Household health-care instrument storage box with classification structure and use method of household health-care instrument storage box
By designing disinfection mechanisms and cleaning mechanisms in home health equipment storage boxes, the problem that traditional storage boxes cannot clean up pollutants in a timely manner is solved, efficient disinfection and automatic cleaning of the equipment is achieved, and the hygiene and safety of the equipment and the cleanliness of the storage environment are ensured.
Patent Information
- Application Number
- CN202510385670.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional health care device storage boxes lack automatic cleaning mechanisms and cannot clean up contaminants on the surface of the device in time, resulting in the risk of storage environment pollution and cross-infection. It is difficult to ensure thoroughness and timeliness rely on manual cleaning.
A home health device storage box with a classified structure is designed, equipped with a disinfection mechanism and a cleaning mechanism. The disinfection mechanism realizes in-situ disinfection of the instrument through the first drive motor and atomizing nozzle. The cleaning mechanism automatically cleans up contaminants on the placement rack when the instrument is removed by pushing the mechanism and cleaning parts.
The in-situ disinfection of health care devices in the storage location is realized, ensuring the hygiene and safety of the devices, reducing the risk of infection, and reducing the cumbersomeness and time cost of manual cleaning through automatic cleaning mechanisms, ensuring the cleanliness of the placement rack.
Smart Images

Figure CN120191604A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of storage of health care instruments, and particularly relates to a home health care instrument storage box with a classification structure and its use method. Background Art
[0002] In the modern medical environment, the proper storage and management of health care instruments are crucial for ensuring medical quality, improving work efficiency, and ensuring patient safety. However, the traditional storage methods of health care instruments have many defects and are difficult to meet the increasingly complex medical needs.
[0003] In terms of cleaning, most traditional storage boxes are not equipped with a cleaning mechanism. Various pollutants remaining on the surface of health care instruments after use, if not cleaned in time, will, on the one hand, pollute the storage environment, and on the other hand, may cause cross-infection during the next use, posing a serious threat to the health of patients. Due to the lack of an automatic cleaning part and a driving mechanism cooperating with it, it is impossible to efficiently clean the placement rack synchronously during the process of taking out the instrument, and only manual regular and cumbersome cleaning work can be relied on, and it is difficult to ensure the thoroughness and timeliness of cleaning. Summary of the Invention
[0004] The invention purpose of the present invention is to overcome the defects in the background art that in terms of cleaning, most traditional storage boxes lack an automatic cleaning mechanism, cannot clean the pollutants on the surface of health care instruments in time, pollute the storage environment and are prone to cause cross-infection, and it is difficult to ensure thoroughness and timeliness relying on manual cleaning, so as to realize a home health care instrument storage box with a classification structure and its use method.
[0005] To achieve the above invention purpose, the technical solution of the present invention is: a home health care instrument storage box with a classification structure and its use method, including a storage box, a side wall of the storage box is rotatably hinged with an auxiliary cover door, and two side opening doors are rotatably hinged to a side wall of the auxiliary cover door;
[0006] A storage rack main body, the storage rack main body is movably placed on the inner bottom wall of the storage box, and a plurality of placement racks for placing health care instruments are snap-connected to the storage rack main body;
[0007] A cleaning mechanism, the cleaning mechanism is connected to one side inside the storage box, the cleaning mechanism includes a plurality of sets of driving mechanisms and cleaning parts, each cleaning part is arranged on one side above the placement rack, each driving mechanism is respectively fixed to one side inside the storage box, and each driving mechanism is detachably connected to the cleaning part.
[0008] In the above-mentioned health care device storage box with a classification structure, the storage rack body includes a storage bracket and rollers, and a plurality of the rollers are rotatably connected to the bottom of the storage bracket. A plurality of card slots for inserting the placement racks are formed on the storage bracket.
[0009] In the above-mentioned health care device storage box with a classification structure, it further includes a disinfection mechanism. The disinfection mechanism includes a first driving motor and an atomizing nozzle. A plurality of the first driving motors are respectively connected to the side walls of the storage bracket, and each of the first driving motors is respectively arranged above each of the placement racks. There is no disinfection mechanism above the placement rack at the top of the storage bracket. The output end of the first driving motor is in transmission connection with the middle part of the atomizing nozzle.
[0010] In the above-mentioned health care device storage box with a classification structure, the pushing mechanism includes a scissor hinge frame and an electric telescopic rod. One side of the scissor hinge frame is fixed to one side inside the storage box. The output ends of two electric telescopic rods are rotatably connected to two hinge rods on the scissor hinge frame. The other ends of the two electric telescopic rods are in transmission connection with one side of the scissor hinge frame. The other side of the scissor hinge frame is connected with a connecting plate.
[0011] In the above-mentioned health care device storage box with a classification structure, the cleaning member includes a rotating roller, adjusting rods, a second driving motor, a transmission belt and a tension spring. The two adjusting rods are respectively rotatably connected to the two ends of the connecting plate. A transmission shaft is rotatably connected between the two adjusting rods. A second driving motor is fixed to the side wall of one of the adjusting rods. The output end of the second driving motor is fixed to one end of the transmission shaft. A first pulley is wrapped around the outer surface of one end of the transmission shaft. The two ends of the rotating roller are rotatably connected to the two adjusting rods. A second pulley is fixed to one end of the rotating roller. The transmission belt is wound around the outer surfaces of the first pulley and the second pulley. A cleaning brush is adhesively wrapped around the outer surface of the rotating roller. One ends of the two tension springs are respectively rotatably connected to the side walls of the adjusting rods, and the other ends of the two tension springs are respectively rotatably connected to the side walls of the connecting plate.
[0012] In the above-mentioned health care device storage box with a classification structure, a pushing-out mechanism is connected to one side of the cleaning member. The pushing-out mechanism includes a pushing-out plate, arc-shaped auxiliary plates and fixing rods. The two fixing rods are respectively fixed to the side walls of the adjusting rods. The two ends of the pushing-out plate are fixed to the fixing rods. The two arc-shaped auxiliary plates are respectively fixed to both sides of the bottom of the pushing-out plate.
[0013] According to the usage method of the above-mentioned health care device storage box with a classification structure, it includes the following steps:
[0014] a Open the auxiliary cover door, move the storage rack body into the storage box through the rollers, and close the auxiliary cover door;
[0015] b When storing health care instruments, open the side opening door, place the health care instruments on the placement rack, and close the side opening door;
[0016] c When taking out health care instruments, open the corresponding side opening door and take out the required health care instruments;
[0017] d When disinfection is required, connect the external disinfectant liquid pipeline to the atomizing nozzle, start the first driving motor, drive the atomizing nozzle to rotate and spray the disinfectant liquid to disinfect the health care instruments;
[0018] e When cleaning the placement rack, start the electric telescopic rod, and push the cleaning part and the pushing mechanism to move above the placement rack through the scissor hinge frame. The arc-shaped auxiliary plate first contacts and slides under the placement rack, driving the pushing plate and the cleaning part to move to the top of the placement rack. The pushing plate pushes out the health care instruments, and at the same time start the second driving motor, drive the rotating roller and the cleaning brush to rotate through the transmission belt, and clean the placement rack.
[0019] Compared with the prior art, the home health care instrument storage box with a classification structure and its use method of the present invention have at least the following beneficial effects:
[0020] The home health care instrument storage box with a classification structure and its use method of the present invention realize in-situ disinfection of health care instruments at the storage position through the setting of the disinfection mechanism. The combination of multiple first driving motors and the atomizing nozzle can perform disinfection operations on the instruments on each placement rack separately. There is no need to transfer the instruments to a dedicated disinfection area, avoiding problems such as secondary pollution and instrument collision damage that may occur during the transfer process, effectively ensuring the hygiene and safety of health care instruments, and reducing the risk of infection.
[0021] The first driving motor drives the atomizing nozzle to rotate and spray the disinfectant liquid, making the disinfectant liquid cover the surface of the health care instruments more evenly. Whether it is a complex-shaped instrument or a small part, it can be fully disinfected, improving the thoroughness and reliability of disinfection.
[0022] The pushing mechanism in the cleaning mechanism cooperates with the cleaning part to automatically clean the placement rack while taking out the health care instruments. When the electric telescopic rod pushes the scissor hinge frame to move, it drives the cleaning brush of the cleaning part to wipe and clean the placement rack, timely removing the residual pollutants on the surface of the placement rack, maintaining the cleanliness of the placement rack, providing a good environment for storing health care instruments next time, and reducing the risk of corrosion and pollution of the instruments caused by the accumulation of pollutants. Description of the Drawings
[0023] Figure 1 is the overall structural schematic diagram of the present invention;
[0024] Figure 2 is the overall structural schematic diagram of the storage rack body of the present invention;
[0025] Figure 3 is the side view schematic diagram of the storage rack body of the present invention;
[0026] Figure 4 is the internal dissection schematic diagram of the storage box of the present invention;
[0027] Figure 5 is the overall schematic diagram of the cleaning mechanism of the present invention;
[0028] Figure 6 is the front view schematic diagram of the pushing mechanism of the present invention;
[0029] Figure 7 is the front view schematic diagram of the cleaning part of the present invention.
[0030] In the figure: 1, storage box; 2, auxiliary cover door; 3, side opening door; 4, storage rack body; 401, storage bracket; 402, roller; 403, placing rack; 5, disinfection mechanism; 501, first driving motor; 502, atomizing nozzle; 6, cleaning mechanism; 7, pushing mechanism; 701, scissor hinge frame; 702, electric telescopic rod; 703, connecting plate; 8, cleaning part; 801, pushing plate; 802, arc-shaped auxiliary plate; 803, rotating roller; 804, cleaning brush; 805, adjusting rod; 806, second driving motor; 807, transmission belt; 808, second belt pulley; 809, transmission shaft; 8010, tension spring; 8011, fixed rod. Detailed implementation manners
[0031] The following will describe the home healthcare device storage box with a classification structure and its usage method of the present invention in more detail with reference to the accompanying drawings and through specific implementation manners.
[0032] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0033] This embodiment discloses a storage box for home health care devices with a classification structure and its usage method. In terms of cleaning, most traditional storage boxes lack an automatic cleaning mechanism, making it impossible to clean the contaminants on the surface of health care devices in a timely manner. This not only pollutes the storage environment but also easily causes cross-infection. Moreover, relying on manual cleaning is difficult to ensure thoroughness and timeliness. Referring to Figures 1-7 , it mainly includes a storage box 1, a side wall of the storage box 1 is rotatably hinged with an auxiliary cover door 2, and two side opening doors 3 are rotatably hinged on the side wall of the auxiliary cover door 2. A storage rack main body 4 is movably placed on the inner bottom wall of the storage box 1, and a plurality of placement racks 403 for placing health care devices are snap-connected on the storage rack main body 4. A cleaning mechanism 6 is connected to one side inside the storage box 1. The cleaning mechanism 6 includes multiple sets of pushing mechanisms 7 and cleaning parts 8. Each cleaning part 8 is arranged on one side above the placement rack 403, and each pushing mechanism 7 is respectively fixed to one side inside the storage box 1, and each pushing mechanism 7 is detachably connected to the cleaning part 8.
[0034] The side wall of the storage box 1 is rotatably hinged with an auxiliary cover door 2 through a hinge device. The auxiliary cover door 2 can be flexibly opened and closed within a large angle range, facilitating comprehensive operation inside the storage box 1. Moreover, on the side wall of the auxiliary cover door 2, two side opening doors 3 are also connected in a rotatably hinged manner. The side opening doors 3 are relatively small in size. When taking some health care devices daily, only by opening the side opening doors 3 can the required items be quickly taken, reducing the interference of the external environment on the internal environment of the storage box 1. The cleaning mechanism 6 is the key part to ensure the hygiene of the storage box. The cleaning mechanism 6 includes multiple sets of pushing mechanisms 7 and cleaning parts 8, which are respectively tightly fixed to one side inside the storage box 1 and are used to automatically clean the residues on the placement rack after the health care devices are taken out.
[0035] Referring to Figures 1-3 , the storage rack main body 4 includes a storage bracket 401 and rollers 402. A plurality of rollers 402 are rotatably connected to the bottom of the storage bracket 401, and a plurality of slots for inserting the placement rack 403 are opened on the storage bracket 401.
[0036] A plurality of rollers 402 are evenly distributed at the bottom of the storage bracket 401. These rollers 402 are made of medical silent rubber material, which is soft and wear-resistant, and is rotatably connected to the storage bracket 401 to ensure smooth and silent movement inside the storage box without generating noise to interfere with the medical environment. The surface of the storage bracket 401 is provided with a plurality of slots according to a specific layout and spacing. The shape and size of the slots match those of the placement rack 403, and the inner wall of the slots is polished to reduce the frictional resistance when the placement rack 403 is inserted, and at the same time enhance the connection stability to prevent the placement rack 403 from accidentally slipping or shifting during daily use.
[0037] Referring to Figures 1-3, further including a disinfection mechanism 5, the disinfection mechanism 5 includes a first driving motor 501 and an atomizing nozzle 502. A plurality of first driving motors 501 are respectively connected to the side wall of the storage bracket 401, and each first driving motor 501 is respectively arranged above each placement rack 403. There is no disinfection mechanism 5 above the placement rack 403 at the top of the storage bracket 401. The output end of the first driving motor 501 is in transmission connection with the middle part of the atomizing nozzle 502.
[0038] A plurality of first driving motors 501 are evenly distributed and connected to the side wall of the storage bracket 401, except that there is no setting above the placement rack 403 at the top of the storage bracket 401. Some paper products can be placed above the placement rack 403 at the top of the storage bracket 401, which is not convenient for atomizing disinfection. The atomizing nozzle 502 is made of medical stainless steel, and its pipe wall is evenly distributed with tiny atomizing nozzles, which can evenly atomize the disinfectant into tiny particles. The output end of the first driving motor 501 is in close transmission connection with the middle part of the atomizing nozzle 502. When the first driving motor 501 is started, it can drive the atomizing nozzle 502 to rotate at a stable speed, ensuring that the disinfectant is sprayed and covered on the surface of the health care instruments on the placement rack 403 in all directions.
[0039] Refer to Figures 1-7 , the pushing mechanism 7 includes a scissor hinge frame 701 and an electric telescopic rod 702. One side of the scissor hinge frame 701 is fixed to one side inside the storage box 1. The output ends of two electric telescopic rods 702 are rotationally connected to two hinge rods on the scissor hinge frame 701. The other ends of the two electric telescopic rods 702 are in transmission connection with one side of the scissor hinge frame 701. The other side of the scissor hinge frame 701 is connected with a connecting plate 703.
[0040] The output ends of the two electric telescopic rods 702 are rotationally connected to the two hinge rods on the scissor hinge frame 701 through spherical plain bearings. This rotational connection method enables the electric telescopic rods 702 to drive the hinge rods to rotate flexibly when telescoping, changing the shape of the scissor hinge frame 701. Such a design enables the telescopic movement of the electric telescopic rods 702 to be converted into the expansion and contraction of the scissor hinge frame, thereby realizing the driving of the connecting plate 703 and the cleaning member.
[0041] The connecting plate 703, as a connecting member between the pushing mechanism and the cleaning member, plays a role in transmitting power and supporting the cleaning member. When the electric telescopic rod 702 telescopes, the scissor hinge frame 701 will expand or contract accordingly, driving the connecting plate 703 and the cleaning member to move in the storage box to clean the placement rack.
[0042] Refer to Figures 1-7, the cleaning member 8 includes a rotating roller 803, an adjusting rod 805, a second driving motor 806, a transmission belt 807, and a tension spring 8010. The two adjusting rods 805 are respectively rotatably connected to both ends of the connecting plate 703. A transmission shaft 809 is rotatably connected between the two adjusting rods 805. A second driving motor 806 is fixed to the side wall of one of the adjusting rods 805. The output end of the second driving motor 806 is fixed to one end of the transmission shaft 809. The outer surface of one end of the transmission shaft 809 is wrapped with a first pulley. The two ends of the rotating roller 803 are rotatably connected to the two adjusting rods 805. A second pulley 808 is fixed to one end of the rotating roller 803. The transmission belt 807 is wound around the outer surfaces of the first pulley and the second pulley 808. The outer surface of the rotating roller 803 is wrapped and adhered with a cleaning brush 804. One ends of the two tension springs 8010 are respectively rotatably connected to the side walls of the adjusting rods 805, and the other ends of the two tension springs 8010 are respectively rotatably connected to the side walls of the connecting plate 703.
[0043] One side of the cleaning member 8 is connected with a pushing mechanism. The pushing mechanism includes a pushing plate 801, an arc-shaped auxiliary plate 802, and a fixing rod 8011. The two fixing rods 8011 are respectively fixed to the side walls of the adjusting rods 805. The two ends of the pushing plate 801 are fixed to the fixing rods 8011. The two arc-shaped auxiliary plates 802 are respectively fixed to both sides of the bottom of the pushing plate 801.
[0044] The combination of the scissor hinge frame 701 and the electric telescopic rod 702 in the pushing mechanism 7, as well as the detachable connection with the cleaning member 8, realizes the automatic cleaning of the placement rack 403 during the process of taking out the healthcare device. When the electric telescopic rod 702 is started, it drives the scissor hinge frame 701 to move, and then drives the cleaning member 8 to move. During this process, the cleaning brush 804 of the cleaning member 8 can wipe and clean the surface of the placement rack 403, timely remove the pollutants after use, and keep the placement rack 403 clean and hygienic. This automatic cleaning mechanism reduces the cumbersome steps and time costs of manual cleaning, and also avoids the pollution risk of subsequent stored devices caused by the accumulation of pollutants due to untimely or incomplete manual cleaning.
[0045] The rotational connection between the adjusting rod 805 and the connecting plate 703 and the setting of the tension spring 8010 enable the cleaning brush 804 to automatically adjust the angle and pressure according to the shape and position of the placement rack 403 during the movement, ensuring close fit with the surface of the placement rack 403 and achieving efficient and comprehensive cleaning effects. For example, when encountering uneven surfaces or protruding devices on the placement rack 403, the tension spring 8010 can provide a certain buffering and adaptive adjustment ability to ensure that the cleaning brush 804 can always effectively contact and clean the pollution.
[0046] Example 1:
[0047] When storing large home healthcare devices, a relatively large storage box 1 is used, with a length of 150 cm - 240 cm, a width of 80 cm - 150 cm, and a height of 100 cm - 150 cm. It is made of 316 stainless steel, with excellent corrosion resistance and strength, and can adapt to complex environmental requirements.
[0048] The storage brackets 401 of the storage rack body 4 are designed with five layers of card slots, and each layer of card slot corresponds to a placement rack 403, which can be conveniently moved within the storage box 1 through rollers 402. The rollers 402 are made of high-strength silent rubber, with a diameter of 5 cm - 8 cm, ensuring smooth movement and extremely low noise. The topmost placement rack 403 is used to store precision instruments dedicated to large surgeries such as coronary artery bypass grafting; the second layer of placement rack 403 places various consumables such as suture threads and staplers; the third layer of placement rack 403 places conventional surgical knives, forceps, etc.; the fourth layer of placement rack 403 places orthopedic surgical instruments such as bone plates and intramedullary nails; the bottommost placement rack 403 is used to store postoperative cleaning and dressing supplies.
[0049] The disinfection mechanism 5 is equipped with five first drive motors 501, each with a power of 50 W, which precisely correspond to each layer of placement rack 403 (except the top). The atomizing nozzle 502 is made of medical-grade stainless steel, and 30 atomizing nozzles are evenly distributed on the pipe body. The aperture of the nozzles is 0.5 mm, which can generate fine and uniform disinfectant droplets. After the surgery, connect to the external disinfectant supply system, start the first drive motor 501, drive the atomizing nozzle 502 to rotate at a speed of 80 revolutions per minute, and disinfect the instruments comprehensively and without dead angles to ensure thorough disinfection and effectively prevent cross-infection.
[0050] In the pushing mechanism 7 of the cleaning mechanism 6, the scissor hinge frame 701 is made of high-strength alloy steel. The electric telescopic rod 702 has a stroke of 40 cm, a maximum thrust of 200 N, and a telescopic speed of 3 cm per second. The adjusting rod 805 of the cleaning part 8 is made of lightweight aluminum alloy. The second drive motor 806 has a power of 30 W and can drive the cleaning brush 804 on the rotating roller 803 to rotate efficiently at a speed of 150 revolutions per minute. When it is necessary to take out or replace the placement rack 403, the electric telescopic rod 702 pushes the cleaning part 8 towards the placement rack 403. The pushing plate 801 smoothly slides onto the top of the placement rack 403 under the guidance of the arc-shaped auxiliary plate 802, pushing out a part of the instruments smoothly, which is convenient for medical staff to take. At the same time, the cleaning brush 804 deeply cleans the placement rack 403, removing pollutants such as blood stains and tissue debris, ensuring that the placement rack 403 is always in a clean and sterile state.
[0051] Embodiment 2:
[0052] When storing small home healthcare devices, a smaller storage box 1 is used, with a length of 60 cm - 80 cm, a width of 30 cm - 50 cm, and a height of 50 cm - 80 cm. The material is 304 stainless steel, which meets the daily instrument storage needs of the clinic and is convenient for placement.
[0053] The storage brackets 401 of the storage rack main body 4 have three layers of card slots, corresponding to three placement racks 403. The upper placement rack 403 stores oral examination instruments such as mouth mirrors and probes; the middle placement rack 403 places disposable consumables such as various syringes and blood collection needles; the lower placement rack 403 places basic tools such as small surgical instruments like scalpels and scissors. The rollers 402 are plastic rollers with a diameter of 3 cm - 5 cm, equipped with a simple braking device, and can move flexibly and fix positions within the storage box 1.
[0054] The disinfection mechanism 5 includes three first drive motors 501 with a power of 15 W, corresponding to each layer of the placement rack 403 (except the top). The length of the atomizing nozzle 502 is adapted to the width of the placement rack 403, and there are 10 atomizing nozzles distributed, with a nozzle aperture of 0.3 mm. When the clinic disinfects the instruments regularly, connect the disinfectant supply pipe, start the first drive motor 501, and make the atomizing nozzle 502 rotate and spray disinfectant at a speed of 40 revolutions per minute to effectively disinfect the instruments and ensure the medical safety of the clinic.
[0055] In the pushing mechanism 7 of the cleaning mechanism 6, the scissors hinge frame 701 is made of stainless steel. The electric telescopic rod 702 has a stroke of 15 cm, a thrust of 50 N, and a telescopic speed of 1 cm per second. The adjusting rod 805 of the cleaning part 8 is made of plastic, and the second drive motor 806 has a power of 10 W, driving the cleaning brush 804 on the rotating roller 803 to rotate at a speed of 80 revolutions per minute. When retrieving or organizing the instruments, the electric telescopic rod 702 pushes the cleaning part 8 to move, and the push plate 801 pushes the instruments out with the assistance of the arc-shaped auxiliary plate 802, and the cleaning brush 804 simultaneously cleans the placement rack 403 to maintain the cleanliness of the placement rack 403 and avoid cross-contamination when different patients use the instruments.
[0056] The working principle of the home healthcare device storage box with a classification structure and its usage method of the present invention: When using this device, first open the auxiliary cover door 2 to move the storage bracket 401 to the inside of the storage box 1. When it is necessary to store healthcare devices, the side opening door 3 can be opened. Place the healthcare devices on the top of the placement rack 403. When taking out the healthcare devices, only the side opening door 3 needs to be opened, and the two side opening doors 3 are relatively small. When it is necessary to take or store the placement rack 403, open the auxiliary plate door to take out or place the placement rack 403, place the healthcare devices on the placement rack 403, and then snap the placement rack 403 onto the storage bracket 401.
[0057] After the health care device is placed, it is necessary to disinfect and sterilize the health care device regularly. The middle part of the atomizing spray pipe 502 is rotatably connected to the external pipeline, and the external pipeline is connected to the device that provides disinfectant liquid outside to provide disinfected liquid for the atomizing spray pipe 502. Start the first driving motor 501, and the output end of the first driving motor 501 drives the atomizing spray pipe 502 to rotate. The atomizing spray pipe 502 rotates to spray the disinfected liquid to disinfect and sterilize the health care device.
[0058] When taking out the health care device, start the electric telescopic rod 702. The electric telescopic rod pushes the two hinge rods on the scissors hinge frame 701. The two hinge rods drive the entire scissors hinge frame 701 to move, thereby driving the cleaning part 8 and the pushing part to move. Due to the pressure of the tension spring 8010, the cleaning brush 804 and the pushing plate 801 will be driven to the middle on one side of the placement rack 403, and the pushing plate 801 and the cleaning brush 804 cannot enter the top of the placement rack 403. The arc-shaped auxiliary plate 802 at the bottom of the pushing plate 801 first contacts the placement rack 403. The arc-shaped auxiliary plate 802 has a certain curvature, so that the arc-shaped auxiliary plate 802 moves to the top of the placement rack 403, thereby driving the pushing plate 801 and the cleaning brush 804 to move to the top of the placement rack. The pushing plate 801 first contacts the health care device and pushes the health care device out. Then start the second driving motor 806. The output end of the second driving motor drives the second pulley 808 to rotate through the first pulley and the transmission belt 807. The second pulley 808 drives the rotating roller 803 and the cleaning brush 804 to rotate. While the pushing plate 801 pushes out the health care device, the cleaning brush 804 cleans the placement rack 403 to keep the cleanliness of the placement rack 403.
[0059] It should be noted that when this device is specifically implemented, the structures described in the drawings of this specification are not fixed and unchangeable implementation manners. Usually, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations. In addition, the drawings of this specification and the abstract drawings are only schematic diagrams, and do not represent the specific structure and actual quantity, etc. when specifically implemented.
[0060] Unless otherwise defined, the technical terms or scientific terms used here should have the ordinary meaning understood by those with ordinary skills in the field to which the present invention belongs. Similar words such as "a" or "one" used in the specification and claims of this application do not necessarily indicate a quantity limitation. Words such as "including" or "comprising" mean that the elements or components appearing before the word cover the elements or components listed after the word and their equivalents, without excluding other elements or components. Words such as "connected" or "coupled" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect.
[0061] The exemplary embodiments of the present invention have been described in detail above with reference to the preferred embodiments. However, those skilled in the art can understand that, without departing from the concept of the present invention, various modifications and variations can be made to the above specific embodiments, and various combinations of the technical features and structures proposed by the present invention can be made without exceeding the protection scope of the present invention.
Claims
1. A health care equipment storage box with a classification structure, characterized in that: The storage box (1) comprises a side wall of which is rotatably hingedly connected an auxiliary cover door (2), and the side wall of which is rotatably hingedly connected two side-opening doors (3); A storage rack body (4), the storage rack body (4) being movably placed on the inner bottom wall of the storage box (1), and a plurality of placement racks (403) for placing health care equipment being clamped on the storage rack body (4); A cleaning mechanism (6), the cleaning mechanism (6) is connected to one side of the storage box (1), the cleaning mechanism (6) comprises a plurality of pushing mechanisms (7) and cleaning pieces (8), each of the cleaning pieces (8) is arranged on one side above the placement rack (403), each of the pushing mechanisms (7) is respectively fixed to one side of the storage box (1), and each of the pushing mechanisms (7) is detachably connected to the cleaning piece (8).
2. The health care equipment storage box with a classification structure according to claim 1, characterized in that: The storage rack body (4) comprises a storage bracket (401) and rollers (402); a plurality of rollers (402) are rotatably connected to the bottom of the storage bracket (401); and a plurality of slots for inserting a storage rack (403) are provided on the storage bracket (401).
3. The health care equipment storage box with a classification structure according to claim 1, characterized in that: It also includes a disinfection mechanism (5), which includes a first drive motor (501) and an atomizing nozzle (502). Multiple first drive motors (501) are respectively connected to the side walls of the storage bracket (401), and each first drive motor (501) is respectively arranged above each placement rack (403). No disinfection mechanism (5) is arranged above the placement rack (403) at the top of the storage bracket (401), and the output end of the first drive motor (501) is transmission-connected to the middle part of the atomizing nozzle (502).
4. The health care equipment storage box with a classification structure according to claim 1, characterized in that: The pushing mechanism (7) comprises a scissors articulated frame (701) and an electric telescopic rod (702); one side of the scissors articulated frame (701) is fixed to one side of the interior of the storage box (1); the output ends of the two electric telescopic rods (702) are rotatably connected to two articulated rods on the scissors articulated frame (701); the other ends of the two electric telescopic rods (702) are transmission-connected to one side of the scissors articulated frame (701); and the other side of the scissors articulated frame (701) is connected to a connecting plate (703).
5. The health care equipment storage box with a classification structure according to claim 4, characterized in that: The cleaning member (8) comprises a rotating roller (803), an adjusting rod (805), a second driving motor (806), a transmission belt (807) and a tension spring (8010), wherein the two adjusting rods (805) are rotatably connected to the two ends of the connecting plate (703) respectively, and a transmission shaft (809) is rotatably connected between the two adjusting rods (805), wherein the second driving motor (806) is fixed to the side wall of one of the adjusting rods (805), and the output end of the second driving motor (806) is fixed to one end of the transmission shaft (809), and the outer surface of one end of the transmission shaft (809) is The rotating roller (803) is wrapped with a first pulley, and both ends of the rotating roller (803) are rotatably connected to the two adjusting rods (805). A second pulley (808) is fixed to one end of the rotating roller (803). The transmission belt (807) is wrapped around the outer surfaces of the first pulley and the second pulley (808). A cleaning brush (804) is wrapped and adhered to the outer surface of the rotating roller (803). One end of the two tension springs (8010) is rotatably connected to the side walls of the adjusting rod (805), and the other ends of the two tension springs (8010) are rotatably connected to the side walls of the connecting plate (703).
6. The health care equipment storage box with a classification structure according to claim 5, characterized in that: One side of the cleaning member (8) is connected to an ejection mechanism, the ejection mechanism comprising an ejection plate (801), an arc-shaped auxiliary plate (802) and a fixing rod (8011), the two fixing rods (8011) being respectively fixed to the side walls of the adjusting rod (805), the two ends of the ejection plate (801) being fixed to the fixing rod (8011), and the two arc-shaped auxiliary plates (802) being respectively fixed to the two sides of the bottom of the ejection plate (801).
7. The method for using the health care equipment storage box with a classification structure according to any one of claims 1 to 6, characterized in that: The steps include: (a) opening the auxiliary cover door (2), moving the storage rack body (4) into the storage box (1) via the rollers (402), and closing the auxiliary cover door (2); (b) when it is necessary to store the health care equipment, the side door (3) is opened, the health care equipment is placed on the placement rack (403), and the side door (3) is closed; (c) when it is necessary to take out the health care device, the corresponding side door (3) is opened to take out the required health care device; (d) when disinfection is required, the external disinfectant pipeline is connected to the atomizing nozzle (502), the first driving motor (501) is started, and the atomizing nozzle (502) is driven to rotate and spray the disinfectant to disinfect the health care device; (e) When the placement rack (403) needs to be cleaned, the electric telescopic rod (702) is started, and the cleaning member (8) and the ejection mechanism are pushed to the top of the placement rack (403) through the scissor hinge frame (701). The arc-shaped auxiliary plate (802) first contacts and slides under the placement rack (403), driving the ejection plate (801) and the cleaning member (8) to move to the top of the placement rack (403). The ejection plate (801) pushes the health care device out, and at the same time, the second drive motor (806) is started, and the rotating roller (803) and the cleaning brush (804) are driven to rotate through the transmission belt (807) to clean the placement rack (403).