Totally-closed internal circulation shoe cabinet
By designing partition columns, filter elements, circulating fans and fan mechanisms in the shoe cabinet, the internal circulation ventilation of the shoe cabinet cavity is achieved, the problem of bacterial growth in humid environments is solved, and the inside of the shoe cabinet is kept dry and fresh.
Patent Information
- Application Number
- CN202421187316.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-05-29
AI Technical Summary
Existing shoe cabinets are prone to breed bacteria in humid environments, resulting in a decrease in hygiene. Existing methods to prevent bacteria from growing, such as using desiccants or opening breathable holes, are insufficient.
A fully enclosed internal circulation shoe cabinet is designed, using partition columns, filter elements, circulation fans and fan mechanisms. The odor and water vapor are sucked in through the circulation fans. After filtering through the filter elements, the dry gas is transported back to the inner cavity of the shoe cabinet.
Effectively keep the inner cavity of the shoe cabinet dry and the air fresh, prevent bacteria from growing, and prolong the service life of the shoe cabinet.
Smart Images

Figure CN222955071U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of shoe cabinets, in particular to a fully enclosed shoe cabinet with an internal circulation system. Background Technique
[0002] Most of the conventional shoe cabinets are enclosed spaces, which are likely to make the inside of the shoe cabinet damp and stuffy, thus breeding bacteria and deteriorating the sanitation inside the shoe cabinet. Especially in spring and summer with more rainfall and higher air humidity, if the moisture-proof measures are insufficient, it is very likely that the cleaning and sanitation inside the shoe cabinet will deteriorate sharply. Over time, a large number of bacteria will breed in the shoe cabinet, causing the shoe cabinet and even the shoes placed in the shoe cabinet to smell bad and be difficult to clean, affecting the normal use of the shoe cabinet.
[0003] However, the existing methods to prevent bacteria from breeding in shoe cabinets are to place desiccants, camphor balls and other items inside the shoe cabinet, or to avoid creating a damp and stuffy environment by opening ventilation holes on the shoe cabinet. However, items such as desiccants and camphor balls can only work for a short time and have a certain pungent smell, which cannot be accepted by everyone; in addition, the method of opening ventilation holes on the shoe cabinet is too passive, and in a living room where the air is not circulating, the ventilation effect inside the shoe cabinet will also be greatly limited; therefore, it does not meet the existing needs, and for this reason, we propose a fully enclosed shoe cabinet with an internal circulation system. Content of the Utility Model
[0004] The purpose of the utility model is to provide a fully enclosed shoe cabinet with an internal circulation system to solve the problems in the above background technique, that is, the existing methods to prevent bacteria from breeding in shoe cabinets are to place desiccants, camphor balls and other items inside the shoe cabinet, or to avoid creating a damp and stuffy environment by opening ventilation holes on the shoe cabinet. However, items such as desiccants and camphor balls can only work for a short time and have a certain pungent smell, which cannot be accepted by everyone; in addition, the method of opening ventilation holes on the shoe cabinet is too passive, and in a living room where the air is not circulating, the ventilation effect inside the shoe cabinet will also be greatly limited.
[0005] To achieve the above purpose, the utility model provides the following technical solution: a fully enclosed shoe cabinet with an internal circulation system, including a shoe cabinet body, the two sides of the front end face of the shoe cabinet body are movably connected with shoe cabinet doors, behind the shoe cabinet doors and inside the shoe cabinet body is provided with a shoe cabinet inner cavity, at the central position of the shoe cabinet inner cavity is provided with a partition column, inside the partition column are successively provided with a filter element and a circulation fan, on both sides of the partition column are provided with three partition net plates, and below two of the bottom partition net plates and on the inner wall of the shoe cabinet inner cavity are provided with fan mechanisms.
[0006] Preferably, air outlets and air inlets are provided on both sides of the upper and lower ends of the partition column. The air inlets are located above the air outlets. Filter meshes are provided inside the air outlets and air inlets. The filter meshes are woven from stainless steel wires.
[0007] Preferably, the circulation fan is located at the bottom end of the inner wall of the partition column, the filter element is located above the circulation fan, and a cotton cloth layer and an activated carbon layer are sequentially arranged inside the filter element.
[0008] Preferably, a sealing rubber strip is provided on the opposite surface of the inner side of the shoe cabinet door and the shoe cabinet body. Rotating shafts are provided at both the upper and lower ends of the shoe cabinet door. A rotating groove is provided inside the shoe cabinet body above the rotating shafts, and the rotating shafts are inserted inside the rotating groove.
[0009] Preferably, a torsion spring is provided on the inner wall of the rotating groove on the outer side of the rotating shaft. The torsion spring is wound around the inner and outer sides of the rotating shaft, and the rotating shaft is movably connected to the shoe cabinet body through the torsion spring.
[0010] Preferably, the fan mechanism includes a servo motor, a transmission shaft, and a rotating fan.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] In the present utility model, a sealing rubber strip is provided on the opposite surface of the inner side of the shoe cabinet door and the shoe cabinet body, and the shoe cabinet door is movably connected to the shoe cabinet body through a torsion spring. Therefore, when the shoe cabinet door is not stressed, the shoe cabinet door remains in a closed state through the torsion spring and the shoe cabinet body. And when the fan mechanism is started, the circulation fan inhales the generated peculiar smell and water vapor into the partition column through the air inlets, and then filters them through the filter element inside the partition column. After the filtration is completed, the gas is conveyed into the inner cavity of the shoe cabinet through the air outlets, thereby keeping the inner cavity of the shoe cabinet dry and the air fresh. Description of the Drawings
[0013] Figure 1 is a schematic structural diagram of the whole of the present utility model;
[0014] Figure 2 is a schematic structural diagram of the inner cavity of the shoe cabinet of the present utility model;
[0015] Figure 3 is a partial structural schematic diagram of the filter element of the present utility model.
[0016] In the figure: 1, shoe cabinet body; 101, inner cavity of the shoe cabinet; 102, partition net plate; 103, air outlet; 104, air inlet; 2, shoe cabinet door; 201, rotating shaft; 3, fan mechanism; 4, circulation fan; 5, filter element; 501, cotton cloth layer; 502, activated carbon layer. Detailed Embodiments
[0017] Next, in combination with the accompanying drawings in the embodiments of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0018] Please refer to Figures 1 to 3 , an embodiment provided by the present utility model: a fully enclosed inner circulation shoe cabinet, including a shoe cabinet body 1. On both sides of the front end face of the shoe cabinet body 1, there are movably connected shoe cabinet doors 2. Behind the shoe cabinet doors 2, inside the shoe cabinet body 1, there is a shoe cabinet inner cavity 101. At the central position of the shoe cabinet inner cavity 101, there is a partition column. Inside the partition column, a filter element 5 and a circulation fan 4 are successively arranged. On both sides of the partition column, there are three partition net plates 102. Below two of the bottom partition net plates 102, on the inner wall of the shoe cabinet inner cavity 101, there is a fan mechanism 3. Overall, on the opposite surface of the inner side of the shoe cabinet door 2 and the shoe cabinet body 1, there is a sealing strip. The shoe cabinet door 2 is movably connected to the shoe cabinet body 1 through a torsion spring. Thus, when the shoe cabinet door 2 is not stressed, the shoe cabinet door 2 is kept in a closed state with the shoe cabinet body 1 through the torsion spring. And the circulation fan 4 inhales the peculiar smell and water vapor generated inside the shoe cabinet inner cavity 101 through the air inlet 104 into the partition column, and then filters it through the filter element 5 inside the partition column. After the filtration is completed, the gas is then transported through the air outlet 103 into the shoe cabinet inner cavity 101, so as to keep the shoe cabinet inner cavity 101 dry and the air fresh.
[0019] The fan mechanism 3 includes a servo motor, a transmission shaft, and a rotating fan. On both sides of the upper and lower ends of the partition column, there are air outlets 103 and air inlets 104. The air inlet 104 is located above the air outlet 103. Inside both the air outlet 103 and the air inlet 104, there is a filter screen, and the filter screen is woven from stainless steel wires. The circulation fan 4 is located at the bottom end of the inner wall of the partition column, and the filter element 5 is located above the circulation fan 4. Inside the filter element 5, there are successively a cotton cloth layer 501 and an activated carbon layer 502. Thus, when the fan mechanism 3 is started, the fan mechanism 3 blows the peculiar smell and water vapor of the shoes inside the shoe cabinet body 1 upward, and the circulation fan 4 inhales the peculiar smell and water vapor through the air inlet 104 into the partition column, and then filters it through the filter element 5 inside the partition column. After the filtration is completed, the gas is then transported through the air outlet 103 into the shoe cabinet inner cavity 101, so as to keep the shoe cabinet inner cavity 101 dry and the air fresh.
[0020] A sealing strip is provided on the inner side of the shoe cabinet door 2 opposite to the shoe cabinet body 1. Rotating shafts 201 are provided at both the upper and lower ends of the shoe cabinet door 2. Above the rotating shafts 201, a rotating groove is provided inside the shoe cabinet body 1. The rotating shafts 201 are inserted into the inner side of the rotating groove. On the outer side of the rotating shafts 201, a torsion spring is provided on the inner wall of the rotating groove. The torsion spring is wound around the inner and outer sides of the rotating shafts 201. The rotating shafts 201 are movably connected to the shoe cabinet body 1 through the torsion springs. Thus, when the shoe cabinet door 2 is not under force, the shoe cabinet door 2 is kept in a closed state with the shoe cabinet body 1 through the torsion springs.
[0021] In summary, when using this shoe cabinet, first check whether all components are intact, open the shoe cabinet door 2, then put shoes into the inner cavity 101 of the shoe cabinet. Since a sealing strip is provided on the inner side of the shoe cabinet door 2 opposite to the shoe cabinet body 1, and the shoe cabinet door 2 is movably connected to the shoe cabinet body 1 through the torsion springs, when the shoe cabinet door 2 is not under force, the shoe cabinet door 2 is kept in a closed state with the shoe cabinet body 1 through the torsion springs. Subsequently, turn on the power and start the device. When the fan mechanism 3 starts, the odor and moisture inside the shoe cabinet body 1 are drawn in by the circulating fan 4 through the air inlet 104 into the partition column, and then filtered by the filter element 5 inside the partition column. After the filtration is completed, the gas is transported through the air outlet 103 to the inner cavity 101 of the shoe cabinet, thereby keeping the inner cavity 101 of the shoe cabinet dry and the air fresh.
[0022] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A fully enclosed internal circulation shoe cabinet, comprising a shoe cabinet body (1), characterized in that: The front end surface of the shoe cabinet body (1) is movably connected to shoe cabinet doors (2), and a shoe cabinet inner cavity (101) is provided on the inner side of the shoe cabinet body (1) behind the shoe cabinet doors (2). A partition column is provided at the center of the shoe cabinet inner cavity (101), and a filter element (5) and a circulating fan (4) are provided on the inner side of the partition column in sequence. Three partition plates (102) are provided on both sides of the partition column, and a fan mechanism (3) is provided on the inner wall of the shoe cabinet inner cavity (101) below the two bottom partition plates (102).
2. A fully enclosed inner-circulation shoe cabinet according to claim 1, characterized in that: An air outlet (103) and an air inlet (104) are provided on both sides of the upper and lower ends of the partition column, the air inlet (104) is located above the air outlet (103), and filter screens are provided on the inner sides of the air outlet (103) and the air inlet (104), and the filter screens are woven from stainless steel wires.
3. A fully enclosed inner-circulation shoe cabinet according to claim 1, characterized in that: The circulating fan (4) is located at the bottom end of the inner wall of the partition column, the filter element (5) is located above the circulating fan (4), and a cotton cloth layer (501) and an activated carbon layer (502) are sequentially arranged on the inner side of the filter element (5).
4. A fully enclosed inner-circulation shoe cabinet according to claim 1, characterized in that: The inner side of the shoe cabinet door (2) and the opposite side of the shoe cabinet body (1) are provided with a sealing strip, the upper and lower ends of the shoe cabinet door (2) are provided with a rotating shaft (201), the upper side of the rotating shaft (201) is provided with a rotating groove on the inner side of the shoe cabinet body (1), and the rotating shaft (201) is inserted into the inner side of the rotating groove.
5. A fully enclosed inner-circulation shoe cabinet according to claim 4, characterized in that: A torsion spring is provided on the inner wall of the rotating groove on the outer side of the rotating shaft (201), and the torsion spring is wound around the inner and outer sides of the rotating shaft (201). The rotating shaft (201) is movably connected to the shoe cabinet body (1) via the torsion spring.
6. A fully enclosed inner-circulation shoe cabinet according to claim 1, characterized in that: The fan mechanism (3) comprises a servo motor, a transmission shaft and a rotating fan.