Intelligent clothes changing cabinet
Patent Information
- Application Number
- CN202522323061.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2025-08-01
- Filing Date
- 2025-10-31
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-31
AI Technical Summary
[0004]本实用新型所要解决的技术问题是:提供一种智能更衣柜,克服了上述现有技术之不足,其能有效解决现有智能更衣柜存在的需密码开启柜门,操作效率较低且繁琐不便,以及没有设置检修装置,控制装置停电或故障、电控门锁损坏时不能应急开启柜门的问题
[0012]本实用新型结构合理而紧凑,使用方便,其通过触控显示屏、摄像头及控制装置能够控制电控门锁启闭,能够方便地实现对应衣箱门的锁定或打开,通过手动打开检修锁能够取下左快拆立柱或右快拆立柱将对应更衣箱打开,取出更衣箱内物品,具有安全、可靠、省力、简便、高效的特点。
Smart Images

Figure CN224791908U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of locker technology, specifically an intelligent locker. Background Technology
[0002] Customers in bathhouses, swimming pools, bathhouses, gyms, stadiums, and themed experience centers often need to use lockers to store their clothes and personal belongings. Traditional lockers typically use mechanical locks that are opened with keys for door management. Mechanical locks are easily damaged and can be pried open, so the safety of customers' property cannot be guaranteed. There are also problems such as the inconvenience of carrying keys, difficulty in managing multiple people and multiple lockers, and high management costs.
[0003] Existing publicly available smart lockers typically require customers to carry a locker card, save a printed password slip, or remember the password. Customers often lose their locker cards, password slips, or forget their passwords, frequently requiring staff assistance to retrieve their items. For example, Chinese patent document CN215076486U discloses a smart sterile stainless steel locker with a combination lock, comprising a locker body, a locker door, an electronic combination lock, a control panel, a cabinet, a sterilization lamp, and a drying unit. The locker door is hinged to the locker body, the electronic combination lock is located on the front of the locker door, the control panel is located on the back of the locker door, the cabinet is located on the top of the locker body and contains a drying unit, the bottom of the cabinet body has a sterilization lamp, and the drying unit contains a dryer, which is electrically connected to the control panel. The following problems exist in the use of this intelligent sterile stainless steel locker: 1. Opening the locker door via a combination lock is inefficient and cumbersome, and customers are prone to misremembering or forgetting the password, causing unnecessary trouble; 2. The locker is not equipped with a maintenance device, so in case of malfunction of the locker control device, power outage, or damage to the electric door lock, the locker door cannot be opened in an emergency, and users' belongings cannot be retrieved in time. Summary of the Invention
[0004] The technical problem to be solved by this utility model is to provide an intelligent locker that overcomes the shortcomings of the prior art. It can effectively solve the problems of existing intelligent lockers that require password to open the locker door, have low operating efficiency and are cumbersome and inconvenient, and lack maintenance devices, so that the locker door cannot be opened in an emergency when the control device is out of power or malfunctions, or when the electric lock is damaged.
[0005] The technical solution adopted by this utility model is as follows: an intelligent locker, including a cabinet body, the cabinet body including a central control box with a touch screen and a camera, the central control box is equipped with a control device, the inner cavity of the cabinet body on the left and right sides of the central control box is divided into two rows of lockers by several supporting vertical plates, each row of lockers is divided into independent lockers by several layered horizontal plates, and locker doors are respectively provided on the front end of the cabinet body corresponding to the inner cavity of each locker, a left quick-release column is provided between the two rows of lockers on the left side of the central control box, and a right quick-release column is provided between the two rows of lockers on the right side of the central control box. The wardrobe door is hinged to the cabinet body via a hinge pin. A handle is provided on the lower part of the wardrobe door on the side away from the hinge pin. An electric door lock is provided on the wardrobe door above the handle. A wardrobe lock lug is provided on the left or right quick-release column corresponding to the position of the electric door lock. The electric door lock can lock onto the wardrobe lock lug at the corresponding position of the left or right quick-release column. A column base is provided on the front part of the cabinet body at the upper and lower positions of the left and right quick-release columns respectively. The upper and lower ends of the left and right quick-release columns are respectively fixed to the corresponding column bases by maintenance locks and can be removed.
[0006] The following are further optimizations and / or improvements to the technical solution applied for:
[0007] Furthermore, preferably, the structure of the right quick-release column is exactly the same as that of the left quick-release column. The left quick-release column includes a column body, a left hinge block, a right hinge block, a left flip beam column, a right flip beam column, a left beam hinge, a right beam hinge, and an elastic clip. The left and right rear sides of the column body have flanges, making their horizontal cross-sections U-shaped. The left hinge block is welded and fixed to the right end of the left flange of the column body, and the right hinge block is welded and fixed to the left end of the right flange of the column body. The left hinge block is fixed to the rear end of the left beam hinge and hinged to the left flip beam column. The right hinge block is fixed to the rear end of the right beam hinge and hinged to the right flip beam column. The upper and lower ends of the left and right flip beam columns are respectively provided with clip grooves, and the elastic clips pass through... An overcompression spring is installed in the groove of the clip head. A column base is fixed on the cabinet corresponding to the upper position of the left quick-release column. The column base includes a column base body, a left locking block base, and a right locking block base. The column base body is welded and fixed to the front end of the support vertical plate. The left locking block base is welded and fixed to the left end of the column base body, and the right locking block base is welded and fixed to the right end of the column base body. A locking groove is provided on the lower end surface of the left locking block base. The opening of the locking groove is located on the right front side of the left locking block base. The rear part of the locking groove extends to the left rearward and forms a smooth arc. The structure of the right locking block base is the same as that of the left locking block base and is arranged in a mirror image. The elastic clip head of the left flip beam column is installed in the locking groove of the left locking block base, and at the same time, the elastic clip head of the right flip beam column is installed in the locking groove of the right locking block base.
[0008] Furthermore, as a preferred embodiment, the left and right sides of the front side of the column base body are respectively fixed with limiting pads, and the left and right sides of the rear side of the column body are respectively pressed against the front side of the corresponding limiting pads, wherein the limiting pads are rubber pads.
[0009] Furthermore, as a preferred embodiment, an ozone generator is provided on the top of the cabinet, and an air supply pipe is provided at the rear end of the cabinet. Each locker has an air supply port in the upper part of its inner cavity. The upper end of the air supply pipe is connected to the outlet of the ozone generator, and the lower end of the air supply pipe is connected to the air supply port of each locker through a diversion interface and several diversion pipes. Each locker has a fixed frame in the upper part of its inner cavity, and a lighting lamp is provided in the middle of the fixed frame. Ventilation fans are provided on the fixed frames on the left and right sides of the lighting lamp, and an exhaust port is provided on the rear panel of the cabinet behind the ventilation fan. A shut-off valve is provided at the exhaust port to close the exhaust port when the ozone generator is working. The control terminals of the ozone generator, ventilation fan, and shut-off valve are electrically connected to a control device.
[0010] Furthermore, as a preferred embodiment, the control device includes a face recognition module, a number plate is provided on the upper part of the wardrobe door, an infrared sensing module is provided on the upper part of the touch screen, a card reader is provided on the lower part of the touch screen, a central control door is provided on the central control box below the touch screen, and a keyhole is provided on the left side of the central control door.
[0011] Furthermore, as a preferred embodiment, each locker has an inner cavity bottom plate above the partition plate, and a bottom plate spring and a gravity sensor are provided between the inner cavity bottom plate and the partition plate, with the gravity sensor electrically connected to the control device.
[0012] This utility model has a reasonable and compact structure and is easy to use. It can control the opening and closing of the electric door lock through the touch screen, camera and control device, and can easily lock or open the corresponding locker door. By manually opening the maintenance lock, the left quick-release column or the right quick-release column can be removed to open the corresponding locker and take out the items inside. It has the characteristics of safety, reliability, labor saving, simplicity and efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0014] Figure 2 for Figure 1 Enlarged cross-sectional view of section AA;
[0015] Figure 3 This is a cross-sectional enlarged structural diagram of the elastic card head of this utility model;
[0016] Figure 4 This is a structural diagram showing the partially opened state of the wardrobe doors of this utility model.
[0017] Legend: 1 is the cabinet, 101 is the central control box, 102 is the ozone generator, 103 is the mounting bracket, 104 is the lighting, 105 is the ventilation fan, 106 is the air shut-off valve, 107 is the number plate, 108 is the infrared sensor module, 109 is the card reader, 110 is the central control door, 2 is the touch screen display, 3 is the camera, 4 is the supporting vertical plate, 5 is the shelf partition horizontal plate, 6 is the locker, 601 is the inner cavity bottom plate, 602 is the bottom plate spring, 603 is the gravity sensor, 7 is the locker door, 8 is the left quick-release column, 801 is the column body. 802 is the left hinge block, 803 is the right hinge block, 804 is the left flip beam column, 805 is the right flip beam column, 806 is the left beam hinge, 807 is the right beam hinge, 808 is the elastic latch, 809 is the latch groove, 810 is the compression spring, 9 is the right quick-release column, 10 is the handle, 11 is the electric door lock, 12 is the wardrobe lock lug, 13 is the column base, 1301 is the column base body, 1302 is the left lock block seat, 1303 is the right lock block seat, 1304 is the locking groove, 1305 is the limit pad, and 14 is the maintenance lock. Detailed Implementation
[0018] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0019] Example 1:
[0020] As attached Figure 1-4As shown, this utility model provides an intelligent locker, including a cabinet body 1. The cabinet body 1 includes a central control box 101 with a touch screen display 2 and a camera 3. The central control box 101 is equipped with a control device. The inner cavities of the cabinet body 1 on the left and right sides of the central control box 101 are each divided into two rows of lockers 6 by several supporting vertical plates 4. Each row of lockers 6 is further divided into independent lockers 6 by several layered horizontal plates 5. A locker door 7 is provided on the cabinet body 1 at the front end of the inner cavity of each locker 6. A left quick-release column 8 is provided between the two rows of lockers 6 on the left side of the central control box 101, and a right quick-release column 9 is provided between the two rows of lockers 6 on the right side of the central control box 101. The chest door 7 is hinged to the cabinet body 1 via a hinge pin. A handle 10 is provided on the lower part of the side of the chest door 7 away from the hinge pin. An electric door lock 11 is provided on the chest door 7 above the handle 10. A chest lock lug 12 is provided on the left quick-release column 8 or the right quick-release column 9 corresponding to the position of the electric door lock 11. The electric door lock 11 can be locked on the chest lock lug 12 at the corresponding position of the left quick-release column 8 or the right quick-release column 9. A column base 13 is provided on the front part of the cabinet body at the upper and lower positions of the left quick-release column 8 and the right quick-release column 9, respectively. The upper and lower ends of the left quick-release column 8 and the right quick-release column 9 are respectively fixed to the corresponding column base 13 by maintenance locks 14 and can be removed. Cabinet 1 is made of stainless steel sheet through sheet metal processing. Cabinet 1, support vertical plate 4, and partition horizontal plate 5 are assembled by argon arc welding. Cabinet 1 is sturdy, not easy to rust, and has a long service life. The electric door lock 11 can be opened and closed through the touch screen 2, camera 3 and control device, which can easily lock or open the corresponding locker door 7. When the control device fails or malfunctions, the electric door lock is damaged or other situations prevent the locker 6 from being opened, the maintenance lock 14 can be opened manually, and the corresponding left quick-release column 8 or right quick-release column 9 can be removed to open the locker 6 in the corresponding column. After taking out the items in the locker 6, the left quick-release column 8 or right quick-release column 9 can be reinstalled and locked again through the maintenance lock 14, without affecting the reuse of electric door lock 11 and locker 6.
[0021] Example 2:
[0022] As attached Figure 1-4As shown, the difference between this embodiment and Embodiment 1 lies in that the structure of said right quick-release vertical post 9 is completely identical to that of said left quick-release vertical post 8. Said left quick-release vertical post 8 comprises a vertical post body 801, a left hinged seat block 802, a right hinged seat block 803, a left flip beam-column 804, a right flip beam-column 805, a left beam hinge 806, a right beam hinge 807, and an elastic chuck 808. The rear parts of the left and right sides of said vertical post body 801 are respectively provided with flanges, such that the horizontal cross-section of the vertical post body 801 is in a C-shape. The right end of the left flange of the vertical post body 801 is welded and fixed with the left hinged seat block 802, and the left end of the right flange of the vertical post body 801 is welded and fixed with the right hinged seat block 803. The rear end of the left hinged seat block 802 is fixed with the left beam hinge 806 and is hingedly mounted with the left flip beam-column 804, and the rear end of the right hinged seat block 803 is fixed with the right beam hinge 807 and is hingedly mounted with the right flip beam-column 805. The upper and lower ends of said left flip beam-column 804 and said right flip beam-column 805 are respectively provided with chuck grooves 809, and said elastic chuck 808 is mounted in the chuck groove 809 via a compression spring 810. A post seat 13 is fixed on the cabinet body 1 corresponding to the upper end position of the left quick-release vertical post 8, and said post seat 13 comprises a post seat body 1301, a left lock block seat 1302, and a right lock block seat 1303. The post seat body 1301 is welded and fixed to the front end of the supporting vertical plate 4, the left end of the post seat body 1301 is welded and fixed with the left lock block seat 1302, and the right end of the post seat body 1301 is welded and fixed with the right lock block seat 1303. The lower end surface of the left lock block seat 1302 is provided with a locking groove 1304, the opening of said locking groove 1304 is located on the right front side of the left lock block seat 1302, and the rear part of the locking groove 1304 extends to the left rear and forms a smooth arc shape. The structure of the right lock block seat 1303 is the same as that of the left lock block seat 1302 and is arranged in a left-right mirror image. The elastic chuck 808 of the left flip beam-column 804 is clamped in the locking groove 1304 of the left lock block seat 1302, and meanwhile the elastic chuck 808 of the right flip beam-column 805 is clamped in the locking groove 1304 of the right lock block seat 1303.
[0023] Embodiment 3:
[0024] as shown in the accompanying Figure 1-4 drawing, the difference between this embodiment and Embodiments 1 and 2 lies in that the left and right sides of the front side of said post seat body 1301 are respectively fixed with limit cushion blocks 1305, and the left and right sides of the rear side of the vertical post body 801 are respectively pressed against the front side of the corresponding limit cushion block 1305, and said limit cushion blocks 1305 are rubber cushion blocks. The limit cushion blocks 1305 can provide limiting and buffering effects when the vertical post body 801 is installed, leading to a better use effect.
[0025] Embodiment 4:
[0026] as shown in the accompanying Figure 1-4As shown, the difference between this embodiment and embodiments 1-3 is that an ozone generator 102 is provided on the top of the cabinet 1, and an air supply pipe is provided at the rear end of the cabinet 1. Each locker 6 has an air supply port in the upper part of its inner cavity. The upper end of the air supply pipe is connected to the outlet of the ozone generator 102, and the lower end of the air supply pipe is connected to the air supply port of each locker 6 through a diversion interface and several diversion pipes. Each locker 6 has a fixing frame 103 in the upper part of its inner cavity. A lighting lamp 104 is provided in the middle of the fixing frame 103. Ventilation fans 105 are provided on the fixing frames 103 on the left and right sides of the lighting lamp 104. An exhaust port is provided on the rear plate of the cabinet 1 behind the ventilation fan 105. A shut-off valve 106 is provided at the exhaust port to close the exhaust port when the ozone generator 102 is working. The control terminals of the ozone generator 102, ventilation fan 105, and shut-off valve 106 are electrically connected to a control device. After the user finishes using the locker, the control device activates the ozone generator 102 to sterilize the interior of the locker. The ozone generator 102's sterilization technology is a prior art technique disclosed in Chinese Patent Document CN208624889U. By using the ozone generator 102 to produce ozone gas for sterilization, compared to existing intelligent sterile stainless steel lockers that rely on sterilization lamps, this method is less affected by the stacking of clothing, resulting in more thorough and effective sterilization. Because ozone is relatively heavy and naturally sinks in the air, the ozone generator 102 is positioned at the top of the locker 1, and the air inlets of each locker 6 are located at the upper part of their respective interior cavities to promote ozone diffusion and uniform distribution.
[0027] Example 5:
[0028] As attached Figure 1-4 As shown, the difference between this embodiment and embodiments 1-4 is that the control device includes a face recognition module, a number plate 107 is provided on the upper part of the wardrobe door 7, an infrared sensing module 108 is provided on the upper part of the touch screen 2, a card reader 109 is provided on the lower part of the touch screen 2, a central control door 110 is provided on the central control box 101 below the touch screen 2, and a keyhole is provided on the left side of the central control door 110. The technology of the face recognition module to open the locker door is the prior art disclosed in Chinese patent document CN208061347U. The infrared sensing module 108 can detect whether a user needs to use the locker. The camera 3 works in conjunction with the face recognition module to perform face recognition, which can intelligently identify the user's identity. The operation is convenient and quick, avoiding the situation where users cannot retrieve their items because they forget their password or lose their password strip. The number plate 107 can let the user know which locker 6 to store or retrieve their items. The card reader 109 can use electronic access cards, smart bracelets, smartwatches, or the NFC function of mobile phones to store or retrieve items.
[0029] Example 6:
[0030] As attached Figure 1-4 As shown, the difference between this embodiment and embodiments 1-5 is that each locker 6 has an inner cavity bottom plate 601 above the partition plate 5. A bottom plate spring 602 and a gravity sensor 603 are arranged between the inner cavity bottom plate 601 and the partition plate 5. The gravity sensor 603 is electrically connected to the control device. The gravity sensor 603 can detect whether there are clothes or items placed on the inner cavity bottom plate 601, so that the user can observe whether there is an available locker 6 through the touch screen 2.
[0031] In the description of this application, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0032] This utility model is described in the appendix to the specification. Figure 1 For reference purposes, directional terms such as "up," "down," "left," "right," "top," and "bottom" are used only to better and more clearly explain and understand this utility model, and are not intended to indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0033] The preferred embodiments of this utility model have been described above, but should not be construed as limiting the claims. This utility model is not limited to the above embodiments, and its specific structure may vary. Any simple modifications, equivalent changes, and substitutions made to the above embodiments based on the technical essence of this utility model are still within the protection scope of this utility model.
Claims
1. A smart locker, characterized in that: The system includes a cabinet, which includes a central control box with a touch screen and a camera. The central control box contains a control device. The inner cavities of the cabinets on the left and right sides of the central control box are each divided into two rows of lockers by several supporting vertical plates. Each row of lockers is further divided into independent lockers by several horizontal partitions. Each locker has a locker door on the front of its corresponding inner cavity. A left quick-release column is located between the two rows of lockers on the left side of the central control box, and a right quick-release column is located between the two rows of lockers on the right side of the central control box. The locker doors are hinged to each other. On the cabinet, a handle is provided on the lower part of the side of the wardrobe door away from the hinge. An electric door lock is provided on the wardrobe door above the handle. A wardrobe lock lug is provided on the left or right quick-release column corresponding to the position of the electric door lock. The electric door lock can be locked on the wardrobe lock lug at the corresponding position of the left or right quick-release column. A column base is provided on the front part of the cabinet corresponding to the upper and lower ends of the left and right quick-release columns. The upper and lower ends of the left and right quick-release columns are respectively fixed to the corresponding column base by maintenance locks and can be removed.
2. The intelligent locker according to claim 1, characterized in that: The structure of the right quick-release column is exactly the same as that of the left quick-release column. The left quick-release column includes a column body, a left hinge block, a right hinge block, a left flip beam column, a right flip beam column, a left beam hinge, a right beam hinge, and an elastic clip. The left and right rear sides of the column body have flanges that form a U-shape in their horizontal cross-section. The left hinge block is welded to the right end of the left flange of the column body, and the right hinge block is welded to the left end of the right flange of the column body. The left hinge block is fixed to the rear end of the left beam hinge and hinged to the left flip beam column. The right hinge block is fixed to the rear end of the right beam hinge and hinged to the right flip beam column. The left and right flip beam columns have clip grooves at their upper and lower ends, and the elastic clip is secured by a compression spring. A column base is fixed to the cabinet at the upper position of the left quick-release column, installed in the groove of the clip head. The column base includes a column base body, a left locking block seat, and a right locking block seat. The column base body is welded and fixed to the front end of the support vertical plate. The left locking block seat is welded and fixed to the left end of the column base body, and the right locking block seat is welded and fixed to the right end of the column base body. A locking groove is provided on the lower end surface of the left locking block seat. The opening of the locking groove is located on the right front side of the left locking block seat. The rear part of the locking groove extends to the left rearward and forms a smooth arc. The structure of the right locking block seat is the same as that of the left locking block seat and is arranged in a mirror image. The elastic clip head of the left flip beam column is installed in the locking groove of the left locking block seat, and at the same time, the elastic clip head of the right flip beam column is installed in the locking groove of the right locking block seat.
3. The intelligent locker according to claim 2, characterized in that: Limiting pads are fixed to the left and right sides of the front side of the column base body, and the left and right sides of the rear side of the column body are pressed against the front side of the corresponding limiting pads. The limiting pads are rubber pads.
4. A smart locker according to claim 1, 2, or 3, characterized in that: An ozone generator is installed on the top of the cabinet, and a gas supply pipe is installed at the rear of the cabinet. Each locker has a gas inlet in the upper part of its inner cavity. The upper end of the gas supply pipe is connected to the outlet of the ozone generator, and the lower end of the gas supply pipe is connected to the gas inlet of each locker through a split interface and several split pipes. Each locker has a fixed frame in the upper part of its inner cavity, and a light is installed in the middle of the fixed frame. Ventilation fans are installed on the fixed frames on both sides of the light. An exhaust port is installed on the rear panel of the cabinet behind the ventilation fan. A shut-off valve is installed at the exhaust port to close the exhaust port when the ozone generator is working. The control terminals of the ozone generator, ventilation fan, and shut-off valve are electrically connected to a control device.
5. A smart locker according to claim 1, 2, or 3, characterized in that: The control device includes a face recognition module, a number plate on the upper part of the wardrobe door, an infrared sensing module on the upper part of the touch screen, a card reader on the lower part of the touch screen, a central control door on the central control box below the touch screen, and a keyhole on the left side of the central control door.
6. The intelligent locker according to claim 4, characterized in that: The control device includes a face recognition module, a number plate on the upper part of the wardrobe door, an infrared sensing module on the upper part of the touch screen, a card reader on the lower part of the touch screen, a central control door on the central control box below the touch screen, and a keyhole on the left side of the central control door.
7. A smart locker according to claim 1, 2, or 3, characterized in that: Each locker has an inner cavity bottom plate above the partition plate. A bottom plate spring and a gravity sensor are installed between the inner cavity bottom plate and the partition plate. The gravity sensor is electrically connected to the control device.
8. The intelligent locker according to claim 4, characterized in that: Each locker has an inner cavity bottom plate above the partition plate. A bottom plate spring and a gravity sensor are installed between the inner cavity bottom plate and the partition plate. The gravity sensor is electrically connected to the control device.
9. A smart locker according to claim 5, characterized in that: Each locker has an inner cavity bottom plate above the partition plate. A bottom plate spring and a gravity sensor are installed between the inner cavity bottom plate and the partition plate. The gravity sensor is electrically connected to the control device.
10. A smart locker according to claim 6, characterized in that: Each locker has an inner cavity bottom plate above the partition plate. A bottom plate spring and a gravity sensor are installed between the inner cavity bottom plate and the partition plate. The gravity sensor is electrically connected to the control device.
Citation Information
Patent Citations
Unmanned supermarket locker based on face identification
CN208061347U
Wardrobe of area disinfection function
CN208624889U
Intelligent sterile stainless steel wardrobe with coded lock
CN215076486U