Packaging box

By introducing a stepped structure and protective bevel design into the packaging box, the problems of material waste and poor cushioning effect are solved, achieving the effects of improved space utilization and product protection.

CN115848789BActive Publication Date: 2026-01-23ASUSTEK COMPUTER INC
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Patent Information

Application Number
CN202111117122.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-23
Publication Date
2026-01-23
Estimated Expiration
2041-09-23

AI Technical Summary

Technical Problem

Existing electronic product packaging boxes use excessive amounts of materials, resulting in significant space waste and poor cushioning, leading to increased transportation costs and a high risk of product damage.

Method used

Design a packaging box comprising a lid, a box body, a connecting plate, and an inner lining partition. The inner lining partition is folded to form a stepped structure to enhance space utilization, and protective bevels are provided on the box body and lid to prevent collision damage.

Benefits of technology

It improves the space utilization of the packaging box, reduces the amount of material used, lowers transportation costs, and protects the product from collision damage through protective bevels, while providing a stable and novel appearance design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a package, which includes a cover, a box, a connecting plate and an inner partition. The connecting plate is bent to connect between the cover and the box, so that the cover is adapted to rotate relative to the box to open or close. The inner partition is arranged in the box and is folded to form a main space of a stepped structure, wherein the stepped structure is used to hold an article, and the lower surface of the stepped structure and the inner surface of the box jointly form a containing space to contain another article.
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Description

TECHNICAL FIELD

[0001] The present invention relates to a packaging box. BACKGROUND

[0002] With the electronic products being updated and replaced at an increasingly fast pace, the styles of packaging boxes used to accommodate the electronic products and their accessories are also emerging in an endless stream. At present, various electronic products are sold on the market, and because the electronic components therein are highly precise and fragile, in order to avoid the electronic products and their related accessories from being damaged by impact during transportation, and to reduce the damage rate of the products during transportation, the electronic products and their accessories must be completely covered with packaging boxes. In order to separate the products and their accessories in the outer box body, the existing products and accessories are each packaged in a small box, and then the small boxes are collectively placed in a large packaging box, which results in excessive use of materials. At the same time, because the sizes and shapes of the various small packaging boxes are often inconsistent, the volume of the outer packaging box must be increased to accommodate all the small packaging boxes, which results in the disadvantages of space waste and increased transportation costs.

[0003] In addition, there are also packaging structures that provide multiple partitions in the outer packaging box and separate the space by means of adhesion, but such structures not only increase the labor, material and time costs during molding, but also result in the disadvantages of unstable packaging box body and poor buffering effect due to adhesion problems. SUMMARY

[0004] The present invention provides a packaging box, which includes a cover body, a box body, a connecting plate and an inner lining partition. The connecting plate is bent and connected between the cover body and the box body, so that the cover body is adapted to rotate relative to the box body to open and close. The inner lining partition is provided in the box body and is folded to form a stepped structure main space, wherein the stepped structure is used to hold an article, and the lower surface of the stepped structure and the inner surface of the box body jointly form a holding space for holding another article.

[0005] Based on the above, the packaging box of the embodiment of the present invention can have an inner lining partition provided in the box body, which is folded to form a stepped structure for holding an article, and the lower surface of the stepped structure and the inner surface of the box body jointly form another holding space for holding another article. With such a configuration, the inner lining partition with the stepped structure not only provides a design-sensed appearance, but also improves the space utilization of the packaging box. BRIEF DESCRIPTION OF DRAWINGS

[0006] The accompanying drawings are included to provide a further understanding of the present invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the present invention and, together with the description, serve to explain the principles of the present invention.

[0007] Figure 1 A packaging box according to an embodiment of the present invention in an open state;

[0008] Figure 2 A cross-sectional view of a first inner liner partition of a packaging box according to an embodiment of the present application;

[0009] Figure 3 A cross-sectional view of a first inner liner partition of a packaging box according to an embodiment of the present application;

[0010] Figure 4 A cross-sectional view of a second inner liner partition of a packaging box according to an embodiment of the present application;

[0011] Figure 5 A cross-sectional view of a packaging box according to an embodiment of the present application;

[0012] Figure 6 A cross-sectional view of a packaging box according to an embodiment of the present application;

[0013] Figure 7 A perspective view of a packaging box according to another embodiment of the present application in an open state;

[0014] Figure 8 A perspective view of a packaging box according to another embodiment of the present application in a closed state;

[0015] Figure 9 A cross-sectional view of a packaging box according to another embodiment of the present application.

[0016] BRIEF DESCRIPTION OF DRAWINGS

[0017] 100, 100a: packaging box

[0018] 110: cover

[0019] 112: cover protection slope

[0020] 114, 126: side surface

[0021] 115: top protection slope

[0022] 116: top surface

[0023] 120: box body

[0024] 122: box body protection slope

[0025] 130: connecting plate

[0026] 132: folding line

[0027] 140: first inner liner partition, inner liner partition

[0028] 142: top surface

[0029] 144: stepped platform

[0030] 148: Incline

[0031] 149: Lapel

[0032] 150: Second inner lining partition

[0033] ob1, ob2: Items

[0034] ST: Stepped structure

[0035] Sm: Main Space

[0036] S1: First accommodating space

[0037] S2: Storage space

[0038] S3: Second accommodating space Detailed Implementation

[0039] Reference will now be made in detail to exemplary embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same element references are used in the drawings and description to denote the same or similar parts.

[0040] Figure 1 This is a perspective view of a packaging box in the open state according to an embodiment of the present invention. Figure 2 This is a cross-sectional schematic diagram of an inner lining partition of a packaging box according to an embodiment of the present invention. Please refer to... Figure 1 and Figure 2 The packaging box 100 may include a lid 110, a box body 120, a connecting plate 130, and a first inner liner partition 140. In this embodiment, the lid 110 and the box body 120 may be two separate components, connected by the connecting plate 130 to allow the lid 110 to rotate relative to the box body 120 for opening and closing. The packaging box 100 can be used to accommodate multiple items ob1 and ob2. Specifically, the packaging box 100 can be used to accommodate a main item (e.g., item ob1) and at least one accessory of the main item (e.g., item ob2). In this embodiment, the packaging box 100 may be a packaging box for accommodating a laptop computer; that is, item ob1 may include a laptop computer, and item ob2 may include accessories such as a power cord, mouse, and headphones for the laptop computer. Of course, in other embodiments, the packaging box 100 may also be a packaging box for accommodating portable electronic devices such as tablet computers and smartphones; this embodiment is not limited to this.

[0041] Please refer to the following at the same time Figure 1 and Figure 2In one embodiment, the box body 120 can frame an initial accommodating space, and a first inner lining partition 140 can be disposed within the box body 120 to divide this initial accommodating space into multiple spaces for accommodating items. Specifically, the first inner lining partition 140 is folded to form a shape as shown in the figure. Figure 1 In this embodiment, the first inner lining partition 140 of the stepped structure ST shown can be integrally formed and folded from a single sheet (e.g., cardboard). Thus, the main space Sm formed by the stepped structure ST can be used to hold one of a plurality of items (e.g., item ob1), while the lower surface of the stepped structure ST and the inner surface of the box body 120 together form a first accommodating space S1 to accommodate another of the plurality of items (e.g., item ob2). Further, the stepped structure ST may include a top surface 142 and a stepped platform surface 144 lower than the top surface 142, and item ob1 can be placed within this main space Sm (e.g., placed on the stepped platform surface 144). Furthermore, item ob2 can be placed within the first accommodating space S1 spaced out by the lower surface of the first inner lining partition 140. With this configuration, since the first inner lining partition 140 has a stepped structure ST, from the direction of the top view, the first accommodating space S1 spaced out by the stepped structure ST overlaps with the stepped platform surface 144. In other words, from the perspective of the top view, the main space Sm used to hold item ob1 overlaps with the first accommodating space S1 used to hold item ob2. That is to say, the area of ​​the first accommodating space projected onto the bottom surface of the box 120 overlaps with the area of ​​the main space Sm projected onto the bottom surface of the box 120, thus improving the space utilization of the packaging box.

[0042] In this embodiment, the packaging box 100 may include a plurality of first inner lining partitions 140, such as Figure 1 Two items are shown, respectively positioned on opposite sides of the box body 120. With this configuration, the opposite ends of item ob1 can be placed on the stepped platform surface 144 of the first inner lining partition 140 on opposite sides of the box body 120, i.e., the main space Sm. Furthermore, multiple items ob2 can be placed within the multiple first accommodating spaces S1 separated by the multiple first inner lining partitions 140. From the direction of the top view, the multiple first accommodating spaces S1 overlap with the stepped platform surface 144 used to hold item ob1. That is, the area of ​​the first accommodating space projected onto the bottom surface of the box body 120 overlaps with the area of ​​the main space Sm projected onto the bottom surface of the box body. In other words, the main space used to hold item ob1 overlaps vertically with the multiple first accommodating spaces S1 used to hold multiple items ob2, thus improving the space utilization of the packaging box 100. Furthermore, in one embodiment, another accommodating space S2 can be defined between the first inner lining partitions 140 disposed on opposite sides of the box body 120, which can be used to accommodate other accessories such as article ob1, further increasing the accommodating space of the packaging box 100.

[0043] Figure 3 This is a schematic diagram showing the opening of the first inner lining partition of a packaging box according to an embodiment of the present invention. Please refer to... Figure 3 In this embodiment, the first inner lining partition 140 may include a flap 149 disposed at an end near the box body 120. The flap 149 can be bent to abut against the inner surface of the box body 120, so that the first inner lining partition 140 is detachably fixed to the box body 120. Therefore, the packaging box 100 can detachably fix the first inner lining partition 140 to the box body 120 without the use of adhesive, simplifying the assembly complexity. Furthermore, the user can easily open the first inner lining partition 140 to... Figure 3 The state shown indicates that the item ob2 stored in the first accommodating space S1 can be retrieved.

[0044] Figure 4 This is a schematic diagram showing the opening of the second inner lining partition of a packaging box according to an embodiment of the present invention. Please refer to... Figure 1 and Figure 4 In one embodiment, the packaging box 100 may further include a second inner lining partition 150 disposed within the box body 120, and the top surface of the second inner lining partition 150 may be substantially coplanar with the stepped platform surface 144 of the first inner lining partition 140, so that the item ob1 can rest against the stepped platform surface 144 of the first inner lining partition 140 and the top surface of the second inner lining partition 150. Alternatively, the top surface of the second inner lining partition 150 may be substantially lower than the stepped platform surface 144, so as not to affect (interfere with) the placement of the item ob1. In this embodiment, in addition to defining the accommodating space S2 together with the first inner lining partitions 140 on opposite sides, the second inner lining partition 150 may also, as Figure 4 The folded section forms a second accommodating space S3 together with the inner surface of the box body 120. Furthermore, the second inner lining partition 150 can also be bent and pressed against the inner surface of the box body 120 via a flap, allowing the second inner lining partition 150 to be detachably fixed to the box body 120. This simplifies assembly complexity and allows the user to easily open the second inner lining partition 150 to access items (such as other accessories of item ob1) stored in the second accommodating space S3.

[0045] Figure 5 This is a schematic diagram of some components of a packaging box according to an embodiment of the present invention. Figure 6 This is another perspective view of a portion of a packaging box according to an embodiment of the present invention. It should be noted that, for the sake of simplicity, Figure 5 and Figure 6 The inner lining partitions 140 and 150 are not shown. Please also refer to... Figure 5 and Figure 6In this embodiment, the cover 110 and the box 120 can be two separate and independent components, and can be folded from two separate plates (e.g., cardboard). The cover 110 and the box 120 can be connected via a connecting plate 130, wherein the connecting plate 130 can be as follows: Figure 6 The connecting plate 130 is flexibly connected between the cover 110 and the box 120, allowing the cover 110 to rotate relative to the box 120 for opening and closing. In one embodiment, the connecting plate 130 can be bent along a central fold line 132, with the two sides of the fold line 132 respectively... Figure 6 As shown, the lid 110 and box 120 fit together, allowing the lid 110 and box 120 to open and close relative to each other via the fold line 132 of the connecting plate 130. In this configuration, the panels that fold out the lid 110 and box 120 can be substantially the same or similar, simplifying the design and assembly process of the panels. Furthermore, the packaging box 100 connected via the connecting plate 130... Figure 5 When the box 100 is in the open state as shown on the left, the box body 120 will tilt slightly due to the lifting of the connecting plate 130, forming an acute angle with the supporting surface (e.g., a table). In other words, when the packaging box 100 is in the open state, the box body 120 will be placed on the table at a slight tilt, which can have the effect of displaying the product (e.g., item ob1).

[0046] In one embodiment, the box body 120 may further include a box body protective slope 122, connected between adjacent side surfaces 126 of the box body 120, and forming obtuse angles with the adjacent side surfaces 126 of the box body 120 respectively. Correspondingly, the cover 110 may include a cover body protective slope 112 corresponding to the box body protective slope 122, connected between adjacent side surfaces 114 of the cover 110, and forming obtuse angles with the adjacent side surfaces 114 of the cover 110 respectively. In other words, the protective slopes 112 and 122 forming obtuse angles with the corresponding side surfaces can form chamfers at the vertical corners of the packaging box 100, making the packaging box 100 an octagonal box body. With this configuration, the protective slopes 112 and 122 can prevent damage to the packaging box 100 caused by collisions between the corners of the packaging box 100 and the surrounding environment during transportation or movement, and can also provide a buffering effect against external impacts. In addition, the presence of protective bevels 112 and 122 not only ensures the structural stability of the packaging box 100, but also provides the packaging box 100 with a novel and brand-new appearance.

[0047] Figure 7 This is a perspective view of a packaging box in the open state, according to another embodiment of the present invention. Figure 8This is a perspective view of a packaging box in a closed state according to another embodiment of the present invention. It must be noted that the packaging box 100a of this embodiment is similar to the packaging box of the aforementioned embodiment. Therefore, this embodiment uses the component reference numerals and some content from the aforementioned embodiments, where the same reference numerals are used to represent the same or similar components, and descriptions of the same technical content are omitted. For explanations of the omitted parts, please refer to the aforementioned embodiments; they will not be repeated here. Please refer to... Figure 7 as well as Figure 8 The following will explain the differences between the packaging box 100a of this embodiment and the packaging box of the previous embodiment.

[0048] Please refer to Figure 7 and Figure 8 In this embodiment, the cover 110 may further include a top protective slope 115, which connects the top surface 116 and the corresponding side surface 114 of the cover 110, and forms obtuse angles with the top surface 116 and the corresponding side surface 114 of the cover 110, respectively. In this configuration, the first inner liner partition 140 may include a slope 148 corresponding to the top protective slope 115, which forms an obtuse angle with the top surface 144 of the first inner liner partition 140, and may be parallel to the top protective slope 115, allowing the cover to smoothly cover the box 120. Thus, the top protective slope 115 can prevent damage to the cover 110 caused by collisions between the corners of the cover 110 and the surrounding environment during transportation or movement, and also provides a buffering effect against external impacts. Furthermore, the presence of the top protective slope 115 not only ensures good structural stability of the packaging box 100a, but also provides a novel and new appearance for the packaging box 100a. In this embodiment, the top protective bevel 115 can be disposed on opposite sides (e.g., left and right sides) of the top surface 116 of the cover 110, and respectively connected to the corresponding side surfaces 114 to form a symmetrical appearance. Of course, this embodiment does not limit the location and number of the top protective bevel 115. For example, in other embodiments, the top protective bevel 115 can also be disposed on all sides (e.g., the four sides of the top surface 116) of the top surface 110, so that the cover can have a diamond-like appearance.

[0049] Figure 9 This is a schematic diagram of some components of a packaging box according to another embodiment of the present invention. Please refer to... Figure 9 Similar to the configuration of the previous embodiments, in this embodiment, the cover 110 and the box 120 can also be connected via a connecting plate 130, wherein the connecting plate 130 can be as follows: Figure 9The connecting plate 130 is bent and connected between the cover 110 and the box 120, as shown, so that the cover 110 is adapted to rotate relative to the box 120 for opening and closing. In one embodiment, the connecting plate 130 can be bent along the central fold line 132, and the two sides of the fold line 132 can be respectively as shown. Figure 9 As shown, the lid 110 and the box 120 fit together, so that the lid 110 and the box 120 can be opened and closed relative to each other via the fold line 132 of the connecting plate 130. In this configuration, the packaging box 100 connected via the connecting plate 130... Figure 9 When the box 100 is in the open state, the box body 120 can be slightly tilted by the lifting of the connecting plate 130, forming an acute angle with the supporting surface (e.g., a table). In other words, when the packaging box 100 is in the open state, the box body 120 will be placed on the table at a slight tilt, which can have the effect of displaying the product (e.g., item ob1).

[0050] In summary, the packaging box of this invention may have an inner lining partition disposed within the box body, which, when folded, forms a stepped structure for holding items. The lower surface of this stepped structure, together with the inner surface of the box body, forms another accommodating space for accommodating other items. This configuration not only provides a stylish appearance with the stepped inner lining partition but also improves the space utilization of the packaging box. Furthermore, the box body and lid may also include corresponding protective bevels, which are respectively connected between adjacent side surfaces of the box body and lid, forming obtuse angles with the adjacent side surfaces of the box body and lid. This configuration prevents damage to the packaging box caused by collisions with the surrounding environment due to sharp edges formed by adjacent side surfaces during transportation or movement. In addition, the presence of the protective bevels not only ensures good structural stability of the packaging box but also provides a novel and refreshing appearance.

[0051] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.

Claims

1. A packaging box, characterized in that, include: Cover; Box body; A connecting plate, bent, is connected between the cover and the box body to allow the cover to rotate relative to the box body for opening and closing; The first inner lining partition is disposed in the box and folded to form a stepped main space. The stepped structure includes a top surface and a stepped platform surface lower than the top surface. The lower surface of the stepped structure and the inner surface of the box together form a first accommodating space. as well as A second inner lining partition is disposed inside the box and folded to form a second accommodating space together with the inner surface of the box. The top surface of the second inner lining partition is lower than or coplanar with the stepped platform surface.

2. The packaging box according to claim 1, characterized in that, The first inner lining partition includes a plurality of first inner lining partitions, which are respectively disposed on opposite sides of the box body.

3. The packaging box according to claim 1, wherein the first inner lining partition is integrally formed and folded.

4. The packaging box according to claim 1, wherein, viewed from the top view, the first accommodating space overlaps with the stepped platform surface.

5. The packaging box according to claim 1, wherein articles are placed on the stepped platform surface and the top surface of the second inner lining partition.

6. The packaging box according to claim 1, wherein the box body includes a box body protective slope, which is connected between adjacent two side surfaces of the box body and forms an obtuse angle with the adjacent two side surfaces of the box body respectively, and the cover includes a cover body protective slope corresponding to the box body protective slope, which is connected between adjacent two side surfaces of the cover and forms an obtuse angle with the adjacent two side surfaces of the cover respectively.

7. The packaging box according to claim 1, wherein the cover further includes a top protective slope, connected between the top surface of the cover and the corresponding side surface, and forming an obtuse angle with the top surface and the corresponding side surface of the cover, respectively.

8. The packaging box according to claim 7, wherein the first inner lining partition includes a slope corresponding to the top protective slope, which forms an obtuse angle with the top surface of the first inner lining partition.

Citation Information

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