Shoe cabinet with dehumidification device function

By combining n-type jet racks and rubber hoses in the shoe cabinet, the servo motor drives the jet racks to move back and forth, solving the problem of low drying efficiency in the prior art, achieving simultaneous drying of the outside and inside of the shoe, improving drying efficiency and ensuring position accuracy.

CN120477490AInactive Publication Date: 2025-08-15刘伍海
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Patent Information

Application Number
CN202510829344.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Due to the large internal space of the existing shoe cabinet, it is difficult for hot air to dry the inside of the shoes in a direction, resulting in low drying efficiency.

Method used

The n-type jet rack is combined with a rubber hose, and the jet rack is driven forward and backward by a servo motor, and the outside and inside of the shoes are respectively directionally dryed, combining the air pump and the exhaust fan to achieve air circulation, improving drying efficiency.

Benefits of technology

The exterior and interior of the shoe are simultaneously dried, which improves the drying efficiency, and ensures the accuracy of the shoe position through positioning components and lifting components to prevent deviations.

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Abstract

According to the shoe cabinet with the dehumidification device function, the exterior and the interior of a shoe can be dried directionally, and the drying efficiency is improved. A shoe cabinet with a dehumidification device function comprises a cabinet body and an exhaust fan installed on the cabinet body, and a heat dissipation frame is fixedly connected to the outer rear side face of the cabinet body. The invention relates to the technical field of shoe cabinets, in particular to a shoe cabinet with a dehumidification device function. According to the shoe drying and dehumidifying device, a cabinet door is pulled to be opened, shoes are placed on a placing frame, the cabinet door is closed, an air extracting pump is started, an n-shaped air spraying frame sprays air out to dry and dehumidify the outsides of the shoes, a rubber hose further sprays air out to dry and dehumidify the interiors of the shoes, and then a servo motor is started to rotate forwards and backwards alternately; the n-shaped air injection frame moves back and forth to comprehensively dry and dehumidify the exterior of the shoe, the interior of the shoe is dried, the exterior and the interior of the shoe are dried at the same time, dehumidification treatment on the shoe is completed, and therefore the drying efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of shoe cabinets, and in particular to a shoe cabinet with a dehumidifying function. Background Art

[0002] In daily life, some people use shoe cabinets, which can place shoes for easy use. However, in humid weather, the shoes will become damp, making them very uncomfortable to wear. Therefore, additional operations are required to dry the shoes.

[0003] Chinese patent publication number CN205625181U discloses a shoe cabinet with a dehumidification function, including a shoe cabinet shell, a humidity detector, a control panel and a door handle; a shoe rack is installed inside the shoe cabinet shell, support rods are installed on both sides of the shoe rack, and the humidity detector is installed on the support rods. A central controller is installed at the lower part of the inner part of the shoe cabinet shell, a speed detector is provided on the left side of the central controller, and a blower is installed on the left side of the speed detector. The blower is connected to the electromagnetic valve through a blower pipe, a universal self-locking wheel is installed at the bottom of the shoe cabinet shell, a shoe cabinet top cover is installed above the door body, the control panel is installed on the shoe cabinet top cover, and a display screen is provided on the control panel. Although the above patent can dry shoes, due to the large internal space of the shoe cabinet, it is difficult for the hot air to dry the inside of the shoes in a targeted manner, and the hot air needs a long time to completely dry the shoes, affecting the drying efficiency.

[0004] The present invention aims to solve the problems existing in the above patents. To this end, a shoe cabinet with a dehumidifying device function is proposed, which can directionally dry the outside and inside of shoes and improve the drying efficiency. Summary of the Invention

[0005] In order to overcome the shortcomings of the above patent that although the shoes can be dried, due to the large internal space of the shoe cabinet, the hot air is difficult to dry the inside of the shoes in a targeted manner, and the hot air requires a long time to completely dry the shoes, thereby affecting the drying efficiency, the present invention provides a shoe cabinet with a dehumidification device function that can dry the outside and inside of the shoes in a targeted manner and improve the drying efficiency.

[0006] The present invention is achieved through the following technical approaches: A shoe cabinet with a dehumidification function includes a cabinet body and an exhaust fan installed on the cabinet body, a heat dissipation frame is fixedly connected to the outer rear side of the cabinet body, the inner side of the cabinet body is divided into two cavities, and placement racks are fixedly connected to the left and right sides of the cabinet body at even intervals, and N-type jet racks are slidably connected to the tops of the placement racks for spraying hot air to dry the shoes, the N-type jet racks are connected to rubber hoses fixed to the inner side of the cabinet body, and air pumps connected to telescopic hoses are fixedly connected to the left and right sides of the inner side of the heat dissipation frame, the telescopic hoses pass through the cabinet body and are connected and communicated with the N-type jet racks, the air pump discharges air into the N-type jet racks through the telescopic hoses, and the N-type jet racks discharge air into the rubber hose, so that the rubber hose and the N-type jet racks spray air on the inside and outside of the shoes respectively for drying and dehumidification, and a driving assembly is provided on the cabinet body to drive the N-type jet racks to move back and forth.

[0007] To further explain, the rubber hose is provided with two nozzles for spraying air into the interior of two shoes respectively for drying and dehumidifying.

[0008] Further explanation, the drive assembly includes a screw rod rotatably connected to the right side of the placement rack, the screw rod is threadedly connected to the lower right side of the N-type jet rack to drive the N-type jet rack to move back and forth, and mounting racks are evenly spaced and fixed on the rear side of the cabinet body. The mounting racks correspond to the N-type jet racks, and a servo motor is fixed on the mounting rack. A transmission assembly is connected between the output shaft of the servo motor and the rear side of the screw rod.

[0009] To further explain, the transmission assembly consists of two pulleys and a flat belt, one of which is fixedly mounted on the output shaft of the servo motor, and the other is fixedly mounted on the screw, and the flat belt is wound between the two pulleys to enable transmission between the servo motor and the screw.

[0010] Further explanation, it also includes a positioning component installed on the placement rack, the positioning component is used to center the shoes, the positioning component includes a cross bar symmetrically fixed to the placement rack, and a positioning plate is symmetrically slidably set between the cross bars on both sides of each placement rack to position the shoes. A contact rod is fixed to the outer side of the positioning plate, and the N-type jet rack moves to contact the contact rod. A column spring set on the cross bar is connected between the lower part of the outer side of the positioning plate and the inner side of the placement rack.

[0011] To further illustrate, the rear side of the contact rod is an inclined surface, and the inclined surface of the contact rod gradually tilts from the outside to the inside.

[0012] Further explanation, it also includes a lifting assembly installed on the placement rack, which is used to drive the shoes to move upward and closer to the air outlet end of the N-type jet rack. The lifting assembly includes two guide columns that are symmetrically slidably connected to the placement rack. A lifting rack that drives the shoes to move upward is fixed between the top of the two guide columns on each side to make the shoes closer to the N-type jet rack. A buffer spring is connected between the lower part of the guide column and the bottom of the placement rack. A short column is fixed to the rear side of the top of the lifting rack, and an inclined plate is fixed to the rear side of the top of the positioning plate to drive the short column to move upward.

[0013] To further explain, the inclined surface of the inclined plate is an inclined structure with a higher outer side and a lower inner side.

[0014] Further description, it also includes an adsorption plate fixed to the lower inner side of the exhaust fan to absorb and remove odors.

[0015] Further description, it also includes a fixing plate and a buffer pad installed on the inner side of the positioning plate, and the inner side of the fixing plate is fixed with a buffer pad to increase the friction with the shoe.

[0016] The present invention is significantly improved in that: 1. First, pull the cabinet door open and place the shoes on the rack. Close the cabinet door and start the vacuum pump. The n-type jet rack will spray air to dry and dehumidify the outside of the shoes, and the rubber hose will also spray air to dry and dehumidify the inside of the shoes. Then start the servo motor to rotate forward and reverse alternately, which will make the n-type jet rack move back and forth to fully dry and dehumidify the outside of the shoes. Since the inside of the shoes is also being dried, the outside and inside of the shoes are also dried at the same time, completing the dehumidification process of the shoes, thereby improving the drying efficiency.

[0017] 2. Under the action of the positioning plate, whenever the n-type jet rack moves inward, the positioning plate moves to center the shoes, preventing the deviation of the shoe position from affecting the drying of the rubber hose inside, thereby improving the accuracy of shoe placement.

[0018] 3. Under the action of the lifting frame, whenever the positioning plate moves inward, the lifting frame moves upward, which can drive the shoes to move upward and closer to the air outlet end of the n-type jet frame to be dried and dehumidified, thereby improving the drying effect of the shoes. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the three-dimensional structure of an embodiment of a shoe cabinet with a dehumidification function.

[0020] Figure 2 This is a schematic diagram of the cross-sectional structure of a cabinet body in an embodiment of a shoe cabinet with dehumidification function.

[0021] Figure 3 This is a schematic cross-sectional view of a placement rack in an embodiment of a shoe cabinet with a dehumidification function.

[0022] Figure 4 This is a structural schematic diagram of a positioning frame in an embodiment of a shoe cabinet with dehumidification function.

[0023] Figure 5 This is a schematic structural diagram of a lifting rack in an embodiment of a shoe cabinet with a dehumidification function.

[0024] Figure 6 This is a schematic structural diagram of a return spring in an embodiment of a shoe cabinet with a dehumidification function.

[0025] Figure 7 This is a schematic diagram of the structure of an adsorption plate in an embodiment of a shoe cabinet with dehumidification function.

[0026] Figure 8 This is a schematic diagram of the structure of a buffer pad in an embodiment of a shoe cabinet with dehumidification function.

[0027] The markings of the components in the accompanying drawings are as follows: 1. Cabinet body, 2. Cabinet door, 3. Exhaust fan, 31. Heat dissipation frame, 4. Placement rack, 41. N-type jet rack, 42. Telescopic hose, 43. Vacuum pump, 44. Rubber hose, 5. Mounting rack, 51. Servo motor, 52. Screw, 53. Transmission assembly, 6. Cross bar, 61. Positioning plate, 62. Column spring, 63. Contact rod, 7. Lifting rack, 71. Guide column, 72. Buffer spring, 73. Inclined plate, 74. Short column, 8. Adsorption plate, 9. Fixing plate, 91. Buffer pad. DETAILED DESCRIPTION

[0028] First of all, it should be noted that in the various described embodiments, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained throughout the entire description can be transferred to the same components having the same reference numerals or identical component names. Positional designations selected in the description, such as top, bottom, lateral, etc., also refer to the directly described and illustrated figures and are transferred to the new position in the event of a change in position. Example 1

[0029] A shoe cabinet with a dehumidifying function, comprising a cabinet body 1, a cabinet door 2, an exhaust fan 3, a heat dissipation frame 31, a placement rack 4, an n-shaped jet rack 41, a telescopic hose 42, an air pump 43, a rubber hose 44, a mounting rack 5, a servo motor 51, a screw 52 and a transmission assembly 53, see Figure 1-Figure 3As shown, the cabinet door 2 is rotatably connected to the left side of the front side of the cabinet 1, and a heat dissipation frame 31 is fixed to the outer rear side of the cabinet 1. An exhaust fan 3 is fixedly connected to the top of the cabinet 1 symmetrically on the left and right sides. The exhaust fan 3 can extract the odor in the cabinet 1. The inside of the cabinet 1 is divided into two cavities. Four placement racks 4 are evenly spaced and fixed on the left and right sides of the cabinet 1. N-type jet racks 41 are slidably connected between the left and right sides of the tops of the eight placement racks 4. When hot air is discharged into the n-type jet racks 41, the n-type jet racks 41 can spray hot air to dry the shoes. The upper front sides of all n-type jet racks 41 are connected to a rubber hose 44. The rubber hose 44 has two nozzles. One side of the rubber hose 44 is fixed to the inside of the cabinet 1. When hot air is discharged into the rubber hose 44, the rubber hose 44 can spray hot air into the inside of the shoes for drying. An air pump 43 is fixed to the left and right pairs of the inside of the heat dissipation frame 31. There are four telescopic hoses 42 evenly spaced apart on the vacuum pump 43, and the eight telescopic hoses 42 all pass through the rear side of the cabinet 1. The air outlet ends of the eight telescopic hoses 42 are respectively connected to and communicated with eight N-type jet racks 41. The right sides of the eight placement racks 4 are rotatably connected to the screw rod 52, and the screw rod 52 is threadedly connected to the lower right side of the N-type jet rack 41 to drive the N-type jet rack 41 to move back and forth. Eight mounting racks 5 are evenly spaced apart and fixed on the outer rear side of the cabinet 1. The eight mounting racks 5 correspond to the eight N-type jet racks 41 respectively. A servo motor 51 is fixed on the eight mounting racks 5. A transmission assembly 53 is connected between the output shaft of the servo motor 51 and the rear side of the screw rod 52. The transmission assembly 53 consists of two pulleys and a flat belt, one of which is fixedly sleeved on the output shaft of the servo motor 51, and the other pulley is fixedly sleeved on the rear side of the screw rod 52, and the flat belt is wound between the two pulleys.

[0030] First, pull the cabinet door 2 forward and swing it open, then place the shoes on the placement rack 4, with the air outlet end of the rubber hose 44 facing the inside of the shoes, then pull the cabinet door 2 backward and swing it closed, then start the air pump 43, the air pump 43 draws air into the telescopic hose 42, the air in the telescopic hose 42 is discharged into the n-type jet rack 41, the n-type jet rack 41 sprays the air on the outside of the shoes, thus drying the outside of the shoes, at the same time, part of the air in the n-type jet rack 41 is discharged back into the rubber hose 44, the air in the rubber hose 44 is sprayed on the inside of the shoes, thus drying the inside of the shoes, and then start the corresponding spraying according to demand. The servo motor 51 rotates alternately forward and reverse, which drives the transmission assembly 53 to rotate alternately forward and reverse. The alternating forward and reverse rotation of the transmission assembly 53 drives the screw rod 52 to rotate alternately forward and reverse. The alternating forward and reverse rotation of the screw rod 52 drives the N-type jet rack 41 to move back and forth. The N-type jet rack 41 moves back and forth to fully dry the outside of the shoes. Since the inside of the shoes is also being dried, both the outside and the inside of the shoes are dried simultaneously, completing the dehumidification process for the shoes, thereby improving the drying efficiency. At the same time, the exhaust fan 3 is activated to extract air from the cabinet 1, thereby expelling odors from the cabinet 1. When the shoes are dehumidified, the air pump 43 is turned off, the rubber hose 44 and the N-type jet rack 41 stop ejecting air, the servo motor 51 is turned off again, the screw rod 52 stops driving the N-type jet rack 41 to move back and forth, and the exhaust fan 3 is turned off again. When the shoes are needed, the cabinet door 2 is pulled forward to swing open, the shoes are removed from the storage rack 4, and the cabinet door 2 is pulled back to swing closed. Example 2

[0031] On the basis of embodiment 1, it also includes a crossbar 6, a positioning plate 61, a column spring 62 and a contact rod 63, see Figure 4 As shown, the eight placement racks 4 are all symmetrically fixed with cross bars 6 front and back, and a positioning plate 61 is symmetrically slidingly installed between the two cross bars 6 on each placement rack 4. When the positioning plate 61 moves inward and contacts the shoes, the positioning plate 61 can position the shoes. The rear sides of the outer sides of the positioning plates 61 on both sides are fixed with contact rods 63, and the rear sides of the contact rods 63 are inclined. The inclined surface of the contact rods 63 gradually tilts from the outside to the inside. The n-type jet rack 41 moves forward and contacts the contact rod 63. The lower parts of the outer sides of the positioning plates 61 on both sides are symmetrically connected front and back to the inner sides of the placement racks 4. The column springs 62 are installed on the cross bars 6.

[0032] It also includes a lifting frame 7, a guide column 71, a buffer spring 72, an inclined plate 73 and a short column 74, see Figure 5 and Figure 6As shown, the eight placement racks 4 are all symmetrically and slidingly connected with two guide columns 71, and a lifting rack 7 is fixed between the tops of the two guide columns 71 on each side. When the lifting rack 7 moves upward, the lifting rack 7 can drive the shoes to move upward so that the shoes are closer to the n-type jet rack 41. A buffer spring 72 is connected between the lower part of each guide column 71 and the bottom of the placement rack 4. A short column 74 is fixed in the middle of the top rear side of each lifting rack 7, and an inclined plate 73 is fixed on the top rear side of each positioning plate 61. The inclined surface of the inclined plate 73 is an inclined structure with a high outside and a low inside. When the inclined plate 73 moves inward, the inclined plate 73 can drive the short column 74 to move upward.

[0033] When the servo motor 51 is activated, the n-shaped air jet rack 41 moves forward and backward to fully dry the outside of the shoe. As the n-shaped air jet rack 41 moves forward, it contacts the inclined surface of the contact rod 63, driving the contact rod 63 inward. This inward movement of the contact rod 63 also drives the positioning plate 61 inward. The post spring 62 is stretched, causing the positioning plate 61 to move inward and contact the shoe. This positions the shoe centrally, ensuring that the inside of the shoe is precisely aligned with the rubber hose 44. When the n-shaped air jet rack 41 moves backward and resets, it resets and disengages from the contact rod 63. Due to the action of the post spring 62, the positioning plate 61 moves outward and resets, disengaging from the shoe. The reset of the positioning plate 61 also drives the contact rod 63 outward and resets. This prevents any deviation in the shoe's position from affecting the drying of the inside of the rubber hose 44, thereby improving shoe placement accuracy.

[0034] When the n-type jet frame 41 moves forward and drives the contact rod 63 to move inward, the contact rod 63 drives the positioning plate 61 to move inward to center the shoe, the positioning plate 61 resets and drives the inclined plate 73 to move inward, the inclined plate 73 moves inward and drives the short column 74 to move upward, the short column 74 moves upward and drives the lifting frame 7 to move upward, the lifting frame 7 moves upward and drives the guide column 71 to move upward, the buffer spring 72 is compressed, the lifting frame 7 moves upward and also drives the shoe to move upward, the shoe moves upward and is closer to the air outlet end of the n-type jet frame 41, and the n-type jet frame 41 is on the outside of the shoe. To dry and dehumidify, when the N-type jet rack 41 moves backward and resets, it disengages from the contact rod 63. The positioning plate 61 moves outward and resets, driving the contact rod 63 outward and reset. The positioning plate 61 resets, driving the inclined plate 73 outward and reset. The reset of the inclined plate 73 stops restraining the short post 74. Due to the action of the buffer spring 72, the guide post 71 moves downward and resets, driving the lifting frame 7 downward and reset. The reset of the lifting frame 7 also drives the shoes downward and reset. This process repeats, continuously bringing the shoes closer to the air outlet of the N-type jet rack 41 for drying and dehumidification. When the N-type jet rack 41 stops moving forward and backward, the positioning plate 61 also stops driving the inclined plate 73 inward and outward movement, and the lifting frame 7 stops driving the shoes up and down. This brings the shoes closer to the air outlet of the N-type jet rack 41, thereby improving the drying effect. Example 3

[0035] On the basis of embodiment 1 and embodiment 2, an adsorption plate 8 is also included. Figure 7 As shown, adsorption plates 8 are fixedly connected to the lower inner parts of the left and right exhaust fans 3. When the odor comes into contact with the adsorption plates 8, the adsorption plates 8 can absorb and remove the odor.

[0036] Also includes a fixing plate 9 and a buffer pad 91, see Figure 8 As shown, a fixing plate 9 is fixed to the upper portion of the inner side surface of each positioning plate 61 , and a buffer pad 91 is fixed to the inner side surface of each fixing plate 9 . The buffer pad 91 can increase the friction with the shoe.

[0037] When the exhaust fan 3 starts to exhaust the air in the cabinet 1, the air contacts the adsorption plate 8, which absorbs and removes the odor in the air. The odor-free air is then exhausted by the exhaust fan 3. This prevents the odor in the air from floating around and affecting the air quality, thereby ensuring good quality of the surrounding air.

[0038] When the positioning plate 61 moves inward, it also drives the cushioning pad 91 inward via the fixing plate 9. The cushioning pad 91 moves inward and contacts the shoe, centered on the shoe. This increases friction with the shoe. When the positioning plate 61 moves outward to reset, the positioning plate 61 drives the cushioning pad 91 outward via the fixing plate 9. This ensures that the positioning plate 61 more securely centers the shoe.

[0039] Finally, it is necessary to point out that the above content is only used to help understand the technical solution of the present invention and cannot be understood as limiting the scope of protection of the present invention; non-essential improvements and adjustments made by technical personnel in this field based on the above content of the present invention are all within the scope of protection required by the present invention.

Claims

1. A shoe cabinet with a dehumidifying function, comprising a cabinet body (1) and an exhaust fan (3) mounted on the cabinet body (1), a heat dissipation frame (31) fixedly connected to the outer rear side of the cabinet body (1), the inner side of the cabinet body (1) is divided into two cavities, and a placement rack (4) is fixedly connected to both left and right sides of the cabinet body (1) at even intervals, wherein: The top of the placement rack (4) is slidably connected to an n-type jet rack (41) for spraying hot air to dry the shoes. The n-type jet rack (41) is connected to a rubber hose (44) fixed to the inner side of the cabinet (1). An air pump (43) connected to a telescopic hose (42) is fixed to the left and right sides of the inner side of the heat dissipation frame (31). The telescopic hose (42) penetrates the cabinet (1) and is connected and communicated with the n-type jet rack (41). The air pump (43) discharges air into the n-type jet rack (41) through the telescopic hose (42). The n-type jet rack (41) discharges air into the rubber hose (44), so that the rubber hose (44) and the n-type jet rack (41) spray air on the inside and outside of the shoes respectively for drying and dehumidification. A driving component is provided on the cabinet (1) to drive the n-type jet rack (41) to move back and forth.

2. A shoe cabinet with a dehumidifying function according to claim 1, characterized in that: The rubber hose (44) is provided with two nozzles for spraying air into the interior of the two shoes for drying and dehumidifying.

3. The shoe cabinet with dehumidification function according to claim 1, characterized in that: The driving assembly includes a screw rod (52) rotatably connected to the right side of the placement frame (4), the screw rod (52) is threadedly connected to the lower right side of the N-type jet frame (41) to drive the N-type jet frame (41) to move back and forth, and the outer rear side of the cabinet (1) is fixed with a mounting frame (5) at even intervals, the mounting frame (5) corresponds to the N-type jet frame (41), and a servo motor (51) is fixed on the mounting frame (5). A transmission assembly (53) is connected between the output shaft of the servo motor (51) and the rear side of the screw rod (52).

4. The shoe cabinet with dehumidification function according to claim 3, characterized in that: The transmission assembly (53) consists of two pulleys and a flat belt, wherein one pulley is fixedly mounted on the output shaft of the servo motor (51), and the other pulley is fixedly mounted on the screw rod (52). The flat belt is wound between the two pulleys to enable transmission between the servo motor (51) and the screw rod (52).

5. The shoe cabinet with dehumidification function according to claim 3, characterized in that: The invention also includes a positioning assembly mounted on the placement rack (4), the positioning assembly is used to center the shoes, the positioning assembly includes a cross bar (6) symmetrically fixed on the placement rack (4), a positioning plate (61) is symmetrically slidably mounted between the cross bars (6) on both sides of each placement rack (4) to position the shoes, a contact rod (63) is fixed to the outer side of the positioning plate (61), the n-type jet rack (41) moves to contact the contact rod (63), and a column spring (62) mounted on the cross bar (6) is connected between the lower part of the outer side of the positioning plate (61) and the inner side of the placement rack (4).

6. The shoe cabinet with dehumidification function according to claim 5, characterized in that: The rear side of the contact rod (63) is an inclined surface, and the inclined surface of the contact rod (63) gradually tilts from the outside to the inside.

7. The shoe cabinet with dehumidification function according to claim 5, characterized in that: The invention also includes a lifting assembly mounted on the placement rack (4), the lifting assembly is used to drive the shoes to move upward closer to the outlet end of the n-type jet rack (41), the lifting assembly includes two guide pillars (71) symmetrically slidably connected to the placement rack (4), a lifting rack (7) for driving the shoes to move upward is fixed between the tops of the two guide pillars (71) on each side, so that the shoes are closer to the n-type jet rack (41), a buffer spring (72) is connected between the lower part of the guide pillar (71) and the bottom of the placement rack (4), a short column (74) is fixed to the rear side of the top of the lifting rack (7), and an inclined plate (73) is fixed to the rear side of the top of the positioning plate (61) to drive the short column (74) to move upward.

8. The shoe cabinet with dehumidification function according to claim 7, characterized in that: The inclined surface of the inclined plate (73) is an inclined structure with a high outer surface and a low inner surface.

9. The shoe cabinet with dehumidification function according to claim 8, characterized in that: It also includes an adsorption plate (8) fixed to the lower inner portion of the exhaust fan (3) to absorb and remove odor.

10. The shoe cabinet with dehumidification function according to claim 7, characterized in that: The invention also includes a fixing plate (9) and a buffer pad (91) mounted on the inner side of the positioning plate (61). The inner side of the fixing plate (9) is fixed with the buffer pad (91) for increasing friction with the shoe.

Citation Information

Patent Citations

  • Shoe cabinet with dehydrating unit function

    CN205625181U