Transfer device and anesthesiology department patient transfer equipment of medical health big data sharing platform
By designing a transfer device with a driving structure, a cleaning structure, and a disinfection structure, the problems of shaking, unstable infusion, and cross-infection during patient transfer are solved, thereby improving the safety and efficiency of patient transfer.
Patent Information
- Application Number
- CN202511145094.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-15
- Publication Date
- 2025-10-14
AI Technical Summary
Existing patient transfer methods have problems such as severe patient shaking, unstable infusion process, and lack of cleaning and disinfection functions of transfer equipment, resulting in low safety and efficiency, and the risk of cross-infection.
A transfer device consisting of No. I and No. II C-type frames was designed. A driving structure was used to achieve smooth patient movement. A cleaning structure and a disinfection structure were combined to ensure the cleanliness and disinfection of the conveyor belt. An infusion structure and a guide plate were equipped to ensure the stability of the infusion and the safety of the patient.
It achieves smooth movement during patient transfer, ensures the continuity of infusion, cleaning and disinfection, reduces the risk of cross infection, and improves the safety and efficiency of transfer.
Smart Images

Figure CN120771030A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical device technology, and in particular to a transfer device and anesthesia patient transfer equipment for a medical health big data sharing platform. Background Art
[0002] Patient transfer is a common and important task in healthcare, especially in anesthesiology departments, where it requires extreme caution and meticulousness. Traditional patient transfer methods rely primarily on manual handling by medical staff, which has many drawbacks.
[0003] Manual transportation requires the cooperation of multiple medical staff, which not only consumes a lot of manpower, but also makes it difficult to ensure the smooth movement of the patient during the transportation process, which can easily cause the patient to shake violently. For patients who are weaker after anesthesia, this shaking may cause discomfort or even worsen their condition.
[0004] During the transfer process, the patient may need treatment operations such as infusion. Traditional transfer methods cannot ensure the stability and continuity of the infusion process, which increases the difficulty and risk of treatment.
[0005] There may be dirt attached to the patient's body, and traditional transfer equipment lacks cleaning and disinfection functions. After multiple patient transfers, bacteria are easily bred on the equipment, posing a risk of cross infection and posing a threat to the patient's health.
[0006] With the continuous development of medical technology and the improvement of the quality of medical care, there is an urgent need for a patient transfer device that can solve the above problems, so as to improve the safety and efficiency of patient transfer and protect the health of patients. Summary of the Invention
[0007] The purpose of the present invention is to solve the shortcomings of the existing equipment, such as difficulty in ensuring smooth movement of patients, easy occurrence of large shaking of patients, difficulty in ensuring the stability and continuity of the infusion process during transfer, and lack of cleaning and disinfection functions of the transfer equipment, and to propose a transfer device and anesthesia patient transfer equipment for the medical and health big data sharing platform.
[0008] In order to achieve the above object, the present invention adopts the following technical solutions:
[0009] Transfer device, including:
[0010] No. Ⅰ C-type frame;
[0011] A No. II C-shaped frame is slidably connected to the No. I C-shaped frame;
[0012] Two conveying rollers are rotatably connected to the No. II C-shaped frame;
[0013] A conveyor belt, drivingly connecting the two conveyor rollers, for conveying patients;
[0014] A load-bearing base plate is fixed in the No. II C-shaped frame and is located below the conveyor belt, with its top surface flush with the inner surface of the conveyor belt, for supporting the patient;
[0015] and a driving structure, disposed between the C-shaped frame No. I and the C-shaped frame No. II;
[0016] Among them, the driving structure drives the No. 2 C-type frame to move out of the No. 1 C-type frame and rotate it to an inclined state, so that one end of the No. 2 C-type frame contacts the hospital bed or operating bed, making it easy to move the patient to the conveyor belt without the need for multiple people to carry the patient, thereby avoiding shaking of the patient.
[0017] In one possible design, the drive structure includes:
[0018] Slide groove No. I and slide groove No. II are arranged on the inner walls of the No. I C-shaped frame body away from each other;
[0019] The guide column and the sliding platform are rotatably connected to both sides of the No. II C-shaped frame, the guide column is slidably arranged in the No. I slide groove, and the sliding platform is slidably arranged in the No. II slide groove;
[0020] The threaded rod is rotatably connected to the No. Ⅰ slide groove and is threadedly connected to the guide column;
[0021] A protective shell is fixed to one side of the sliding table;
[0022] A driving motor is fixed in the protective shell;
[0023] The drive shaft is connected to the output shaft of the drive motor through a coupling, and one end rotates through the sliding table and is fixedly connected to one side of the No. Ⅱ C-type frame;
[0024] When the threaded rod is driven, the C-type frame No. II is moved out through the guide column, and the driving motor drives the C-type frame No. II to rotate through the driving shaft.
[0025] The anesthesia patient transfer equipment of the medical health big data sharing platform includes the above-mentioned transfer device and also includes:
[0026] A cleaning structure for cleaning the conveyor belt when the No. II C-shaped frame is moved out of the No. I C-shaped frame, the cleaning structure comprising two base plates fixed to the bottom of the No. I C-shaped frame and a drive rod rotatably mounted between the two base plates, and a cleaning brush fixedly sleeved on the outer wall of the drive rod;
[0027] A rack is fixed to the bottom of the C-shaped frame No. II, which meshes with the gear No. I. The gear No. I is rotatably mounted on a base plate, and the gear No. II is fixedly sleeved on the outer wall of the driving rod and meshes with the gear No. I.
[0028] Among them, when the No. Ⅱ C-type frame is moved out, the rack drives the No. Ⅰ and No. Ⅱ gears to rotate, thereby driving the cleaning brush to rotate to clean the conveyor belt. At the same time, the running direction of the conveyor belt is opposite to the rotation direction of the cleaning brush, which is used to efficiently remove dirt.
[0029] In one possible design, an infusion structure is also included for infusing patients during transportation. The infusion structure includes a clearance groove arranged at the top of the No. 1 C-shaped frame and a U-shaped seat slidably arranged in the clearance groove. The rotating shaft is rotatably installed in the U-shaped seat. The infusion rod is fixedly sleeved on the outer wall of the rotating shaft. The infusion rod is provided with multiple hooks for placing infusion bottles; the rotating shaft is provided with a pin groove, and a pin rod is slidably connected to the U-shaped seat. The pin rod is plugged into the pin groove to limit the infusion rod in a vertical position.
[0030] In one possible design, a U-shaped plate is fixed to the bottom of the No. Ⅰ C-shaped frame, a plurality of nozzles are fixed to the top of the U-shaped plate, a liquid storage tank is fixed to the bottom of the U-shaped plate, and the liquid inlet end of the nozzle is connected to the liquid storage tank through a hose; wherein the nozzle is used to spray alcohol onto the conveyor belt for disinfection, and sterilizes it after being cleaned by the cleaning barrel brush.
[0031] In a possible design, elastic buffer pads are fixed to the inner walls on both sides of the opposite sides of the clearance groove, and the elastic buffer pads are in contact with the U-shaped seat to increase friction to prevent the U-shaped seat from sliding.
[0032] In one possible design, a placement box is fixed to one side of the No. Ⅰ C-type frame, and a Bluetooth module is installed in the placement box. The Bluetooth module is communicated with the medical and health big data sharing platform for transmitting patient monitoring data.
[0033] In one possible design, support legs are fixed to the four corners of the bottom of the No. 1 C-type frame, and universal wheels are installed at the bottom ends of the support legs. The height of the No. 1 C-type frame is higher than the height of the bed, which is convenient for movement and transportation.
[0034] In one possible design, a rotating rod is rotatably installed in the No. Ⅱ C-type frame, a guide plate is fixed to the outer wall of the rotating rod, an operating handle is fixed to one end of the rotating rod, a sliding circular groove is provided on one side of the No. Ⅱ C-type frame, an insertion rod is slidably connected in the sliding circular groove, one end of the insertion rod is connected to the inner wall of the sliding circular groove by a spring, and the operating handle is provided with a slot and an inclined surface; wherein, when the operating handle is rotated, the inclined surface drives the insertion rod to retract, and the spring pushes the insertion rod to insert into the slot to position the guide plate in an inclined position, which is used to guide the patient to move smoothly.
[0035] In a possible design, a protective cover is provided on the outer wall of the driving rod, and the protective cover is fixedly connected to the adjacent base plate for protecting gears No. I and No. II.
[0036] Beneficial effects: in the present application, the two sides of the No. Ⅱ C-shaped frame are rotatably connected with guide columns and sliding tables respectively, the guide columns and the sliding tables are slidably arranged in the No. Ⅰ sliding groove and the No. Ⅱ sliding groove respectively, the No. Ⅰ sliding groove is rotatably connected with a threaded rod which is threadedly connected with the guide column, one side of the sliding table is fixedly connected with a driving motor through a protective shell, the output shaft of the driving motor is fixedly connected with a driving shaft through a shaft coupling, and one end of the driving shaft is fixedly connected with one side of the No. Ⅱ C-shaped frame; the threaded rod is driven to rotate by the motor, the No. Ⅱ C-shaped frame is driven to move out of the No. Ⅰ C-shaped frame by the guide column, the No. Ⅱ C-shaped frame is driven to rotate by the driving shaft, and one end of the No. Ⅱ C-shaped frame abuts against the hospital bed, so that the patient can be easily moved onto the conveying belt, and when the patient is moved onto the conveying belt, a large number of people are not needed to carry, time and labor are saved, and the patient is prevented from being greatly shaken during the carrying process;
[0037] In the present application, the U-shaped seat is rotatably connected with a rotating shaft, the top of the U-shaped seat is slidably connected with a pin rod, the outer wall of the rotating shaft is provided with a pin groove matched with the pin rod, the outer wall of the rotating shaft is fixedly provided with an infusion rod, and the outer wall of the infusion rod is fixedly provided with a plurality of hooks; the infusion rod is vertically placed, the vertical infusion rod is limited by the cooperation of the pin groove and the pin rod, and then the infusion bottle is hung on the hooks for infusion during patient transfer;
[0038] In the present application, the outer wall of the driving rod is fixedly provided with a cleaning cylinder brush, the bottom of the No. Ⅱ C-shaped frame is fixedly provided with a rack, one side of one of the base plates is rotatably connected with a No. Ⅰ gear through a rotating shaft, the No. Ⅰ gear is engaged with the rack, the outer wall of the driving rod is fixedly provided with a No. Ⅱ gear, and the No. Ⅱ gear is engaged with the No. Ⅰ gear; when the No. Ⅱ C-shaped frame is moved out of the No. Ⅰ C-shaped frame, the rack at the bottom of the No. Ⅱ C-shaped frame drives the No. Ⅱ gear to rotate through the No. Ⅰ gear, the No. Ⅱ gear drives the cleaning cylinder brush to rotate, and at the same time, the motor drives the conveying belt and the conveying roller, the conveying belt surface can be cleaned by the cleaning cylinder brush, the conveying belt is kept clean, and the dirt on the conveying belt during the multiple patient transfer processes is avoided;
[0039] In the present application, the No. Ⅱ C-shaped frame is rotatably connected with a rotating rod, the outer wall of the rotating rod is fixedly provided with a guide plate, one end of the rotating rod is fixedly provided with an operating handle, the sliding circular groove is slidably connected with a plug rod, and the operating handle is provided with a plug groove; the rotating rod and the guide plate are driven to rotate by the operating handle, the guide plate is placed obliquely, the plug rod is driven to retract into the sliding circular groove during the rotating process of the operating handle through the cooperation of the inclined surface and the plug rod, and then the plug rod is inserted into the plug groove under the action of the spring to position the operating handle and the guide plate, so that the guide plate can play a guiding role when the patient is carried onto the conveying belt or moved out of the conveying belt, that is, the patient is prevented from being injured during the carrying process, and the difficulty of patient transfer is reduced.
[0040] In the present invention, the driving structure allows the No. Ⅱ C-type frame to be moved out and tilted, and no multiple people are required to operate when transporting the patient, which saves time and effort and can also reduce the shaking of the patient. The infusion structure is convenient for infusing the patient during the transportation process to meet the treatment needs. The cleaning structure can automatically clean the conveyor belt when the No. Ⅱ C-type frame is moved out, and cooperate with the bottom nozzle for disinfection to ensure that the conveyor belt is clean and avoid cross-infection of bacteria. The guide plate can guide the patient, so that the patient can move smoothly to the conveyor belt or move out from it, reducing the difficulty of transportation and reducing damage to the patient. The placement box can store medical equipment and transmit the monitoring data to the medical and health big data sharing platform through the Bluetooth module, which is convenient for doctors to observe the patient's condition in real time and is conducive to later treatment. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 This is a schematic diagram of a three-dimensional exploded cross-section structure of the C-shaped frame No. I, the C-shaped frame No. II, and the guide column of the transfer device provided by the present invention;
[0042] Figure 2 This is a schematic diagram of the three-dimensional exploded structure of the II C-type frame, conveyor belt and guide pillar of the transfer device provided by the present invention;
[0043] Figure 3 A schematic diagram of the three-dimensional explosion structure of the sliding platform and protective shell of the transfer device provided by the present invention;
[0044] Figure 4 This is a schematic diagram of the three-dimensional structure of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention from perspective I;
[0045] Figure 5 This is a schematic diagram of the three-dimensional structure of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention from perspective II;
[0046] Figure 6 This is a schematic diagram of a three-dimensional exploded cross-section structure of the C-type frame II, C-type frame I, and U-shaped plate of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention;
[0047] Figure 7 This is a schematic diagram of the three-dimensional exploded structure of the infusion pole and U-shaped seat of the anesthesia patient transfer equipment of the medical health big data sharing platform provided by the present invention;
[0048] Figure 8 This is a schematic diagram of the three-dimensional exploded structure of the rotating shaft, U-shaped seat and pin rod of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention;
[0049] Figure 9This is a partial three-dimensional structural diagram of the nozzle, cleaning brush, and rack of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention;
[0050] Figure 10 This is a schematic diagram of the three-dimensional exploded structure of gears I, II, and the base plate of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention;
[0051] Figure 11 This is a schematic diagram of the three-dimensional exploded structure of the Type II C frame, insertion rod and operating handle of the anesthesia patient transfer device of the medical health big data sharing platform provided by the present invention.
[0052] In the figure: 1. C-type frame No. I; 2. C-type frame No. II; 3. Conveyor belt; 4. Conveyor roller; 5. Load-bearing base plate; 6. Chute No. I; 7. Chute No. II; 8. Guide column; 9. Threaded rod; 10. Sliding table; 11. Protective shell; 12. Drive motor; 13. Drive shaft; 14. Gap groove; 15. Elastic buffer pad; 16. U-shaped seat; 17. Rotating shaft; 18. Pin rod; 19. Tension spring; 20. Pin groove; 21. Infusion rod 22. Hook; 23. U-shaped plate; 24. Liquid storage tank; 25. Nozzle; 26. Base plate; 27. Drive rod; 28. Cleaning brush; 29. Gear No. I; 30. Gear No. II; 31. Rack; 32. Protective cover; 33. Support leg; 34. Universal wheel; 35. Placement box; 36. Rotating rod; 37. Guide plate; 38. Operating handle; 39. Slot; 40. Inclined surface; 41. Sliding groove; 42. Insert rod; 43. Spring. DETAILED DESCRIPTION
[0053] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0054] In one embodiment: Figures 1-3 The transfer device relates to the field of medical device technology and mainly includes a No. I C-type frame 1, a No. II C-type frame 2, a conveyor belt 3, a conveyor roller 4, a load-bearing base plate 5 and a driving structure.
[0055] Reference Figure 1 and Figure 2 C-Frame 1, serving as the foundational support structure for the entire transfer device, is constructed from high-strength metal materials, such as stainless steel, providing sufficient strength and stability to withstand the weight of C-Frame 2 and its associated components, as well as the loads encountered during patient transfer. The dimensions of C-Frame 1 are designed based on practical requirements, with openings at both ends to allow C-Frame 2 to slide smoothly within.
[0056] Referring to Figure 2 , the No. 2 C-shaped frame 2 is also made of high-strength metal material, and its size is slightly smaller than that of the No. 1 C-shaped frame 1, ensuring smooth sliding in the No. 1 C-shaped frame 1. Two conveying rollers 4 are rotatably connected in the No. 2 C-shaped frame 2 through bearings. The conveying rollers 4 are made of hard plastic or metal material and have smooth surfaces to reduce frictional resistance with the conveying belt 3. The two conveying rollers 4 are arranged in parallel, and their axis directions are consistent with the length direction of the No. 2 C-shaped frame 2. The conveying belt 3 is made of medical-grade rubber material, has good flexibility and wear resistance, can bear the weight of the patient and will not cause harm to the patient's skin. The conveying belt 3 is sleeved between the two conveying rollers 4 and is driven by the rotation of the conveying rollers 4, for conveying the patient.
[0057] Referring to Figure 2 , the load-bearing base plate 5 is fixed in the No. 2 C-shaped frame 2 and is made of lightweight but high-strength plastic or metal plate. The load-bearing base plate 5 penetrates the conveying belt 3 and provides stable support for the patient when the patient lies on the conveying belt 3, preventing the conveying belt 3 from sagging and deforming due to the weight of the patient and ensuring the comfort of the patient during the transfer process.
[0058] Referring to Figure 1 and Figure 2 , the drive structure is arranged between the No. 1 C-shaped frame 1 and the No. 2 C-shaped frame 2, for realizing the removal of the No. 2 C-shaped frame 2 from the No. 1 C-shaped frame 1 and the inclined rotation of the No. 2 C-shaped frame 2, facilitating the transfer of the patient from the hospital bed to the conveying belt 3 or from the conveying belt 3. On the inner walls of the two sides of the No. 1 C-shaped frame 1, a No. 1 sliding groove 6 and a No. 2 sliding groove 7 are arranged, respectively. The No. 1 sliding groove 6 and the No. 2 sliding groove 7 are rectangular grooves, and their length directions are consistent with the width direction of the No. 1 C-shaped frame 1. The depth and width are designed according to the size of the sliding component, ensuring that the sliding component can stably slide therein.
[0059] Referring to Figure 1 and Figure 2 , the No. 2 C-shaped frame 2 is rotatably connected with a guide column 8 and a sliding table 10 on the two sides, respectively. The guide column 8 is a cylindrical metal rod, and its diameter is matched with the width of the No. 1 sliding groove 6. The guide column 8 is slidably arranged in the No. 1 sliding groove 6. A threaded rod 9 is rotatably connected in the No. 1 sliding groove 6 through a bearing, and the threaded rod 9 is threadedly connected with the guide column 8. The threaded rod 9 is made of high-strength alloy steel, and its thread accuracy is high to ensure that the guide column 8 can be accurately driven to move. One end of the threaded rod 9 is connected with the output shaft of a motor (not shown in the figure) through a shaft coupling. The motor is fixed outside the No. 1 C-shaped frame 1. The motor drives the threaded rod 9 to rotate, and the threaded rod 9 drives the guide column 8 to move in the No. 1 sliding groove 6 when the threaded rod 9 rotates, thereby realizing the removal or retraction of the No. 2 C-shaped frame 2 from the No. 1 C-shaped frame 1.
[0060] Reference Figures 1-3 The sliding table 10 is a rectangular metal block, the size of which is adapted to the No. II slide groove 7, and is slidably arranged in the No. II slide groove 7. A protective shell 11 is fixed on one side of the sliding table 10. The protective shell 11 is made of metal and has a certain strength and sealing performance, and is used to protect the internal drive motor 12. The drive motor 12 is fixed in the protective shell 11, and its output shaft is fixed with a drive shaft 13 through a coupling. One end of the drive shaft 13 rotates through the sliding table 10 and is fixedly connected to one side of the No. II C-type frame 2. The drive motor 12 is a servo motor that can accurately control the rotation angle and speed. When the No. II C-type frame 2 is moved out of the No. I C-type frame 1, the drive motor 12 is started and drives the No. II C-type frame 2 to rotate through the drive shaft 13, so that the No. II C-type frame 2 is tilted, and one end thereof contacts the top of the hospital bed or operating bed, which is convenient for the transfer of patients.
[0061] In actual use, the motor is first activated to rotate the threaded rod 9, which drives the guide column 8 within the No. 1 chute 6, thereby moving the No. 2 C-shaped frame 2 out of the No. 1 C-shaped frame 1 until it is positioned above the bed or operating table. The drive motor 12 is then activated, which, via the drive shaft 13, rotates the No. 2 C-shaped frame 2, causing one end of the No. 2 C-shaped frame 2 to contact the top of the bed or operating table. This allows medical personnel to easily transfer the patient to the conveyor belt 3. The conveyor belt 3 and rollers 4 are then activated, and the conveyor belt 3 begins to rotate, completely transferring the patient to the No. 2 C-shaped frame 2. The motor is then reversed to rotate the threaded rod 9, returning the No. 2 C-shaped frame 2 to its original position, completing the transfer of the patient from the bed to the transfer device. Conversely, the reverse steps can be followed to transfer the patient from the transfer device to the bed or operating table. This entire transfer process eliminates the need for multiple personnel, saving time and effort, and preventing significant shaking of the patient during transport.
[0062] Reference Figures 4-10 The anesthesia patient transfer equipment of the medical and health big data sharing platform includes the above-mentioned transfer device, as well as a cleaning structure, an infusion structure, a disinfection structure, a placement box 35, support legs 33, universal wheels 34 and a guide plate structure.
[0063] Reference Figure 5 、 Figure 6 、 Figure 9 and Figure 10The cleaning mechanism is used to clean the conveyor belt 3 when C-frame II 2 is removed from C-frame I 1, ensuring the cleanliness of the conveyor belt 3 and preventing contaminants from attaching to it during multiple patient transfers. The cleaning mechanism comprises two baseplates 26 fixed to the bottom of C-frame I 1 and a drive rod 27 that rotates between the two baseplates 26. Baseplates 26 are rectangular metal plates bolted to the bottom of C-frame I 1, providing stable support for the drive rod 27. Drive rod 27 is a cylindrical metal rod, with bearings at each end pivoting on the two baseplates 26. A cleaning brush 28 (replaced regularly to prevent bacteria) is fixed to the outer wall of drive rod 27. Made of soft, resilient bristles, the brush effectively cleans contaminants from the surface of conveyor belt 3 without damaging it. A rack 31 is fixed to one side of the bottom of C-frame II 2. Rack 31 is a spur rack with a pitch and height designed to meet transmission requirements. One side of one base plate 26 is rotatably connected to a number 1 gear 29 via a rotating shaft. Number 1 gear 29 meshes with a rack 31. Number 2 gear 30 is fixedly mounted on the outer wall of the drive rod 27. Number 2 gear 30 meshes with number 1 gear 29. The coordination of number 1 gear 29, rack 31, and number 2 gear 30 drives the drive rod 27 to rotate when number 2 C-shaped frame 2 moves, causing the cleaning brush 28 to clean the conveyor belt 3.
[0064] Reference Figure 10 A protective cover 32 is mounted on the outer wall of drive rod 27. This rectangular metal cover protects gears I and II from damage caused by external objects and prevents dust and other impurities from entering the gear meshing area and affecting transmission efficiency. Protective cover 32 is bolted to the adjacent base plate 26.
[0065] During actual use, when C-frame II 2 is removed from C-frame I 1 for patient transport, rack 31 at the bottom of C-frame II 2 moves with C-frame II 2. Rack 31 drives gear I 29 to rotate, which in turn drives gear II 30. Gear II 30 in turn drives drive rod 27, rotating the cleaning brush 28. At this point, the motor drives conveyor belt 3 and conveyor roller 4. The direction of conveyor belt 3 movement is opposite to the direction of rotation of cleaning brush 28, allowing cleaning brush 28 to thoroughly clean the surface of conveyor belt 3.
[0066] Reference Figure 4 and Figure 7The infusion structure is used to enable the patient to receive normal infusion during the patient's transfer process, ensuring the continuity of treatment. The infusion structure includes a clearance groove 14 arranged on one side of the top of the No. 1 C-type frame 1 and a U-shaped seat 16 sliding in the clearance groove 14. The clearance groove 14 is a rectangular groove, the length direction of which is consistent with the width direction of the No. 1 C-type frame 1. The depth and width are designed according to the size of the U-shaped seat 16 to ensure that the U-shaped seat 16 can slide smoothly therein. Elastic buffer pads 15 are fixed to the inner walls of the two sides of the clearance groove 14 that are away from each other. The elastic buffer pads 15 are made of highly elastic rubber material and have a certain friction force. The sides of the two elastic buffer pads 15 that are close to each other both contact the U-shaped seat 16, which is used to increase the friction force of the elastic buffer pads 15 in the clearance groove 14, prevent the U-shaped seat 16 from sliding in the clearance groove 14 during the movement of the No. 1 C-type frame 1, and ensure the stability of the infusion rod 21.
[0067] Reference Figure 7 and Figure 8 The U-shaped seat 16 is made of metal and opens upward to accommodate the rotating shaft 17. The rotating shaft 17 rotates within the U-shaped seat 16, with one end rotating and extending to one side of the U-shaped seat 16. The outer wall of the rotating shaft 17 is fixedly sleeved with an infusion rod 21. The infusion rod 21 is a cylindrical metal rod with multiple hooks 22 fixed to its outer wall. The hooks 22 are used to place infusion bottles. The number of hooks 22 is set according to actual usage requirements and is generally 3-5, evenly distributed on the outer wall of the infusion rod 21. The top of the U-shaped seat 16 is slidably connected to the pin rod 18. The pin rod 18 is a cylindrical metal rod with a diameter designed to ensure the precision of the fit with the pin groove 20. The outer wall of the pin rod 18 is sleeved with a tension spring 19. The parameters of the tension spring 19 are: wire diameter between 0.5-1.0mm, outer diameter between 5-10mm, effective number of turns between 5-10 turns, free length between 20-30mm, and initial tension between 2-5N. The top and bottom ends of tension spring 19 are fixedly connected to the outer wall of pin 18 and the top of U-shaped seat 16, respectively, through spring seats, thereby pulling pin 18 downward. A pin slot 20 is provided on the outer wall of rotating shaft 17, which engages with pin 18. Pin slot 20 is a circular groove with a diameter that matches that of pin 18. It is used to limit the position of rotating shaft 17, thereby fixing the position of infusion rod 21.
[0068] In actual use, the clearance groove 14 is used to store the infusion rod 21 and the U-shaped seat 16. When the infusion structure is not in use, the infusion rod 21 and the U-shaped seat 16 can be stored in the clearance groove 14, reducing the space occupied by the device. When the infusion structure is in use, the infusion rod 21 is rotated to a vertical position. At this time, the pin 18 is inserted into the pin groove 20 under the action of the tension spring 19, limiting the rotation axis 17 and the infusion rod 21. The infusion bottle can then be hung on the hook 22 to start the infusion.
[0069] Reference Figure 5 、Figure 6 and Figure 9 The disinfection structure is used to disinfect and sterilize the cleaned conveyor belt 3 to further avoid cross-infection of bacteria. The disinfection structure includes a U-shaped plate 23 fixed to the bottom of the No. Ⅰ C-type frame 1. The U-shaped plate 23 is made of metal, with its opening facing upward, for installing a nozzle 25. A plurality of nozzles 25 are fixed on the top of the U-shaped plate 23. The number of nozzles 25 is set according to the width of the conveyor belt 3 and the disinfection requirements. It is generally 3-6 and evenly distributed on the top of the U-shaped plate 23. The spraying angle and spraying range of the nozzle 25 are optimized and can cover the entire surface of the conveyor belt 3. A liquid storage tank 24 is fixed to the bottom of the U-shaped plate 23. The liquid storage tank 24 is a sealed container made of plastic or metal material, which is used to store disinfectant liquids such as alcohol. The liquid inlet end of the nozzle 25 extends to the liquid storage tank 24 through a hose. The hose is made of corrosion-resistant rubber or plastic material to ensure that the alcohol can be transported smoothly. A pump (not shown) is provided in the liquid storage tank 24 , which is connected to the nozzle 25 through a pipeline and is used to provide alcohol to the nozzle 25 so that the nozzle 25 can spray alcohol onto the conveyor belt 3 for disinfection and sterilization.
[0070] During actual use, after the cleaning brush 28 cleans the surface of the conveyor belt 3, the pump is started. The pump transports the alcohol in the liquid storage tank 24 to the nozzle 25 through the hose. The nozzle 25 sprays alcohol onto the conveyor belt 3 to fully disinfect the conveyor belt 3, avoiding bacterial cross infection and protecting the health of the patient.
[0071] Reference Figure 4 and Figure 5 A placement box 35 is fixed to one side of the No. Ⅰ C-type frame 1. The placement box 35 is a rectangular box made of metal or plastic. Its internal space is designed according to the size and quantity of medical devices and is used to hold medical devices such as electrodes, oxygen masks, and temperature detectors.
[0072] Reference Figure 4 and Figure 5 A Bluetooth module is installed in the storage box 35. This module uses a common data transmission module on the market and interacts with the medical and health big data sharing platform via wireless signals. During the patient transfer process, medical staff remove the electrodes, oxygen mask, and thermometer stored in the storage box 35 to monitor the anesthetized patient's temperature, electrocardiogram, and provide oxygen. At the same time, the thermometer and other equipment transmit the monitored data to the Bluetooth module, which then transmits the data to the medical and health big data sharing platform, allowing doctors to observe the patient's physical condition in real time and facilitate subsequent treatment.
[0073] Reference Figure 5The four corners of the bottom of the No. 1 C-type frame 1 are fixed with support legs 33. The support legs 33 are cylindrical metal rods. Their length is designed according to the height of the hospital bed and actual usage requirements, ensuring that the height of the No. 1 C-type frame 1 is higher than the height of the hospital bed, which is convenient for transferring patients through the conveyor belt 3 and the No. 2 C-type frame 2.
[0074] Reference Figure 5 Universal casters 34 are mounted at the bottom ends of each of the four support legs 33. These medical-grade casters, equipped with brakes, are capable of supporting the weight of the device and allowing for flexible movement on a variety of surfaces. These casters facilitate movement within the patient room, enhancing its flexibility and practicality. Once the device reaches its designated location, the brakes lock the casters, ensuring stability.
[0075] Reference Figure 11 A rotating rod 36 rotates within the C-shaped frame 2. The rotating rod 36 is a cylindrical metal rod, with its ends rotatably connected to the inner walls of the C-shaped frame 2 on both sides via bearings. The rotating rod 36 is located on one side of the conveyor belt 3. A guide plate 37 is fixed to the outer wall of the rotating rod 36. The guide plate 37 is a flat plate made of lightweight plastic or metal. It is used to guide the patient, allowing them to move smoothly onto and off the conveyor belt 3, avoiding injury to the patient during transportation and reducing the difficulty of transferring the patient.
[0076] Reference Figure 11 One end of the rotating rod 36 rotates and extends to the side of the C-shaped frame 2, where it is fixed with an operating handle 38. The operating handle 38 is a round metal handle that is convenient for medical personnel to grasp and operate. A sliding groove 41 is provided on one side of the C-shaped frame 2, and its diameter is designed according to the size of the insertion rod 42. The insertion rod 42 is a cylindrical metal rod with a diameter slightly smaller than that of the sliding groove 41, ensuring smooth sliding within the sliding groove 41.
[0077] Reference Figure 11One end of the rod 42 is fixed to the inner wall of one side of the sliding groove 41 via a spring seat. The parameters of spring 43 are as follows: wire diameter between 0.8-1.2mm, outer diameter between 8-12mm, effective number of turns between 8-12 turns, free length between 25-35mm, and initial tension between 3-8N. A slot 39 is provided in the operating handle 38. The slot 39 is a circular groove whose diameter matches the diameter of the rod 42. The slot 39 cooperates with the rod 42 to limit the operating handle 38, thereby fixing the position of the guide plate 37. The operating handle 38 has an inclined surface 40 on the side close to the rod 42. The angle of the inclined surface 40 is between 30° and 60°. It is used to squeeze the rod 42 into the sliding groove 41 when the operating handle 38 is rotated, facilitating the subsequent insertion and mating of the rod 42 and the slot 39.
[0078] During actual use, when a patient needs to be moved onto or off the conveyor belt 3, medical personnel grasp and rotate the operating handle 38. This rotates the rotating rod 36, which in turn rotates the guide plate 37, causing the guide plate 37 to tilt. As the operating handle 38 rotates, the inclined surface 40 contacts the insertion rod 42. As the operating handle 38 continues to rotate, the inclined surface 40 forces the insertion rod 42 into the sliding groove 41, compressing the spring 43. When the guide plate 37 rotates to the appropriate position, the insertion rod 42, under the action of the spring 43, inserts into the slot 39, positioning the operating handle 38 and the guide plate 37. At this point, the guide plate 37 can serve as a guide, ensuring smooth movement of the patient onto or off the conveyor belt 3.
[0079] The method for using the anesthesia patient transfer device on the medical health big data sharing platform includes the following steps:
[0080] S1. Move the C-type frame 1 No. 1 to one side of the hospital bed or operating table through the support legs 33 and the universal wheels 34. Since the height of the C-type frame 1 No. 1 is higher than the hospital bed or operating table, the C-type frame 1 No. 1 and the C-type frame 2 No. 2 are located above the hospital bed or operating table. When the patient needs to be transferred from the hospital bed or operating table to the C-type frame 1 No. 1, the motor drives the threaded rod 9 to rotate, and the threaded rod 9 drives the C-type frame 2 No. 2 to move out of the C-type frame 1 No. 1 through the guide column 8 until the C-type frame 2 No. 2 moves to the top of the hospital bed or operating table, and then drives the motor 12 The drive shaft 13 drives the No. II C-shaped frame 2 to rotate, so that one end of the No. II C-shaped frame 2 contacts the top of the hospital bed or the operating table. At this time, the patient can be easily moved to the conveyor belt 3, and then the conveyor belt 3 and the conveyor roller 4 are driven by the motor to run, so that the patient is completely transferred to the No. II C-shaped frame 2. After that, the threaded rod 9 drives the No. II C-shaped frame 2 to reset, completing the patient transfer. Conversely, the patient can be transferred to the hospital bed and the operating table; and when moving the patient to the conveyor belt 3, there is no need for more people to carry the patient, which saves time and effort, and avoids causing the patient to shake significantly during the transportation process;
[0081] S2. When the No. II C-type frame 2 is removed from the No. I C-type frame 1 for transporting patients, the rack 31 at the bottom of the No. II C-type frame 2 drives the No. II gear 30 to rotate through the No. I gear 29, and the No. II gear 30 drives the cleaning brush 28 to rotate. At this time, the motor drives the conveyor belt 3 and the conveyor roller 4. At this time, the direction of movement of the conveyor belt 3 is opposite to the direction of rotation of the cleaning brush 28. The surface of the conveyor belt 3 can be cleaned by the cleaning brush 28 to ensure that the conveyor belt 3 is clean and avoid dirt on the patient's body being attached to the conveyor belt 3 during multiple patient transports. In addition, after the cleaning brush 28 is cleaned, the nozzle 25 can spray alcohol on the conveyor belt 3 to disinfect the conveyor belt 3 and avoid bacterial cross infection.
[0082] S3. In addition, when the II C-type frame 2 is tilted and placed on the hospital bed or operating bed, the operating handle 38 drives the rotating rod 36 and the guide plate 37 to rotate. The guide plate 37 is placed at an angle. During the rotation process, the operating handle 38 drives the insertion rod 42 to retract into the sliding circular groove 41 through the cooperation between the inclined surface 40 and the insertion rod 42, until the insertion rod 42 is inserted into the slot 39 under the action of the spring 43, thereby positioning the operating handle 38 and the guide plate 37. Therefore, when the patient is transported to or removed from the conveyor belt 3, the guide plate 37 can play a guiding role, which not only avoids damage to the patient during the transportation process, but also reduces the difficulty of transporting the patient;
[0083] S4. When the patient lies on the conveyor belt 3 and is transported through the No. Ⅰ C-type frame 1, the infusion rod 21 is placed vertically, and the vertical infusion rod 21 is limited by the cooperation of the pin groove 20 and the pin rod 18. Then the infusion bottle is hung on the hook 22 for infusion to the patient. The electrodes, oxygen mask and temperature detector stored in the placement box 35 can also be taken out to detect the body temperature, electrocardiogram and provide oxygen for the anesthetized patient. A Bluetooth module is also provided in the placement box 35. The Bluetooth module transmits the monitored data to the medical and health big data sharing platform, so that the doctor can observe the patient's physical condition in real time and facilitate later treatment.
[0084] The working principle and wiring method of the drive motor 12 are common knowledge or conventional technical means of ordinary technicians in this field and will not be described in detail here. Ordinary technicians in this field can select and configure them according to actual needs or conventional operations.
[0085] The drawings in this application are for illustrative purposes only. The sizes and shapes of the components shown are not intended to be limiting, but are merely for illustrative purposes. In actual implementation, the components may be appropriately configured and adjusted based on specific needs and actual conditions.
[0086] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A transfer device, characterized in that include: No. Ⅰ C-type frame (1); A No. II C-shaped frame (2) is slidably connected to the No. I C-shaped frame (1); Two conveying rollers (4) are rotatably connected to the No. II C-shaped frame (2); A conveyor belt (3) is connected to the two conveyor rollers (4) for conveying patients; A load-bearing base plate (5) is fixed in the No. II C-shaped frame (2) and is located below the conveyor belt (3), with its top surface flush with the inner surface of the conveyor belt (3) and used to support the patient; and a driving structure, which is arranged between the No. I C-shaped frame (1) and the No. II C-shaped frame (2); The driving structure drives the C-type frame (2) No. II to move out of the C-type frame (1) No. I and rotate it to an inclined state, so that one end of the C-type frame (2) No. II contacts the hospital bed or operating table, making it easy to move the patient to the conveyor belt (3) without the need for multiple people to carry the patient, thereby preventing the patient from shaking.
2. The transfer device according to claim 1, characterized in that The driving structure includes: The No. I chute (6) and the No. II chute (7) are arranged on two inner walls of the No. I C-shaped frame (1) that are away from each other; The guide column (8) and the sliding platform (10) are rotatably connected to both sides of the No. II C-shaped frame (2), the guide column (8) is slidably arranged in the No. I slide groove (6), and the sliding platform (10) is slidably arranged in the No. II slide groove (7); The threaded rod (9) is rotatably connected to the No. Ⅰ slide groove (6) and is threadedly connected to the guide column (8); A protective shell (11) is fixed to one side of the sliding platform (10); A driving motor (12) is fixed in the protective shell (11); A drive shaft (13) is connected to the output shaft of the drive motor (12) through a coupling, and one end thereof rotates through the sliding table (10) and is fixedly connected to one side of the C-type frame (2) No. II; When the threaded rod (9) is driven, it drives the No. II C-type frame (2) to move out through the guide column (8), and the driving motor (12) drives the No. II C-type frame (2) to rotate through the driving shaft (13).
3. An anesthesia patient transfer device for a medical health big data sharing platform, comprising the transfer device according to claim 2, characterized in that: Also includes: A cleaning structure for cleaning a conveyor belt (3) when the C-type frame (2) No. II is moved out of the C-type frame (1) No. I, the cleaning structure comprising two base plates (26) fixed to the bottom of the C-type frame (1) No. I and a driving rod (27) rotatably mounted between the two base plates (26), and a cleaning cylinder brush (28) fixedly sleeved on the outer wall of the driving rod (27); A rack (31) is fixed to the bottom of the No. II C-shaped frame (2), and the rack (31) is engaged with the No. I gear (29). The No. I gear (29) is rotatably mounted on a base plate (26). The No. II gear (30) is fixedly sleeved on the outer wall of the driving rod (27) and is engaged with the No. I gear (29). When the No. II C-type frame (2) is moved out, the rack (31) drives the No. I gear (29) and the No. II gear (30) to rotate, thereby driving the cleaning brush (28) to rotate to clean the conveyor belt (3). At the same time, the running direction of the conveyor belt (3) is opposite to the rotation direction of the cleaning brush (28), which is used to efficiently remove dirt.
4. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 3 is characterized in that: The invention also includes an infusion structure for infusing a patient during transport. The infusion structure includes a clearance groove (14) arranged on the top of the No. Ⅰ C-type frame (1) and a U-shaped seat (16) slidably arranged in the clearance groove (14). The rotating shaft (17) is rotatably installed in the U-shaped seat (16). The infusion rod (21) is fixedly sleeved on the outer wall of the rotating shaft (17). The infusion rod (21) is provided with a plurality of hooks (22) for placing an infusion bottle. The rotating shaft (17) is provided with a pin groove (20). A pin rod (18) is slidably connected to the U-shaped seat (16). The pin rod (18) is plugged into the pin groove (20) to limit the infusion rod (21) in a vertical position.
5. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 4 is characterized in that: A U-shaped plate (23) is fixed at the bottom of the No. Ⅰ C-shaped frame (1), a plurality of nozzles (25) are fixed at the top of the U-shaped plate (23), a liquid storage tank (24) is fixed at the bottom of the U-shaped plate (23), and the liquid inlet end of the nozzle (25) is connected to the liquid storage tank (24) through a hose; wherein the nozzle (25) is used to spray alcohol disinfection onto the conveyor belt (3), and sterilize after cleaning with a cleaning brush (28).
6. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 5 is characterized in that: Elastic buffer pads (15) are fixed to the inner walls on both sides of the relative sides of the clearance groove (14), and the elastic buffer pads (15) are in contact with the U-shaped seat (16) to increase friction to prevent the U-shaped seat (16) from sliding.
7. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 6 is characterized in that: A placement box (35) is fixed on one side of the No. Ⅰ C-type frame (1), and a Bluetooth module is installed in the placement box (35). The Bluetooth module is connected to the medical health big data sharing platform for transmitting patient monitoring data.
8. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 7 is characterized in that: Support legs (33) are fixed at the four corners of the bottom of the No. Ⅰ C-shaped frame (1), and universal wheels (34) are installed at the bottom ends of the support legs (33). The height of the No. Ⅰ C-shaped frame (1) is higher than the height of the bed, which is convenient for movement and transportation.
9. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 8, characterized in that: A rotating rod (36) is rotatably installed in the No. II C-type frame (2), a guide plate (37) is fixed to the outer wall of the rotating rod (36), an operating handle (38) is fixed to one end of the rotating rod (36), a sliding circular groove (41) is provided on one side of the No. II C-type frame (2), an insertion rod (42) is slidably connected in the sliding circular groove (41), one end of the insertion rod (42) is connected to the inner wall of the sliding circular groove (41) through a spring (43), and the operating handle (38) is provided with a slot (39) and an inclined surface (40); wherein, when the operating handle (38) is rotated, the inclined surface (40) drives the insertion rod (42) to contract, and the spring (43) pushes the insertion rod (42) to insert into the slot (39) to position the guide plate (37) in an inclined position, so as to guide the patient to move smoothly.
10. The anesthesia patient transfer device of the medical health big data sharing platform according to claim 9 is characterized in that: The outer wall of the driving rod (27) is rotatably sleeved with a protective cover (32), which is fixedly connected to the adjacent base plate (26) and is used to protect the No. I gear (29) and the No. II gear (30).
Citation Information
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