Smart clothes sending cabinet body structure

CN224654919UActive Publication Date: 2026-08-21JIANGSU ZHONGBAI NANO NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202521671323.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2026-08-21
Estimated Expiration
2035-08-06

AI Technical Summary

Technical Problem

[0005]为了弥补以上不足,本实用新型提供了一种智能发衣柜柜体结构,旨在改善了现有技术中智能发衣柜柜体结构取衣口缺乏阻隔功能导致外界灰尘细菌进入发衣柜内部衣服造成二次污染风险的问题

Benefits of technology

[0022] 1. In this utility model, the space utilization and retrieval accuracy are improved by partitioned storage design, the built-in disinfection ensures a sterile state, the added air curtain actively isolates external pollutants from entering the cabinet, and the air pump system and electric shield are intelligently linked to realize efficient opening and closing of the retrieval port, which not only ensures hygiene protection but also achieves energy saving effect, optimizing the safety and convenience of surgical gown storage and retrieval.

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Abstract

The utility model relates to the field of hair wardrobe, disclose intelligent hair wardrobe cabinet structure, including hair wardrobe body, the inside of hair wardrobe body is provided with conveyer belt, the outer wall of hair wardrobe body is fixedly connected with display screen, the top of hair wardrobe body is fixedly connected with camera through support, the outer wall of hair wardrobe body is opened to take clothes mouth, the inner wall of hair wardrobe body is fixedly connected with electric push rod, the output of electric push rod is fixedly connected with the baffle of blocking through the connecting block, the outer wall of hair wardrobe body is opened to have the mounting groove, the inner wall of mounting groove is fixedly connected with starting switch, the outer wall of baffle of blocking is fixedly connected with extruded plate, the outer wall of hair wardrobe body is opened to have cylinder groove, the inner wall of cylinder groove is fixedly connected with the connecting pipe. In the utility model, through the air curtain screen of additional initiative isolation external pollutant enters the cabinet, and the safety and convenience of operation clothes storage and taking are optimized.
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Description

Technical Field

[0001] This utility model relates to the field of wardrobes, and more particularly to the structure of an intelligent wardrobe cabinet. Background Technology

[0002] The intelligent gown dispenser is a specialized device used in medical settings, particularly operating rooms. It is primarily used for the automated storage, sterilization, and convenient distribution of surgical gowns. Its core function is to achieve standardized and sterile storage of surgical gowns, and to quickly and accurately provide individual gowns according to the needs of medical staff. This effectively improves the efficiency and safety of surgical gown management, and reduces the risk of contamination from manual operations.

[0003] Common methods for storing and distributing medical surgical gowns mainly include ordinary lockers and some semi-automated dispensing equipment. Ordinary lockers have a simple structure, and surgical gowns are usually stacked or hung for storage, which has problems such as inconvenience in retrieval, easy to get messy and tangled stacks, and low space utilization. They also lack effective dynamic disinfection and anti-contamination measures. Although some improved dispensing equipment has introduced simple conveyor belts or ultraviolet disinfection lamps, it usually performs intelligent dispensing.

[0004] In existing technologies, intelligent garment distribution lockers transport garments to the retrieval opening via a conveyor belt for medical staff to retrieve. However, existing equipment lacks an effective dynamic barrier mechanism when the retrieval opening is opened, allowing bacteria, dust, and other contaminants from the external environment to easily penetrate the locker. This significantly increases the risk of secondary contamination of surgical gowns during retrieval, threatening the safety and sterility of the surgical environment. Therefore, an intelligent garment distribution locker structure is proposed to address these issues. Utility Model Content

[0005] To overcome the above shortcomings, this utility model provides an intelligent wardrobe cabinet structure, which aims to improve the problem that the lack of a barrier function at the clothing retrieval opening in the existing intelligent wardrobe cabinet structure leads to the risk of secondary pollution caused by external dust and bacteria entering the clothes inside the wardrobe.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: an intelligent wardrobe cabinet structure, including a wardrobe body, a conveyor belt inside the wardrobe body, a display screen fixedly connected to the outer wall of the wardrobe body, a camera fixedly connected to the top of the wardrobe body via a bracket, a clothes-retrieving opening on the outer wall of the wardrobe body, an electric push rod fixedly connected to the inner wall of the wardrobe body, a baffle plate fixedly connected to the output end of the electric push rod via a connecting block, a mounting groove on the outer wall of the wardrobe body, and a start switch fixedly connected to the inner wall of the mounting groove. An extrusion plate is fixedly connected to the outer wall of the shielding plate. A cylindrical groove is formed on the outer wall of the wardrobe body. A connecting pipe is fixedly connected to the inner wall of the cylindrical groove. An inclined pipe is fixedly connected to the inner wall of the connecting pipe. A valve is provided on the surface of the inclined pipe. An air pump is fixedly connected to the top of the wardrobe body. A fixed pipe is fixedly connected to the output end of the air pump. A collar is rotatably connected to the outer wall of the fixed pipe. A second connecting ring is threadedly connected to the inner wall of the collar. A filter is fixedly connected to the bottom end of the second connecting ring. A first connecting ring is fixedly connected to the bottom end of the filter. A rotating ring is threadedly connected to the bottom end of the first connecting ring.

[0007] As a further description of the above technical solution:

[0008] The extrusion plate is fixedly connected to the upper outer wall of the baffle plate, and the start switch is on the same horizontal line as the baffle plate.

[0009] As a further description of the above technical solution:

[0010] The inclined tube is set in a downward tilt toward the side away from the shield.

[0011] As a further description of the above technical solution:

[0012] The end of the connecting pipe is rotatably connected to the inner wall of the rotating ring.

[0013] As a further description of the above technical solution:

[0014] A fixing clip is fixedly connected to the outer wall of the wardrobe body. A sliding groove is opened on the outer wall of the wardrobe body. A sliding rod is fixedly connected to the inner wall of the sliding groove. A spring is fixedly connected to the inner wall of the sliding groove. A movable clip is slidably connected to the outer wall of the sliding rod.

[0015] As a further description of the above technical solution:

[0016] The slide bar passes through the movable clamp, and the outer wall of the movable clamp is slidably connected to the inner wall of the slide groove.

[0017] As a further description of the above technical solution:

[0018] The end of the spring away from the slide groove is fixedly connected to the outer wall of the movable clamp.

[0019] As a further description of the above technical solution:

[0020] The spring is sleeved on the outer wall of the slide rod.

[0021] This utility model has the following beneficial effects:

[0022] 1. In this utility model, the space utilization and retrieval accuracy are improved by partitioned storage design, the built-in disinfection ensures a sterile state, the added air curtain actively isolates external pollutants from entering the cabinet, and the air pump system and electric shield are intelligently linked to realize efficient opening and closing of the retrieval port, which not only ensures hygiene protection but also achieves energy saving effect, optimizing the safety and convenience of surgical gown storage and retrieval.

[0023] 2. In this utility model, the filter is stably clamped by the cooperation of the fixed clamp and the sliding movable clamp under the elastic action of the spring. The guide of the slide rod ensures stable movement, effectively preventing the filter from shaking or falling off during operation, ensuring the normal operation of the air circuit system, improving the reliability of the air curtain, and ensuring the reliable operation of the equipment. Attached Figure Description

[0024] Figure 1 This is an external side view of the main structure of an intelligent wardrobe cabinet structure proposed in this utility model;

[0025] Figure 2 This is a top-view diagram of the main structure of an intelligent wardrobe cabinet structure proposed in this utility model.

[0026] Figure 3 This utility model proposes an intelligent wardrobe cabinet structure. Figure 2 Enlarged view of region A in the middle;

[0027] Figure 4 This utility model proposes an intelligent wardrobe cabinet structure. Figure 2 Enlarged view of region B in the middle;

[0028] Figure 5 This is a rear view schematic diagram of the main structure of an intelligent wardrobe cabinet structure proposed in this utility model;

[0029] Figure 6 This utility model proposes an intelligent wardrobe cabinet structure. Figure 5 Enlarged diagram of region C in the middle;

[0030] Figure 7 This is a schematic diagram of the internal structure of the main body of an intelligent wardrobe cabinet structure proposed in this utility model.

[0031] Legend:

[0032] 1. Wardrobe body; 2. Conveyor belt; 3. Display screen; 4. Camera; 5. Clothes retrieval opening; 6. Cover plate; 7. Electric push rod; 8. Mounting slot; 9. Start switch; 10. Cylindrical groove; 11. Inclined tube; 12. Valve; 13. Connecting tube; 14. Rotary ring; 15. Connecting ring one; 16. Filter; 17. Link two; 18. Collar; 19. Fixing tube; 20. Air pump; 21. Fixing clamp; 22. Slide groove; 23. Slide rod; 24. Spring; 25. Moving clamp; 26. Extrusion plate. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Reference Figures 1-2 , Figure 7 This utility model provides an embodiment of an intelligent surgical gown storage cabinet structure, including a wardrobe body 1. A conveyor belt 2 is installed inside the wardrobe body 1, with several sets of conveyor belts 2 evenly distributed inside the wardrobe body 1. This allows for more organized storage of surgical gowns and makes full use of the internal space of the wardrobe body 1. A motor drives a reducer, which in turn drives a transmission roller to ensure stable transmission of the conveyor belt 2 and smooth delivery of surgical gowns. Each set of conveyor belts 2 is equipped with a partition to separate the surgical gowns, preventing them from tangling or stacking and facilitating precise delivery of individual surgical gowns. The drive motor of the conveyor belt 2 is a stepper motor. A photoelectric sensor detects the position of the partition, and a PLC controller achieves a positioning accuracy of ±2mm. After a gown retrieval command is triggered, the conveyor belt 2 runs until the target partition is aligned. The system stops when the center line of the retrieval port 5 is reached. The body of the distribution cabinet 1 is equipped with ultraviolet lamps for disinfecting surgical gowns, effectively killing bacteria and viruses and ensuring their sterility. The ultraviolet lamps are evenly spaced along the length of the conveyor belt 2. The disinfection cycle is automatic after the cabinet door is closed, with continuous irradiation for ≥30 minutes. A display screen 3 is fixedly connected to the outer wall of the distribution cabinet 1, and a camera 4 is fixedly connected to the top of the distribution cabinet 1 via a bracket. The outer wall of the distribution cabinet 1 has a retrieval port 5, and the inner wall of the distribution cabinet 1 is fixedly connected to an electric push rod 7. The output end of the electric push rod 7 is fixedly connected to a baffle plate 6 via a connecting block. The electric push rod 7 controls the raising and lowering of the baffle plate 6, opening and closing the retrieval port 5, flexibly adjusting its state to meet different needs for surgical gown retrieval and closed protection, facilitating the retrieval of surgical gowns by medical staff.

[0035] Reference Figures 2-4 The outer wall of the wardrobe body 1 has an installation groove 8, and a start switch 9 is fixedly connected to the inner wall of the installation groove 8, providing a stable installation position for the start switch 9 and ensuring its normal operation. The start switch 9 and the cover plate 6 are on the same horizontal line, ensuring that the squeezing plate 26 can accurately squeeze the start switch 9 and ensure the accurate control logic of the air pump 20. The squeezing plate 26 is fixedly connected to the outer wall of the cover plate 6. The squeezing plate 26 rises and falls with the cover plate 6 to realize the linkage control of the start switch 9 without additional operation. When the squeezing plate 26 squeezes the switch end of the start switch 9, the air pump 20 is in the off state to prevent clothes from being taken out. When opening 5 is closed, air pump 20 is inactive, saving energy. When squeeze plate 26 disengages from start switch 9, air pump 20 starts, and baffle plate 6 descends to open opening 5. When baffle plate 6 rises, opening 5 closes. When baffle plate 6 descends to the open position of opening 5, squeeze plate 26 disengages from start switch 9, triggering relay to connect air pump 20. After baffle plate 6 rises and resets, start switch 9 is squeezed, and air pump 20 shuts off after a 5-second delay. Squeeze plate 26 is fixedly connected to the upper outer wall of baffle plate 6, ensuring that squeeze plate 26 and baffle plate 6 move synchronously, ensuring precise control of start switch 9. The outer wall of the wardrobe body 1 has a cylindrical groove 10, and a connecting pipe 13 is fixedly connected to the inner wall of the cylindrical groove 10, providing installation space for the connecting pipe 13 and ensuring its stable position. The end of the connecting pipe 13 is rotatably connected to the inner wall of the rotating ring 14. An inclined pipe 11 is fixedly connected to the inner wall of the connecting pipe 13. The inclined pipe 11 is inclined downwards towards the side away from the cover plate 6. Several sets of inclined pipes 11 are provided and are connected to the inside of the connecting pipe 13, which can lead out the air source and form an air curtain at the clothing opening 5, effectively blocking external bacteria and dust from entering the wardrobe body 1 and protecting the surgical gowns inside. A valve 12 is installed on the surface of the inclined pipe 11. The valve 12 is an electromagnetic proportional valve that opens and closes synchronously according to the start and stop signals of the air pump 20. When the air pump 20 starts, the valve 12 is 100% open, and when it stops, the opening is 0%, to avoid residual airflow causing pressure imbalance inside the cabinet. The air pump 20 is fixedly connected to the top of the wardrobe body 1 to provide a stable air source for the air curtain and ensure its normal formation. The inclined angle of the inclined pipe 11 is 30°-45°, and its outlet wind speed is ≥2m / s. Through Bernoulli's principle, a low-pressure air curtain barrier is formed at the clothing retrieval opening 5. The air pump 20 is selected with a wind pressure ≥800Pa and a flow rate ≥50m³ / s. 3 A centrifugal fan with a speed of / h ensures that the airflow continuously covers the full width of the garment opening.

[0036] Reference Figure 2 , Figure 4 , Figure 6The output end of the air pump 20 is fixedly connected to a fixed pipe 19 to achieve a stable connection between the air pump 20 and the subsequent pipeline, ensuring smooth airflow transmission. The outer wall of the fixed pipe 19 is rotatably connected to a collar 18, which facilitates the rotation of the collar 18 to cooperate with the installation and removal of the second connecting ring 17. The inner wall of the collar 18 is threadedly connected to the second connecting ring 17, which enables the collar 18 to be detachably connected to the filter 16, facilitating the replacement and maintenance of the filter 16. The bottom end of the second connecting ring 17 is fixedly connected to the filter 16, which can filter and purify the incoming airflow to prevent impurities from contaminating the surgical gown. The bottom end of the filter 16 is fixedly connected to a connecting ring 15, which provides structural support for the connection between the filter 16 and the rotating ring 14, ensuring a stable connection. The bottom end of the connecting ring 15 is threadedly connected to the rotating ring 14, which enables the filter 16 and the rotating ring 14 to be detachably connected, facilitating pipeline maintenance and component replacement.

[0037] Reference Figures 4-6 A fixing clip 21 is fixedly connected to the outer wall of the wardrobe body 1, providing a fixing fulcrum for the filter 16 on one side and enhancing the fixing effect. A sliding groove 22 is provided on the outer wall of the wardrobe body 1, providing a track for the sliding clip 25 to ensure its stable movement direction. A sliding rod 23 is fixedly connected to the inner wall of the sliding groove 22, which guides and limits the sliding of the sliding clip 25 to prevent it from deviating. The sliding rod 23 passes through the sliding clip 25, and the outer wall of the sliding clip 25 is slidably connected to the inner wall of the sliding groove 22, allowing the sliding clip 25 to move flexibly and adapt to the fixing requirements of filters 16 of different specifications. A spring 24 is fixedly connected to the inner wall of the sliding groove 22, and the end of the spring 24 away from the sliding groove 22 is connected to the sliding clip 25. The outer wall is fixedly connected to provide elastic force for the movable clamp 25, so that it fits tightly against the filter 16. The spring 24 is sleeved on the outer wall of the slide rod 23 to prevent the spring 24 from shifting when under force and to ensure its elastic effect is stable. The movable clamp 25 is slidably connected to the outer wall of the slide rod 23. The cooperation between the fixed clamp 21 and the movable clamp 25 can fix the filter 16, enhance the stability of the filter 16 installation, and prevent it from shaking or falling off during equipment operation. The filter 16 is an H13 grade HEPA filter screen, which is clamped bidirectionally by the fixed clamp 21 and the movable clamp 25. The spring 24 is a 304 stainless steel compression spring 24, which makes the movable clamp 25 apply a constant clamping force to the filter 16 housing.

[0038] Working Principle: Surgical gowns are placed on conveyor belts 2 inside the main body 1 of the storage cabinet. Partitions on each conveyor belt 2 separate the gowns in an orderly manner, preventing them from stacking. The conveyor belts 2 are driven by a motor-driven reducer, which in turn drives the transmission rollers, enabling the transport and positioning of the gowns. Simultaneously, ultraviolet lamps inside the storage cabinet 1 continuously disinfect and sterilize the stored gowns, ensuring their hygiene and safety. When medical staff need to retrieve a gown, they operate the display screen 3 on the outer wall of the storage cabinet 1. After identity verification using the camera 4 fixed to the top bracket, the electric push rod 7 is activated. The output end of the electric push rod 7 lowers the baffle plate 6 via a connecting block, opening the gown retrieval port 5. At this time, the squeezing plate 26 on the upper outer wall of the baffle plate 6 moves downward, releasing its pressure on the start switch 9. The air pump 20 then turns on, and the airflow generated by the air pump 20 is led out through the inclined pipe 11. The inclined tube 11 tilts downwards towards the side away from the baffle 6, and multiple sets are set up to form an air curtain at the clothing retrieval opening 5, effectively blocking external pollutants from entering the clothing wardrobe. After retrieval, the electric push rod 7 drives the baffle 6 to rise, closing the clothing retrieval opening 5. The squeezing plate 26 squeezes the switch end of the start switch 9 again, the air pump 20 is turned off, and the air curtain stops forming. In addition, during operation, the filter 16 is fixed by the cooperation of the fixed clamp 21 and the movable clamp 25. The movable clamp 25 slides along the slide rod 23 in the slide groove 22. The spring 24 in the slide groove 22 provides elastic force for the movable clamp 25, so that it is tightly cooperated with the fixed clamp 21, ensuring that the filter 16 works stably and filters and purifies the incoming airflow. At the same time, the filter 16 is connected to the collar 18 by the threaded connection of the second connecting ring 17 and the collar 18, and to the rotating ring 14 by the threaded connection of the first connecting ring 15, which facilitates disassembly and replacement and ensures the filtration effect.

[0039] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A smart wardrobe cabinet structure, comprising a wardrobe body (1), wherein a conveyor belt (2) is provided inside the wardrobe body (1), a display screen (3) is fixedly connected to the outer wall of the wardrobe body (1), a camera (4) is fixedly connected to the top of the wardrobe body (1) via a bracket, a clothes-retrieving opening (5) is provided on the outer wall of the wardrobe body (1), and an electric push rod (7) is fixedly connected to the inner wall of the wardrobe body (1), wherein a baffle plate (6) is fixedly connected to the output end of the electric push rod (7) via a connecting block, characterized in that: The outer wall of the hair locker body (1) is provided with an installation groove (8), and a start switch (9) is fixedly connected to the inner wall of the installation groove (8). An extrusion plate (26) is fixedly connected to the outer wall of the cover plate (6). The outer wall of the hair locker body (1) is provided with a cylindrical groove (10), and a connecting pipe (13) is fixedly connected to the inner wall of the cylindrical groove (10). An inclined pipe (11) is fixedly connected to the inner wall of the connecting pipe (13), and a valve (12) is provided on the surface of the inclined pipe (11). An air pump (20) is fixedly connected to the top of the wardrobe body (1). A fixed pipe (19) is fixedly connected to the output end of the air pump (20). A collar (18) is rotatably connected to the outer wall of the fixed pipe (19). A connecting ring (17) is threadedly connected to the inner wall of the collar (18). A filter (16) is fixedly connected to the bottom end of the connecting ring (17). A connecting ring (15) is fixedly connected to the bottom end of the filter (16). A rotating ring (14) is threadedly connected to the bottom end of the connecting ring (15).

2. The intelligent wardrobe cabinet structure according to claim 1, characterized in that: The extrusion plate (26) is fixedly connected to the upper outer wall of the shielding plate (6), and the start switch (9) is on the same horizontal line as the shielding plate (6).

3. The intelligent wardrobe cabinet structure according to claim 1, characterized in that: The inclined tube (11) is inclined downward toward the side away from the shield (6).

4. The intelligent wardrobe cabinet structure according to claim 1, characterized in that: The end of the connecting pipe (13) is rotatably connected to the inner wall of the swivel (14).

5. The intelligent wardrobe cabinet structure according to claim 1, characterized in that: The outer wall of the wardrobe body (1) is fixedly connected to a fixing clip (21), and the outer wall of the wardrobe body (1) is provided with a sliding groove (22). The inner wall of the sliding groove (22) is fixedly connected to a sliding rod (23), and the inner wall of the sliding groove (22) is fixedly connected to a spring (24). The outer wall of the sliding rod (23) is slidably connected to a moving clip (25).

6. The intelligent wardrobe cabinet structure according to claim 5, characterized in that: The slide bar (23) passes through the movable clamp (25), and the outer wall of the movable clamp (25) is slidably connected to the inner wall of the slide groove (22).

7. The intelligent wardrobe cabinet structure according to claim 5, characterized in that: The end of the spring (24) away from the slide groove (22) is fixedly connected to the outer wall of the movable clamp (25).

8. The intelligent wardrobe cabinet structure according to claim 5, characterized in that: The spring (24) is sleeved on the outer wall of the slide rod (23).