fourth groove 215. The groove widths of the first groove 212, the second groove 213, the third groove 214 and the fourth groove 215 are different. The limiting component 30 includes a first limiting structure 31, a second limiting structure 32, a third limiting structure 33 and a fourth limiting structure 34. The first limiting structure 31, the second limiting structure 32, the third limiting structure 33 and the fourth limiting structure 34 are respectively configured to correspond to the first groove 212, the second groove 213, the third groove 214 and the fourth groove 215. The first groove 212 is directly opposite the raised area between two adjacent second grooves 213, and the second groove 213 is directly opposite the raised area between two adjacent first grooves 212. When the first limiting structure 31 is installed, its two ends abut against the bottom of the first groove 212 and the middle area between two adjacent second grooves 213, respectively. This is suitable for glass with the same thickness and width as the second groove 213, where both ends of the glass abut against the bottom of the second groove 213 and the middle area between two adjacent first grooves 212, respectively. Similarly, when the second limiting structure 32 is installed, it can be used to fix glass with the same thickness and width as the first groove 212. The third groove 214 is directly opposite the raised area between two adjacent fourth grooves 215, and the fourth groove 215 is directly opposite the raised area between two adjacent third grooves 214. Similarly, it can fix glass with the same thickness and width as either the third groove 214 or the fourth groove 215. Therefore, the above structure can fix four different sizes of glass, making it more versatile.

[0047] In summary, this application uses corrugated material, which is a multi-layered adhesive consisting of at least one layer of corrugated core paper and one layer of cardboard. It has high mechanical strength, can withstand collisions and drops during handling, and the corrugated cardboard box (box assembly 10) packaging features strong protection of the contents, easy identification, easy handling, easy opening, and exquisite printing. The internal structure of this application's storage box is designed as a "well"-shaped cardboard structure (support structure 21), which has strong stability. When the box is subjected to collisions and compression from the outside, the internal structure can support the sides to prevent bending and compression inwards, thus preventing damage to the product. The bottom of the "well"-shaped structure is reinforced with corner sleeves (reinforcing structure 22) made of aluminum alloy, connected by screws. This prevents the cardboard from twisting and increases its support and compression resistance, greatly enhancing the overall compression resistance of the storage box structure and the safety of the product. Simultaneously, the "well" structure allows the product to be placed in the middle, while desiccants and other auxiliary materials can be placed around it, reducing direct contact between the product and other materials. The box is divided into layers by partitions (limiting components 30), and the edges are beveled to prevent products from colliding with each other and reduce the product damage rate.

[0048] The embodiments of this application have now been described in detail. To avoid obscuring the concept of this application, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions of this application based on the above description.

[0049] While specific embodiments of this application have been described in detail by way of examples, those skilled in the art should understand that the above examples are for illustrative purposes only and are not intended to limit the scope of this application. Those skilled in the art should understand that modifications can be made to the above embodiments or equivalent substitutions can be made to some technical features without departing from the scope and spirit of this application. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any manner.

Claims

1. A glass-enclosed container with a cover plate, characterized in that, include: Box assembly (10); The support assembly (20) includes a plurality of support structures (21), which are connected sequentially, and are disposed inside the housing assembly (10), with a gap between the support structure (21) and the inner wall of the housing assembly (10). The limiting components (30) include multiple limiting components (30), which are arranged at intervals between multiple supporting structures (21), and a cover glass is provided between adjacent limiting components (30).

2. The glass container with a cover plate according to claim 1, characterized in that, The support structure (21) has multiple guide grooves (211) arranged in parallel to each other, and the limiting component (30) is partially located within the guide grooves (211).

3. The glass container with a cover plate according to claim 1, characterized in that, The four support structures (21) are connected in sequence to form a grid structure. The end of each support structure (21) abuts against the inner wall of the box assembly (10). The limiting component (30) is set in the internal accommodating space formed by the four support structures (21).

4. The glass container with a cover plate according to claim 2, characterized in that, The four support structures (21) each have a first groove (212), a second groove (213), a third groove (214), and a fourth groove (215). The groove widths of the first groove (212), the second groove (213), the third groove (214), and the fourth groove (215) are different. The limiting component (30) includes a first limiting structure (31), a second limiting structure (32), a third limiting structure (33), and a fourth limiting structure (34). The first limiting structure (31), the second limiting structure (32), the third limiting structure (33), and the fourth limiting structure (34) are respectively configured to correspond to the first groove (212), the second groove (213), the third groove (214), and the fourth groove (215).

5. The glass container with a cover plate according to claim 1, characterized in that, The limiting component (30) has an opening (35) located on the side of the limiting component (30) away from the bottom of the housing component (10).

6. The glass container with a cover plate according to claim 1, characterized in that, The support component (20) further includes a reinforcing structure (22) which is connected to the support structure (21).

7. The glass container with a cover plate according to claim 6, characterized in that, The reinforcing structure (22) is L-shaped and is located at the connection point of the two supporting structures (21), and is connected to the two supporting structures (21) respectively.

8. The glass cover box according to claim 6, characterized in that, The reinforcing structure (22) is made of aluminum alloy, and the multiple supporting structures (21) are made of polyethylene.

9. The glass container with a cover plate according to claim 1, characterized in that, The multiple support structures (21) are integrally formed structures.

10. The glass-enclosed container with a cover plate according to any one of claims 1 to 9, characterized in that, The cover glass container also includes an adsorption component, which is disposed between the support component (20) and the box body component (10).

Citation Information

Patent Citations

  • Glass substrate transport box

    CN1112509A

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