Automatic conveying and sterilizing equipment for critical emergency treatment instruments
Through the design of the automated conveying system and opening and closing components, the problem of emergency and critical care equipment requiring frequent manual opening during the disinfection process has been solved, and the automated conveying and thorough cleaning and disinfection of the equipment have been achieved, thereby improving operational efficiency and consistency.
Patent Information
- Application Number
- CN202510955214.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-11
- Publication Date
- 2025-09-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the traditional disinfection process of emergency critical care equipment, instruments are frequently transferred between different devices, requiring nurses to manually open and close them, which increases the workload and is cumbersome to operate.
The automated conveying system uses stepper motors, conveyor wheels and conveyor belts, combined with opening and closing components, flushing components and disinfection components to achieve automated conveying of instruments in different cleaning and disinfection stages. The rubber rod and rotating frame design maintains the open state of instruments such as scissors and pliers.
It reduces the workload of medical staff, improves the efficiency and consistency of the operating process, and ensures that the instruments are thoroughly cleaned and disinfected at each stage.
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Figure CN120664272A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical device disinfection, and in particular to an automatic conveying and disinfecting device for emergency and critical care equipment. Background Art
[0002] In the modern medical system, the disinfection process of emergency and critical care equipment is a key link in ensuring the safe use of medical devices. With the development of medical technology and the improvement of the public's requirements for the quality and safety of medical services, the cleaning and disinfection standards of medical devices are becoming increasingly stringent. However, the traditional disinfection process of emergency and critical care equipment has many challenges and limitations.
[0003] The traditional sterilization process begins with an initial rinse of the instrument surface using plain water to remove visible blood, tissue residue, and other contaminants. Subsequently, an enzymatic detergent is added to further break down stubborn organic matter, combined with high-pressure washing or manual scrubbing to ensure a clean, residue-free instrument surface. Next, the instruments undergo high-pressure steam sterilization, where the high-temperature, high-pressure environment kills most microorganisms. The final step typically involves a disinfectant soak or rinse to further enhance the sterilization effect, followed by drying to prevent moisture-induced bacterial growth. In practice, the entire sterilization process requires nurses to frequently transfer surgical instrument holders between different devices, a cumbersome and time-consuming process. Furthermore, for instruments such as scissors and forceps that need to remain open during the cleaning and sterilization process, medical staff must manually open them to ensure effective cleaning and sterilization. However, these instruments can easily reclose during transfer, requiring further manual opening, which significantly increases the workload. Summary of the Invention
[0004] In view of this, the present invention provides an automated conveying and disinfection device for emergency critical care equipment, which can overcome the shortcomings that during the cleaning and disinfection process of emergency critical care equipment, nurses need to frequently transfer the placement frames containing surgical instruments between different devices, and tools such as scissors and pliers are difficult to keep open during the transfer process, resulting in medical staff still needing to manually open them again, which is cumbersome to operate.
[0005] An automated conveying and disinfection device for emergency critical care instruments comprises: a mounting frame; a stepper motor symmetrically mounted on both sides of the mounting frame; conveying wheels symmetrically and rotatably connected to the inner wall of the mounting frame, and a rotating shaft of one of the conveying wheels is connected to the output shaft of the stepper motor; a conveyor belt wound around the conveying wheels; a first fixed frame connected to one of the conveyor belts at intervals; a second fixed frame connected to the other conveyor belt at intervals; a first fixed frame connected to the first fixed frame and the second fixed frame respectively; a first rotating frame rotatably connected to the first fixed frame; limiting rods connected to the sides of the first fixed frame and the first rotating frame at intervals respectively; a second fixed frame symmetrically connected to the first fixed frame; a second rotating frame rotatably connected to the second fixed frame, and notches are provided on the second fixed frame and the second rotating frame; a rubber rod connected to the inner walls of the second fixed frame and the second rotating frame respectively; an opening and closing assembly arranged on the mounting frame for driving the first rotating frame and the second rotating frame to rotate and open and close; a flushing assembly arranged on the mounting frame for flushing the instruments; and a disinfection assembly arranged on the mounting frame for disinfecting the instruments.
[0006] Optionally, the opening and closing assembly includes: a full gear, respectively connected to the rotating shafts of the first rotating frame and the second rotating frame; a first connecting frame, connected to the inner wall of the mounting frame; a second connecting frame, connected to the inner wall of the mounting frame; a fixed rack, respectively connected to the first connecting frame and the second connecting frame, and the full gear can be moved to engage with the fixed rack; a locking mechanism, provided on the first fixed frame and the second fixed frame, for locking the first rotating frame and the second rotating frame.
[0007] Optionally, the locking mechanism includes: a fixed plate, respectively connected to the side surfaces of the first fixed frame and the second fixed frame; a first iron block, connected to the fixed plate; a second iron block, connected to the fixed plate; a magnet, respectively connected to the side surfaces of the first rotating frame and the second rotating frame, and the magnet can attract the first iron block or the second iron block by magnetic force as the first rotating frame and the second rotating frame rotate.
[0008] Optionally, the flushing assembly includes: a connecting frame connected to the inner wall of the mounting frame; a first fixed pipe connected to the connecting frame; and a first nozzle installed at intervals on the first fixed pipe and maintained in communication.
[0009] Optionally, the disinfection assembly includes: a second fixed tube, connected to the inner wall of the mounting frame; a second nozzle, installed at intervals on the second fixed tube and kept connected; a third fixed tube, connected to the inner wall of the mounting frame; a third nozzle, installed at intervals on the third fixed tube and kept connected; and a dryer, installed on the inner wall of the mounting frame.
[0010] Optionally, it also includes: a first drain pipe, connected to the lower part of the installation frame and kept connected; a second drain pipe, connected to the bottom of the lower connection frame and kept connected.
[0011] Optionally, it also includes: a supporting bracket connected to the inner wall of the installation frame.
[0012] Optionally, it also includes: a conveyor, installed on the inner wall of the installation frame; a top frame, connected to the top of the installation frame; an electric slide rail, installed on the top inside the top frame; a mounting block, slidably connected to the inside of the top frame, and the mounting block is connected to the slider of the electric slide rail; a telescopic long rod, symmetrically connected to the bottom of the mounting block; a lifting frame, connected to the lower end of the telescopic long rod; an electric push rod, installed at the bottom of the mounting block, and the telescopic rod of the electric push rod is connected to the lifting frame; a sliding fork frame, symmetrically slidingly connected to the inside of the lifting frame; a dual-axis motor, installed on the top inside the lifting frame; a screw rod, symmetrically rotationally connected to the inside of the lifting frame, and the end of the screw rod is connected to the output shaft of the dual-axis motor, and the sliding fork frame is threadedly connected to the screw rod.
[0013] The beneficial effects of the present invention are: through the coordinated work of the stepping motor, the conveying wheel and the conveyor belt, the present invention can realize the automatic conveyance of emergency and critical equipment between different cleaning and disinfection stages, and the design of the second fixed frame, the second rotating frame and the rubber rod can keep scissors, pliers and other instruments in an open state at all times to be thoroughly cleaned and disinfected, thereby reducing the workload of medical staff and improving the efficiency and consistency of the overall operation process. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0015] Figure 2 It is a schematic diagram of the installation of the conveying wheel, conveying belt, first fixing frame and second fixing frame of the present invention.
[0016] Figure 3 It is a schematic diagram of the specific structure of the first fixing frame and the second fixing frame of the present invention.
[0017] Figure 4 Schematic diagram of the installation of the first connecting frame and the second connecting frame of the present invention.
[0018] Figure 5 It is a schematic diagram of the specific structure of the first connecting frame, the second connecting frame and the fixed rack of the present invention.
[0019] Figure 6 For the present invention Figure 5 Schematic diagram of the specific structure from another perspective.
[0020] Figure 7 This is a schematic diagram of the installation of the fixing plate, the first iron block, the second iron block and the magnet of the present invention.
[0021] Figure 8 For the present invention Figure 7 Another state diagram of .
[0022] Figure 9 This is a schematic diagram of the installation of the flushing component and the disinfection component of the present invention.
[0023] Figure 10 It is a cross-sectional view of the connecting frame of the present invention.
[0024] Figure 11 The figure is a schematic diagram of the installation of the conveyor, top frame, electric slide rail and mounting block of the present invention.
[0025] Figure 12 The figure is a schematic diagram of the installation of the telescopic long rod, lifting frame, electric push rod and sliding fork frame of the present invention.
[0026] Figure 13 This is a schematic diagram of the installation of the dual-axis motor and the lead screw of the present invention.
[0027] Markings in the accompanying drawings: 1-mounting frame, 2-stepping motor, 3-conveying wheel, 4-conveying belt, 5-first fixed frame, 6-second fixed frame, 7-first fixed frame, 8-first rotating frame, 9-limiting rod, 10-second fixed frame, 11-second rotating frame, 1101-notch, 12-rubber rod, 13-full gear, 14-first connecting frame, 15-second connecting frame, 16-fixed rack, 17-fixed plate, 18-first iron block, 19-second iron block, 20-magnetic Iron, 21-connecting frame, 22-first fixed pipe, 23-first nozzle, 24-second fixed pipe, 25-second nozzle, 26-third fixed pipe, 27-third nozzle, 28-dryer, 29-first drain pipe, 30-second drain pipe, 31-support frame, 32-conveyor, 33-top frame, 34-electric slide rail, 35-mounting block, 36-telescopic long rod, 37-lifting frame, 38-electric push rod, 39-sliding fork frame, 40-dual-axis motor, 41-screw. DETAILED DESCRIPTION
[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0029] Example: An automated delivery and disinfection device for emergency critical care equipment, such as Figures 1-10As shown, it includes a mounting frame 1, a stepper motor 2, a conveying wheel 3, a conveyor belt 4, a first fixed frame 5, a second fixed frame 6, a first fixed frame 7, a first rotating frame 8, a limit rod 9, a second fixed frame 10, a second rotating frame 11, a rubber rod 12, an opening and closing assembly, a flushing assembly and a disinfection assembly. A stepper motor 2 is installed on the upper left part of the front and rear sides of the mounting frame 1. A plurality of conveying wheels 3 are connected to the front and rear sides of the inner wall of the mounting frame 1 in a rotationally spaced manner, and the rotating shaft of the conveying wheel 3 on the upper left is connected to the output shaft of the stepper motor 2. A conveyor belt 4 is wound between the multiple conveying wheels 3 on the front side, and a conveyor belt 4 is also wound between the multiple conveying wheels 3 on the rear side. The number of conveyor belts 4 is two, and the shape of the conveyor belt 4 is trapezoidal. A plurality of first fixing frames 5 are evenly spaced and connected to the conveyor belt 4 on the front side, and a plurality of second fixing frames 6 are evenly spaced and connected to the conveyor belt 4 on the rear side. The second fixing frames 6 correspond to the first fixing frames 5 one by one. The middle of each first fixing frame 5 is connected to a first fixing frame 7, and each second fixing frame 6 is also connected to a first fixing frame 7. The first fixing frames 7 on the front and rear sides are symmetrically arranged, and each first fixing frame 7 is rotatably connected to a first rotating frame 8. A plurality of limiting rods 9 (such as Figure 3 As shown), each first fixed frame 5 is symmetrically connected to a second fixed frame 10, each second fixed frame 10 is rotatably connected to a second rotating frame 11, and a notch 1101 is provided on the side of the second fixed frame 10 and the second rotating frame 11 on the left and right sides where they are close to each other. A plurality of circular holes are spaced apart on the first fixed frame 7, the first rotating frame 8, the second fixed frame 10 and the second rotating frame 11, and a rubber rod 12 is connected to the inner wall of each second fixed frame 10 and the second rotating frame 11, and the rubber rod 12 is in the shape of a "T". The opening and closing assembly is used to drive the first rotating frame 8 and the second rotating frame 11 to rotate and open and close, the flushing assembly is used to flush the instrument, and the disinfection assembly is used to disinfect the instrument.
[0030] like Figure 3-Figure 8As shown, the opening and closing assembly includes a full gear 13, a first connecting frame 14, a second connecting frame 15, a fixed rack 16 and a locking mechanism. The full gear 13 is connected to the rotating shaft of each first rotating frame 8 and the second rotating frame 11, and two first connecting frames 14 are connected to the upper front side of the inner wall of the mounting frame 1, and two second connecting frames 15 are connected to the upper rear side of the inner wall of the mounting frame 1. Three fixed racks 16 are connected to the two first connecting frames 14, and one fixed rack 16 is connected to the two second connecting frames 15. The fixed racks 16 on the two first connecting frames 14 and the two second connecting frames 15 are oppositely arranged, and the three fixed racks 16 on the first connecting frame 14 are staggered, that is, the three fixed racks 16 on the first connecting frame 14 are respectively located on three different vertical planes, and the three fixed racks 16 on the first connecting frame 14 are respectively aligned with the gears 16 on the first connecting frame 14. The three full gears 13 on the first fixed frame 5 correspond to each other, and the fixed rack 16 on the second connecting frame 15 corresponds to the full gear 13 on the second fixed frame 6. The full gear 13 can move to the corresponding fixed rack 16 to engage with it, and the locking mechanism is used to lock the first rotating frame 8 and the second rotating frame 11; the locking mechanism includes a fixed plate 17, a first iron block 18, a second iron block 19 and a magnet 20. The sides of the first fixed frame 7 and the second fixed frame 10 are connected to the fixed plate 17. The shape of the fixed plate 17 is "L"-shaped, and each fixed plate 17 is connected to the first iron block 18 and the second iron block 19. The first rotating frame 8 and the second rotating frame 11 are connected to the side close to the fixed plate 17 with a magnet 20, and the magnet 20 can rotate with the first rotating frame 8 and the second rotating frame 11 to attract the first iron block 18 or the second iron block 19 by magnetic force.
[0031] like Figure 9 and Figure 10 As shown, the flushing assembly includes a connecting frame 21, a first fixed pipe 22 and a first nozzle 23. Two connecting frames 21 are connected to the upper left part of the inner wall of the mounting frame 1. The two connecting frames 21 are symmetrically arranged up and down, and the conveyor belt 4 passes through the two connecting frames 21. The two connecting frames 21 are connected to the first fixed pipe 22, and multiple first nozzles 23 are installed at intervals on the side where the two first fixed pipes 22 are close to each other and remain connected.
[0032] like Figure 9 and Figure 10As shown, the disinfection assembly includes a second fixed pipe 24, a second nozzle 25, a third fixed pipe 26, a third nozzle 27, a dryer 28, a first drain pipe 29 and a second drain pipe 30. Two second fixed pipes 24 are connected to the left middle of the inner wall of the mounting frame 1, and the conveyor belt 4 passes between the two second fixed pipes 24. A plurality of second nozzles 25 are installed at intervals on the side close to each other of the two second fixed pipes 24 and kept in communication. Two third fixed pipes 26 are connected to the left side of the lower part of the mounting frame 1. The two third fixed pipes 26 It is symmetrically arranged in an upper and lower manner, and the conveyor belt 4 passes between the two third fixed pipes 26. A plurality of third nozzles 27 are installed at intervals on the side where the two third fixed pipes 26 are close to each other and remain connected. Two dryers 28 are installed in the middle of the inner side of the mounting frame 1, and the conveyor belt 4 passes between the two dryers 28. The first drain pipe 29 is connected to the left side of the bottom of the mounting frame 1 and remains connected. The second drain pipe 30 is connected to the rear side of the bottom of the lower connecting frame 21 and remains connected, and the rear end of the second drain pipe 30 passes through the rear side of the mounting frame 1.
[0033] like Figure 11 As shown, a support bracket 31 is also included, and the middle of the upper part of the inner wall of the mounting frame 1 is connected to the support bracket 31.
[0034] like Figure 11-13 As shown, it also includes a conveyor 32, a top frame 33, an electric slide 34, a mounting block 35, a telescopic long rod 36, a lifting frame 37, an electric push rod 38, a sliding fork frame 39, a dual-axis motor 40 and a screw 41. The conveyor 32 is installed on the upper right side of the inner wall of the mounting frame 1, the top right side of the mounting frame 1 is connected to the top frame 33, the inner top of the top frame 33 is installed with the electric slide 34, the top of the top frame 33 is slidably connected to the mounting block 35, and the top of the mounting block 35 is connected to the bottom of the slider of the electric slide 34, and the left and right sides of the bottom of the mounting block 35 are connected There are telescopic long rods 36, and a lifting frame 37 is connected between the bottoms of the two telescopic long rods 36. An electric push rod 38 is installed in the middle of the bottom of the mounting block 35, and the telescopic rod of the electric push rod 38 is connected to the top of the lifting frame 37. The lifting frame 37 is symmetrically slidably connected to the left and right with a sliding fork frame 39. A dual-axis motor 40 is installed on the top of the lifting frame 37. The lifting frame 37 is symmetrically rotated with two screw rods 41, and the two screw rods 41 are respectively connected to the two output shafts of the dual-axis motor 40, and the two sliding forks 39 are respectively threadedly connected to the two screw rods 41.
[0035] First, the device is installed at a designated location, and then the first fixed tube 22 is connected to normal water and enzyme cleaning agent, the first fixed tube 22 is connected to high-pressure steam, and the third fixed tube 26 is connected to a disinfectant; when the instrument needs to be cleaned and disinfected, the stepper motor 2 is first started, and the stepper motor 2 can drive the conveying wheel 3 and the conveyor belt 4 to rotate intermittently, and the conveyor belt 4 can drive the first fixed frame 5 and the second fixed frame 6 to rotate intermittently, so that the first fixed frame 5 and the second fixed frame 6 can pass through the support bracket 31, the first nozzle 23, the second nozzle 25, the third nozzle 27 and the dryer 28 in sequence, and stay at each position for a period of time; when the first fixed frame 5 and the second fixed frame 6 move to the support bracket 31, the first rotating frame 8 and the second rotating frame 11 will be in an open state, and the magnet 20 is adsorbed on the second iron block 19 by magnetic force (such as Figure 7 As shown), the first rotating frame 8 and the second rotating frame 11 can be locked to prevent the first rotating frame 8 and the second rotating frame 11 from rotating and closing at will. At this time, the nurse can open the scissors and pliers and other instruments, and put the two round holes of the scissors and pliers on the rubber rods 12 on the left and right sides. The scissors and pliers can pass through the notch 1101, and the support frame 31 can support the scissors and pliers and other instruments, thereby preventing the scissors and pliers from falling. When the conveyor belt 4 drives the first fixing frame 5 and the second fixing frame 6 to When it moves to the left to the first nozzle 23, during the movement, the full gear 13 will engage with the fixed rack 16 on the first connecting frame 14 on the left and the second connecting frame 15 on the left, and the fixed rack 16 on the first connecting frame 14 on the left and the second connecting frame 15 on the left will drive the full gear 13 to rotate, thereby driving the first rotating frame 8 and the second rotating frame 11 to rotate downward and close, and the first rotating frame 8 and the second rotating frame 11 will drive the magnet 20 to rotate and disengage from the second iron block 19, and then the magnet 20 will be attracted to the first iron block 18 by magnetic force (such as Figure 8As shown), the first rotating frame 8 and the second rotating frame 11 can be prevented from rotating and opening at will. At this time, the rubber rods 12 on the upper and lower sides will contact each other to limit the scissors, pliers and other instruments. The fixed racks 16 on the first connecting frame 14 on the left and the second connecting frame 15 on the left will be separated from the full gear 13, and the scissors, pliers and other instruments will be separated from the support frame 31. When the scissors, pliers and other instruments move to the first nozzle 23, the first fixed frame 5 and the second fixed frame 6 will stop moving. At this time, the first nozzle 23 will first spray ordinary water to perform a preliminary rinse on the surface of the instrument to remove visible blood, tissue residues and other contaminants. Then the first nozzle 23 will spray enzyme cleaning agent to further decompose the stubborn organic matter on the instrument to ensure that the surface of the instrument is clean. There is no residue, and the waste liquid will fall down into the connecting frame 21 on the lower side due to gravity, and will be discharged uniformly through the second drain pipe 30. Then, the scissors, pliers and other instruments will move to the second nozzle 25, and the second nozzle 25 will spray high-pressure steam to kill most of the microorganisms on the instruments. Then, the scissors, pliers and other instruments will move to the third nozzle 27, and the third nozzle 27 will spray disinfectant to rinse the instruments to further enhance the sterilization effect. The waste liquid will be discharged uniformly through the first drain pipe 29. Then, the scissors, pliers and other instruments will move to the dryer 28, and the dryer 28 can dry the instruments to prevent moisture from breeding bacteria. Finally, the scissors, pliers and other instruments will move to the first connecting frame 14 on the right and the second connecting frame 15 on the right. At this time, the fixed racks 16 on the first connecting frame 14 on the right and the second connecting frame 15 on the right will mesh with the full gear 13, and then the electric slide 34 will drive the mounting block 35 to move to the left to just above the sterilized instrument, and then the electric push rod 38 will drive the lifting frame 37 and the sliding fork frame 39 to move downward, so that the two sliding fork frames 39 move to the left and right sides of the sterilized instrument respectively, and then the dual-axis motor 40 drives the screw rod 41 to rotate, and the screw rod 41 can drive the sliding fork frames 39 on the left and right sides to move to the side close to each other to drag the bottom of the sterilized instrument, and then the first fixed frame 5 and the second fixed frame 6 will move back to the left to the support bracket 31. During the movement, the fixed racks on the first connecting frame 14 on the right and the second connecting frame 15 on the right will move to the left to just above the sterilized instrument. The fixed rack 16 will drive the full gear 13 to reverse, thereby driving the first rotating frame 8 and the second rotating frame 11 to rotate upward and open. At this time, the rubber rods 12 on the upper and lower sides will disengage to release the limit of the sterilized instruments. At the same time, the lifting frame 37 and the sliding fork 39 are driven upward by the electric push rod 38. The sliding fork 39 can drive the sterilized instruments to move upward and separate from the rubber rod 12. Then the full gear 13 will disengage from the fixed rack 16 on the first connecting frame 14 on the right and the second connecting frame 15 on the right, and the magnet 20 will be attracted to the second iron block 19 by magnetic force, so that the first rotating frame 8 and the second rotating frame 11 remain in the open state. Then the mounting block 35 is driven to the right to move above the conveyor 32 by the electric slide rail 34.Then, the dual-axis motor 40 drives the screw rod 41 to reverse, and the screw rod 41 can drive the sliding fork frames 39 on the left and right sides to move away from each other, so that the sterilized instruments fall down to the top of the conveyor 32. The sterilized instruments can be transported to the right by the conveyor 32 for subsequent unified packaging processing; similarly, when cleaning and sterilizing other long instruments, multiple long instruments can be placed together between the first fixed frames 7 on the front and rear sides. When the first rotating frame 8 is rotated and closed, the limiting rods 9 on the first fixed frame 7 and the first rotating frame 8 can limit the instruments to prevent the instruments from being separated from the first fixed frame 7 and the first rotating frame 8. Subsequently, the first fixed frame 7 and the first rotating frame 8 can drive the instruments to pass through the first nozzle 23, the second nozzle 25, the third nozzle 27 and the dryer 28 in sequence for cleaning, disinfection and drying.
[0036] The above description is only a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field can easily think of changes or replacements within the technical scope disclosed by the present invention, which should be covered by the scope of protection of the present invention.
Claims
1. An automatic conveying and sterilizing device for emergency critical medical equipment, comprising: a mounting frame (1); a stepping motor (2), symmetrically mounted on both sides of the mounting frame (1); conveying wheels (3), symmetrically and rotatably connected to the inner wall of the mounting frame (1), and a rotating shaft of one of the conveying wheels (3) being connected to the output shaft of the stepping motor (2); a conveying belt (4), wound around the conveying wheel (3); characterized in that: The invention also includes: a first fixed frame (5) connected to one of the conveyor belts (4) at intervals; a second fixed frame (6) connected to the other conveyor belt (4) at intervals; a first fixed frame (7) connected to the first fixed frame (5) and the second fixed frame (6) respectively; a first rotating frame (8) connected to the first fixed frame (7) at intervals; a limiting rod (9) connected to the side surfaces of the first fixed frame (7) and the first rotating frame (8) at intervals; a second fixed frame (10) connected symmetrically to the first fixed frame (5); and a second rotating frame (11) connected to the first fixed frame (5). The first rotating frame (8) and the second rotating frame (11) are respectively connected to the inner wall of the second fixed frame (10) and the second rotating frame (11); the opening and closing assembly is arranged on the mounting frame (1) and is used to drive the first rotating frame (8) and the second rotating frame (11) to rotate and open; the flushing assembly is arranged on the mounting frame (1) and is used to flush the instrument; and the disinfection assembly is arranged on the mounting frame (1) and is used to disinfect the instrument.
2. The automated transport and disinfection equipment for emergency critical care equipment according to claim 1, characterized in that: The opening and closing assembly comprises: a full gear (13), which is respectively connected to the rotating shafts of the first rotating frame (8) and the second rotating frame (11); a first connecting frame (14), which is connected to the inner wall of the mounting frame (1); a second connecting frame (15), which is connected to the inner wall of the mounting frame (1); a fixed rack (16), which is respectively connected to the first connecting frame (14) and the second connecting frame (15), and the full gear (13) can be moved to engage with the fixed rack (16); and a locking mechanism, which is provided on the first fixed frame (7) and the second fixed frame (10) and is used to lock the first rotating frame (8) and the second rotating frame (11).
3. The automatic transport and disinfection equipment for emergency and critical care equipment according to claim 2, characterized in that: The locking mechanism comprises: a fixed plate (17), respectively connected to the side surfaces of the first fixed frame (7) and the second fixed frame (10); a first iron block (18), connected to the fixed plate (17); a second iron block (19), connected to the fixed plate (17); and a magnet (20), respectively connected to the side surfaces of the first rotating frame (8) and the second rotating frame (11), wherein the magnet (20) rotates with the first rotating frame (8) and the second rotating frame (11) and can attract the first iron block (18) or the second iron block (19) through magnetic force.
4. The automatic transport and disinfection equipment for emergency and critical care equipment according to claim 3, characterized in that: The flushing assembly comprises: a connecting frame (21) connected to the inner wall of the mounting frame (1); a first fixed pipe (22) connected to the connecting frame (21); and a first nozzle (23) installed at intervals on the first fixed pipe (22) and maintained in communication.
5. The automatic transport and disinfection equipment for emergency and critical care equipment according to claim 4, characterized in that: The disinfection assembly includes: a second fixed pipe (24), connected to the inner wall of the mounting frame (1); a second nozzle (25), installed at intervals on the second fixed pipe (24) and kept in communication; a third fixed pipe (26), connected to the inner wall of the mounting frame (1); a third nozzle (27), installed at intervals on the third fixed pipe (26) and kept in communication; and a dryer (28), installed on the inner wall of the mounting frame (1).
6. The automatic transport and disinfection equipment for emergency and critical care equipment according to claim 5, characterized in that: It also includes: a first drainage pipe (29) connected to the lower part of the installation frame (1) and maintained in communication; and a second drainage pipe (30) connected to the bottom of the lower connection frame (21) and maintained in communication.
7. The automatic transport and disinfection equipment for emergency critical care equipment according to claim 6, characterized in that: It also includes a support frame (31) connected to the inner wall of the installation frame (1).
8. The automatic transport and disinfection equipment for emergency and critical care equipment according to claim 7, characterized in that: The utility model also includes: a conveyor (32), which is installed on the inner wall of the installation frame (1); a top frame (33), which is connected to the top of the installation frame (1); an electric slide rail (34), which is installed on the top of the top frame (33); a mounting block (35), which is slidably connected to the inside of the top frame (33), and the mounting block (35) is connected to the slider of the electric slide rail (34); a telescopic long rod (36), which is symmetrically connected to the bottom of the mounting block (35); a lifting frame (37), which is connected to the lower end of the telescopic long rod (36); an electric A push rod (38) is mounted on the bottom of the mounting block (35), and the telescopic rod of the electric push rod (38) is connected to the lifting frame (37); a sliding fork frame (39) is symmetrically slidably connected to the inside of the lifting frame (37); a dual-axis motor (40) is mounted on the top inside the lifting frame (37); a screw rod (41) is symmetrically rotated and connected to the inside of the lifting frame (37), and the end of the screw rod (41) is connected to the output shaft of the dual-axis motor (40), and the sliding fork frame (39) is threadedly connected to the screw rod (41).