Medical intelligent water drinking device and management method

By using servo motor to drive the extrusion ring and weighing sensor in the intelligent medical drinking water device, the stable fixation of the water cup and precise weight detection are achieved, solving the problem that existing devices are difficult to achieve precise control in special medical environments, and improving drinking water experience and medical service efficiency.

CN120021883APending Publication Date: 2025-05-23胡晓瑜
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510110489.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

In special medical environments such as dialysis rooms, it is difficult to achieve precise control and stable fixation, resulting in poor drinking water experience and poor device use effect.

Method used

A medical intelligent drinking water device is designed, using a servo motor to drive the extrusion ring to achieve stable fixation of the water cup through a pressure sensor, and the weight of the water cup is detected through a weighing sensor, combining a central controller and a data collector to achieve real-time monitoring and data storage.

Benefits of technology

It realizes convenient fixing and precise weight detection of the water cup, improves the convenience and accuracy of the drinking water device, reduces the work burden of medical staff, and improves the quality and efficiency of medical services.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120021883A_ABST
    Figure CN120021883A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of medical instruments, and particularly discloses a medical intelligent water drinking device and a management method.The medical intelligent water drinking device comprises a sleeving box, mounting plates are fixedly connected to the two sides of the surface of the sleeving box, limiting rings are fixedly connected to the tops of the inner sides of the mounting plates, and mounting grooves are formed in the inner side walls of the mounting plates; a fixing frame is fixedly connected to the surface of the mounting groove, and a servo motor is fixedly connected to the inner wall of the fixing frame; through the arrangement of the mounting plate, the driving gear, the transmission gear, a connecting rod, an extrusion ring and a pressure sensor, during use, a medical worker can insert a water cup into the sleeving box through a limiting ring, the surface of the water cup is extruded through the extrusion ring, an elastic anti-skid material is arranged on the surface of the extrusion ring, and when the pressure sensor is extruded to a certain pressure, the pressure sensor can be driven to rotate. In other words, the water cup is fixed through the four extrusion rings on the two sides, so that the water cup and the device are fixed conveniently, and the effect that the water cup and the device are fixedly connected conveniently and rapidly is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of medical devices, and in particular relates to a medical intelligent drinking water device and a management method thereof. Background Art

[0002] In the field of medical device technology, with the continuous advancement of medical technology and the increasing demand for patient care, the design and application of medical drinking water devices have gradually received widespread attention. Most traditional medical drinking water devices are single-function and mainly meet the basic drinking water needs of patients, but there are obvious deficiencies in intelligence, automation and personalized patient care. In recent years, with the rapid development of the Internet of Things, sensor technology and intelligent control technology, medical drinking water devices are gradually transforming towards intelligence and precision. Intelligent drinking water devices can not only automatically monitor the patient's drinking water situation, but also make personalized adjustments according to the patient's actual needs, thereby effectively improving the quality and efficiency of medical services.

[0003] However, although medical drinking water devices in the prior art have made certain progress in intelligence, in special medical environments such as dialysis rooms, patients often need to control their drinking, which puts higher requirements on the accuracy and intelligence level of drinking water devices. Although some existing intelligent drinking water devices can monitor the patient's drinking situation, they still have shortcomings in fixing water cups, accurate weighing and remote monitoring. For example, some devices are cumbersome to operate when fixing water cups, which not only increases the workload of medical staff, but also easily causes the water cup to be unstable due to improper operation, which in turn affects the patient's drinking experience and leads to poor use of the device. Therefore, staff need to improve it. Summary of the invention

[0004] The purpose of the present invention is to provide a medical intelligent drinking water device and a management method to solve the problems raised in the above background technology.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A medical intelligent drinking water device, comprising:

[0007] Socket box;

[0008] Both sides of the surface of the socket box are fixedly connected with mounting plates, and the inner top of the mounting plate is fixedly connected with a limiting ring;

[0009] The inner wall of the mounting plate is provided with a mounting groove, a fixing frame is fixedly connected to the surface of the mounting groove, a servo motor is fixedly connected to the inner wall of the fixing frame, a driving rod is installed at the output end of the servo motor, one end of the driving rod is fixedly connected to a driving gear, both sides of the surface of the driving gear are meshed with transmission gears, a movable rod is fixedly connected to one side of the transmission gear, one end of the movable rod is fixedly connected to a connecting block, a connecting rod is fixedly connected to the surface of the connecting block, one end of the connecting rod is fixedly connected to an extrusion ring, and a pressure sensor is fixedly connected to the inner wall of the extrusion ring.

[0010] Preferably, the inner top wall of the socket box is connected to a connecting spring, a telescopic column is inserted into the inner wall of the connecting spring, a weighing sensor is fixedly connected to the inner bottom wall of the telescopic column, a lap plate is fixedly connected to the top of the telescopic column, and the bottom of the lap plate is lapped on the top of the connecting spring, and a placement plate is fixedly connected to the top of the lap plate.

[0011] Preferably, a control frame is fixedly connected to the surface of the socket box, alarms are fixedly connected to both sides of the control frame, and a control panel is fixedly connected to the surface of the control frame.

[0012] Preferably, the bottom of the socket box is fixedly connected to a fixed bottom plate, and the inner wall of the fixed bottom plate is fixedly connected to a battery.

[0013] Preferably, a charging interface is fixedly connected to the back of the socket box, and the charging interface and the battery are electrically connected to each other.

[0014] Preferably, a central controller is fixedly connected to the inner wall of the control frame, one side of the central controller is electrically connected to a transmitter, one side of the transmitter is electrically connected to a data collector, and the central controller, the transmitter and the data collector are all electrically connected to the battery.

[0015] Preferably, support rods are fixedly connected to both sides of the top of the socket box, and the top ends of the support rods are fixedly connected to the bottom of the limiting ring, and a handle is fixedly connected to the surface of the limiting ring, and the bottom of the handle is fixedly connected to the surface of the socket box.

[0016] A management method for a medical intelligent drinking water device comprises the following steps:

[0017] S1. The water cup is conveniently inserted into the device through the mounting plates and limit rings on both sides of the socket box. The servo motor in the socket box is started, driving the driving rod to rotate, thereby driving the driving gear to rotate. The two sides of the driving gear are meshed with the transmission gear, so that the transmission gear rotates accordingly, and through the linkage of the movable rod, the connecting block and the connecting rod, the extrusion ring is finally driven to move toward the water cup. The pressure sensor on the inner wall of the extrusion ring monitors the extrusion pressure in real time. When the preset value is reached, it means that the water cup has been firmly fixed, and the servo motor stops working at this time;

[0018] S2. When the water cup is placed on the placement board, the weight of the water cup and the liquid inside it can be accurately detected by connecting the spring and the telescopic column, and the weighing sensor at the bottom, and the data is transmitted to the central controller. The central controller determines whether the patient drinks too much water according to the preset logic algorithm, and decides whether to trigger the alarm to issue a reminder accordingly;

[0019] S3. Medical staff use the control panel to set up and operate the device, including but not limited to water drinking reminder, adjusting the alarm volume and viewing historical water drinking records. At the same time, the central controller in the control box continuously processes data from the weighing sensor and pressure sensor, and realizes real-time data transmission and storage through the transmitter and data collector, which is convenient for subsequent analysis and patient health management;

[0020] S4. The fixed bottom plate provides a stable bottom support for the entire device. The battery is charged through the charging interface to ensure the long-term operation of the device. When the battery power is low, the central controller can issue a low-battery warning to remind medical staff to charge in time;

[0021] S5. Connect the device to the smart devices of medical staff (such as mobile phones and tablet computers) through wireless network connection to realize remote monitoring and control functions. Medical staff can check the patient's drinking water situation at any time and make adjustments and optimizations as needed, thereby effectively improving the quality and efficiency of medical services.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] (1) Through the arrangement of the mounting plate, the driving gear, the transmission gear, the connecting rod, the squeezing ring and the pressure sensor, when in use, the medical staff can insert the water cup into the socket box through the limiting ring, and squeeze it to the surface of the water cup through the squeezing ring. The surface of the squeezing ring is provided with elastic anti-slip material. When the pressure sensor is squeezed to a certain pressure, it means that the water cup is fixed by the four squeezing rings on both sides, thereby facilitating the fixing of the water cup and the device, thereby achieving the effect of conveniently fixing and connecting the water cup and the device, and facilitating the operation of the staff.

[0024] (2) Through the arrangement of the socket box, the connecting spring, the telescopic column, the weighing sensor, the overlapping plate and the placing plate, when in use, the placing plate can be conveniently overlapped with the water cup. When the water cup is placed on the placing plate, the weight of the water cup is detected by connecting the spring and the weighing sensor at the bottom of the telescopic column, and the water cup is fixed after the weight is detected, thereby achieving the effect of conveniently detecting the weight of the water cup.

[0025] (3) Through the setting of the control box, alarm, control panel, battery, charging interface, central controller, transmitter, data collector, support rod and handle, when in use, the alarm reminds the patient to drink water in time and will sound an alarm to alert medical staff. The control panel allows medical staff to set and operate the device. The battery provides a long-lasting and reliable power supply for the device, and the charging interface facilitates charging of the battery to ensure the continuous operation of the device. The central controller is responsible for processing the data from each sensor and making judgments and decisions according to the preset logic. The transmitter and data collector are electrically connected to the central controller respectively and are responsible for data transmission and collection, ensuring the circulation and processing of information within the device. It is also connected to the medical staff's smart devices through a wireless network connection, which is convenient for medical staff to control, thereby effectively improving the quality and efficiency of medical services. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 A perspective view of the present invention;

[0027] Figure 2 A three-dimensional diagram of the mounting plate of the present invention;

[0028] Figure 3 is a three-dimensional diagram of the servo motor of the present invention;

[0029] Figure 4 is a three-dimensional diagram of the charging interface of the present invention;

[0030] Figure 5 A three-dimensional diagram of a weighing sensor of the present invention;

[0031] Figure 6 A three-dimensional diagram of the central controller of the present invention;

[0032] In the figure: 1. socket box; 2. mounting plate; 3. limit ring; 4. mounting groove; 5. fixed frame; 6. servo motor; 7. drive rod; 8. drive gear; 9. transmission gear; 10. movable rod; 11. connecting block; 12. connecting rod; 13. extrusion ring; 14. pressure sensor; 15. connecting spring; 16. telescopic column; 17. weighing sensor; 18. lap plate; 19. placement plate; 20. control box; 21. alarm; 22. control panel; 23. fixed bottom plate; 24. battery; 25. charging interface; 26. central controller; 27. transmitter; 28. data collector; 29. ​​support rod; 30. handle. DETAILED DESCRIPTION

[0033] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0034] Embodiment 1:

[0035] See also Figures 1 to 6 As shown, a medical intelligent drinking water device comprises:

[0036] Socket box 1;

[0037] The two sides of the surface of the socket box 1 are fixedly connected with mounting plates 2, and the inner top of the mounting plate 2 is fixedly connected with a limiting ring 3;

[0038] An installation groove 4 is provided on the inner wall of the installation plate 2, and a fixing frame 5 is fixedly connected to the surface of the installation groove 4, and a servo motor 6 is fixedly connected to the inner wall of the fixing frame 5, and a driving rod 7 is installed at the output end of the servo motor 6, and one end of the driving rod 7 is fixedly connected to a driving gear 8, and both sides of the surface of the driving gear 8 are meshedly connected with transmission gears 9, and one side of the transmission gear 9 is fixedly connected to a movable rod 10, and one end of the movable rod 10 is fixedly connected to a connecting block 11, and a connecting rod 12 is fixedly connected to the surface of the connecting block 11, and one end of the connecting rod 12 is fixedly connected to an extrusion ring 13, and the inner wall of the extrusion ring 13 is fixedly connected to a pressure sensor 14.

[0039] When in use, limit rings 3 are arranged on both sides of the surface of the socket box 1 through the mounting plate 2, and medical staff can insert the water cup into the socket box 1 through the limit rings 3. A fixing frame 5 is arranged on the inner wall of the mounting plate 2 through the mounting groove 4, and a servo motor 6 is arranged on the inner wall of the fixing frame 5. The staff connects the servo motor 6 to the power supply, and the output end of the servo motor 6 drives the driving rod 7 to rotate, and the driving rod 7 drives the driving gear 8 at one end to rotate, and the driving gear 8 drives the transmission gear 9 meshing and connected on both sides of the surface to rotate, and the transmission gear 9 drives the movable rod 10 on one side to rotate, and the movable rod 10 drives the connecting block 11 at one end to rotate, and the connecting block 11 drives the connecting rod 12 on the surface to rotate, and the connecting rod 12 drives the extrusion ring 13 at the top to rotate, and the surface of the water cup is squeezed by the extrusion ring 13, and a pressure sensor 14 is arranged on the inner wall of the extrusion ring 13, and the surface of the extrusion ring 13 is arranged with elastic anti-slip material. When the pressure sensor 14 is squeezed to a certain pressure, it means that the water cup is fixed by the four extrusion rings 13 on both sides, thereby facilitating the fixing of the water cup and the device.

[0040] Embodiment 2:

[0041] See also Figures 1 to 6 As shown, the inner top wall of the socket box 1 is connected to a connecting spring 15, the inner wall of the connecting spring 15 is inserted with a telescopic column 16, the inner bottom wall of the telescopic column 16 is fixedly connected to a weighing sensor 17, the top of the telescopic column 16 is fixedly connected to a lap plate 18, and the bottom of the lap plate 18 is lapped on the top of the connecting spring 15, and the top of the lap plate 18 is fixedly connected to a placement plate 19.

[0042] When in use, a connecting spring 15 is provided through the inner top wall of the socket box 1, and a telescopic column 16 is inserted into the inner wall of the connecting spring 15. A placing plate 19 is provided through the connecting spring 15 and the top of the telescopic column 16 through a lap plate 18. The placing plate 19 can be convenient for lap-joining a water cup. When the water cup is placed on the placing plate 19, the weight of the water cup is detected by a weighing sensor 17 at the bottom end of the connecting spring 15 and the telescopic column 16, and the water cup is fixed after the weight is detected. Each time after it is detected that the patient drinks water, the water cup can be unfastened and fixed, which can facilitate the detection of the weight of the water cup, thereby understanding the amount of water the patient drinks.

[0043] Embodiment three:

[0044] See also Figures 1 to 6As shown, a control box 20 is fixedly connected to the surface of the socket box 1, an alarm 21 is fixedly connected to both sides of the control box 20, a control panel 22 is fixedly connected to the surface of the control box 20, a fixed base plate 23 is fixedly connected to the bottom of the socket box 1, a battery 24 is fixedly connected to the inner wall of the fixed base plate 23, a charging interface 25 is fixedly connected to the back of the socket box 1, and the charging interface 25 and the battery 24 are electrically connected to each other, a central controller 26 is fixedly connected to the inner wall of the control box 20, a transmitter 27 is electrically connected to one side of the central controller 26, a data collector 28 is electrically connected to one side of the transmitter 27, and the central controller 26, the transmitter 27 and the data collector 28 are all electrically connected to the battery 24, support rods 29 are fixedly connected to both sides of the top of the socket box 1, and the top of the support rod 29 is fixedly connected to the bottom of the limit ring 3, a handle 30 is fixedly connected to the surface of the limit ring 3, and the bottom of the handle 30 is fixedly connected to the surface of the socket box 1.

[0045] When in use, the socket box 1 is used as a core component, and the control box 20 on its surface integrates an alarm 21 and a control panel 22, providing the user with an intuitive operation interface and instant status feedback. The alarm 21 reminds the patient to control drinking water and will sound an alarm to alert medical staff. The control panel 22 allows medical staff to set and operate the device. The fixed bottom plate 23 is firmly connected to the bottom of the socket box 1 to provide bottom support for the entire device. The battery 24 is built into the fixed bottom plate 23 to provide a long-lasting and reliable power supply for the device, and the charging interface 25 facilitates charging of the battery 24 to ensure the continuous operation of the device. The central controller 26 is responsible for It is responsible for processing the data from each sensor and making judgments and decisions according to the preset logic. The transmitter 27 and the data collector 28 are electrically connected to the central controller 26 respectively, responsible for the transmission and collection of data, ensuring the circulation and processing of information inside the device, and connected to the smart devices of medical personnel through a wireless network connection, which is convenient for medical personnel to control. The top two sides of the socket box 1 are firmly connected to the limit ring 3 through the support rod 29, which not only enhances the stability of the structure, but also facilitates the user to take it through the handle 30, so that the entire medical intelligent drinking water device has a high level of automation and intelligence, and is convenient for medical personnel to operate and maintain.

[0046] Embodiment 4:

[0047] See also Figures 1 to 6 As shown, a management method of a medical intelligent drinking water device comprises the following steps:

[0048] S1. The water cup is conveniently inserted into the device through the mounting plates 2 and the limit rings 3 on both sides of the socket box 1. The servo motor 6 in the socket box 1 is started, driving the driving rod 7 to rotate, thereby driving the driving gear 8 to rotate. The two sides of the driving gear 8 are meshed with the transmission gear 9, so that the transmission gear 9 rotates accordingly, and through the linkage of the movable rod 10, the connecting block 11 and the connecting rod 12, the extrusion ring 13 is finally driven to move toward the water cup. The pressure sensor 14 on the inner wall of the extrusion ring 13 monitors the extrusion pressure in real time. When the preset value is reached, it means that the water cup has been firmly fixed, and the servo motor 6 stops working at this time;

[0049] S2. When the water cup is placed on the placement plate 19, the weight of the water cup and the liquid therein can be accurately detected through the cooperation of the connecting spring 15 and the telescopic column 16, and the weighing sensor 17 at the bottom, and the data is transmitted to the central controller 26. The central controller 26 determines whether the patient drinks too much water according to the preset logic algorithm, and decides whether to trigger the alarm 21 to issue a reminder accordingly;

[0050] S3. Medical staff perform various settings and operations on the device through the control panel 22, including but not limited to water limit reminder, adjusting the alarm volume and viewing historical water drinking records. At the same time, the central controller 26 in the control box 20 continuously processes the data from the weighing sensor 17 and the pressure sensor 14, and realizes real-time transmission and storage of the data through the transmitter 27 and the data collector 28, which is convenient for subsequent analysis and patient health management;

[0051] S4, the fixed bottom plate 23 provides a stable bottom support for the entire device, and the battery 24 is charged through the charging interface 25 to ensure the long-term operation of the device. When the battery 24 is low on power, the central controller 26 can issue a low-power warning to remind medical staff to charge in time;

[0052] S5. Connect the device to the smart devices of medical staff (such as mobile phones and tablet computers) through wireless network connection to realize remote monitoring and control functions. Medical staff can check the patient's drinking water situation at any time and make adjustments and optimizations as needed, thereby effectively improving the quality and efficiency of medical services.

[0053] Embodiment five:

[0054] See also Figures 1 to 6 As shown, this device and management method are suitable for patients who need to strictly control their water intake, such as inpatients with acute and chronic kidney disease and patients in other departments that need water restriction. The device is designed to be simple and easy to operate, and is intended to assist patients and medical staff in accurately controlling their water intake and ensuring that patients' water management is more scientific and effective.

[0055] The device uses the mounting plates and limit rings on both sides of the socket box to allow the water cup to be easily inserted into the device. The servo motor drives the extrusion ring to move toward the water cup, and the pressure sensor monitors the extrusion pressure in real time. When the preset value is reached, it means that the water cup has been firmly fixed. The operation is simple and quick.

[0056] Medical staff or patients can set a water intake limit through the control panel. Once the water intake exceeds the set value, the device will automatically trigger a sound alarm to ensure that the patient is aware of and adjusts the water intake in time.

[0057] Regular hemodialysis patients: The appropriate amount of water per day is generally equal to the urine volume of the previous day plus 500ml. If it exceeds this amount, the device will monitor the patient's water drinking in real time, promptly remind the patient to reduce the amount of water drinking, and send information to the patient's attending physician and family members to control the patient's water drinking in time.

[0058] The device has a built-in weighing sensor that can accurately detect the weight of the water cup and the liquid inside it, and transmit the data to the central controller. The central controller determines whether the patient drinks too much water based on a preset logic algorithm and records the drinking data in real time.

[0059] Through wireless network connection, the device can be connected to the smart devices of medical staff (such as mobile phones and tablets) to realize remote monitoring and control functions. Medical staff can check the patient's water drinking situation at any time, adjust and optimize as needed, and effectively improve the quality and efficiency of medical services.

[0060] The device can record and store the patient's water intake data for 2-3 days, which is convenient for medical staff to conduct subsequent analysis and patient health management.

[0061] The water control device is designed to be suitable for common cup types and can be easily fixed regardless of size and shape to meet the drinking needs of different patients.

[0062] The device is made of anti-fall and anti-wear materials to ensure long-term stable operation in both medical and home environments, reducing maintenance and replacement costs and making it more economical and practical.

[0063] Application scenario 1:

[0064] In the inpatient department of the Nephrology Department, patients with acute and chronic renal failure need to strictly control their daily water intake to maintain water balance in the body. In order to more effectively manage patients' water intake, each ward is equipped with an intelligent drinking device. When a patient with uremia wants to drink water, he only needs to pick up the cup on the device, and the system will automatically start measuring. If the patient's water intake approaches or reaches the limit set by the doctor, the device will issue a friendly voice prompt to inform the patient that he has approached or reached the upper limit of water intake.

[0065] Application scenario 2:

[0066] In the cardiovascular ward, each heart failure patient's bed is equipped with an intelligent drinking device. These devices can monitor in real time according to the personalized drinking limit set by the doctor for the patient. When the patient drinks water through the device, the system will accurately record the amount of water drunk. Once the patient's water intake reaches or exceeds the set limit, the device will immediately issue a gentle alarm to remind the patient to stop drinking water. At the same time, the system will automatically send information to the patient's attending physician and family members to inform them of the patient's water intake.

[0067] Application scenario 3:

[0068] Intelligent drinking water devices play an important role in the home drinking water management of regular dialysis patients and peritoneal dialysis patients. Through precise measurement, personalized reminders, data recording and analysis, remote management and monitoring, and improving the self-management ability of patients, they help ensure that the patient's water intake is controlled within a safe range, reduce malignant complications caused by excessive water, and thus improve the effect of dialysis treatment and the quality of life of patients.

[0069] In addition, some patients in departments such as hepatology, ophthalmology (especially for glaucoma patients) and gastroenterology (such as patients with gastric ulcers who are taking medication) may also need to limit their water intake due to their condition. When using intelligent drinking water devices, these departments can make personalized settings according to the specific circumstances of the patients to better manage the patients' water intake.

[0070] This device and its management method have the characteristics of simple and easy operation, intelligent recording and remote monitoring, wide applicability and durability. It is particularly suitable for patients who need to strictly control the amount of water they drink. Whether in a medical setting or a home environment, this device can provide patients with accurate and effective water management solutions to help patients better control their water intake and promote recovery. At the same time, this device also reduces the workload of medical staff and improves the quality and efficiency of medical services.

[0071] Working principle: when in use, medical staff can insert the water cup into the socket box 1 through the limit ring 3, and the staff will connect the servo motor 6 to the power supply, and the output end of the servo motor 6 drives the driving rod 7 to rotate, and the driving rod 7 drives the driving gear 8 at one end to rotate, and the driving gear 8 drives the transmission gear 9 meshing and connected on both sides of the surface to rotate, and the transmission gear 9 drives the movable rod 10 on one side to rotate, and the movable rod 10 drives the connecting block 11 at one end to rotate, and the connecting block 11 drives the connecting rod 12 on the surface to rotate, and the connecting rod 12 drives the extrusion ring 13 at the top to rotate, and squeezes the surface of the water cup through the extrusion ring 13. When the pressure sensor 14 is squeezed to a certain pressure, it means that the water cup is fixed by the four extrusion rings 13 on both sides, thereby facilitating the fixing of the water cup and the device, and the placement plate 19 can facilitate the overlap of the water cup. When the water cup is placed on the placement plate 19, the weight of the water cup is detected by connecting the spring 15 and the weighing sensor 17 at the bottom of the telescopic column 16, and the water cup is fixed after the weight is detected. The control frame 20 integrates an alarm 21 and a control panel 22, providing users with an intuitive operating interface and instant status feedback. The alarm 21 reminds patients to control drinking water and will sound an alarm to alert medical staff. The control panel 22 allows medical staff to set and operate the device. The fixed base plate 23 is firmly connected to the bottom of the socket box 1 to provide bottom support for the entire device. The battery 24 is built into the fixed base plate 23 to provide a long-lasting and reliable power supply for the device, and the charging interface 25 facilitates charging of the battery 24 to ensure the continuous operation of the device. The central controller 26 is responsible for processing data from various sensors and making judgments and decisions according to preset logic. The transmitter 27 and the data collector 28 are electrically connected to the central controller 26 respectively, responsible for data transmission and collection, ensuring the circulation and processing of information inside the device, and connected to the medical staff's smart devices through a wireless network connection to facilitate medical staff control.

[0072] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A medical intelligent drinking water device, characterized in that: include: Socket box (1); Both sides of the surface of the socket box (1) are fixedly connected with mounting plates (2), and the inner top of the mounting plate (2) is fixedly connected with a limiting ring (3); The inner side wall of the mounting plate (2) is provided with a mounting groove (4), the surface of the mounting groove (4) is fixedly connected with a fixing frame (5), the inner wall of the fixing frame (5) is fixedly connected with a servo motor (6), the output end of the servo motor (6) is installed with a driving rod (7), one end of the driving rod (7) is fixedly connected with a driving gear (8), both sides of the surface of the driving gear (8) are meshingly connected with transmission gears (9), one side of the transmission gear (9) is fixedly connected with a movable rod (10), one end of the movable rod (10) is fixedly connected with a connecting block (11), the surface of the connecting block (11) is fixedly connected with a connecting rod (12), one end of the connecting rod (12) is fixedly connected with an extrusion ring (13), and the inner wall of the extrusion ring (13) is fixedly connected with a pressure sensor (14).

2. The medical intelligent drinking water device according to claim 1, characterized in that: The inner top wall of the socket box (1) is connected to a connecting spring (15), the inner wall of the connecting spring (15) is plugged with a telescopic column (16), the inner bottom wall of the telescopic column (16) is fixedly connected to a weighing sensor (17), the top of the telescopic column (16) is fixedly connected to a lap plate (18), the bottom of the lap plate (18) is lapped on the top of the connecting spring (15), and the top of the lap plate (18) is fixedly connected to a placement plate (19).

3. The medical intelligent drinking water device according to claim 1, characterized in that: A control frame (20) is fixedly connected to the surface of the socket box (1), alarms (21) are fixedly connected to both sides of the control frame (20), and a control panel (22) is fixedly connected to the surface of the control frame (20).

4. The medical intelligent drinking water device according to claim 1, characterized in that: The bottom of the socket box (1) is fixedly connected to a fixed bottom plate (23), and the inner wall of the fixed bottom plate (23) is fixedly connected to a storage battery (24).

5. The medical intelligent drinking water device according to claim 1, characterized in that: A charging interface (25) is fixedly connected to the back of the socket box (1), and the charging interface (25) and the storage battery (24) are electrically connected to each other.

6. The medical intelligent drinking water device according to claim 3, characterized in that: A central controller (26) is fixedly connected to the inner wall of the control frame (20), one side of the central controller (26) is electrically connected to a transmitter (27), one side of the transmitter (27) is electrically connected to a data collector (28), and the central controller (26), the transmitter (27) and the data collector (28) are all electrically connected to the storage battery (24).

7. The medical intelligent drinking water device according to claim 1, characterized in that: Support rods (29) are fixedly connected to both sides of the top of the socket box (1), and the top of the support rod (29) is fixedly connected to the bottom of the limiting ring (3). A handle (30) is fixedly connected to the surface of the limiting ring (3), and the bottom of the handle (30) is fixedly connected to the surface of the socket box (1).

8. A management method for a medical intelligent drinking water device, applicable to a medical intelligent drinking water device according to claims 1 to 7, characterized in that: The following steps are involved: S1. The water cup is conveniently inserted into the device through the mounting plates (2) and the limiting rings (3) on both sides of the socket box (1). The servo motor (6) in the socket box (1) is started, driving the driving rod (7) to rotate, thereby driving the driving gear (8) to rotate. The two sides of the driving gear (8) are meshed with the transmission gear (9), so that the transmission gear (9) rotates accordingly, and through the linkage effect of the movable rod (10), the connecting block (11) and the connecting rod (12), the extrusion ring (13) is finally driven to move towards the water cup. The pressure sensor (14) on the inner wall of the extrusion ring (13) monitors the extrusion pressure in real time. When the preset value is reached, it means that the water cup has been firmly fixed. At this time, the servo motor (6) stops working; S2. When the water cup is placed on the placement plate (19), the weight of the water cup and the liquid therein can be accurately detected by the cooperation of the connecting spring (15) and the telescopic column (16) and the weighing sensor (17) at the bottom, and the data is transmitted to the central controller (26). The central controller (26) determines whether the patient drinks too much water according to a preset logic algorithm, and decides whether to trigger the alarm (21) to issue a reminder accordingly; S3. The medical staff performs various settings and operations on the device through the control panel (22), including but not limited to water drinking reminder, adjusting the alarm volume and viewing the historical water drinking record. At the same time, the central controller (26) in the control box (20) continuously processes the data from the weighing sensor (17) and the pressure sensor (14), and realizes real-time transmission and storage of the data through the transmitter (27) and the data collector (28), which is convenient for subsequent analysis and patient health management; S4, the fixed bottom plate (23) provides a stable bottom support for the entire device, and the storage battery (24) is charged through the charging interface (25) to ensure the long-term operation of the device. When the storage battery (24) is low on power, the central controller (26) can issue a low-power warning to remind medical staff to charge in time; S5. Connect the device to the smart devices of medical staff (such as mobile phones and tablet computers) through wireless network connection to realize remote monitoring and control functions. Medical staff can check the patient's drinking water situation at any time and make adjustments and optimizations as needed, thereby effectively improving the quality and efficiency of medical services.