A shoe cabinet

By setting up shoe chambers, air envelopes, and air supply channels inside the shoe cabinet, combined with an airflow treatment module and a fan, the deodorization and drying functions inside the shoe cabinet are realized, solving the problem of shoe cabinet odor polluting indoor air and ensuring clean indoor air.

CN112056790BActive Publication Date: 2025-12-09GUANGZHOU WAN ER ER MAI ENGINEERING TECHNOLOGY CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202011070141.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-30
Publication Date
2025-12-09
Estimated Expiration
2040-09-30

AI Technical Summary

Technical Problem

Existing shoe cabinets, in the process of dehumidification, deodorization, and sterilization, cannot effectively prevent the odor inside the shoe cabinet from polluting the indoor air and affecting the indoor air environment, and it is difficult to safely and reliably clean and sterilize shoes indoors.

Method used

Design a shoe cabinet with a shoe cavity, an air chamber, and an air supply channel. Equipped with an airflow processing module and a fan, it achieves airflow circulation and exhaust through the air supply channel and the shoe sole air supply structure. Combined with a heating device and an ozone generator, it performs deodorization and drying. The airflow direction and flow rate are controlled by a damper.

Benefits of technology

It achieves deodorization and drying functions inside the shoe cabinet, preventing shoes from coming unglued or cracking, avoiding odor pollution of indoor air, and ensuring clean indoor air.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN112056790B_ABST
    Figure CN112056790B_ABST
Patent Text Reader

Abstract

The application discloses a shoe cabinet, which comprises a shoe cabinet body, a shoe placing cavity, a wind bag cavity and at least one air supply channel are arranged in the shoe cabinet body; the shoe placing cavity comprises at least one layer of shoe placing cavity units, and adjacent shoe placing cavity units are communicated through air vents; an air flow treatment module and a fan are arranged in the wind bag cavity, a dirty air outlet which is communicated with the outside is arranged on the wind bag cavity, and an air outlet which is communicated with one end of the shoe placing cavity is arranged on the wind bag cavity; a shoe placing cavity unit at the bottom layer of the shoe placing cavity is provided with a fresh air outlet which is communicated with the outside; one end of the air supply channel is communicated with the wind bag cavity, and a shoe sole air supply structure which is arranged in the shoe placing cavity unit is arranged at a position corresponding to each shoe placing cavity unit on the air supply channel; under the suction of the fan, fresh air enters the shoe placing cavity from the fresh air outlet, flows through each layer of shoe placing cavity units, and then enters the wind bag cavity from the air outlet; the air flow entering the wind bag cavity is discharged from the dirty air outlet after passing through the air flow treatment module and / or is transported into each shoe placing cavity unit through the air supply channel and the shoe sole air supply structure.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to shoe cabinet design technical field, specifically to a shoe cabinet. BACKGROUND

[0002] With the improvement of living standards, the problem of dehumidification, deodorization and sterilization after wearing shoes has been widely valued.

[0003] When people come back home from outdoor work or sports, they take off their shoes to free their feet, and the smell in the shoes is released at the same time, causing the entrance of the house to smell bad. Most small and medium-sized residential entrance shoe cabinets are located near the kitchen and dining room, affecting food hygiene. Some residents simply set up shoe cabinets and shoe removal (wearing) spaces outside the door, but this approach inevitably leads to a beggar's mentality, not only affecting the appearance but also causing neighbor disputes.

[0004] If the safe and reliable cleaning / sterilization / drying problem of shoes removed by people after outdoor work or sports is not solved, the above problems cannot be fundamentally solved, and Hong Kong feet, athlete's foot and other long-standing foot diseases that have plagued humans for a long time cannot be eradicated.

[0005] For decades, many companies have developed shoe cabinets with electric heating, dehumidification, medium adsorption, ultraviolet ozone sterilization and other functions to find technical solutions to the problem of cleaning / sterilization / drying of household shoes, and have made great progress.

[0006] However, for many years, the problem of how to set up a shoe cabinet indoors and prevent the smell in the shoes from escaping from the shoe cabinet to pollute the air at the entrance during the cleaning / sterilization / drying of the shoes has not been solved. SUMMARY

[0007] In view of the problems in the background art, the present application provides a shoe cabinet, comprising a shoe cabinet body, a shoe placing cavity, a wind bag cavity and at least one air supply channel are arranged in the shoe cabinet body;

[0008] Among them, the shoe placing cavity comprises at least one shoe placing cavity unit, and adjacent shoe placing cavity units are connected through air vents; the wind bag cavity is provided with an airflow treatment module and a fan, and the wind bag cavity is provided with a dirty air exhaust port communicating with the outside and an air port communicating with one end of the shoe placing cavity; the shoe placing cavity unit at the bottom of the shoe placing cavity is provided with a fresh air port communicating with the outside;

[0009] One end of the air supply channel communicates with the wind bag cavity, and a shoe sole air supply structure is arranged in each shoe placing cavity unit corresponding to the shoe placing cavity unit.

[0010] Under the suction of the fan, fresh air enters the shoe cavity from the fresh air inlet, flows through each layer of the shoe cavity unit, and then enters the air bag cavity from the air outlet; the airflow entering the air bag cavity passes through the airflow treatment module, and is discharged from the dirty air outlet and / or delivered to each shoe cavity unit through the air supply channel and the instep air supply structure.

[0011] The second air bag cavity is provided with a fresh air inlet communicating with the outside and a second air outlet communicating with the other end of the shoe cavity; one end of the air supply channel communicates with the air bag cavity, and an instep air supply structure extending into each shoe cavity unit is arranged on the air supply channel corresponding to each shoe cavity unit.

[0012] In some embodiments, the dirty air outlet communicates with a negative pressure exhaust pipe of a fresh air system in a building.

[0013] In some embodiments, the shoe cavity includes multiple layers of shoe cavity units arranged in sequence from top to bottom, the air bag cavity is arranged at the top of the shoe cavity, and the air outlet communicates with the top layer of the shoe cavity unit.

[0014] In some embodiments, the ventilation openings between the shoe cavity unit and the two shoe cavity units adjacent to it above and below are respectively located at both ends of the length direction of the shoe cavity unit.

[0015] In some embodiments, the air supply channel is arranged along the height direction of the shoe cavity, and multiple air supply channels are arranged along the length direction of the shoe cavity unit.

[0016] In some embodiments, the airflow treatment module includes a heating device and an ozone generator.

[0017] In some embodiments, a first air door is arranged on the dirty air outlet, and a second air door is arranged at the communication position of each air supply channel and the air bag cavity.

[0018] In some embodiments, a driving device is further included, the driving device is connected with the first air door and each second air door through connecting rods, and is used for controlling the opening and closing of the first air door and the second air door.

[0019] When the first air door is fully opened, the second air door is fully closed; when the first air door is fully closed, the second air door is fully opened; when the first air door is partially opened, the second air door is partially opened.

[0020] In some embodiments, the first air door / second air door includes:

[0021] A fixed orifice plate is provided with multiple ventilation areas arranged in sequence.

[0022] The sliding hole plate is arranged in overlap with the fixed hole plate, and air distribution openings are arranged on the sliding hole plate at positions corresponding to the air ventilation areas on the fixed hole plate, and the air distribution openings can cover the air ventilation areas.

[0023] The driving device simultaneously pushes the sliding hole plates to move relative to the fixed hole plate, and the overlapping parts of the air ventilation areas and the air distribution openings change during the relative movement, so that the opening and closing of the air ventilation areas and the adjustment of the air flow are realized.

[0024] In some embodiments, the air ventilation areas on the fixed hole plate of the first air door are staggered with the air ventilation areas on the fixed hole plate of the second air door, and the air distribution areas on the sliding hole plate of the first air door are opposite to the air distribution areas on the sliding hole plate of the second air door.

[0025] The driving device drives the sliding hole plates of the first air door and the sliding hole plates of the second air door, when the air ventilation areas and the air distribution areas on the first air door completely overlap, the air ventilation areas and the air distribution areas on the second air door do not completely overlap; when the air ventilation areas and the air distribution areas on the first air door do not completely overlap, the air ventilation areas and the air distribution areas on the second air door completely overlap; when the air ventilation areas and the air distribution areas on the first air door partially overlap, the air ventilation areas and the air distribution areas on the second air door also partially overlap.

[0026] In some embodiments, a plurality of air ventilation areas are uniformly distributed along the transverse direction or the longitudinal direction of the fixed hole plate, and a plurality of air distribution openings are uniformly distributed along the transverse direction or the longitudinal direction of the sliding hole plate; the shapes and sizes of the air ventilation areas and the air distribution openings are the same; and the moving direction of the sliding hole plate is along the arrangement direction of the air ventilation areas and the air distribution areas.

[0027] In some embodiments, the arrangement direction of the air ventilation areas and the air distribution openings on the first control air door is parallel to the arrangement direction of the air ventilation areas and the air distribution openings on the second control air door.

[0028] The distance between adjacent air ventilation areas is equal to the distance between adjacent air distribution openings; the distance between adjacent air distribution openings is greater than or equal to the size of adjacent air ventilation areas in the moving direction between the fixed hole plate and the sliding hole plate.

[0029] Compared with the prior art, the above technical scheme has the following advantages and positive effects:

[0030] The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air. BRIEF DESCRIPTION OF DRAWINGS

[0031] The above and other features and advantages of the present application will become more apparent by reference to the following detailed description taken in conjunction with the accompanying drawings in which:

[0032] Figure 1 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air.

[0033] Figure 2 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air.

[0034] Figure 3 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air.

[0035] Figure 4 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air.

[0036] Figure 5 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air.

[0037] Figure 6 The shoe cabinet provided by the application can realize one or more of the functions of discharging dirty air in an open circuit and circulating air in a closed circuit, realize the functions of deodorization and drying in the shoe cabinet, effectively prevent the functions of delamination, cracking and aging of shoes, and avoid the pollution of air in the shoe cabinet to air, and ensure the cleanliness of indoor air. DETAILED DESCRIPTION

[0038] The application will be described in greater detail by reference to the following drawings. However, the application can be realized in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the application to those skilled in the art. In the drawings, the dimensions and the relative dimensions of layers and regions may

[0039] REFERENCE Figures 1-6The shoe cabinet provided by the application can realize one or more of the functions of open circuit for discharging dirty air in the shoe cabinet and closed circuit circulation of air flow in the shoe cabinet, realizes the functions of deodorization and drying in the shoe cabinet, effectively prevents the functions of delamination, cracking and aging of shoes, avoids the odor pollution of air in the shoe cabinet, and ensures the clean air in the room.

[0040] Under the suction of the fan 4, the wind bag cavity 1 is in a negative pressure state, fresh air enters the shoe cavity from the fresh air outlet 9, flows through each layer of shoe cavity unit 10, carries away the dirty air in each layer of shoe cavity unit 10, and then enters the wind bag cavity 1 from the air outlet 5; the airflow entering the first wind bag is treated by the airflow treatment module, and then discharged from the dirty air outlet 16 and / or transported to each shoe cavity unit 10 through the air supply channel 12 and the shoe sole air supply structure 11; each shoe sole air supply structure 11 transports the treated dry air to the shoes placed in the shoe sole air supply structure 11 to perform deodorization, drying and other operations.

[0041] The dirty air outlet 16 is communicated with the negative pressure exhaust pipe of the fresh air system in the building, the dirty odor in the shoe cabinet is discharged out of the building through the negative pressure exhaust pipe, so that the odor is prevented from being dispersed in the room.

[0042] The shoe cabinet provided by the application can realize one or more of the functions of open circuit for discharging dirty air in the shoe cabinet and closed circuit circulation of air flow in the shoe cabinet, realizes the functions of deodorization and drying in the shoe cabinet, effectively prevents the functions of delamination, cracking and aging of shoes, avoids the odor pollution of air in the shoe cabinet, and ensures the clean air in the room.

[0043] In the embodiment, the shoe cavity includes a plurality of shoe cavity units 10 arranged in sequence from top to bottom, the wind bag cavity 1 is arranged at the top of the shoe cavity, and the air outlet 5 is communicated with the top layer of the shoe cavity unit; of course, in other embodiments, the positional relationship between the wind bag cavity 1 and the shoe cavity can be adjusted according to specific conditions, for example, the wind bag cavity 1 is located on the left and right sides of the shoe cavity, and the like, which is not limited here.

[0044] Further, the ventilation ports between the shoe cavity unit and the two shoe cavity units adjacent to it above and below are respectively located at both ends of the length direction of the shoe cavity unit, as shown in Figure 1 The design is conducive to the flow of air through the entire shoe cavity unit, and ensures the effect of air pollution.

[0045] In the embodiment, the back of the shoe cabinet body is uniformly provided with a plurality of air supply channels 12 along the length direction of the shoe cavity unit 10; each air supply channel 12 is arranged along the height direction of the shoe cavity, and a plurality of air supply channels 12 are arranged along the length direction of the shoe cavity unit 10. The number of air supply channels 12 can be one or more, which is not limited here, and the specific number can be set according to specific needs.

[0046] Further, in the embodiment, the upper end of the air supply channel 12 communicates with the air bag cavity 1, and the lower end extends to the position of the bottom shoe cavity unit 8, and the shoe palm air supply structure 11 is arranged at the corresponding position of the bottom shoe cavity unit 8.

[0047] In the embodiment, the shoe palm air supply structure 11 is an inclined pipe, one end of which communicates with the air supply channel 12, and the other end extends into the shoe cavity unit, and dry air is accurately delivered into the shoe through the shoe opening, so as to dry and deodorize the shoe. Of course, in other embodiments, the specific structure of the shoe palm air supply structure 11 can be adjusted according to specific conditions, which is not limited here.

[0048] In the embodiment, the air flow treatment module includes a heating device 3 and an ozone generator 2, the heating device 3 is used to produce dry air, and the ozone generator 2 is used for deodorization and sterilization. Of course, in other embodiments, the structure included in the air flow treatment module is not limited to the above, and can be adjusted according to specific conditions, which is not limited here.

[0049] In the embodiment, the first air door 15 is arranged on the dirty air exhaust port 16, and the second air door 13 is arranged at the position where each air supply pipe 12 communicates with the air bag cavity 1. The opening and closing switching of the first air door 15 and the second air door 13 realizes the switching of the running state in the shoe cabinet. When the first air door 15 is opened and the second air door 13 is closed, the function of discharging dirty air in the shoe cabinet is realized; when the first air door 15 is closed and the second air door 13 is opened, the function of closed-loop circulation of air flow in the shoe cabinet is realized; when the first air door 15 is closed and the second air door 13 is opened, the functions of discharging dirty air in the shoe cabinet and closed-loop circulation of air flow in the shoe cabinet are realized.

[0050] Further, in the embodiment, the first air door 15 and the second air door 13 are synchronously driven.

[0051] Specifically, the shoe cabinet further includes a driving device 14, the driving device 14 is connected with the first air door 15 and each second air door 13 through a connecting rod, and is used to control the opening and closing of the first air door 15 and the second air door 13; when the first air door 15 is completely opened, the second air door 13 is completely closed; when the first air door 15 is completely closed, the second air door is completely opened; when the first air door 15 is partially opened, the second air door 13 is also partially opened.

[0052] Further, the first air door comprises a first fixed aperture plate and a first sliding aperture plate. The first fixed aperture plate is provided with a plurality of first air vent areas arranged in sequence. The first sliding aperture plate is arranged in overlap with the first fixed aperture plate. The first sliding aperture plate is provided with a first air distribution port at a position corresponding to each first air vent area on the first fixed aperture plate. The first air distribution port can cover the first air vent area. The driving device 14 is used to drive the first sliding aperture plate to move relative to the first fixed aperture plate. During the relative movement, the overlapping part of each first air vent area and the first air distribution port changes, realizing the opening and closing of the first air vent area and the adjustment of air flow, so as to realize the opening and closing or flow adjustment of the first air door 15.

[0053] The second air door comprises a second fixed aperture plate and a second sliding aperture plate. The second fixed aperture plate is provided with a plurality of second air vent areas arranged in sequence. The second sliding aperture plate is arranged in overlap with the second fixed aperture plate. The second sliding aperture plate is provided with a second air distribution port at a position corresponding to each second air vent area on the second fixed aperture plate. The second air distribution port can cover the second air vent area. The driving device is used to drive the second sliding aperture plate to move relative to the second fixed aperture plate. During the relative movement, the overlapping part of each second air vent area and the second air distribution port changes, realizing the opening and closing of the second air vent area and the adjustment of air flow, so as to realize the opening and closing or flow adjustment of the second air door 13.

[0054] During use, the driving device 14 synchronously drives the sliding aperture plate of the first air door 15 and the sliding aperture plate of the second air door 13.

[0055] When the air vent area on the first air door 15 completely overlaps with the air distribution area, the air vent area on the second air door 13 completely does not overlap with the air distribution area. The first air door 4 is opened, and the second air door is closed.

[0056] When the air vent area on the first air door 15 completely does not overlap with the air distribution area, the air vent area on the second air door 13 completely overlaps with the air distribution area. The first air door 4 is closed, and the second air door is opened.

[0057] When the air vent area on the first air door 15 partially (x%) overlaps with the air distribution area, the air vent area on the second air door 13 also partially (1-x%) overlaps with the air distribution area. The first air door 15 is partially opened, and the second air door 13 is partially opened. For example, when the air vent area on the first air door partially 30% overlaps with the air distribution area, the air vent area on the second air door also partially 70% overlaps with the air distribution area.

[0058] Further, the first / second fixed hole plate is arranged with a plurality of first / second ventilation areas in the transverse or longitudinal direction, and the first / second sliding hole plate is arranged with a plurality of first / second air distribution ports in the transverse or longitudinal direction; the first / second ventilation area and the first / second air distribution port are the same in shape and size; and the moving direction of the first / second sliding hole plate is along the arrangement direction of the first / second ventilation area and the first / second air distribution port. The driving rod of the driving device 5 is parallel to the arrangement direction of the ventilation area and the air distribution port.

[0059] Further, the distance between adjacent first / second ventilation areas is equal to the distance between adjacent first / second air distribution ports; and the distance between adjacent first / second air distribution ports is greater than or equal to the size of the first / second ventilation area in the moving direction of the first / second fixed hole plate 401 / second fixed hole plate and the first / second sliding hole plate.

[0060] Further, the first ventilation area on the first fixed hole plate of the first air door 15 is arranged opposite to the second ventilation area on the second fixed hole plate of the second air door 13; and the first air distribution area on the first sliding hole plate of the first air door 15 is arranged opposite to the second air distribution area on the second sliding hole plate of the second air door 13. By the arrangement, it is ensured that when the first ventilation area completely overlaps with the first air distribution port, the second ventilation area does not completely overlap with the second air distribution port; when the first ventilation area does not completely overlap with the first air distribution port, the second ventilation area completely overlaps with the second air distribution port; and when the first ventilation area partially overlaps with the first air distribution port, the second ventilation area partially overlaps with the second air distribution port.

[0061] The working principle of the shoe cabinet provided by the application will be further described below:

[0062] 1. Shoe cabinet open path discharges dirty air operation

[0063] As Figures 1-2 , the fresh air port of the shoe cabinet is in an open state, the first air door of the dirty air exhaust port is in an open state, and the second air door 13 at the communication position between the air supply channel and the air bag cavity is in a closed state.

[0064] The indoor environment air flows from the fresh air port 9 to the bottom shoe cavity unit 8 to supplement fresh air, flows into the upper shoe cavity unit through the air port 7, then flows through each layer of shoe cavity unit 10, carries away the dirty air in each layer of shoe cavity unit 10, and then enters the air bag cavity 1 from the air port 5; the air flow entering the air bag cavity 1 is discharged from the dirty air exhaust port 16 after passing through the air flow treatment module. The air flow from the dirty air exhaust port can be directly discharged to the indoor environment, or can be discharged to the outdoor environment through the channel.

[0065] 2. Closed loop circulation of drying air inside shoe cabinet

[0066] With reference to Figures 3-4 , the fresh air inlet of the shoe cabinet is in the closed state, the first air door of the dirty air outlet is in the closed state, and the second air door 13 at the communication between the air supply channel and the air bag cavity 1 is in the open state;

[0067] The shoe cabinet interior fan operates, so that the shoe cabinet top air bag cavity 1 is in positive pressure; the fan blows the low-temperature dry air in the shoe cabinet top air bag cavity 1 through the air supply channel 12 and the shoe sole air supply structure 11 into the shoe sole cavity, and the dirty air is pressed out, so that the drying air continuously circulates;

[0068] 3. Simultaneous operation of open loop dirty air exhaust and closed loop drying air circulation inside the shoe cabinet

[0069] As Figures 5-6 , the fresh air inlet of the shoe cabinet is in the open state, the first air door of the dirty air outlet is in the open state, and the second air door 13 at the communication between the air supply channel and the air bag cavity is in the open state;

[0070] The fan 4 blows the low-temperature dry air in the shoe cabinet through the air supply channel 12 and the shoe sole air supply structure 11 into the shoe sole cavity, and the dirty air is pressed out; at the same time, a small amount of indoor air is supplemented into the shoe cavity unit 8 at the bottom from the fresh air inlet 9, enters the shoe cavity through the second air inlet 8, flows through each layer of shoe cavity unit 10, carries away the dirty air in each layer of shoe cavity unit 10, and then enters the air bag cavity 1 from the air inlet 5; the air entering the air bag cavity 1 is treated by the air flow treatment module, and then discharged from the dirty air outlet 16.

[0071] The shoe cabinet provided by the application has the following advantages:

[0072] ①The shoe cabinet is arranged in a residential indoor space, low-temperature dry air is used to blow the shoe soles to remove foot sweat, the shoes are not damaged, and the shoes are effectively prevented from being delaminated, cracked, and aged;

[0073] ②In the shoe cleaning / sterilization / drying process, the odor in the shoes is prevented from escaping from the shoe cabinet to pollute the indoor air, and the indoor air is kept clean.

[0074] Those skilled in the art should understand that the application can be implemented in many other specific forms without departing from the spirit or scope thereof. Although the embodiments of the application have been described, it should be understood that the application should not be limited to these embodiments, and those skilled in the art can make changes and modifications within the spirit and scope of the application as defined in the appended claims.

Claims

1. A shoe cabinet characterized by, The shoe cabinet comprises a shoe cabinet body, a shoe placing cavity, a wind bag cavity and at least one air supply channel arranged in the shoe cabinet body. The shoe placing cavity comprises at least one shoe placing cavity unit, and adjacent shoe placing cavity units are communicated through air vents. The wind bag cavity is provided with an air flow treatment module and a fan, and is provided with a dirty air exhaust port communicated with the outside and an air port communicated with one end of the shoe placing cavity. The bottom layer of the shoe placing cavity unit is provided with a fresh air port communicated with the outside.

2. The shoe cabinet according to claim 1, characterized in that, One end of the air supply channel is communicated with the wind bag cavity, and each shoe placing cavity unit is provided with a shoe sole air supply structure.

3. The shoe cabinet according to claim 1, wherein Under the suction of the fan, fresh air enters the shoe placing cavity through the fresh air port, flows through each layer of the shoe placing cavity unit, and then enters the wind bag cavity through the air port.

4. The shoe cabinet according to claim 3, characterized in that The air flow in the wind bag cavity is treated by the air flow treatment module, and then is discharged through the dirty air exhaust port and is delivered to each shoe placing cavity unit through the air supply channel and the shoe sole air supply structure, so as to realize the functions of open circuit dirty air discharge and closed circuit air circulation in the shoe cabinet, realize the deodorization and drying functions of the shoe cabinet, avoid air pollution caused by the odor in the shoe cabinet, and ensure the cleanliness of indoor air.

5. The shoe cabinet according to claim 1, wherein The dirty air exhaust port is communicated with a negative pressure exhaust pipe of a fresh air system in a building.

6. The shoe cabinet of claim 1, wherein The shoe placing cavity comprises a plurality of shoe placing cavity units arranged in sequence from top to bottom, and the wind bag cavity is arranged at the top of the shoe placing cavity.

7. The shoe cabinet of claim 1, wherein The air vents between the shoe placing cavity unit and the two shoe placing cavity units adjacent to it are located at both ends of the length direction of the shoe placing cavity unit.

8. The shoe cabinet according to claim 7, characterized in that The air supply channel is arranged along the height direction of the shoe placing cavity, and a plurality of air supply channels are arranged along the length direction of the shoe placing cavity unit. The air flow treatment module comprises a heating device and an ozone generator.

9. The shoe cabinet according to claim 8, characterized in that The dirty air exhaust port is provided with a first air door, and each air supply channel is provided with a second air door communicated with the wind bag cavity. The driving device is connected with the first air door and each second air door through a connecting rod, and is used for controlling the opening and closing of the first air door and the second air door. When the first air door is fully opened, the second air door is fully closed; when the first air door is fully closed, the second air door is fully opened; when the first air door is partially opened, the second air door is partially opened. The first air door / second air door comprises: A fixed hole plate provided with a plurality of ventilation areas arranged in sequence; A sliding hole plate arranged in overlap with the fixed hole plate, and provided with a wind distribution port at a position corresponding to each ventilation area of the fixed hole plate, and the wind distribution port can cover the ventilation area; The driving device simultaneously drives each sliding hole plate to move relative to the fixed hole plate through the connecting rod, and the overlapping part of each ventilation area and the wind distribution port changes in the relative movement process, so as to realize the opening and closing of the ventilation area and the adjustment of air flow.

10. The shoe cabinet according to claim 9, characterized in that The ventilation area on the fixed hole plate on the first damper is staggered with the ventilation area on the fixed hole plate on the second damper; the air distribution port on the sliding hole plate on the first damper is opposite to the air distribution port on the sliding hole plate on the second damper; The driving device drives the sliding hole plate of the first damper and the sliding hole plate of the second damper; when the ventilation area on the first damper is completely overlapped with the air distribution port, the ventilation area on the second damper is not completely overlapped with the air distribution port; when the ventilation area on the first damper is not completely overlapped with the air distribution port, the ventilation area on the second damper is completely overlapped with the air distribution port; when the ventilation area on the first damper is partially overlapped with the air distribution port, the ventilation area on the second damper is also partially overlapped with the air distribution port.

11. The shoe cabinet according to claim 9 or 10, characterized in that A plurality of ventilation areas are evenly distributed along the transverse direction or the longitudinal direction of the fixed hole plate, and a plurality of air distribution ports are evenly distributed along the transverse direction or the longitudinal direction of the sliding hole plate; the shape and size of the ventilation area and the air distribution port are the same; the moving direction of the sliding hole plate is along the arrangement direction of the ventilation area and the air distribution port.

12. The shoe cabinet according to claim 11, characterized in that The arrangement direction of the ventilation area and the air distribution port on the first damper is parallel to the arrangement direction of the ventilation area and the air distribution port on the second damper; The distance between adjacent ventilation areas is equal to the distance between adjacent air distribution ports; the distance between adjacent air distribution ports is greater than or equal to the size of adjacent ventilation areas in the moving direction between the fixed hole plate and the sliding hole plate.

Citation Information

Patent Citations

  • Shoe cabinet

    CN105831995A

  • Deodorant shoe cabinet of big reserves

    CN206043926U

  • Shoe cabinet

    CN214510178U