Packaging box and packaging structure
Patent Information
- Application Number
- CN202521845872.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-08-28
AI Technical Summary
[0004]但是,上述方式下,不仅附件盒单独的生产成本较高,附件盒的单独放置还会造成整体包装箱尺寸的增大,降低空间利用率且提高运输成本
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Figure CN224645398U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of packaging technology, and in particular to a packaging box and packaging structure. Background Technology
[0002] Currently, the packaging requirements for electronic devices are becoming increasingly stringent. They not only need to meet the requirements for pressure resistance and burst strength, but also need to package the ever-increasing number of accessories simultaneously.
[0003] The most common practice is to set up a separate accessory box, and then place the accessories in the accessory box separately from the electronic device inside the packaging box.
[0004] However, the above method not only results in higher production costs for accessory boxes, but also increases the overall size of the packaging box due to the separate placement of accessory boxes, reducing space utilization and increasing transportation costs. Utility Model Content
[0005] The first aspect of this application provides a packaging box, which includes...
[0006] At least one splicing unit, the at least one splicing unit is spliced end to end to form a packaging box body, the packaging box body is used to contain the first target item;
[0007] A receiving unit is formed on one side surface of the splicing unit, so that a receiving unit is formed on at least two opposite inner walls of the packaging box body, for accommodating a second target component adapted to the first target component.
[0008] In some embodiments, the aforementioned packaging box provided in this embodiment, wherein the splicing unit includes a first region, a second region, and a third region that are rotatably connected along its length;
[0009] The first region and the second region are used to form adjacent walls of the packaging box body;
[0010] The third region is used to stack and connect to the first region of the adjacent splicing unit.
[0011] In some embodiments, the aforementioned packaging box provided in this embodiment includes a first splicing component and a second splicing component;
[0012] The second splicing component includes a first part and a second part that are connected to each other. The first part is stacked on top of the first splicing component, and the second part is spaced apart from the first splicing component to form the receiving unit.
[0013] The accommodating unit is located in either the first region or the second region.
[0014] In some embodiments, the aforementioned packaging box provided in this embodiment, wherein the second splicing member covers the middle part of the first splicing member along the first direction, so that the two ends of the first splicing member along the first direction form a third part and a fourth part symmetrical with respect to the second splicing member; the first direction and the rotation axis direction of the first region relative to the second region satisfy the parallel condition.
[0015] The splicing unit corresponding to the second splicing component can form the side wall of the packaging box body;
[0016] The third region is formed at the end of the second splicing member along the length direction of the splicing unit;
[0017] The position on the third part corresponding to the first and second regions is used to form the upper flap of the packaging box body;
[0018] The position on the fourth part corresponding to the first and second regions is used to form the lower flap of the packaging box body.
[0019] In some embodiments, the aforementioned packaging box provided in this embodiment has a first slit along the first direction on the third part corresponding to the first region and the second region, to form a first upper flap and a second upper flap corresponding to the first region and the second region respectively;
[0020] The fourth part has a second slit along the first direction between the first region and the second region to form a first lower flap and a second lower flap corresponding to the first region and the second region, respectively.
[0021] In some embodiments, the aforementioned packaging box provided in this embodiment has a lifting area formed on the side of the first splicing member opposite to the second splicing member at a position corresponding to the second splicing member;
[0022] The lifting area is recessed into the body of the packaging box;
[0023] The lifting area is formed by folding.
[0024] In some embodiments, the aforementioned packaging box provided in this embodiment has the receiving unit open at both ends along a first direction;
[0025] Wherein, the first direction and the rotation axis direction of the first region relative to the second region satisfy the parallel condition.
[0026] In some embodiments, the aforementioned packaging box provided in this embodiment, wherein the second splicing component is a cardboard structure, and the housing unit is formed by folding.
[0027] In some embodiments, the packaging box provided in this embodiment is wherein the dimensions of the first region and the second region along the height direction of the splicing unit are greater than the dimensions of the third region in the same direction;
[0028] The third region is provided with a connecting part so that the second region and the first region of the adjacent splicing unit can be set at a target angle.
[0029] The second aspect of this embodiment provides a packaging structure, which includes...
[0030] A packaging box, the packaging box comprising at least one splicing unit, the at least one splicing unit being spliced end to end to form a packaging box body, the packaging box body being used to contain a first target item;
[0031] A receiving unit is formed on one side surface of the splicing unit, so that a receiving unit is formed on at least two opposite inner walls of the packaging box body, for receiving a second target component adapted to the first target component;
[0032] A last, which is detachably placed inside the packaging box to form a placement space for placing the first target component;
[0033] When the first target component is placed in the placement space, the last and the splicing unit are attached to the side facing the inside of the packaging box body, and a portion of the outer surface of the first target component is attached to the receiving unit. Attached Figure Description
[0034] The above and other objects, features, and advantages of exemplary embodiments of this application will become readily understood by reading the following detailed description with reference to the accompanying drawings. In the drawings, several embodiments of this application are illustrated by way of example and not limitation, with the same or corresponding reference numerals denoteing the same or corresponding parts, wherein:
[0035] Figure 1 A schematic diagram of the structure of a packaging box provided in this application is shown.
[0036] Figure 2 This diagram schematically illustrates a packaging box in a state awaiting assembly, as provided in this application.
[0037] Figure 3 This schematic diagram illustrates a packaging box provided in this application in a preliminary assembled state.
[0038] Figure 4 A schematic diagram illustrating the structure of a splicing unit in a packaging box provided in this application is shown.
[0039] Figure 5This illustration schematically shows a folding state diagram of a splicing unit in a packaging box provided in this application;
[0040] Figure 6 A schematic diagram of the structure of the first splicing component in the splicing unit provided in this application is shown.
[0041] Figure 7 A schematic diagram of the structure of the second splicing component in the splicing unit provided in this application is shown.
[0042] Figure 8 This schematic diagram illustrates the state of the packaging box body provided in this application being compressed;
[0043] Figure 9 A schematic diagram illustrating the state of the first target component embedded within the packaging structure is shown.
[0044] The reference numerals in the attached diagrams are as follows: splicing unit 1, first area 11, second area 12, third area 13, packaging box body 2, upper flap 21, first upper flap 211, second upper flap 212, lower flap 22, first lower flap 221, second lower flap 222, first target component 3, receiving unit 4, last 5, first splicing component 6, third part 61, fourth part 62, first slit 63, second slit 64, second splicing component 7, first part 71, second part 72, lifting area 8, first direction a. Detailed Implementation
[0045] Exemplary embodiments of this application will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of this application are shown in the drawings, it should be understood that this application may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of this application and to fully convey the scope of this application to those skilled in the art.
[0046] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application pertains.
[0047] It should be noted that in the description of this specification, the terms "upper," "lower," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and 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; the terms "connection," "installation," "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0048] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0049] Example 1
[0050] refer to Figure 1 , Figure 2 and attached Figure 3 As shown, this application provides a packaging box, which includes at least one splicing unit 1. The at least one splicing unit 1 is spliced end to end to form a packaging box body 2. The packaging box body 2 is used to accommodate a first target component 3. A receiving unit 4 is formed on one side surface of the splicing unit 1, so that a receiving unit 4 is formed on at least two opposite inner walls of the packaging box body 2, for accommodating a second target component (not shown in the figure) adapted to the first target component 3.
[0051] Understandably, in order to solve the problem of reducing the utilization rate of the internal space and increasing the transportation cost of separately setting accessory boxes in packaging boxes, the packaging box provided in this embodiment uses splicing units 1 of the same structural form to connect end to end to form the packaging box body 2 to accommodate the first target component 3, which greatly saves the space occupation and cost of splicing units 1 during transportation; at the same time, accommodating units 4 are formed on opposite side walls inside the packaging box body 2 to serve as accessory boxes to accommodate the accessories of the first target component 3. Without affecting the overall size of the packaging box, the accommodating units 4 are integrated with the box body to form accommodating units, reducing the cost of separately preparing and transporting accessory boxes; thus effectively solving the problem of reducing the utilization rate of the internal space and increasing the transportation cost of separately setting accessory boxes in packaging boxes.
[0052] In this embodiment, the packaging box can be used to package electronic devices such as mobile phones, tablets, laptops, monitors, servers, host chassis, and game consoles. That is, the first target component 3 can be, but is not limited to, electronic devices such as mobile phones, tablets, laptops, monitors, servers, host chassis, and game consoles. The following description of this embodiment will use a server as an example for detailed explanation. Correspondingly, the second target component is the cable, plug, power adapter, instruction manual, warranty manual, etc. that are compatible with the first target component 3. For the server, the second target component can include, but is not limited to, cables, plugs, power adapters, instruction manuals, warranty manuals, screw packs, hard drive trays, conversion cables, etc. Typically, when a server is packaged and transported, two lasts 5 are fitted onto the opposite ends of the server to form a buffer structure between the server and the packaging box. When the two lasts 5 are not connected, the server and the inner wall of the packaging box remain separated at the unconnected position, supported by the lasts 5. This position forms a hollow or suspended form. In this embodiment, the housing unit 4 can be used to fill this hollow or suspended position. The housing unit 4 can act as an accessory box without affecting the overall size of the packaging box and the effective storage space for the server. It can also provide all-round wrapping and cushioning for the server, improving packaging safety.
[0053] The splicing unit 1 can be a cardboard structure or a rigid plate structure. The size of the splicing unit 1 can be designed and adjusted according to the actual size of the first target component 3. The number of splicing units 1 can also be designed and adjusted according to the shape of the first target component 3. For example, when the first target component 3 is a server, i.e., it is a conventional hexahedral structure, then one splicing unit 1 can be selected, and the ends of the splicing unit 1 are connected to form a cylindrical structure. Alternatively, two splicing units 1 can be selected, and a cylindrical structure with a rectangular cross-section is formed by bending a single splicing unit 1 and connecting the ends of the two splicing units 1. Figure 3The packaging box body 2 is shown. When the first target component 3 has an octahedral structure, three splicing units 1 can be selected. By bending a single splicing unit 1 and connecting the ends of three splicing units 1, a cylindrical body with a hexagonal cross-section is formed, which is the packaging box body 2. This can be further explained in detail here. In this embodiment, the splicing unit 1 can be an integral structure or a combination. For example, when the splicing unit 1 is an integral structure, the receiving unit 4 can be formed on one side surface by integral molding. When the packaging box body 2 is formed, the integral splicing unit 1 can be used directly. When the splicing unit 1 is a combination, the splicing unit 1 can be pre-assembled when forming the packaging box body 2, or the splicing unit 1 can be assembled while the packaging box body 2 is being assembled. In this embodiment, the splicing unit 1 can be transported individually, and when transporting plate-shaped splicing units 1 of the same structural form, multiple layers can be stacked to maximize space utilization and greatly reduce transportation costs.
[0054] The receiving unit 4 can be integrated with the splicing unit 1. For example, the receiving unit 4 can be formed by folding a cardboard structure, or it can be integrally molded with the splicing unit 1 through injection molding. Alternatively, the receiving unit 4 can be separately mounted on the surface of the splicing unit 1, for example, by adhesive or snap-fit to maintain its position. The receiving unit 4 can be in the form of a cylinder, trough, or frame, as long as it has a receiving space and an opening communicating with that space for placing and storing the second target component. The size of the receiving unit 4 can be adjusted according to the actual spatial layout design. For example, when the server is placed into the packaging box along with the last 5, the side of the receiving unit 4 facing another receiving unit 4 can be flush with the server or maintain a small gap, while the side of the receiving unit 4 facing the box wall adjacent to it can abut against the last 5. Thus, the receiving unit 4 acts as an accessory box while also providing some cushioning.
[0055] As listed above, the packaging box provided in this embodiment is assembled and enclosed by splicing units 1 with the same structure. The uniformity of splicing units 1 can reduce production and transportation costs. At the same time, a receiving unit 4 is formed on the splicing unit 1 to receive the second target part, i.e., related accessories. Without changing the overall size of the packaging box, an integrated accessory box structure is formed, which effectively reduces the production cost of the accessory box.
[0056] Further, see attached document. Figure 2 and attached Figure 4In the specific implementation of the packaging box provided in this embodiment, the splicing unit 1 includes a first region 11, a second region 12 and a third region 13 that are rotatably connected along its length direction; the first region 11 and the second region 12 are used to form adjacent box walls of the packaging box body 2; the third region 13 is used to be stacked and connected to the first region 11 of the adjacent splicing unit 1.
[0057] It is understandable that, in order to enable the splicing unit 1 to be spliced together to form the packaging box body 2, in this embodiment, the splicing unit 1 can be set to include a first region 11, a second region 12, and a third region 13. The first region 11, the second region 12, and the third region 13 are all part of the splicing unit 1. The first region 11, the second region 12, and the third region 13 are arranged and connected sequentially along the length direction of the splicing unit 1. It is easy to understand that the first region 11, the second region 12, and the third region 13 can rotate around the height direction of the splicing unit 1. The specific rotation angle can be designed and adjusted according to the shape to be formed according to the actual needs. For example, when it is necessary to form a tube with a rectangular cross-section corresponding to the server, the adjacent regions form a 90-degree angle. In this embodiment, the dimensions of the first region 11, the second region 12, and the third region 13 in the height direction of the splicing unit 1 can be the same. Alternatively, the dimension of the third region 13 in the height direction can be set to be smaller than the dimensions of the other regions in the height direction of the splicing unit 1. Furthermore, the dimension of the third region 13 in the length direction of the splicing unit 1 can be designed and adjusted according to actual needs. It can be equal to or smaller than the dimension of the first region 11 in the length direction of the splicing unit 1, as long as the third region 13 can overlap with the adjacent first region 11. For example, refer to the attached diagram. Figure 1 The third region 13 has a smaller dimension along the length of the splicing unit 1. After being enclosed, the third region 13 only corresponds to the corner position of the packaging box body 2. This arrangement not only saves material costs but also avoids the third region 13 from occupying too much space inside the packaging body 1. In this embodiment, the third region 13 and the first region 11 can be connected by nailing at the overlapping position when they are stacked. Of course, in this embodiment, a connecting part (not shown in the figure) can also be provided in the third region 13. The connecting part can be an adhesive surface. For example, an adhesive surface can be provided on the side of the third region 13 away from the receiving unit 4, so that the adhesive surface of the third region 13 and the first region 11 of the adjacent splicing unit 1 can be directly connected to the first region 11 after they are stacked. The connecting part can also be a self-locking cable tie. Correspondingly, a corresponding opening can be provided on the first region 11 so that the self-locking cable tie can pass through the opening and lock the first region 11 and the third region 13 at the same time.
[0058] Further, see attached document. Figure 2 and attached Figure 5 The packaging box provided in this embodiment includes a splicing unit 1 comprising a first splicing component 6 and a second splicing component 7; the second splicing component 7 comprises a first part 71 and a second part 72 connected to each other, the first part 71 being stacked with the first splicing component 6, and the second part 72 being spaced apart from the first splicing component 6 to form the receiving unit 4; wherein the receiving unit 4 is located in the first region 11 or the second region 12.
[0059] It is understandable that, in order to achieve rapid prototyping of the housing unit 4 and simplify the forming steps of the splicing unit 1, the splicing unit 1 in this embodiment is configured to include a first splicing component 6 and a second splicing component 7. Both the first splicing component 6 and the second splicing component 7 can be cardboard structures. The first splicing component 6 and the second splicing component 7 can be connected by adhesive bonding, or no additional connection treatment can be performed; the friction between the cardboard pieces can maintain their overlapping relationship. The first splicing component 6 can serve as the outer structure of the packaging box, and the second splicing component 7 can serve as the inner panel structure inside the box. The second splicing component 7 can include a first part 71 and a second part 72 arranged sequentially along the length direction of the splicing unit 1. The first part 71 can fit against the first splicing component 6 to provide reinforcement, and the second part 72 can be formed by folding. The housing unit 4 can be open at both ends along the first direction a, for example, 4 and Figure 5 The U-shaped channel shown, when combined with the first splicing piece 6, forms a cylindrical structure. When the second splicing piece 7 is not folded, it can be a flat plate, allowing for individual stacked transport. The second part 72 can be U-shaped, C-shaped, V-shaped, etc., as long as it can fit the aforementioned hollow or suspended positions. See the attached diagram for details. Figure 7 Creases can be pre-set on the second splicing component 7 to facilitate folding and forming the second part 72. In this embodiment, a first part 71 can also be set on each side of the second part 72 to improve the stability of the second part 72. The second part 72 can be set corresponding to the first area 11 or the second area 12, and can be adjusted according to the actual layout design of the first target component 3 in the packaging box body 2, which will not be elaborated here. Accordingly, during transportation, the splicing unit 1 can be transported by stacking the first splicing component 6 and the second splicing component 7 separately, or by stacking the splicing unit 1 as a whole structure. In this configuration, please refer to the attached document. Figure 8 The splicing unit 1 or the packaging box body 2 can be pressed to form a plate-like structure, reducing space occupation and transportation costs.
[0060] Further, see attached document. Figure 4 and attached Figure 5In this embodiment, the packaging box provided has the second splicing member 7 covering the middle part of the first splicing member 6 along the first direction a, so that the two ends of the first splicing member 6 along the first direction a form a third part 61 and a fourth part 62 symmetrical with respect to the second splicing member 7; the first direction a and the rotation axis direction of the first region 11 relative to the second region 12 satisfy the parallel condition; the splicing unit 1 corresponding to the second splicing member 7 can form the side wall of the packaging box body 2; the third region 13 is formed at the end of the second splicing member 7 along the length direction of the splicing unit 1; the position on the third part 61 corresponding to the first region 11 and the second region 12 is used to form the upper flap 21 of the packaging box body 2; the position on the fourth part 62 corresponding to the first region 11 and the second region 12 is used to form the lower flap 22 of the packaging box body 2.
[0061] It is understandable that, in order to form a complete packaging box, this embodiment covers the middle of the first splicing component 6 in the height direction with the second splicing component 7, so that the overlapping position of the first splicing component 6 and the second splicing component 7 is used to form the side wall of the packaging box. Correspondingly, a third part 61 and a fourth part 62, which are symmetrical with respect to the second splicing component 7, are formed at both ends of the first splicing component 6 along the first direction a, which can be used to cover the top and bottom openings. This setting is easily understood by those skilled in the art and will not be elaborated here. It is also easy to understand that, in this embodiment, the third region 13 can be on the second splicing component 7, on the first splicing component 6, or simultaneously on both the first splicing component 6 and the second splicing component 7.
[0062] Further, see attached document. Figure 1 and attached Figure 6 In the packaging box provided in this embodiment, in a specific implementation, the third part 61 is provided with a first slit 63 along the first direction a between the first region 11 and the second region 12 to form a first upper flap 211 and a second upper flap 212 respectively corresponding to the first region 11 and the second region 12; the fourth part 62 is provided with a second slit 64 along the first direction a between the first region 11 and the second region 12 to form a first lower flap 221 and a second lower flap 222 respectively corresponding to the first region 11 and the second region 12.
[0063] It is understandable that, in order to use the upper flap 21 and the lower flap 22 to form a complete packaging box, in this embodiment, the upper flap 21 can be broken to form the first upper flap 211 and the second upper flap 212, and the lower flap 22 can be broken to form the first lower flap 221 and the second lower flap 222, by setting the first slit 63 and the second slit 64. Then, when the second splicing piece 7 and the first splicing piece 6 corresponding to the second splicing piece 7 form a cylindrical structure, the first upper flap 211, the second upper flap 212, the first lower flap 221 and the second lower flap 222 can be spliced to seal the upper and lower openings of the cylindrical body, forming a complete packaging box, and realizing all-round packaging and covering of the server.
[0064] Further, see attached document. Figure 3 In the packaging box provided in this embodiment, in a specific implementation, the first splicing component 6 has a lifting area 8 formed on the side opposite to the second splicing component 7 at the position corresponding to the second splicing component 7; the lifting area 8 is recessed into the packaging box body 2; wherein, the lifting area 8 is formed by folding.
[0065] Understandably, to improve the ease of use of the packaging box, a lifting area 8 can be provided on the outside of the box in this embodiment, making it easier to handle after packaging. The lifting area 8 can be formed by a recessed fold into the box, that is, by utilizing a portion of the structure of the first splicing member 6 to form an inward recess. The shape of the lifting area 8 is not limited here, and can be rectangular, circular, trapezoidal, etc. In this embodiment, reinforcing strips can also be provided on the edges of the lifting area 8, which can be, but are not limited to, plastic, metal, etc., to prevent damage to the structure or material of the lifting area 8 itself under frequent lifting and handling.
[0066] Example 2
[0067] Reference Appendix Figure 9 This embodiment provides a packaging structure, which includes a packaging box and a last 5. The packaging box includes at least one splicing unit 1, and the at least one splicing unit 1 is spliced end to end to form a packaging box body 2. The packaging box body 2 is used to accommodate a first target part 3. A receiving unit 4 is formed on one side surface of the splicing unit 1, so that a receiving unit 4 is formed on at least two opposite inner walls of the packaging box body 2, for accommodating a second target part adapted to the first target part 3. The last 5 is detachably placed in the packaging box body 2 to form a placement space for placing the first target part 3. When the first target part 3 is placed in the placement space, the last 5 and the splicing unit 1 are attached to the side facing the inside of the packaging box body 2, and part of the outer surface of the first target part 3 is attached to the receiving unit 4.
[0068] It is understood that the packaging box provided in this embodiment can be used to package electronic devices such as mobile phones, tablets, laptops, monitors, servers, host chassis, and game consoles. That is, the first target component 3 can be, but is not limited to, electronic devices such as mobile phones, tablets, laptops, monitors, servers, host chassis, and game consoles. The following description of this embodiment will take a server as an example. Correspondingly, the second target component is the cable, plug, power adapter, instruction manual, warranty manual, etc. that are compatible with the first target component 3. For the server, the second target component can include, but is not limited to, cables, plugs, power adapters, instruction manuals, warranty manuals, screw packs, hard drive brackets, conversion cables, etc.
[0069] Among them, the last 5 is a frame structure with a certain degree of elasticity, which can provide support and cushioning between the first target part 3 and the packaging box, such as foam plastic, wood, paper, etc. The last 5 can be, but is not limited to, a groove-shaped structure, that is, the groove is the placement space or a partial placement space. The last 5 can be fitted onto the end of the first target part 3. In this embodiment, two lasts 5 can be fitted onto the opposite ends of the first target part 3 to form a buffer support structure between the first target part 3 and the packaging box. In this embodiment, the size of the last 5 can be designed so that when two lasts 5 are fitted onto the first target part 3 at the same time, the two lasts 5 do not connect with each other. Then, the unconnected position can be used to cooperate with the setting of the receiving unit 4. The setting of the receiving unit 4 can fill the hollow or suspended position. It can not only serve as an accessory box, but also not affect the overall size of the packaging box and the effective storage space for the server. It can also use the receiving unit 4 to fit and support the position of the first target part 3 that is not covered by the last 5, so as to achieve all-round wrapping and buffering of the first target part 3 and improve the packaging safety.
[0070] The packaging box provided in this embodiment is the same as the packaging box in Embodiment 1. For its structure and working principle, please refer to the detailed description of Embodiment 1, which will not be repeated here.
[0071] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A packaging box, characterized in that, It includes: At least one splicing unit, the at least one splicing unit is spliced end to end to form a packaging box body, the packaging box body is used to contain the first target item; A receiving unit is formed on one side surface of the splicing unit, so that a receiving unit is formed on at least two opposite inner walls of the packaging box body, for accommodating a second target component adapted to the first target component.
2. The packaging box according to claim 1, characterized in that: The splicing unit includes a first region, a second region, and a third region that are rotatably connected along its length. The first region and the second region are used to form adjacent walls of the packaging box body; The third region is used to stack and connect to the first region of the adjacent splicing unit.
3. The packaging box according to claim 2, characterized in that: The splicing unit includes a first splicing component and a second splicing component; The second splicing component includes a first part and a second part that are connected to each other. The first part is stacked on top of the first splicing component, and the second part is spaced apart from the first splicing component to form the receiving unit. The accommodating unit is located in either the first region or the second region.
4. The packaging box according to claim 3, characterized in that: The second splicing component covers the middle part of the first splicing component along the first direction, so that the two ends of the first splicing component along the first direction form a third part and a fourth part that are symmetrical with respect to the second splicing component; the first direction and the rotation axis direction of the first region relative to the second region satisfy the parallel condition. The splicing unit corresponding to the second splicing component can form the side wall of the packaging box body; The third region is formed at the end of the second splicing member along the length direction of the splicing unit; The position on the third part corresponding to the first and second regions is used to form the upper flap of the packaging box body; The position on the fourth part corresponding to the first and second regions is used to form the lower flap of the packaging box body.
5. The packaging box according to claim 4, characterized in that: The third part has a first slit along the first direction between the first region and the second region to form a first upper flap and a second upper flap corresponding to the first region and the second region, respectively. The fourth part has a second slit along the first direction between the first region and the second region to form a first lower flap and a second lower flap corresponding to the first region and the second region, respectively.
6. The packaging box according to claim 4, characterized in that: The first splicing component has a lifting area formed on the side opposite to the second splicing component at the position corresponding to the second splicing component; The lifting area is recessed into the body of the packaging box; The lifting area is formed by folding.
7. The packaging box according to claim 3, characterized in that: The receiving unit has openings at both ends along the first direction; Wherein, the first direction and the rotation axis direction of the first region relative to the second region satisfy the parallel condition.
8. The packaging box according to claim 3, characterized in that: The second splicing component is a cardboard structure, and the receiving unit is formed by folding.
9. The packaging box according to claim 2, characterized in that: The dimensions of the first region and the second region along the height direction of the splicing unit are greater than the dimensions of the third region in the same direction; The third region is provided with a connecting part so that the second region and the first region of the adjacent splicing unit can be set at a target angle.
10. A packaging structure, characterized in that, It includes: A packaging box, the packaging box comprising at least one splicing unit, the at least one splicing unit being spliced end to end to form a packaging box body, the packaging box body being used to contain a first target item; A receiving unit is formed on one side surface of the splicing unit, so that a receiving unit is formed on at least two opposite inner walls of the packaging box body, for receiving a second target component adapted to the first target component; A last, which is detachably placed inside the packaging box to form a placement space for placing the first target component; When the first target component is placed in the placement space, the last and the splicing unit are attached to the side facing the inside of the packaging box body, and a portion of the outer surface of the first target component is attached to the receiving unit.