Shoe box and shoe box assembly
By introducing components such as airflow generators, heating elements, and germicidal lamps into the shoe box, the problems of insufficient ventilation, bacterial growth, and odor inside the shoe box are solved, enabling rapid drying and sterilization of the shoes and ensuring healthy use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG HAIXING PLASTIC & RUBBER CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-28
AI Technical Summary
Shoes can breed bacteria and produce odors in the shoebox after prolonged use, which can affect human health.
Design a shoe box comprising a top cover and an airflow generator. The top cover has a chamber and an air inlet. The airflow generator blows air into the chamber to accelerate gas flow. Combined with a heating element, an ozone generator, and a germicidal lamp, it achieves ventilation, deodorization, and sterilization functions.
It effectively solves the problem of insufficient ventilation inside the shoe box, reduces bacterial growth and odor, improves the drying and sterilization effect of the shoes, and ensures healthy use.
Smart Images

Figure CN224171590U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of shoe box technology, and in particular to a shoe box and shoe box components. Background Technology
[0002] Shoes are a necessity for everyone. As living standards improve, so do the demands for shoes, from durability and comfort to their impact on health. In daily life, shoe boxes are commonly used to store shoes. However, after prolonged use, shoes accumulate stains and bodily fluids, which can lead to bacterial growth, unpleasant odors, and even health risks when placed in a closed box. Utility Model Content
[0003] In order to solve the above-mentioned technical problems, or at least partially solve the above-mentioned technical problems, this application provides a shoe box.
[0004] Firstly, this application provides a shoe box, comprising:
[0005] The shoe box body has a storage space for accommodating shoes and an opening communicating with the storage space, the opening being located at the top of the shoe box body;
[0006] The functional module includes a top cover and an airflow generator. The top cover is located on the top of the shoe box body to close the opening. The top cover has a closed chamber, and the surface of the top cover used to cover the opening has an air inlet hole for connecting the receiving space and the chamber. The airflow generator is located in the chamber and is used to blow air into the air inlet hole to accelerate the gas flow in the receiving space and allow it to flow out of the shoe box body.
[0007] In one embodiment, the functional module further includes:
[0008] A heating element is disposed in the cavity and located above the air inlet. An airflow generating element is stacked above the heating element to blow the heat generated by the heating element into the accommodating space through the air inlet.
[0009] In one embodiment, the top cover has an opening on its surface for sealing the opening, the opening being for communicating with the receiving space and the chamber;
[0010] The functional module also includes an ozone generator, which is located in the chamber and its outlet covers the opening, so that the ozone generated by the ozone generator enters the accommodating space through the opening to deodorize the shoes.
[0011] In one embodiment, the top cover has a light-transmitting hole on its surface for sealing the opening, and the light-transmitting hole is used to connect the receiving space and the cavity;
[0012] The functional module also includes a germicidal lamp, which is located in the cavity and covers the light-transmitting hole so that the light emitted by the germicidal lamp enters the accommodating space through the light-transmitting hole to sterilize the shoes.
[0013] In one embodiment, the shoebox body includes a bottom plate, a front plate, a rear plate, and two oppositely arranged side plates. The bottoms of the two side plates are respectively hinged to opposite sides of the bottom plate in a first direction, and the tops of the two side plates are respectively hinged to opposite sides of the top cover in the first direction. The bottom of the rear plate is engaged with one side of the bottom plate in a second direction, and the top of the rear plate is hinged to the top cover so that the rear plate can be folded inward and upward to be flush with the top cover. The bottom of the front plate is engaged with the other side of the bottom plate in the second direction, and the top of the front plate is hinged to the top cover so that the front plate can be folded inward and upward to be flush with the top cover.
[0014] In one embodiment, the front panel has an opening, and the opening is provided with a cover plate that can be opened and closed, the cover plate being used to seal the opening so that the receiving space is in a closed state.
[0015] In one embodiment, the side panel includes a first panel and a second panel that can be folded inward, the first panel being located above the second panel, and the folding connection line between the first panel and the second panel being parallel to the bottom panel.
[0016] The first plate has a first insertion groove near the edge of the top cover. The groove wall of the first insertion groove extends symmetrically with a first rotating shaft. The top cover has a first insertion part extending downward on both sides in the first direction. The first insertion part is inserted into the first insertion groove and rotates in contact with the first rotating shaft so that the first plate can rotate relative to the top cover.
[0017] The second plate has a second insertion groove near the edge of the base plate. The groove wall of the second insertion groove extends symmetrically with a second rotating shaft. The base plate has a second insertion part on both sides in the first direction. The second insertion part is inserted into the second insertion groove and rotates in contact with the second rotating shaft so that the second plate can rotate relative to the base plate.
[0018] In one embodiment, the top of the rear plate is provided with a third pivot, and the top cover is provided with a first hinge portion at one end in the second direction, the first hinge portion cooperating with the third pivot.
[0019] The top of the front panel is provided with a fourth pivot, and the other end of the top cover in the second direction is provided with a second hinge, which cooperates with the fourth pivot.
[0020] In one embodiment, the top cover has recesses formed on both sides in the first direction.
[0021] Secondly, this application also provides a shoebox assembly, including a functional module as described above and a plurality of shoebox bodies as described above, wherein the plurality of shoebox bodies are stacked and arranged, and the functional module is disposed on top of the uppermost shoebox body.
[0022] The technical solutions provided in this application have the following advantages compared with the prior art:
[0023] An airflow generator is located within the cavity of the top cover, and an air inlet is provided on the surface of the top cover used to seal the opening. The top cover is then placed on top of the shoebox body to close the opening. When shoes are placed into the storage space, the airflow generator is activated to blow air into the air inlet, allowing the air to enter the storage space to dry the shoes and then flow out of the shoebox body, thereby accelerating air circulation within the storage space. In other words, this shoebox uses the airflow generator to blow air from the cavity into the storage space, acting on the shoes, and then flowing out of the shoebox body, maintaining a circulating ventilation state within the storage space. This effectively solves the problem of insufficient ventilation in traditional sealed shoeboxes, reducing bacterial growth and odors when shoes are placed inside. Attached Figure Description
[0024] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with the present invention and, together with the description, serve to explain the principles of the present invention.
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] In the attached image:
[0027] Figure 1 This is a structural schematic diagram of a shoe box according to this application;
[0028] Figure 2 This is a structural schematic diagram of a shoe box from another perspective according to this application;
[0029] Figure 3 This is a structural schematic diagram of a functional module in a shoe box according to this application;
[0030] Figure 4 This is a structural schematic diagram of a functional module in a shoebox from another perspective, according to this application.
[0031] Figure 5 This is a structural schematic diagram of the shoe box body in a shoe box according to this application;
[0032] Figure 6 This is an exploded schematic diagram of a shoe box according to this application.
[0033] Icon labels:
[0034] 10. Shoe box body; 10a. Opening;
[0035] 11. Base plate; 11a. Second insertion part; 12. Front plate; 12a. Extension port; 13. Rear plate; 14. Side plate; 141. First plate; 141a. First insertion slot; 142. Second plate; 142a. Second insertion slot;
[0036] 20. Functional modules;
[0037] 21. Top cover; 21a. Chamber; 21b. Air inlet; 21c. Opening; 21d. Light-transmitting hole; 21e. First insertion part; 21f. First hinge part; 21g. Second hinge part; 21h. Groove; 21k. Air inlet; 22. Airflow generating element; 23. Heating element; 24. Ozone generator; 25. Germicidal lamp;
[0038] 30. Cover plate;
[0039] 40. First pivot;
[0040] 50. Second pivot;
[0041] 60. Third pivot;
[0042] 70. Fourth pivot;
[0043] A. Accommodation space;
[0044] X, first direction;
[0045] Y, the second direction. Detailed Implementation
[0046] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model are now described in detail with reference to the accompanying drawings. In the following description, it should be understood that the orientations or positional relationships indicated by terms such as "front," "rear," "upper," "lower," "left," "right," "longitudinal," "horizontal," "vertical," "horizontal," "top," "bottom," "inner," "outer," "head," and "tail" are based on the orientations or positional relationships shown in the accompanying drawings, and are constructed and operated in a specific orientation. They are only for the convenience of describing this technical solution and do not indicate that the device or component referred to must have a specific orientation; therefore, they should not be construed as limitations on this utility model.
[0047] It should also be noted that, unless otherwise explicitly specified and limited, terms such as "installation," "connection," "joining," "fixing," and "setting" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. When an component is referred to as being "on" or "below" another component, the component can be located "directly" or "indirectly" on the other component, or there may be one or more intermediary components. The terms "first," "second," "third," etc., are only for the convenience of describing this technical solution and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, features defined with "first," "second," "third," etc., may explicitly or implicitly include one or more of that feature. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.
[0048] In the following description, specific details such as particular system structures and techniques are set forth for illustrative purposes and not for limitation, in order to provide a thorough understanding of the embodiments of the present invention. However, those skilled in the art will understand that the present invention can also be implemented in other embodiments without these specific details. In other instances, detailed descriptions of well-known systems, apparatuses, circuits, and methods are omitted so as not to obscure the description of the present invention with unnecessary detail.
[0049] Please refer to Figures 1 to 6This application provides a shoe box, which includes a shoe box body 10 and a functional module 20. The shoe box body 10 has a receiving space A for accommodating shoes and an opening 10a communicating with the receiving space A. The opening 10a is located at the top of the shoe box body 10. The functional module 20 includes a top cover 21 and an airflow generating component 22. The top cover 21 is located at the top of the shoe box body 10 to close the opening 10a. The top cover 21 has a closed chamber 21a, and an air inlet 21b is formed on the surface of the top cover 21 used to seal the opening 10a. The air inlet 21b communicates with the receiving space A and the chamber 21a. The airflow generating component 22 is located in the chamber 21a and is used to blow air into the air inlet 21b to accelerate the gas flow in the receiving space A and allow it to flow out from the shoe box body 10.
[0050] In this embodiment, the shoe box has an airflow generator 22 disposed within the chamber 21a of the top cover 21, and an air inlet 21b is provided on the surface of the top cover 21 used to seal the opening 10a. The top cover 21 is then placed on top of the shoe box body 10 to close the opening 10a. When shoes are placed into the receiving space A, the airflow generator 22 is activated to blow air into the air inlet 21b, allowing the gas to enter the receiving space A to dry the shoes and then flow out of the shoe box body 10, thereby accelerating the gas circulation within the receiving space A. In other words, this shoe box uses the airflow generator 22 to blow gas from the chamber 21a into the receiving space A, acting on the shoes, and then flowing out of the shoe box body 10, maintaining a circulating ventilation state within the receiving space A. This effectively solves the problem of insufficient ventilation in traditional sealed shoe boxes, reducing bacterial growth and odors when shoes are placed inside the shoe box.
[0051] In related technologies, the shoe box body 10 is formed by connecting multiple plates, which results in gaps between the plates, making it impossible to achieve a completely sealed state. Therefore, the gas blown into the shoe box body 10 will flow out from the gaps, thereby ensuring that the containment space A maintains a circulating ventilation state.
[0052] It should be noted that the "airflow generating component 22" mentioned above can be an airflow fan, or it can be any existing component that can accelerate the airflow entering the chamber 21a and blowing it into the receiving space A; there is no limitation on this. Furthermore, during the process of the airflow generating component 22 blowing the gas from the chamber 21a into the receiving space A, external air needs to continuously enter the chamber 21a of the top cover 21 to replenish it, thus ensuring the circulation of gas. Therefore, in this embodiment, the top cover 21 should also be provided with an air inlet 21k, so that external space can enter the chamber 21a of the top cover 21 through the air inlet 21k.
[0053] For example, the airflow generator 22 is placed in the chamber 21a of the top cover 21, and an air inlet 21b is opened on the surface of the top cover 21 used to seal the opening 10a, so that the gas is blown into the accommodating space A from the top and then discharged from the side. This ensures that the surface of the shoe is evenly exposed to airflow, avoids the local airflow dead corners caused by traditional side ventilation, and improves the overall drying uniformity.
[0054] Furthermore, the top cover 21 can be detachably connected to the top of the shoe box body 10. That is, the top cover 21 and the shoe box body 10 are first manufactured as two independent parts, and then the top cover 21 is connected to the top of the shoe box body 10. If the airflow generating component 22 is damaged and needs to be repaired, the top cover 21 can be directly removed from the shoe box body 10, and the airflow generating component 22 can be replaced or repaired by opening the top cover 21. The structure is simple and easy to disassemble and assemble.
[0055] If the shoes are wet and drying is achieved solely by air blown in by the airflow generator 22, it will take a long time and the drying effect will be poor. Therefore, the functional module 20 in this application also has a drying function. Specifically, the functional module 20 also includes a heating element 23, which is disposed in the chamber 21a and located above the air inlet 21b. The airflow generator 22 is stacked above the heating element 23 to blow the heat generated by the heating element 23 into the accommodating space A through the air inlet 21b.
[0056] In other words, when shoes need to be dried, the heating element 23 is controlled to start heating, so that the gas entering the chamber 21a is heated to a certain temperature. Under the action of the airflow generator 22, the hot air enters the receiving space A through the air inlet 21b, allowing the surface of the shoes to dry faster under the action of hot air, thereby shortening the drying time required for the shoes. It should be noted that the heating element 23 needs to be used in conjunction with the airflow generator 22. That is, when the heating element 23 is turned on, the airflow generator 22 is simultaneously controlled to be turned on, so that the hot air heated by the heating element 23 can enter the receiving space A more quickly. However, the airflow generator 22 can be controlled to be turned on independently. That is, if only ventilation is required, only the airflow generator 22 can be turned on, while the heating element 23 is not turned on, in which case it is only in ventilation mode. In addition, the above-mentioned control of the heating element 23 and the airflow generator 22 is common knowledge to those skilled in the art, and will not be elaborated further. The heating element 23 can be a heating tube in the present technology, or any component that can generate heat and dissipate heat; there is no limitation on this.
[0057] Shoes worn for extended periods often become damp due to foot sweat, leading to unpleasant odors. Without deodorization, the odors will dissipate from the containing space A under the action of the airflow generator 22. To address this, in one embodiment, the top cover 21, used to seal the opening 10a, has an opening 21c connecting the containing space A and the chamber 21a. The functional module 20 also includes an ozone generator 24, located within the chamber 21a, with its outlet covering the opening 21c. This allows ozone generated by the ozone generator 24 to enter the containing space A through the opening 21c, deodorizing the shoes. In other words, by placing the ozone generator 24 within the chamber 21a, the ozone generated by the ozone generator 24 can enter the containing space A through the opening 21c, thereby achieving the effect of deodorizing the shoes. In addition, by cooperating with the gas blown in by the airflow generator 22, the ozone generated by the ozone generator 24 can be delivered in a directional manner. Compared with the traditional diffusion release method, this can ensure that the high concentration of ozone is precisely applied to the shoes, thus improving the deodorization effect.
[0058] In one embodiment, the top cover 21, used to seal the opening 10a, has a light-transmitting hole 21d on its surface, which connects the receiving space A and the chamber 21a. The functional module 20 also includes a germicidal lamp 25, which is located within the chamber 21a and covers the light-transmitting hole 21d, allowing the light emitted by the lamp to enter the receiving space A through the hole 21d to sterilize the shoes. When sterilization is required, the germicidal lamp 25 is turned on to emit light. Because the lamp covers the hole 21d, the emitted light can pass through the hole and reach the shoes within the receiving space A, thus sterilizing them. In other words, the light emitted by the germicidal lamp 25 directly destroys microbial DNA, while the ozone emitted by the ozone generator 24 penetrates the fibers for deep oxidation and sterilization. The combined effect of these two methods achieves dual sterilization of both the surface and interior of the shoes, resulting in a superior sterilization effect.
[0059] It should be noted that the germicidal lamp 25 in this embodiment can be an ultraviolet germicidal lamp 25, or it can be any lamp that can achieve sterilization in the prior art. There is no limitation on this.
[0060] In one embodiment, the shoebox body 10 includes a bottom plate 11, a front plate 12, a rear plate 13, and two oppositely arranged side plates 14. The bottoms of the two side plates 14 are respectively hinged to the opposite sides of the bottom plate 11 in the first direction X, and the tops of the two side plates 14 are respectively hinged to the opposite sides of the top cover 21 in the first direction X. The bottom of the rear plate 13 is engaged with one side of the bottom plate 11 in the second direction Y, and the top of the rear plate 13 is hinged to the top cover 21 so that the rear plate 13 can be folded inward and upward to be flush with the top cover 21. The bottom of the front plate 12 is engaged with the other side of the bottom plate 11 in the second direction Y, and the top of the front plate 12 is hinged to the top cover 21 so that the front plate 12 can be folded inward and upward to be flush with the top cover 21.
[0061] For example, the shoebox body 10 is composed of a bottom plate 11, a front plate 12, a rear plate 13, and two oppositely arranged side plates 14. The bottom of the two side plates 14 is hinged to the two sides of the bottom plate 11, and the top of the two side plates 14 is hinged to the two sides of the top cover 21, so that the two side plates 14 can be folded inward. At the same time, the rear plate 13 and the front plate 12 can be folded inward and upward to be flush with the top cover 21. This allows the shoebox body 10 to be folded into a flat shape when not in use or during transportation, which can greatly reduce the space occupied and make storage more convenient, avoiding disassembly during handling and moving. When needed, the top cover 21 is pulled up to unfold the two side plates 14 outward, and the front plate 12 and the rear plate 13 are pulled out to unfold the stored shoebox body 10, thus storing the shoes. Furthermore, the connection between the base plate 11, side plate 14, front plate 12 and rear plate 13 does not require additional parts for fixing, but only uses its own materials for clamping and docking, which is simple in structure, easy to manufacture and greatly reduces costs.
[0062] In one embodiment, the front panel 12 has an opening 12a, and a cover 30 is closable at the opening 12a to seal the opening 12a, thereby enclosing the accommodating space A. In practical applications, the cover is embedded in the opening 12a, with its bottom hinged to the bottom of the front panel 12 and its top abutting against the top edge of the opening 12a, allowing the cover to be opened or closed in a flip-open manner for user convenience. Furthermore, to facilitate opening the cover 30, a handle is provided on the cover 30; the user can open the cover 30 by pulling it outward using the handle.
[0063] In one embodiment, the side panel 14 includes a first panel 141 and a second panel 142 that can be folded inward. The first panel 141 is located above the second panel 142, and the folding connection line of the first panel 141 and the second panel 142 is parallel to the bottom plate 11. The first panel 141 has a first insertion groove 141a near the edge of the top cover 21. The groove wall of the first insertion groove 141a has a first rotating shaft 40 extending symmetrically. The top cover 21 has a first insertion part 21e extending downward from both sides in the first direction X. The first insertion part 21e is inserted into the first insertion groove 141a and rotates in contact with the first rotating shaft 40, so that the first panel 141 can rotate relative to the top cover 21. Similarly, the second plate 142 is provided with a second insertion groove 142a near the edge of the base plate 11. The groove wall of the second insertion groove 142a extends symmetrically with a second rotating shaft 50. The base plate 11 is provided with a second insertion part 11a on both sides in the first direction X. The second insertion part 11a is inserted into the second insertion groove 142a and rotates in contact with the second rotating shaft 50 so that the second plate 142 can rotate relative to the base plate 11.
[0064] For example, the side panel 14 includes a first panel 141 and a second panel 142 that can be pushed inward. The end of the first panel 141 near the top cover 21 is inserted into the top cover 21 through a first insertion groove 141a and a first insertion part 21e, and can rotate relative to the top cover 21 under the action of the first rotating shaft 40. At the same time, the end of the second panel 142 near the bottom plate 11 is inserted into the bottom plate 11 through a second insertion groove 142a and a second insertion part 11a, and can rotate relative to the bottom plate 11 under the action of the second rotating shaft 50. This allows the top cover 21 to be pushed downward when the shoe box body 10 is folded, so that the first panel 141 and the second panel 142 can be folded inward, thereby realizing the folding of the box body, which can greatly reduce the space occupied, make storage more convenient, and avoid disassembly during transportation and relocation.
[0065] In one embodiment, the top of the rear panel 13 is provided with a third pivot 60, and the top cover 21 is provided with a first hinge portion 21f at one end in the second direction Y, the first hinge portion 21f cooperating with the third pivot 60; the top of the front panel 12 is provided with a fourth pivot 70, and the other end of the top cover 21 in the second direction Y is provided with a second hinge portion 21g, the second hinge portion 21g cooperating with the fourth pivot 70. That is, the rear panel 13 is connected to the first hinge portion 21f on the top cover 21 via the third pivot 60, so that the rear panel 13 can be flipped relative to the top cover 21, and thus the rear panel 13 can be folded inward and upward until it is flush with the top cover 21; similarly, the front panel 12 is connected to the second hinge portion 21g on the top cover 21 via the fourth pivot 70, so that the front panel 12 can be flipped relative to the top cover 21, and thus the front panel 12 can be folded inward and upward until it is flush with the top cover 21, thereby facilitating the folding of the shoe box body 10. It should be noted that when the front panel 12 and the rear panel 13 are folded to be flush with the top cover 21, the ends of the front panel 12 and the rear panel 13 that are close to each other abut against each other. At this time, the sum of the lengths of the front panel 12 and the rear panel 13 is the length of the top cover 21.
[0066] In one embodiment, the top cover 21 has recesses 21h formed on both sides in the first direction X. This allows the user to insert their fingers into the recesses 21h for gripping, making it easier to pull the top cover 21 upwards and unfold the folded shoebox body 10.
[0067] This application also provides a shoebox assembly, which includes a functional module 20 of the above embodiment and a plurality of shoebox bodies 10 of the above embodiment. The plurality of shoebox bodies 10 are stacked and arranged, and the functional module 20 is disposed on top of the uppermost shoebox body 10.
[0068] The shoe box assembly according to the embodiments of this disclosure adopts multiple shoe box bodies 10 and a functional module 20 of the above-described shoe box, and has the same technical effects as the shoe box described above, which will not be repeated here.
[0069] It is understood that the above embodiments only illustrate preferred embodiments of the present utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present utility model patent. It should be noted that for those skilled in the art, the above technical features can be freely combined, and several modifications and improvements can be made without departing from the concept of the present utility model, all of which fall within the protection scope of the present utility model. Therefore, all equivalent transformations and modifications made within the scope of the claims of the present utility model should fall within the coverage of the claims of the present utility model.
Claims
1. A shoe box, characterized in that, include: The shoe box body (10) has a storage space (A) for accommodating shoes and an opening (10a) communicating with the storage space (A), the opening (10a) being located at the top of the shoe box body (10); The functional module (20) includes a top cover (21) and an airflow generator (22). The top cover (21) is located on the top of the shoe box body (10) to close the opening (10a). The top cover (21) has a closed chamber (21a), and the surface of the top cover (21) used to cover the opening (10a) has an air inlet (21b). The air inlet (21b) is used to connect the accommodating space (A) and the chamber (21a). The airflow generator (22) is located in the chamber (21a) and is used to blow air into the air inlet (21b) to accelerate the gas flow in the accommodating space (A) and flow out from the shoe box body (10).
2. The shoe box according to claim 1, characterized in that, The functional module (20) also includes: A heating element (23) is disposed in the chamber (21a) and located above the air inlet (21b). An airflow generating element (22) is stacked above the heating element (23) to blow the heat generated by the heating element (23) into the accommodating space (A) through the air inlet (21b).
3. The shoe box according to claim 2, characterized in that, The top cover (21) has an opening (21c) on its surface for sealing the opening (10a), and the opening (21c) is used to connect the receiving space (A) and the chamber (21a); The functional module (20) also includes an ozone generator (24), which is located in the chamber (21a) and the outlet end of the ozone generator (24) covers the opening (21c) so that the ozone generated by the ozone generator (24) enters the accommodating space (A) through the opening (21c) to deodorize the shoes.
4. The shoe box according to claim 3, characterized in that, The top cover (21) is provided with a light-transmitting hole (21d) on the surface of the opening (10a) for sealing the opening. The light-transmitting hole (21d) is used to connect the receiving space (A) and the chamber (21a). The functional module (20) also includes a germicidal lamp (25), which is located in the chamber (21a) and covers the light-transmitting hole (21d) so that the light emitted by the germicidal lamp (25) enters the accommodating space (A) through the light-transmitting hole (21d) to sterilize the shoes.
5. The shoe box according to claim 1, characterized in that, The shoebox body (10) includes a bottom plate (11), a front plate (12), a rear plate (13), and two oppositely arranged side plates (14). The bottoms of the two side plates (14) are respectively hinged to the opposite sides of the bottom plate (11) in a first direction (X), and the tops of the two side plates (14) are respectively hinged to the opposite sides of the top cover (21) in the first direction (X). The bottom of the rear plate (13) is hinged to the bottom plate (11) in the first direction (X). The rear plate (13) is engaged with one side of the second direction (Y), and the top of the rear plate (13) is hinged to the top cover (21) so that the rear plate (13) can be folded inward and upward to be flush with the top cover (21). The bottom of the front plate (12) is engaged with the bottom plate (11) on the other side of the second direction (Y), and the top of the front plate (12) is hinged to the top cover (21) so that the front plate (12) can be folded inward and upward to be flush with the top cover.
6. The shoe box according to claim 5, characterized in that, The front panel (12) has an opening (12a), and a cover plate (30) is provided at the opening (12a) for opening and closing. The cover plate is used to seal the opening so that the accommodating space is in a closed state.
7. The shoe box according to claim 6, characterized in that, The side panel (14) includes a first panel (141) and a second panel (142) that can be folded inward. The first panel (141) is located above the second panel (142), and the folding connection line of the first panel (141) and the second panel (142) is parallel to the bottom plate (11). The first plate (141) is provided with a first insertion groove (141a) near the edge of the top cover (21). The groove wall of the first insertion groove (141a) extends symmetrically with a first rotating shaft (40). The top cover (21) has a first insertion part (21e) extending downward on both sides in the first direction (X). The first insertion part (21e) is inserted into the first insertion groove (141a) and rotates in contact with the first rotating shaft (40) so that the first plate (141) can rotate relative to the top cover (21). The second plate (142) is provided with a second insertion groove (142a) near the edge of the base plate (11). The groove wall of the second insertion groove (142a) extends symmetrically with a second rotating shaft (50). The base plate (11) is provided with a second insertion part (11a) on both sides in the first direction (X). The second insertion part (11a) is inserted into the second insertion groove (142a) and rotates in contact with the second rotating shaft (50) so that the second plate (142) can rotate relative to the base plate (11).
8. The shoe box according to claim 5, characterized in that, The top of the rear plate (13) is provided with a third pivot (60), and the top cover (21) is provided with a first hinge (21f) at one end in the second direction (Y), and the first hinge (21f) cooperates with the third pivot (60); The front plate (12) has a fourth pivot (70) at its top, and the top cover (21) has a second hinge (21g) at the other end in the second direction (Y), which cooperates with the fourth pivot (70).
9. The shoe box according to claim 1, characterized in that, The top cover (21) has grooves (21h) formed inward on both sides in the first direction (X).
10. A shoebox assembly, characterized in that, It includes a functional module (20) as described in any one of claims 1-9 and a plurality of shoe box bodies (10) as described in any one of claims 1-9, wherein the plurality of shoe box bodies (10) are stacked, and the functional module (20) is located on top of the uppermost shoe box body (10).