Nursing equipment and method of pneumonia atomizer and medical health big data sharing platform
By introducing a magnetic stirring plate and an automatic liquid injection system into the nebulizer, the problems of uniformity and safety of drug mixture caused by drug precipitation are solved. The automatic stirring and injection of the drug solution are realized, solving the problems of drug precipitation and cumbersome operation, and improving the functionality and ease of use of the nebulizer.
Patent Information
- Application Number
- CN202510681367.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2045-05-26
AI Technical Summary
Existing nebulizers have problems such as sedimentation after the medication is left to stand, limited functionality, and cumbersome manual medication addition. They also pose a risk of external contaminants entering the system, which can affect the treatment effect.
A pneumonia nebulizer was designed, which uses a magnetic attraction stirring plate and an automatic liquid injection structure. Combined with a medical and health big data sharing platform, it realizes automatic stirring and injection of medicine, enhancing safety and convenience.
It achieves uniform mixing of the medicine solution, reduces sedimentation, simplifies the medicine solution addition process, improves the fun and safety of use, and enhances the functionality and ease of operation of the nebulizer.
Smart Images

Figure CN120393193B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical devices, in particular to a pneumonia atomizer and a nursing device and method of a medical and health big data sharing platform. BACKGROUND
[0002] The atomizer is mainly used in the medical field, and its core function is to atomize the medicine into small particles, which are delivered to the patient's oral cavity through the atomizing nozzle, and the particles enter the lungs with breathing to achieve the treatment purpose, thereby ensuring the curative effect. The atomizer is widely used in clinical practice due to its excellent comprehensive performance.
[0003] In the prior art, the traditional atomizer has the following disadvantages:
[0004] 1. The medicine is prone to sedimentation after standing, which reduces the utilization rate of the active ingredients of the medicine in the subsequent atomization process, and the device has a single function and lacks interesting design;
[0005] 2. The medicine needs to be manually supplemented after continuous use for a period of time, the operation process is relatively cumbersome, and there is a risk of external pollutants (such as dust and bacteria) entering the atomizer, which may affect the treatment effect.
[0006] In view of the above problems, the present application provides a pneumonia atomizer and a nursing device and method of a medical and health big data sharing platform. SUMMARY
[0007] The purpose of the present application is to solve the problems of sedimentation of medicine in the existing atomizer, single function and the cumbersome process of manually adding medicine to the atomizer, and to provide a pneumonia atomizer and a nursing device and method of a medical and health big data sharing platform.
[0008] In order to achieve the above purpose, the present application adopts the following technical solutions:
[0009] A pneumonia atomizer, comprising an atomizer body, a rotating head is pivotally connected to the top of the atomizer body, and an atomizing mask is arranged on one side of the rotating head;
[0010] An L-shaped air guide pipe is arranged through the rotating head, the bottom end of the L-shaped air guide pipe extends into the atomizer body, and the other end of the L-shaped air guide pipe is in communication with the atomizing mask;
[0011] An L-shaped liquid injection pipe is fixed to one side of the atomizer body, and is used for injecting medicine, and further comprising:
[0012] A stirring plate is slidably arranged in the atomizer body, and a plurality of second magnets are arranged on the outer wall of the stirring plate;
[0013] A lifting ring is slidably arranged on the outer wall of the atomizer body, and a first magnet is fixed to the inner wall of the lifting ring and magnetically attracted to the second magnet;
[0014] A pressing plate is pivoted to one side of the atomizer body, and a stirring structure is connected between the pressing plate and the lifting ring;
[0015] The pressing plate is pressed to drive the lifting ring and the stirring plate to be lifted synchronously through the stirring structure, so as to stir the medicine solution.
[0016] The outer wall of the rotating head is fixed with an L-shaped shielding plate for covering the inlet of the L-shaped liquid injection pipe.
[0017] The L-shaped air guide pipe is provided with a flow control valve.
[0018] As a further improvement of the above technical solution:
[0019] The stirring structure comprises:
[0020] A fixed ring is sleeved on the outer wall of the atomizer body, and two base plates are fixed on the two sides of the fixed ring.
[0021] A fixed shaft is arranged between the two base plates, and the pressing plate is pivoted to the fixed shaft and reset by a torsional spring.
[0022] A through plate is fixed on the top of the lifting ring and slides through the fixed ring.
[0023] A connecting rod is pivoted to the pressing plate and the through plate at two ends, so that the through plate and the lifting ring are driven to lift when the pressing plate rotates.
[0024] The stirring plate is provided with a plurality of through holes for enhancing the turbulent flow of the medicine solution during lifting.
[0025] A threaded fastening bolt is arranged on one side of the atomizer body, and the through plate is provided with a positioning hole. When the through plate moves upward, the fastening bolt is inserted into the positioning hole to fix the pressing plate, thereby forming a U-shaped buckle for carrying.
[0026] A nursing equipment of a medical and health big data sharing platform comprises the above-mentioned pneumonia atomizer, and a bottom plate provided with a placing groove on the top to position the atomizer body; a storage tank fixed to the bottom plate by a support for storing medicine solution; an installation box arranged on one side of the storage tank and provided with a liquid injection structure inside; and a liquid injection pipeline slidingly penetrating through the storage tank and being connected to the L-shaped liquid injection pipe.
[0027] When the rotating head rotates, the liquid injection structure is driven to insert the liquid injection pipeline into the L-shaped liquid injection pipe for automatic liquid injection.
[0028] As a further improvement of the above technical solution:
[0029] The liquid injection structure comprises: a rubber rotating disc rotatably arranged in the mounting box and frictionally matched with the rubber convex strip of the rotating head; a moving frame slidably arranged in the mounting box, and a liquid injection pipeline fixed to the bottom of the moving frame; a pin shaft eccentrically fixed to the bottom of the rubber rotating disc and slidably connected with the moving frame, so that the rubber rotating disc drives the moving frame to move horizontally when the rubber rotating disc rotates; a lifting plate slidably arranged in the moving frame, and both ends of the lifting plate matched with the displacement slot and the track slot of the moving frame through a pin rod, so that the lifting plate moves up to release the extrusion of the liquid injection pipeline when the moving frame moves to the end point; the mounting box is provided with a circular groove on the side close to the placing groove, and an ultraviolet sterilization lamp is arranged on the inner wall of the circular groove to sterilize the atomizing mask placed in the circular groove; a support plate is fixed to the top of the bottom plate, and a plurality of arc clamping plates are arranged on the side wall of the support plate to clamp the atomizer main body; and a control box is fixed to the top of the atomizer main body, and a single-chip microcomputer is arranged in the control box to receive the data of the flow control valve and upload the data to the medical health big data platform.
[0030] In the present application, the use method of the nursing equipment of the medical health big data sharing platform comprises the following steps:
[0031] S1, the patient holds the atomizer main body, presses the pressing plate, drives the lifting ring to lift through the connecting rod and the torsional spring, and the lifting ring drives the stirring plate to lift in the atomizer main body through the magnetic attraction force between the first magnet and the second magnet, stirs the liquid medicine mixture and precipitate, repeatedly presses to exercise the palm grip, and increases the interestingness;
[0032] S2, the atomizing mask is covered on the patient's mouth and nose, the atomizer main body atomizes the liquid medicine, and the liquid medicine enters the patient's oral cavity through the air guide pipe and the mask; the flow control valve monitors the liquid medicine dose, and the data is transmitted to the medical health big data platform to help doctors understand the disease;
[0033] S3, press the pressing plate, move the through plate up and position through the fastening bolt and the positioning hole, the atomizer main body can be clamped on the belt through the U-shaped buckle formed by the pressing plate and the through plate, which is convenient for carrying;
[0034] S4, rotate the atomizing mask to one side, place the atomizer main body in the placing groove, position through the cooperation of the positioning block and the positioning groove, and clamp and fix through the arc clamping plate to ensure stability;
[0035] S5, after placing and clamping the atomizer main body, the rubber rotating disc abuts against the rubber convex strip, the atomizing mask is put into the circular groove, and the ultraviolet sterilization lamp sterilizes; at the same time, the rotating head drives the L-shaped shielding plate to rotate, the shielding of the L-shaped liquid injection pipe is released, the rubber rotating disc drives the liquid injection pipeline to move into the L-shaped liquid injection pipe through friction, and the medicine injection is facilitated;
[0036] S6, when the liquid injection pipeline is moved to the position, the lifting plate and the extrusion plate are moved upward, the extrusion on the rubber hose is released, and the medicine solution enters the atomizer body smoothly; when the rubber rotating disc is reset, the liquid injection pipeline is separated from the L-shaped liquid injection pipeline and extrudes the rubber hose, the liquid injection pipeline is closed to prevent the medicine solution from flowing out.
[0037] Beneficial effects: in the application, the outer wall of the atomizer body is fixed with a fixed ring, one side of the fixed ring is rotatably connected with a pressing plate through a fixed shaft, a stirring plate is slidably arranged in the atomizer body, a lifting ring is slidably arranged on the outer wall of the atomizer body, two through plates are fixed on the top of the lifting ring, and one side of the pressing plate is rotatably connected with the adjacent through plate through a connecting rod; the pressing plate is pressed to one side of the atomizer body, the pressing plate drives the through plate and the lifting ring and the stirring plate to lift through the connecting rod, so that the medicine solution in the atomizer body can be stirred, the precipitate in the medicine solution is mixed with the medicine solution again, and repeatedly pressing the pressing plate can also exercise the grip of the palm, and the interestingness is increased;
[0038] In the application, a fastening bolt is threadedly connected to one side of the atomizer body, a positioning hole is arranged in the through plate, and the fastening bolt and the positioning hole are matched to position the through plate; the pressing plate is pressed to drive the through plate to move upward, the through plate is positioned through the cooperation of the fastening bolt and the positioning hole at this time, the stability of the pressing plate is ensured, then the atomizer body can be clamped on the patient's belt through the cooperation of the pressing plate and the adjacent through plate to form a U-shaped buckle, and the patient is convenient to carry;
[0039] In the application, the bottom of the rubber rotating disc is fixed with a pin shaft which is slidably matched with a moving frame, a lifting plate is slidably connected in the moving frame, two pin rods are fixed at two ends of the lifting plate, the inner walls of the moving cavities away from each other are each provided with a track groove which is slidably matched with the adjacent pin rod, the bottom of the lifting plate is fixed with an extrusion plate, and two connecting pipes are fixed at the bottom of the moving frame; the rubber rotating disc drives the moving frame and the liquid injection pipeline to move outward through the cooperation of the pin shaft and the moving frame, the lifting plate and the extrusion plate move upward under the cooperation of the pin rod and the accommodation groove, the extrusion of the extrusion plate on the rubber hose is released, the medicine solution in the storage tank can smoothly enter the atomizer body through the connecting pipe and the rubber hose, the medicine injection operation is simple, and the bacteria in the outside is avoided from entering the atomizer body.
[0040] In the application, pressing the pressing plate can not only exercise the palm grip of the patient, increase the interestingness, but also control the stirring plate to reciprocatingly move up and down to stir the medicine solution, the function is various, in addition, after the atomizer body is placed in the placing groove, the addition of the medicine solution can be automatically completed through the rotation of the rotating head, the operation is simple, and the safety of liquid injection is increased. BRIEF DESCRIPTION OF DRAWINGS
[0041] Figure 1A three-dimensional structural schematic view of the pneumonia atomizer provided in Embodiment 1 of the present application;
[0042] Figure 2 A sectional structural schematic view of the pneumonia atomizer provided in Embodiment 1 of the present application;
[0043] Figure 3 A three-dimensional exploded structural schematic view of the L-shaped shielding plate, the L-shaped liquid injection pipe and the one-way valve of the pneumonia atomizer provided in Embodiment 1 of the present application;
[0044] Figure 4 A three-dimensional exploded structural schematic view of the lifting ring, the stirring plate and the pressing plate of the pneumonia atomizer provided in Embodiment 1 of the present application;
[0045] Figure 5 A sectional structural schematic view of the pneumonia atomizer provided in Embodiment 2 of the present application;
[0046] Figure 6 A three-dimensional sectional structural schematic view of the through plate and the positioning hole of the pneumonia atomizer provided in Embodiment 2 of the present application;
[0047] Figure 7 A three-dimensional structural schematic view of the nursing equipment of the medical health big data sharing platform provided in Embodiment 1 of the present application;
[0048] Figure 8 A three-dimensional exploded structural schematic view of the support plate, the atomizer main body and the control box of the nursing equipment of the medical health big data sharing platform provided in Embodiment 1 of the present application;
[0049] Figure 9 A three-dimensional sectional structural schematic view of the mounting box and the rubber rotating disc of the nursing equipment of the medical health big data sharing platform provided in Embodiment 1 of the present application;
[0050] Figure 10 A three-dimensional sectional structural schematic view of the mounting box of the nursing equipment of the medical health big data sharing platform provided in Embodiment 1 of the present application;
[0051] Figure 11 A three-dimensional exploded structural schematic view of the rubber rotating disc, the lifting plate, the extrusion plate and the moving frame of the nursing equipment of the medical health big data sharing platform provided in Embodiment 1 of the present application.
[0052] In the figure: 1, atomizer main body; 2, rotating head; 3, L-shaped air guide pipe; 4, flow control valve; 5, atomization mask; 6, rubber convex strip; 7, L-shaped shielding plate; 8, L-shaped liquid injection pipe; 9, one-way valve; 10, fixing ring; 11, base plate; 12, fixed shaft; 13, torsional spring; 14, pressing plate; 15, connecting rod; 16, lifting ring; 17, through plate; 18, first magnet; 19, stirring plate; 20, through hole; 21, second magnet; 22, rubber hose; 23, connecting pipe; 24, fastening bolt; 25, positioning hole; 26, positioning block; 27, bottom plate; 28, placing groove; 29, positioning groove; 30, support plate; 31, arc-shaped clamping plate; 32, control box; 33, storage tank; 34, mounting box; 35, circular groove; 36, ultraviolet sterilization lamp; 37, rotating cavity; 38, rubber rotating disc; 39, moving cavity; 40, sliding hole; 41, liquid injection pipe; 42, moving frame; 43, pin shaft; 44, lifting plate; 45, pin rod; 46, clearance groove; 47, track groove; 48, extrusion plate. DETAILED DESCRIPTION
[0053] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all.
[0054] Embodiment 1: Refer to Figures 1-3 , an atomizer, relates to the technical field of medical devices, and mainly comprises an atomizer main body 1 made of medical-grade polypropylene (PP) or polycarbonate (PC), and a rotating head 2 is rotatably connected to the top of the atomizer main body 1, so that the rotating head 2 can rotate on the top of the atomizer main body 1. An atomization mask 5 is arranged on one side of the rotating head 2, which is used to deliver the atomized liquid to the respiratory tract of a patient.
[0055] Refer to Figure 2 , inside the rotating head 2, an L-shaped air guide pipe 3 is fixedly penetrated, one end of the L-shaped air guide pipe 3 extends into the atomizer main body 1 and is used to guide the liquid out of the atomizer main body 1, and the other end penetrates the rotating head 2 and is fixedly communicated with the atomization mask 5, so as to ensure that the liquid can smoothly enter the atomization mask 5.
[0056] Refer to Figure 1 , Figure 2 and Figure 4On one side of the atomizer body 1, an L-shaped liquid injection pipe 8 is also fixedly arranged to inject liquid medicine into the atomizer body 1. In order to ensure that the liquid medicine can be uniformly mixed in the atomizer body 1, a stirring plate 19 is slidably arranged in the atomizer body 1. Meanwhile, a POM or PA66 lifting ring 16 is slidably arranged on the outer wall of the atomizer body 1, and a plurality of first magnets 18 are fixedly arranged on the inner wall of the lifting ring 16, while a plurality of second magnets 21 are fixedly arranged on the outer wall of the stirring plate 19. The first magnets 18 and the second magnets 21 can generate magnetic attraction force, so that the lifting ring 16 and the stirring plate 19 can move synchronously.
[0057] The cross-sectional shape of the lifting ring 16 can be: 1. trapezoidal cross-section lifting ring: the contact surface between the lifting ring 16 and the atomizer body 1 is trapezoidal, which reduces the sliding friction resistance; 2. split lifting ring: the lifting ring 16 is connected by a buckle through two half-ring modules, which is convenient for disassembly and maintenance.
[0058] Referring to Figure 1 , Figure 2 and Figure 4 , in order to realize the up-down movement of the stirring plate 19, a pressing plate 14 is rotatably arranged on one side of the atomizer body 1, and is driven by a specific stirring structure. The stirring structure includes a fixed ring 10 fixedly arranged on the outer wall of the atomizer body 1, two base plates 11 fixedly arranged on one side of the fixed ring 10, and a fixed shaft 12 fixedly arranged between the two base plates 11. The pressing plate 14 is rotatably arranged on the outer wall of the fixed shaft 12 and is fixed between the adjacent base plates 11 by a torsion spring 13 arranged on the outer wall of the fixed shaft 12. The top of the lifting ring 16 is fixedly provided with two penetrating plates 17, and the top ends of the two penetrating plates 17 are slidably penetrated through the fixed ring 10. The side of the pressing plate 14 and the adjacent penetrating plate 17 are rotatably connected by a connecting rod 15.
[0059] Specifically, when the pressing plate 14 needs to be pressed to one side of the atomizer body 1, the pressing plate 14 will rotate and push the connecting rod 15 to rotate, and the connecting rod 15 will drive the penetrating plate 17 and the lifting ring 16 to move upwards. Since the lifting ring 16 and the stirring plate 19 are magnetically attracted to each other, the upward movement of the lifting ring 16 will drive the stirring plate 19 to move upwards synchronously, so as to stir the liquid medicine in the atomizer body 1 and mix the precipitate in the liquid medicine with the liquid medicine.
[0060] Referring to Figure 2 and Figure 3, in order to further improve the convenience and safety of use, the outer wall of the L-shaped air guide pipe 3 is provided with a flow control valve 4 for controlling the flow of liquid medicine. At the same time, the outer wall of the rotating head 2 is fixed with an L-shaped shielding plate 7, which is used to shield the L-shaped liquid injection pipe 8 to avoid the bacteria in the outside world entering the atomizer main body 1 through the L-shaped liquid injection pipe 8. A one-way valve 9 is also fixed in the L-shaped liquid injection pipe 8 to prevent backflow of liquid medicine. In addition, the outer wall of the rotating head 2 is also fixed with a plurality of rubber protrusions 6 above the L-shaped shielding plate 7, which is used to increase the friction between the rotating head 2 and the patient's skin, preventing the atomizer from falling.
[0061] Referring to Figure 1 and Figure 4 , a plurality of through holes 20 are arranged in the stirring plate 19, which are used to increase the stirring effect of the liquid medicine when the stirring plate 19 is lifted. The bottom of one side of the atomizer main body 1 is fixed with a positioning block 26, and the positioning block 26 is located below the connecting rod 15.
[0062] Through the above specific embodiments, the atomizer not only realizes the uniform mixing of liquid medicine and the control of flow, but also improves the convenience and safety of use, and provides better use experience for patients.
[0063] Referring to Figure 7 and Figure 8 , the nursing equipment relates to the technical field of medical devices, and comprises a bottom plate 27, and a placing groove 28 is designed on the top of the bottom plate 27, which is used to stably place the atomizer main body 1 and ensure its stability during use. The top of the bottom plate 27 is also fixed with a storage tank 33 through a support for storing liquid medicine required for atomization. One side of the storage tank 33 is fixed with a mounting box 34 for mounting the subsequent liquid injection structure.
[0064] Referring to Figure 3 , Figure 7 and Figure 9 , in order to realize automatic injection of liquid medicine, we design a liquid injection pipeline 41 which is sealed and slides through the storage tank 33. The liquid injection pipeline 41 is tightly matched with the L-shaped liquid injection pipe 8 on the atomizer main body, ensuring that the liquid medicine can be accurately injected into the atomizer.
[0065] Referring to Figure 3 , Figure 7 and Figures 9-11In the installation box 34, we set up a clever liquid injection structure. This structure includes a rubber rotating disc 38 rotatingly arranged in the rotating cavity 37, and the rubber rotating disc 38 is rotatingly arranged in the rotating cavity 37. The rubber rotating disc 38 cooperates with the rubber convex strip 6 on the atomizer body, when the rotating head 2 and the atomizing mask 5 of the atomizer rotate, the rubber convex strip 6 will generate friction with the rubber rotating disc 38, so that the rubber rotating disc 38 rotates. The bottom of the rubber rotating disc 38 deviates from the one side of the center and is fixed with a pin shaft 43. The pin shaft 43 is slidingly matched with the moving frame 42 arranged in the moving cavity 39. When the rubber rotating disc 38 rotates, the pin shaft 43 will drive the moving frame 42 to slide in the moving cavity 39, and the liquid injection pipe 41 is fixed at the bottom of the moving frame 42, so that the liquid injection pipe 41 moves outward until its one end extends into the L-shaped liquid injection pipe 8. In addition, the sliding hole 40 is arranged in the installation box 34, and the liquid injection pipe 41 slides in the sliding hole 40. In order to ensure the smooth progress of the liquid injection process, we slidingly connect a lifting plate 44 in the moving frame 42. The top of the moving frame 42 is provided with a displacement slot 46 on both sides, and the displacement slot 46 is slidingly connected with a pin rod 45. The pin rod 45 is fixedly connected with the lifting plate 44 at the end close to each other. The inner wall of the moving cavity 39 away from each other is provided with a track groove 47, and the track groove 47 is slidingly matched with the adjacent pin rod 45. The liquid injection pipe 41 is composed of a rubber hose 22 and two connecting pipes 23, and the two ends of the rubber hose 22 are fixedly connected with the two connecting pipes 23, and the two connecting pipes 23 are fixed at the bottom of the moving frame 42. The pressing plate 48 cooperates with the rubber hose 22 for extruding the rubber hose 22.
[0066] Specifically, when the moving frame 42 drives the liquid injection pipe 41 to move to the terminal point, the pin rod 45 will move upward under the action of the track groove 47, thereby driving the lifting plate 44 and the extruding plate 48 fixed at the bottom of the lifting plate 44 to move upward. The extruding plate 48 is originally used to extrude the rubber hose 22 in the liquid injection pipe 41, when it moves upward, the extrusion of the rubber hose 22 is released. At this time, the liquid medicine in the storage tank 33 can smoothly enter the atomizer body 1 through the connecting pipe 23 and the rubber hose 22. The operation of the medicine injection process is simple and convenient, and since the whole liquid injection process is carried out in a sealed environment, the bacteria from the outside can be effectively prevented from entering the atomizer body, so as to ensure the safety and effectiveness of the atomization.
[0067] Referring to Figure 7 and Figure 8, immediately below the storage tank 33, a control box 32 is fixed, and the control box 32 is fixed on the top of the bottom plate 27. A single-chip microcomputer is installed inside this control box 32, which is responsible not only for controlling the basic operation of the atomizer main body 1, but also for transmitting data of the flow control valve 4 to the medical and health big data sharing platform on the Internet. In this way, medical staff can remotely monitor the use of patients and provide data support for personalized care.
[0068] With reference to Figure 9 , the installation box 34 is provided with a circular groove 35 near one side of the placement groove 28. An ultraviolet sterilization lamp 36 is fixedly installed on the inner wall of one side of the circular groove 35. When the atomization mask 5 is used up, it can be rotated into the circular groove 35, and at this time the ultraviolet sterilization lamp 36 will automatically start to carry out thorough sterilization treatment on the atomization mask 5, ensuring the health and safety of the next use.
[0069] With reference to Figure 1 and Figure 8 , in order to facilitate the placement and positioning of the atomizer main body 1, a positioning groove 29 is specially provided on the inner wall of one side of the placement groove 28. This positioning groove 29 cooperates with the positioning block 26 on the atomizer main body 1 to ensure the accurate position of the atomizer main body 1 in the placement groove 28, avoiding the inconvenience or safety hazards caused by positional deviation.
[0070] With reference to Figure 7 and Figure 8 In addition, in order to enhance the stability of the atomizer main body 1 during use, a support plate 30 is also fixed on the top of the bottom plate 27. One side of the support plate 30 is fixed with a plurality of arc-shaped clamping plates 31, which closely fit the shape of the atomizer main body 1 and provide a strong clamping effect. At the same time, the top of the support plate 30 is fixedly connected with the bottom of the installation box 34, providing a firm support for the installation box 34 and ensuring the structural stability and use reliability of the entire nursing equipment.
[0071] In summary, the nursing equipment of the medical and health big data sharing platform provided in this embodiment not only realizes the convenient placement and accurate positioning of the atomizer main body 1 and the automatic addition of liquid medicine, but also ensures the health and safety of the atomization mask 5 through the ultraviolet sterilization lamp 36. At the same time, the connection of the single-chip microcomputer in the control box 32 with the medical and health big data sharing platform makes remote monitoring and personalized care possible. These designs together constitute an efficient, safe and intelligent nursing equipment, which provides strong support for the treatment of patients.
[0072] Example 2: refer to Figure 5 and Figure 6On the basis of improving embodiment 1: one side of the atomizer body 1 is also threadedly connected with a fastening bolt 24, which is located above the pressing plate 14. A positioning hole 25 is arranged in the through plate 17 adjacent to the connecting rod 15. When the pressing plate 14 is pressed and the through plate 17 is driven to move upward, the through plate 17 can be positioned by the cooperation of the fastening bolt 24 and the positioning hole 25, thereby ensuring the stability of the pressing plate 14. At this time, the cooperation of the pressing plate 14 and the adjacent through plate 17 can form a U-shaped buckle to clamp the atomizer body 1 on the patient's belt, which is convenient for the patient to carry.
[0073] The use method of the nursing equipment of the medical and health big data sharing platform includes the following steps:
[0074] S1, when the patient needs to be atomized, hold the atomizer body 1 with the hand, and the pressing plate 14 is located at the position of the four fingers, then press the pressing plate 14 to one side of the atomizer body 1, the pressing plate 14 rotates and drives the connecting rod 15 to rotate, the torsional spring 13 starts to store energy, the connecting rod 15 drives the through plate 17 and the lifting ring 16 to move upward, the lifting ring 16 drives the stirring plate 19 to move synchronously through the magnetic attraction force between the first magnet 18 and the second magnet 21, thereby being able to stir the liquid medicine in the atomizer body 1, and the precipitate in the liquid medicine is mixed with the liquid medicine again, and the through hole 20 arranged in the stirring plate 19 can increase the stirring effect. Since the stirring plate 19 is located at the bottom inner wall of the atomizer body 1 in the normal state, and the precipitate in the liquid medicine is located at the top of the stirring plate 19, when the stirring plate 19 moves up and down, the mixing of the precipitate and the liquid medicine can be effectively and quickly completed, and repeatedly pressing the pressing plate 14 can also exercise the grip of the palm, and increase the interest;
[0075] S2, then cover the atomization mask 5 on the patient's mouth and nose, then the atomizer body 1 atomizes the liquid medicine in the inside, and the atomized liquid medicine enters the patient's oral cavity through the cooperation of the L-shaped air guide pipe 3 and the atomization mask 5, which is convenient for the patient to absorb the liquid medicine in the lungs. In addition, the flow control valve 4 can detect the dose of the atomized liquid medicine absorbed by the patient, and transmit the data to the switch in the control box 32, and transmit the data to the medical and health big data sharing platform on the Internet through the switch, which is used to understand the use of the patient in detail, and is helpful for the doctor to understand the patient's condition in detail;
[0076] S3, in addition, in order to conveniently carry the atomizer body 1, press the pressing plate 14 to drive the through plate 17 to move upward, at this time, the through plate 17 is positioned by the cooperation of the fastening bolt 24 and the positioning hole 25, which ensures the stability of the pressing plate 14, then the U-shaped buckle can be formed by the cooperation of the pressing plate 14 and the adjacent through plate 17 to clamp the atomizer body 1 on the patient's belt, which is convenient for the patient to carry;
[0077] S4, when it is needed to add the medicine liquid into the atomizer main body 1, the atomization mask 5 is turned to one side of the positioning block 26, and the atomizer main body 1 is placed in the placing groove 28, and the cooperation between the positioning block 26 and the positioning groove 29 is used for positioning the atomizer main body 1, so that the atomization mask 5 is located at the side of the atomizer main body 1 away from the mounting box 34, and the arc-shaped clamping plate 31 can clamp and fix the atomizer main body 1, thereby ensuring the stability of the atomizer main body 1 as a whole;
[0078] S5, after the atomizer main body 1 is placed and clamped, the rubber rotating disc 38 can abut against the rubber convex strip 6, then the rotating head 2 and the atomization mask 5 are rotated, the atomization mask 5 is placed in the circular groove 35, and the atomization mask 5 is sterilized by the ultraviolet sterilization lamp 36; in addition, the rotating head 2 drives the L-shaped shielding plate 7 to rotate, the shielding of one end of the L-shaped liquid injection pipe 8 is removed, and the friction between the rubber convex strip 6 and the rubber rotating disc 38 drives the rubber rotating disc 38 to rotate in the rotating process; the rubber rotating disc 38 drives the moving frame 42 and the liquid injection pipeline 41 to move outward by the cooperation between the pin shaft 43 and the moving frame 42, until one end of the liquid injection pipeline 41 extends into the L-shaped liquid injection pipe 8, so as to facilitate the injection of the medicine liquid in the storage tank 33 into the atomizer main body 1 through the L-shaped liquid injection pipe 8 in the later stage;
[0079] S6, when the moving frame 42 drives the liquid injection pipeline 41 to move to the terminal point, the lifting plate 44 and the extrusion plate 48 move upward under the cooperation between the pin rod 45 and the accommodation groove 46, the extrusion of the rubber hose 22 by the extrusion plate 48 is removed, the medicine liquid in the storage tank 33 can smoothly enter the atomizer main body 1 through the connecting pipe 23 and the rubber hose 22, the medicine injection operation is simple, and the bacteria in the outside is avoided from entering the atomizer main body 1; conversely, the rubber rotating disc 38 is reset and rotated, the liquid injection pipeline 41 is separated from the L-shaped liquid injection pipe 8 and stored in the sliding hole 40, and the rubber hose 22 is extruded by the extrusion plate 48, so as to close the liquid injection pipeline 41 and avoid the medicine liquid from flowing out.
[0080] However, as known by those skilled in the art, the working principle and wiring method of the ultraviolet sterilization lamp 36 and the flow control valve 4 are common, which belong to conventional means or common knowledge, and will not be described here again, and those skilled in the art can make any selection according to their needs or convenience.
[0081] The drawings in the specification of the present application are only schematic in nature and their dimensions and shapes are not actual limits, but only a kind of schematic representation. In the actual implementation process, the components can be reasonably configured and adjusted according to specific needs and actual situations.
[0082] The above merely describes preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A nursing device for a medical health big data sharing platform, comprising an atomizer body (1), a rotating head (2) pivotally connected to the top of the atomizer body (1), and an atomizing mask (5) arranged on one side of the rotating head (2); an L-shaped air guide pipe (3) penetrating through the rotating head (2), the bottom end of the L-shaped air guide pipe (3) extending into the atomizer body (1), and the other end of the L-shaped air guide pipe (3) communicating with the atomizing mask (5); The L-shaped liquid injection pipe (8) fixed to one side of the atomizer main body (1) is used for injecting liquid medicine, characterized in that, further comprising: a stirring plate (19) slidingly arranged in the atomizer body (1), and a plurality of second magnets (21) arranged on the outer wall of the stirring plate (19); a lifting ring (16) slidingly sleeved on the outer wall of the atomizer body (1), and a first magnet (18) fixedly arranged on the inner wall of the lifting ring (16) and magnetically attracted to the second magnet (21); a pressing plate (14) pivotally connected to one side of the atomizer body (1), and a stirring structure connecting the pressing plate (14) and the lifting ring (16); wherein pressing the pressing plate (14) drives the lifting ring (16) and the stirring plate (19) to synchronously lift through the stirring structure to stir the liquid medicine; an L-shaped shielding plate (7) fixedly arranged on the outer wall of the rotating head (2) and used for covering the inlet of an L-shaped liquid injection pipe (8); the L-shaped air guide pipe (3) is provided with a flow control valve (4); further comprising a bottom plate (27) provided with a placing groove (28) at the top to position the atomizer body (1); a storage tank (33) fixed to the bottom plate (27) by a support and used for storing the liquid medicine; a mounting box (34) arranged on one side of the storage tank (33) and provided with a liquid injection structure inside; a liquid injection pipeline (41) slidingly penetrating through the storage tank (33) and being in butt joint with the L-shaped liquid injection pipe (8); wherein the liquid injection structure is driven to insert the liquid injection pipeline (41) into the L-shaped liquid injection pipe (8) to automatically inject the liquid when the rotating head (2) rotates; the liquid injection structure comprises: a rubber rotating disc (38) rotatingly arranged in the mounting box (34) and being in frictional cooperation with a rubber protruding strip (6) of the rotating head (2); a moving frame (42) slidingly arranged in the mounting box (34), and the liquid injection pipeline (41) being fixed to the bottom of the moving frame (42); a pin shaft (43) eccentrically fixed to the bottom of the rubber rotating disc (38) and being in sliding connection with the moving frame (42), so that the rubber rotating disc (38) is driven to move the moving frame (42) transversely when the rubber rotating disc (38) rotates; the moving frame (42) is slidingly provided with a lifting plate (44), and the two ends of the lifting plate (44) are in cooperation with a clearance groove (46) and a track groove (47) of the moving frame (42) through a pin rod (45), so that the lifting plate (44) is lifted to release the extrusion on the liquid injection pipeline (41) when the moving frame (42) moves to the end point.
2. The healthcare big data sharing platform of claim 1, wherein, the stirring structure comprises: a fixed ring (10) sleeved on the outer wall of the atomizer body (1), and two base plates (11) fixedly arranged on the two sides of the fixed ring (10); a fixed shaft (12) arranged between the two base plates (11), the pressing plate (14) being pivotally connected to the fixed shaft (12) and being reset by a torsional spring (13); a penetrating plate (17) fixedly arranged on the top of the lifting ring (16) and slidingly penetrating through the fixed ring (10); a connecting rod (15) having two ends respectively pivotally connected to the pressing plate (14) and the penetrating plate (17), so that the penetrating plate (17) and the lifting ring (16) are driven to lift when the pressing plate (14) rotates. 3.The care device of the medical health big data sharing platform of claim 1 or 2, wherein, The stirring plate (19) is provided with a plurality of through holes (20) for enhancing turbulent flow of the liquid medicine during lifting.
4. The healthcare big data sharing platform of claim 1, wherein, The nebulizer body (1) is provided with a threaded fastening bolt (24) on one side, and the through plate (17) is provided with a positioning hole (25); when the through plate (17) is moved upward, the fastening bolt (24) is inserted into the positioning hole (25) to fix the pressing plate (14), thereby forming a U-shaped buckle for carrying.
5. The healthcare big data sharing platform of claim 1, wherein, The mounting box (34) is provided with a circular groove (35) on one side close to the placing groove (28), and the inner wall of the circular groove (35) is provided with an ultraviolet sterilization lamp (36) for sterilizing the nebulizer mask (5) placed in the circular groove (35).
6. The healthcare big data sharing platform of claim 5, wherein, The bottom plate (27) is fixed with a support plate (30) on the top, and the sidewall of the support plate (30) is provided with a plurality of arc-shaped clamping plates (31) for clamping the nebulizer body (1).
7. The healthcare big data sharing platform of claim 6, wherein the method of using the care device comprises: The method comprises the following steps: S1, the patient holds the nebulizer body (1), presses the pressing plate (14), drives the lifting ring (16) to lift through the connecting rod (15) and the torsional spring (13), and the lifting ring (16) drives the stirring plate (19) to lift in the nebulizer body (1) through the magnetic attraction force between the first magnet (18) and the second magnet (21), stirs the liquid medicine mixture and precipitates, repeatedly presses to exercise the palm grip, and increases the interest; S2, the nebulizer mask (5) is covered on the patient's mouth and nose, the nebulizer body (1) atomizes the liquid medicine, and the liquid medicine enters the patient's oral cavity through the air guide pipe (3) and the mask; the flow control valve (4) monitors the liquid medicine dose, and the data is transmitted to the medical health big data platform to help doctors understand the disease; S3, press the pressing plate (14), move the through plate (17) upward and position it through the fastening bolt (24) and the positioning hole (25), the nebulizer body (1) can be clamped on the belt through the U-shaped buckle formed by the pressing plate (14) and the through plate (17), which is convenient to carry; S4, rotate the nebulizer mask (5) to one side, place the nebulizer body (1) in the placing groove (28), position it through the cooperation of the positioning block (26) and the positioning groove (29), clamp and fix it through the arc-shaped clamping plates (31), and ensure the stability; S5, after placing and clamping the nebulizer body (1), the rubber rotating disc (38) abuts against the rubber convex strip (6), the nebulizer mask (5) is put into the circular groove (35), and the ultraviolet sterilization lamp (36) sterilizes; at the same time, rotating the head (2) drives the L-shaped shielding plate (7) to rotate, removes the shielding of the L-shaped liquid injection pipe (8), the rubber rotating disc (38) drives the liquid injection pipe (41) to move into the L-shaped liquid injection pipe (8) through friction, and facilitates liquid injection; S6, when the liquid injection pipe (41) is moved into position, the lifting plate (44) and the pressing plate (48) move upward, the rubber hose (22) is released from the pressing, the liquid medicine smoothly enters the nebulizer body (1); when the rubber rotating disc (38) is reset, the liquid injection pipe (41) is separated from the L-shaped liquid injection pipe (8) and presses the rubber hose (22), the liquid injection pipe (41) is closed, and the liquid medicine is prevented from flowing out.
Citation Information
Patent Citations
Atomization dosing device for nursing in otolaryngology department
CN209221218U
Aerosol inhalation liquid storage bottle
CN219398550U