Intelligent shoe cabinet
By installing control devices and traction devices in the shoe cabinet, the height of the shoe cabinet is adjustable, the problem of fixed height of the shoe cabinet is solved, the user experience is improved, and convenient seating functions are provided to meet diverse usage needs.
Patent Information
- Application Number
- CN202410132524.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-31
- Publication Date
- 2025-08-01
AI Technical Summary
The existing shoe cabinets are fixed in height and users cannot adjust according to actual needs, resulting in poor user experience.
A smart shoe cabinet is designed, and by installing a control device and a traction device at the bottom of the cabinet, the control device controls the traction device to drive the cabinet to rise or decrease, thereby achieving adjustable height.
By adjusting the height of the shoe cabinet, meeting user needs, improving user experience, and providing convenient shoe changing function through seating devices, saving space.
Smart Images

Figure CN120391804A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smart home, and particularly provides an intelligent shoe cabinet. Background Art
[0002] The main use of a shoe cabinet is to display idle shoes. With the progress of society and the improvement of human living standards, the shoe cabinet has evolved from a wooden shoe cabinet to various styles and materials of shoe cabinets now, including: wooden shoe cabinets, electronic shoe cabinets, disinfection shoe cabinets, etc., with different functions and styles.
[0003] The heights of existing shoe cabinets are all fixed, and users cannot adjust the height of the shoe cabinet according to actual needs, thus resulting in poor user experience.
[0004] Correspondingly, a new intelligent shoe cabinet is needed in this field to solve the above problems. Summary of the Invention
[0005] The present invention aims to solve the above technical problems, that is, to solve the problem that the heights of existing shoe cabinets are all fixed, and users cannot adjust the height of the shoe cabinet according to actual needs, thus resulting in poor user experience.
[0006] The present invention provides an intelligent shoe cabinet, which includes a cabinet body, a control device and a traction device; the control device is installed on the cabinet body, and the traction device is installed at the bottom of the cabinet body and connected to the control device, so that the control device controls the traction device to start, so that the traction device drives the cabinet body to rise or fall.
[0007] In the preferred technical solution of the above intelligent shoe cabinet, the control device includes a main control board and a touch screen; the main control board is connected to the traction device, the touch screen is connected to the main control board, the touch screen is configured to receive external instructions and transmit the external instructions to the main control board, and the main control board is configured to convert the external instructions into internal instructions.
[0008] In the preferred technical solution of the above intelligent shoe cabinet, the traction device includes a first power device, a lifting rod, a support frame and universal wheels; the first power device is installed on the cabinet body; the support frame is fixedly connected to the cabinet body; the lifting rod is respectively connected to the first power device and the support frame; the universal wheels are installed at one end of the lifting rod far from the first power device; wherein, the first power device is connected to the main control board, so that the main control board controls the first power device to work, drives the lifting rod to rotate, so that the support frame and the cabinet body rise or fall along the axial direction of the lifting rod.
[0009] In the preferred technical solution of the above intelligent shoe cabinet, the universal wheel includes a wheel, a support member, and a connecting member; the wheel is inserted into the support member and is movably connected to the support member; the connecting member is movably connected to the support member so that the support member can move.
[0010] In the preferred technical solution of the above intelligent shoe cabinet, the connecting member and the end of the lifting rod away from the first power device are connected by a bearing.
[0011] In the preferred technical solution of the above intelligent shoe cabinet, the connecting member is connected to the outer ring of the bearing, and the end of the lifting rod away from the first power device is connected to the inner ring of the bearing.
[0012] In the preferred technical solution of the above intelligent shoe cabinet, the intelligent shoe cabinet further includes a seat device, and the seat device includes a second power device and a seat; the second power device is installed on the cabinet body and is connected to the control device; the seat is connected to the second power device so that the second power device drives the seat to extend or retract.
[0013] In the preferred technical solution of the above intelligent shoe cabinet, the seat includes a rack, a seat portion, and a fixed wheel; the rack is connected to the second power device so that the second power device drives the rack to extend or retract; the seat portion is integrally formed with the rack for the seat portion and the rack to extend or retract synchronously; the fixed wheel is installed at the end of the seat portion in contact with the ground.
[0014] In the preferred technical solution of the above intelligent shoe cabinet, the seat device further includes a micro-control component, and the micro-control component is installed on the cabinet body and is connected to the control device so that the control device controls the operation of the second power device.
[0015] In the preferred technical solution of the above intelligent shoe cabinet, the micro-control component includes a fixed block, a first micro-control switch, and a second micro-control switch; the fixed block is installed on the rack so that the fixed block extends or retracts along with the rack; the first micro-control switch is installed on the fixed block and is connected to the main control board. When the fixed block extends along with the rack, the first micro-control switch contacts the cabinet body, and the first micro-control switch sends a stop extension signal to the main control board so that the main control board controls the second power device to stop driving the rack to extend; the second micro-control switch is installed on the cabinet body and is connected to the main control board. When the rack retracts, the second micro-control switch contacts the fixed wheel, and the second micro-control switch sends a stop retraction signal to the main control board so that the main control board controls the second power device to stop driving the rack to retract.
[0016] In the preferred technical solution of the above intelligent shoe cabinet, a gravity sensor is arranged on the surface of the seat part where the user sits, and the gravity sensor is connected to the control device, so that when the seat part is not occupied by the user, the control device controls the seat part to retract.
[0017] In the case of adopting the above technical solution, in the intelligent shoe cabinet of the present invention, by installing a connected control device and a traction device on the cabinet body, the control device controls the traction device to rise or fall, so that the cabinet body rises or falls accordingly, and the height of the shoe cabinet can be adjusted arbitrarily to meet the user's usage requirements, thereby improving the user experience.
[0018] Furthermore, the intelligent shoe cabinet of the present invention further includes a seat device, which includes a second power device and a seat. Among them, the second power device is installed on the cabinet body and connected to the control device, and the seat is connected to the second power device, so that the second power device drives the seat to extend or retract. By driving the seat to extend through the second power device, the user can sit down to change shoes, and when not in use, the seat can be retracted, which can save space and improve the user experience.
[0019] Furthermore, the intelligent shoe cabinet of the present invention further includes a micro-control component, which is installed on the cabinet body and connected to the control device, so that the control device controls the operation of the second power device. By setting the micro-control component, the second power device can be automatically controlled to stop, avoiding damage to the cabinet body caused by excessive extension and excessive retraction of the seat. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The following describes the preferred embodiments of the present invention in conjunction with the drawings, in which:
[0021] Figure 1 is the front view of an intelligent shoe cabinet of the present invention;
[0022] Figure 2 is the side view of an intelligent shoe cabinet of the present invention provided with a traction device;
[0023] Figure 3 is the structural block diagram of the control device of an intelligent shoe cabinet of the present invention;
[0024] Figure 4 is the structural schematic diagram of the universal wheel of an intelligent shoe cabinet of the present invention;
[0025] Figure 5 is the side view of an intelligent shoe cabinet of the present invention provided with a seat device.
[0026] List of marks in the figure:
[0027] 1. Cabinet body;
[0028] 2. Control device; 21. Housing; 22. Touch screen; 23. Main control board;
[0029] 3. Traction device; 31. First power device; 32. Lifting rod; 33. Support frame; 34. Universal wheel; 341. Wheel; 342. Support member; 343. Connecting member; 35. Bearing; 351. Outer ring; 352. Inner ring;
[0030] 4. Seat device; 41. Second power device; 42. Rack; 43. Seat part; 44. Fixed wheel; 45. Micro-control component; 451. Fixed block; 452. First micro-control switch; 453. Second micro-control switch. Detailed implementation manners
[0031] The preferred implementation manners of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these implementation manners are only used to explain the technical principle of the intelligent shoe cabinet of the present invention and are not intended to limit the protection scope of the present invention.
[0032] It should be noted that in the description of the present invention, the terms indicating the direction or positional relationship such as "inner" and "outer" are based on the direction or positional relationship shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0033] In addition, it should also be noted that in the description of the present invention, unless otherwise clearly specified and limited, the terms "set" and "connect" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and can also be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0034] The main use of a shoe cabinet is to display idle shoes. With the progress of society and the improvement of human living standards, the shoe cabinet has evolved from a wooden shoe cabinet to various styles and materials of shoe cabinets now, including: wooden shoe cabinets, electronic shoe cabinets, disinfection shoe cabinets, etc., with different functions and styles. The heights of existing shoe cabinets are all fixed, and users cannot adjust the height of the shoe cabinet according to actual needs, so the user experience is not good.
[0035] To solve the above problems, the present application provides an intelligent shoe cabinet, which includes a cabinet body 1, a control device 2 and a traction device 3. Among them, the control device 2 is installed on the cabinet body 1, and the traction device 3 is installed at the bottom of the cabinet body 1 and connected to the control device 2, so that the control device 2 controls the traction device 3 to start, so that the traction device 3 drives the cabinet body 1 to rise or fall.
[0036] The technical solution of this application installs a connected control device 2 and a traction device 3 on the cabinet 1. The control device 2 controls the traction device 3 to rise or fall, so that the cabinet 1 rises or falls accordingly. The height of the shoe cabinet can be adjusted arbitrarily to meet the user's usage requirements, thereby enhancing the user experience.
[0037] The following will be combined with Figures 1 to 5 to describe an intelligent shoe cabinet of this application.
[0038] Refer to Figure 1 and Figure 2 , this application provides an intelligent shoe cabinet, which includes a cabinet 1, a control device 2 and a traction device 3. Among them, the control device 2 is installed on the cabinet 1, and the traction device 3 is installed at the bottom of the cabinet 1 and connected to the control device 2, so that the control device 2 controls the traction device 3 to start, so that the traction device 3 drives the cabinet 1 to rise or fall.
[0039] In this way, the control device 2 and the traction device 3 are installed on the cabinet 1. The control device 2 controls the traction device 3 to rise or fall, and the cabinet 1 can rise or fall with the traction device 3, that is, the height of the shoe cabinet can be adjusted arbitrarily to meet the user's usage requirements, thereby enhancing the user experience.
[0040] Specifically, the control device 2 can be embedded in the top surface of the cabinet 1 or can be embedded in the front of the cabinet 1. The embedded installation of the control device 2 can save space and avoid scratching and damaging the control device 2. The cabinet 1 is basically the same as the existing cabinet. The number of the traction devices 3 can be two or four. When there are two traction devices 3, they can be symmetrically installed at the bottom of the cabinet 1. When there are four traction devices 3, they can be installed at the bottom of the cabinet 1 and correspond to each corner of the bottom of the cabinet 1 one by one, so that the stability of the cabinet 1 is better. The traction device 3 and the control device 2 can be connected by wires or wirelessly, so that the control device 2 controls the traction device 3 to rise or fall.
[0041] In the preferred embodiment of the above intelligent shoe cabinet, refer to Figure 3, the control device 2 may include a housing 21, a main control board 23, and a touch screen 22. Among them, the main control board 23 is installed inside the housing 21 and connected to the traction device 3, and the touch screen 22 is installed on the housing 21 and connected to the main control board 23. The touch screen 22 is configured to receive external instructions and transmit the external instructions to the main control board 23, and the main control board 23 is configured to convert the external instructions into internal instructions. Manual control by the user is achieved by installing the touch screen 22 on the housing 21, and the main control board 23 and the touch screen 22 are connected by a line to receive the control instructions of the user. The power connection line of the control device 2 and the indoor power supply are connected through a plug socket to supply power to the control device 2, the first power device 31 of the traction device 3, and the second power device 41 of the seat device 4, and the control device 2 is also provided with a backup battery for use during a power outage.
[0042] Specifically, the housing 21, the main control board 23, and the touch screen 22 are all existing ones, and will not be described in detail here. The main control board 23 is implanted with a control program, and this control program is a common existing control program.
[0043] In the preferred embodiment of the above intelligent shoe cabinet, refer to Figure 1 and Figure 2 , the traction device 3 includes a first power device 31, a lifting rod 32, a support frame 33, and a universal wheel 34. Among them, the first power device 31 is installed on the cabinet body 1, the support frame 33 is fixedly connected to the cabinet body 1, the lifting rod 32 is respectively connected to the first power device 31 and the support frame 33, the universal wheel 34 is installed at one end of the lifting rod 32 away from the first power device 31, and the first power device 31 is connected to the main control board 23 so that the main control board 23 controls the operation of the first power device 31 to drive the lifting rod 32 to rotate, so that the support frame 33 and the cabinet body 1 rise or fall along the axial direction of the lifting rod 32. By driving the lifting rod 32 to rotate by the first power device 31, the support frame 33 connected to the lifting rod 32 can rise or fall along the axial direction of the lifting rod 32 with the assistance of the lifting rod 32, thus realizing the lifting of the shoe cabinet to improve the user experience.
[0044] Specifically, the first power device 31 can be a motor, and the motor is fixed inside the cabinet body 1 by bolts. The lifting rod 32 is a screw rod, and the screw rod is meshed with the turbine on the motor to drive the screw rod to rotate. The support frame 33 and the cabinet body 1 can be integrally formed or fixedly connected by bolts. When the lifting rod 32 rotates, the support frame 33 can rise or fall along the axial direction of the lifting rod 32, that is, the shoe cabinet rises or falls to meet the user's usage requirements. At the same time, it has the advantages of simple structure and convenient installation.
[0045] Further, the lower part of the lifting rod 32 is threaded, and the upper part is a worm gear that cooperates with the turbine, so that the lifting rod 32 can rotate and the height remains unchanged, so that the thread can lift or lower the support frame 33 and the cabinet body 1.
[0046] In this embodiment, the support frame 33 can be a plate, and a threaded hole is formed in the middle of the plate for the lifting rod 32 to be inserted. When the lifting rod 32 rotates forward to rise, the support frame 33 rises accordingly; when the lifting rod 32 rotates reversely to lower, the support frame 33 lowers accordingly, realizing the rising and lowering of the cabinet body 1.
[0047] As a possible implementation manner, the support frame 33 has the following multiple structural forms: Form 1: The support frame 33 can be the bottom plate of the cabinet body 1, and threaded holes are added to the bottom plate for the lifting rod 32 to be inserted into the threaded holes and connected by threads; Method 2: The support frame 33 is a rectangular plate, which can be integrally formed with the bottom plate of the cabinet body 1 or connected by bolts. Threaded holes are correspondingly formed in the rectangular plate and the bottom plate of the cabinet body 1 for the lifting rod 32 to be inserted into the threaded holes and connected by threads.
[0048] In the preferred implementation manner of the above intelligent shoe cabinet, refer to Figure 4 , the universal wheel 34 includes a wheel 341, a support member 342, and a connecting member 343. Among them, the wheel 341 is inserted into the support member 342 and is movably connected to the support member 342, and the connecting member 343 is movably connected to the support member 342 so that the support member 342 can move. By providing the universal wheel 34, the shoe cabinet can be manually pushed to a designated position, saving manpower.
[0049] In this embodiment, a gap is provided in the middle of the support member 342, the wheel 341 is located in the gap, and the shaft rod of the wheel 341 is inserted into the bearing in the lower through hole of the support member 342. While fixing the wheel 341, the wheel 341 can still rotate. The lower end of the connecting member 343 and the upper end of the support member 342 are movably connected by a rotating shaft so that the support member 342 can move.
[0050] In the preferred implementation manner of the above intelligent shoe cabinet, refer to Figure 4 , the connecting member 343 and the end of the lifting rod 32 far from the first power device 31 are rotatably connected by a bearing 35. By connecting the connecting member 343 and the end of the lifting rod 32 far from the first power device 31 through the bearing 35, when the first power device 31 drives the lifting rod 32 to rotate, the connecting member 343 will not rotate along with the lifting rod 32. While the lifting rod 32 drives the support frame 33 and the cabinet body 1 to lift and lower, the universal wheel 34 will not rotate synchronously, avoiding wearing the ground by the universal wheel 34.
[0051] Specifically, the upper end of the connecting member 343 and the lower end of the outer ring 351 of the bearing 35 are welded and connected, and the end of the lifting rod 32 far from the first power device 31 and the upper end of the inner ring 352 of the bearing 35 are welded and connected. In this way, the universal wheel 34 can remain stationary when the lifting rod 32 rotates, avoiding wearing the ground by the universal wheel 34.
[0052] In the preferred embodiment of the above intelligent shoe cabinet, continue to refer to Figure 1 and Figure 5 , the intelligent shoe cabinet further includes a seat device 4, and the seat device 4 includes a second power device 41, a seat and a micro-control component 45. Among them, the second power device 41 is installed on the cabinet body 1 and connected to the main control board 23 of the control device 2. The seat is connected to the second power device 41 so that the second power device 41 drives the seat to extend or retract. The micro-control component 45 is installed on the cabinet body 1 and connected to the main control board 23 so that the main control board 23 controls the operation of the second power device 41.
[0053] In this way, the second power device 41 drives the seat to extend so that the user can sit down to change shoes. When not in use, the seat is retracted, which can save space and improve the user experience. Further, by setting the micro-control component 45, the second power device 41 can be automatically controlled to stop, avoiding damage to the cabinet body 1 caused by excessive extension and excessive retraction of the seat.
[0054] Specifically, the second power device 41 is a motor, and the motor is fixed inside the cabinet body 1 through a screw. An open channel is provided on the cabinet body 1 for the seat to be inserted into the inside of the cabinet body 1 and connected to the motor, and the second power device 41 is used to drive the seat to extend or retract.
[0055] In the preferred embodiment of the above intelligent shoe cabinet, continue to refer to Figure 1 and Figure 5 , the seat includes a rack 42, a seat part 43 and a fixed wheel 44. Among them, the rack 42 is connected to the second power device 41 so that the second power device 41 drives the rack 42 to extend or retract. The seat part 43 and the rack 42 are integrally formed, and are used for the seat part 43 and the rack 42 to extend or retract synchronously. The fixed wheel 44 is installed at the end of the seat part 43 in contact with the ground. By driving the rack 42 to extend through the second power device 41, the seat part 43 and the fixed wheel 44 extend along with the rack 42. When the seat part 43 extends to the set position, it automatically stops extending, and the user can sit on the seat part 43 to change shoes, saving space.
[0056] In this embodiment, the rack 42 is in meshing connection with the gear of the second power device 41 to drive the rack 42 to extend or retract. The width of the seat part 43 is greater than the width of the rack 42 so that the user can sit on it. The seat part 43 and the rack 42 are preferably integrally formed to avoid damage. The fixed wheel 44 is two or three, and the fixed wheel 44 is installed on the end of the seat part 43 in contact with the ground through a thread.
[0057] ] In the preferred embodiment of the above intelligent shoe cabinet, continue to refer to Figure 1 and Figure 5, the micro-control component 45 includes a fixed block 451, a first micro-control switch 452, and a second micro-control switch 453. Among them, the fixed block 451 is installed on the rack 42 so that the fixed block 451 extends or retracts along with the rack 42. The first micro-control switch 452 is installed on the fixed block 451 and connected to the main control board 23. When the fixed block 451 extends along with the rack 42, the first micro-control switch 452 contacts the cabinet body 1, and the first micro-control switch 452 sends a stop extension signal to the main control board 23 so that the main control board 23 controls the second power device 41 to stop driving the rack 42 from extending. The second micro-control switch 453 is installed on the cabinet body 1 and connected to the main control board 23. When the rack 42 retracts, the second micro-control switch 453 contacts the fixed wheel 44, and the second micro-control switch 453 sends a stop retraction signal to the main control board 23 so that the main control board 23 controls the second power device 41 to stop driving the rack 42 from retracting. By setting the first micro-control switch 452 and the second micro-control switch 453 so that the main control board 23 controls the start and stop of the second power device 41, automatic control is realized.
[0058] In the preferred embodiment of the above intelligent shoe cabinet, a gravity sensor (not shown in the figure) is provided on the surface of the seat part 43 where the user sits. The gravity sensor and the main control board 23 of the control device 2 are connected by a wire or wirelessly so that when the seat part 43 is not occupied by the user, the main control board 23 of the control device 2 controls the seat part 43 to retract.
[0059] Specifically, when the gravity sensor is occupied by the user, it will continuously send a first signal to the main control board 23. At this time, the main control board 23 will not control the second power device 41 to drive the seat part 43 to retract and maintain the use state. When the gravity sensor is not occupied by the user for a period of time, that is, after the first signal is interrupted for a period of time, the main control board 23 controls the second power device 41 to drive the seat part 43 to retract.
[0060] In the preferred embodiment of the above intelligent shoe cabinet, a wireless network module is further provided in the control device 2. The wireless network module is connected to the indoor wireless network. The control device 2 can be connected to the user's tablet computer or mobile phone to control the shoe cabinet. Control programs are implanted in both the tablet computer and the mobile phone. The control program is a common existing control program, and the control device 2 is a common existing controller or single-chip microcomputer, etc.
[0061] I. When the shoe cabinet rises:
[0062] 1. The user clicks the rise start button on the touch screen 22 to send a rise instruction. After receiving the rise instruction, the main control board 23 sends a rise signal to the first power device 31;
[0063] 2. After receiving the rise signal, the first power device 31 starts to work, and the turbine of the first power device 31 drives the lifting rod 32 to rotate;
[0064] 3. The support frame 33 rises along the axial direction of the lifting rod 32 under the drive of the lifting rod 32, so that the cabinet body 1 rises synchronously. When the cabinet body 1 rises to the expected height, the user clicks the stop rising button on the touch screen 22, and the main control board 23 controls the first power device 31 to stop working.
[0065] By sending a rising instruction through the touch screen 22, the main control board 23 controls the first power device 31 to start. The first power device 31 drives the support frame 33 and the cabinet body 1 to rise or fall, so that the height of the shoe cabinet can be adjusted arbitrarily to meet the user's usage requirements, thereby improving the user experience.
[0066] II. When the seat extends:
[0067] 1. The user clicks the extension start button on the touch screen 22 to send an extension instruction. After receiving the extension instruction, the main control board 23 sends an extension signal to the second power device 41.
[0068] 2. After receiving the extension signal, the second power device 41 starts to work, and the gear of the second power device 41 drives the rack 42 to extend.
[0069] 3. When the first micro control switch 452 contacts the cabinet body 1, the first micro control switch 452 sends a stop signal to the main control board 23, and the main control board 23 controls the second power device 41 to stop working. At this time, the seat part 43 is located outside the cabinet body 1.
[0070] The second power device 41 drives the rack 42 and the seat part 43 to extend so that the user can sit down to change shoes. When not in use, the seat part 43 is retracted, which can save space and improve the user experience.
[0071] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
Claims
1. An intelligent shoe cabinet, characterized in that: The intelligent shoe cabinet includes a cabinet body, a control device and a traction device; The control device is installed on the cabinet body, and the traction device is installed at the bottom of the cabinet body and connected to the control device, so that the control device controls the traction device to start, so that the traction device drives the cabinet body to rise or fall.
2. The intelligent shoe cabinet according to claim 1, characterized in that The control device includes a main control board and a touch screen; The main control board is connected to the traction device, the touch screen is connected to the main control board, the touch screen is configured to receive external instructions and transmit the external instructions to the main control board, and the main control board is configured to convert the external instructions into internal control instructions.
3. The intelligent shoe cabinet according to claim 2, wherein, The traction device includes a first power device, a lifting rod, a support frame and universal wheels; The first power device is installed on the cabinet body; The support frame is fixedly connected to the cabinet body; The lifting rod is respectively connected to the first power device and the support frame; The universal wheels are installed at one end of the lifting rod away from the first power device; Wherein, the first power device is connected to the main control board, so that the main control board controls the first power device to work, drives the lifting rod to rotate, so that the support frame and the cabinet body rise or fall along the axial direction of the lifting rod.
4. The intelligent shoe cabinet according to claim 3, wherein The universal wheel includes a wheel, a support member and a connecting member; The wheel is inserted into the support member and is movably connected to the support member; The connecting member is movably connected to the support member, so that the support member can move.
5. The intelligent shoe cabinet according to claim 4, characterized in that The connecting member is connected to the end of the lifting rod away from the first power device through a bearing.
6. The intelligent shoe cabinet according to claim 5, characterized in that The connecting member is connected to the outer ring of the bearing, and the end of the lifting rod away from the first power device is connected to the inner ring of the bearing.
7. The intelligent shoe cabinet according to claim 1, characterized in that, The intelligent shoe cabinet further includes a seat device, and the seat device includes a second power device and a seat; The second power device is installed on the cabinet body and connected to the control device; The seat is connected to the second power device, so that the second power device drives the seat to extend or retract.
8. The intelligent shoe cabinet according to claim 7, wherein, The seat includes a rack, a seat part and a fixed wheel; The rack is connected to the second power device, so that the second power device drives the rack to extend or retract; The seat part is integrally formed with the rack, and is used for the seat part and the rack to extend or retract synchronously; The fixed wheel is installed at the end of the seat part in contact with the ground.
9. The intelligent shoe cabinet according to claim 7 or 8, characterized in that, The seat device further includes a micro-control component, and the micro-control component is installed on the cabinet body and connected to the control device, so that the control device controls the second power device to work.
10. The intelligent shoe cabinet according to claim 9, characterized in that, A gravity sensor is arranged on the surface of the seat part where the user sits, and the gravity sensor is connected to the control device, so that when the seat part is not occupied by the user, the control device controls the seat part to retract.