An automatic supply device for surgical supplies based on operating room nursing
By designing an automated surgical supplies supply device, utilizing a sterilizer and delivery pipeline system, the problem of sterile environment contamination caused by drug delivery in the operating room was solved, enabling rapid and safe drug delivery and improving surgical safety and efficiency.
Patent Information
- Application Number
- CN202410084268.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-19
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2044-01-19
AI Technical Summary
In the existing technology, the transfer of medicines in the operating room can easily lead to the contamination of the sterile environment, and improper operation may cause safety hazards in the operating room.
Design an automated surgical supplies supply device, including a housing, an electric rotating door, a sterilizer, a delivery pipeline, and a spray nozzle. The delivery and sterilization of medicines are controlled by a trigger switch. The design of the disinfectant spraying and delivery pipeline ensures that the medicines remain sterile during delivery and reduces manual handling.
It enables rapid and safe delivery of medicines, reduces the risk of contamination in the sterile environment of the operating room, improves the safety and efficiency of surgery, and ensures that medicines are not contaminated during delivery.
Smart Images

Figure CN117902160B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical supplies, in particular to a surgical supply automatic supply device based on operating room nursing. BACKGROUND
[0002] Operating room nursing refers to the continuous maintenance of the sterile environment in the operating room by relevant personnel in the hospital, so that the operation can be safely carried out, and the influence of unexpected situations on the operating room is reduced.
[0003] In order to ensure the sterile environment in the operating room, the hospital personnel generally prepare the required medicines in advance, but when unexpected situations occur during the operation, the personnel in the operating room will notify the personnel outside to deliver the required medicines through the intelligent conveying pipeline to the operating room. The responsible nurse will carefully take the medicine to avoid touching the key parts of the hand with the excess medicine that may have problems, so as to prevent the sterile environment of the operating room from being contaminated.
[0004] This way has some defects. If the responsible nurse does not pay attention to the operation specification and takes the medicine in the wrong way, a sterile loophole will occur. Then the loophole will be passed to the next person after the handover, and finally it will cause the operating room to be contaminated, and the patient in the operating room will be in great danger.
[0005] Therefore, we need a surgical supply automatic supply device that can effectively reduce the pollution of the operating room environment. SUMMARY
[0006] In order to overcome the defect that it is easy to pollute the operating room environment when delivering medicine to the operating room, the technical problem of the present application is to provide a surgical supply automatic supply device that can effectively reduce the pollution of the operating room environment.
[0007] The technical implementation scheme of the present application is: a surgical supply automatic supply device based on operating room nursing, comprising a chassis, a box body for disinfecting medicines is fixedly connected to the top of the chassis, a sterilizer is fixedly connected to the top of the box body, an electric rotating door is rotatably connected to the side wall of the box body, a thick connecting pipe for conveying disinfectant liquid is fixedly connected to the side wall of the sterilizer, the thick connecting pipe penetrates through the side wall of the box body, a spray pipe is installed on the inner wall of the box body close to the lower end of the thick connecting pipe, the lower end of the thick connecting pipe is in communication with the spray pipe, a trigger switch is arranged on the side of the chassis close to the electric rotating door, the trigger switch is connected to the circuit of the electric rotating door, a transmission pipeline with a medicine conveying function is fixedly connected to the side wall of the box body away from the electric rotating door, a gas cylinder is fixedly connected to the side of the inner wall of the box body close to the spray pipe through a connecting block, a carrier plate is slidably arranged on the side of the inner wall of the box body close to the spray pipe, the carrier plate is located above the gas cylinder, and the end of the telescopic rod of the gas cylinder is fixedly connected to the carrier plate.
[0008] More preferably, the fixed plate is symmetrically arranged on the side of the box body close to the conveying pipe.
[0009] More preferably, the upper connecting pipe is symmetrically arranged and fixed on the side of the nozzle away from the thick connecting pipe, the nozzle is communicated with the upper connecting pipe, the side wall of the object plate close to the conveying pipe is symmetrically provided with the air outlet, the side of the top wall of the object plate close to the upper connecting pipe is symmetrically fixed with the lower connecting pipe, the upper end of the air outlet is communicated with the lower connecting pipe, the upper end of the lower connecting pipe is contacted with the lower end of the upper connecting pipe, the lower connecting pipe is communicated with the upper connecting pipe, the side wall of the upper connecting pipe is fixed with the limiting frame, the sliding plate is slidingly arranged on the limiting frame, the upper wall of the sliding plate is contacted with the lower wall of the upper connecting pipe, the first reset spring is connected between the sliding plate and the limiting frame.
[0010] More preferably, the rotating thin rod is rotatably connected on the side of the thick connecting pipe close to the nozzle, the rotating thin rod is fixed with the rotating disc in the middle part, the upper and lower ends of the side of the rotating thin rod close to the nozzle are fixed with the round head block, the torsion spring is fixed between the round head block and the outer wall of the inner side of the thick connecting pipe, and the torsion spring is sleeved on the rotating thin rod.
[0011] More preferably, the long cylinder is transversely and rotatably arranged on the upper part of the object plate.
[0012] More preferably, the baffle is fixed on the upper wall of the object plate away from the conveying pipe.
[0013] More preferably, the sharp head plate is fixed on the middle part of the baffle, and the sharp end of the sharp head plate faces the side of the conveying pipe.
[0014] More preferably, the conveying assembly is fixed on the upper wall of the object plate away from the baffle.
[0015] More preferably, the limiting thin rod is uniformly arranged, the limiting thin rod is installed, the elastic plate is slidingly installed on the limiting thin rod, the elastic plates are symmetrically arranged on the two sides of the sharp head plate, the second reset spring is connected between the side wall of the elastic plate and the baffle, and the second reset spring is wound on the limiting thin rod.
[0016] More preferably, the inclined plate frame is fixed on the top wall of the object plate close to the elastic plate, and the inclined plate frame is uniformly provided with a plurality of short cylinders for guiding the medicine.
[0017] The present application has the following advantages: the present application realizes the rapid transmission of the required medicine into the operating room through the box installed on the wall in the operating room and the conveying pipeline behind the box, so as to ensure that the safety loopholes caused by the personnel entering and leaving the operating room are reduced, and the personnel in the operating room can press the trigger plate with the elbow or other parts to open the electric rotating door to take the medicine, so as to ensure that the hand contacts other objects as little as possible, thereby reducing the error.
[0018] The transmission pipeline installed behind the box is redesigned, the inclination angle of the lower wall of the pipeline is increased, the delivery efficiency of the medicine is accelerated, the waiting time of the patient is shortened, and the probability of being saved is further increased.
[0019] When the electric rotating door is opened, the object plate will send the medicine in front of the door to ensure that the personnel will not touch other objects when taking the object, thereby facilitating the personnel to quickly take the object.
[0020] When the medicine is transmitted into the device, the sterilization related components start to work, the disinfectant is emitted into the device by the spray pipe to ensure that the whole medicine is wrapped by the disinfectant, thereby achieving the sterilization effect, and the connection behind the spray pipe allows the disinfectant to fill all parts of the medicine as much as possible, facilitating the personnel to take the medicine, and the disinfectant ensures the sterile environment in the device, so that after the space in the device is connected with the operating room, the lower connecting pipe will close the rough connecting pipe, causing the pollution of the operating room.
[0021] When the spray pipe starts to work, the upper connecting pipe connected with the side wall of the spray pipe will transmit the disinfectant to the air outlet through the lower connecting pipe, and the air outlet will spray the disinfectant to the lower part of the medicine, so that all parts of the medicine are contacted by the disinfectant, so that the medicine transmitted into the device does not have a health dead angle, so that the personnel can safely take the object, reduce the waste of time, increase the safety of the operation, and because of the sliding plate, the waste of disinfectant can also be reduced, and the movement of the lower connecting pipe also provides power for the rear components and cooperates with the components to achieve better sterilization effect, and also better protects the environment in the operating room, so that only the medicine enters the operating room, and no other things.
[0022] When the object enters, the medicine may be stopped at the rear side of the object plate, in order to ensure that the medicine is correctly placed and the sterilization effect is enhanced, the medicine is directly supported by the long cylinder after entering, so that all surfaces of the medicine can be wrapped by the disinfectant.
[0023] After the medicine passes through the long cylinder, the long cylinder driven by the click will speed up the medicine placement. When the back wall of the pointed plate contacts the medicine, the medicine is shunted and placed on the left and right of the pointed plate. After the medicine is shunted, in order to ensure the safety of the medicine with different packaging materials, the combination of the elastic plate and the return spring will make the medicine stop safely in front of the baffle, so as to ensure that the medicine will not be broken before use, and the fixed plate will also ensure the correct position of the medicine.
[0024] When the medicine is gathered on the long cylinder, the inclined plate frame with a short cylinder fixed between the carrier plate and the baffle will block the medicine within the specified range, so as to ensure that the medicine will not fall off when the carrier plate is stretched out. In this way, the medicine can be safely conveyed into the device and can be safely taken out, so as to ensure the safety of people's hands, and then ensure that the medicine can be quickly used to save the patient on the operating table without violating the relevant operation specifications and ensuring the sterile environment of the operating room. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application.
[0026] Figure 2 It is a schematic diagram of the three-dimensional structure of the present application.
[0027] Figure 3 It is a schematic diagram of the three-dimensional structure of the present application.
[0028] Figure 4 It is a schematic diagram of the three-dimensional structure of the present application.
[0029] Figure 5 It is a schematic diagram of the three-dimensional structure of the present application.
[0030] Figure 6 It is a schematic diagram of the three-dimensional structure of the present application.
[0031] Figure 7 It is a schematic diagram of the three-dimensional structure of the present application.
[0032] Figure 8 It is a schematic diagram of the three-dimensional structure of the present application.
[0033] Figure 9 It is a schematic diagram of the three-dimensional structure of the present application.
[0034] Figure 10 It is a schematic diagram of the three-dimensional structure of the present application.
[0035] Figure 11 It is a schematic diagram of the three-dimensional structure of the sharp head plate, the conveying assembly, the limiting thin rod and other components of the application.
[0036] Figure 12 It is a schematic diagram of the three-dimensional structure of the long cylinder, the baffle, the conveying assembly and other components of the application.
[0037] Figure 13 It is a schematic diagram of the three-dimensional structure of the limiting thin rod, the elastic plate, the second reset spring and other components of the application.
[0038] Figure 14 It is a schematic diagram of the three-dimensional structure of the baffle, the inclined plate frame, the short cylinder and other components of the application.
[0039] The marks of each component in the drawings are as follows: 1-bottom frame, 2-box body, 201-fixed plate, 202-transmission pipeline, 3-electric rotary door, 301-trigger plate, 4-disinfecting device, 5-coarse connecting pipe, 6-nozzle, 7-cylinder, 8-carrying plate, 9-connecting block, 10-air outlet, 11-upper connecting pipe, 1101-lower connecting pipe, 1102-sliding plate, 1103-limiting frame, 1104-first reset spring, 12-rotary thin rod, 1201-rotary round plate, 13-torsion spring, 14-round head block, 15-long cylinder, 16-baffle, 17-sharp head plate, 18-conveying assembly, 19-limiting thin rod, 20-elastic plate, 21-second reset spring, 22-inclined plate frame, 23-short cylinder. DETAILED DESCRIPTION
[0040] The technical solutions will be further described below in combination with specific embodiments. It should be noted that the words indicating directions such as up, down, left and right in this text are only for the positions of the shown structures in the corresponding drawings. The serial numbers of the components in this text, for example, first, second, etc., are only used to distinguish the described objects and do not have any sequence or technical meaning. Unless otherwise specified, the connection and coupling mentioned in this application include direct and indirect connection (coupling).
[0041] Embodiment 1: A surgical supply automatic feeding device based on operating room nursing, like Figures 1-4As shown, including the chassis 1, the chassis 1 top fixedly connected with the box 2, the box 2 top fixedly connected with the sterilizer 4, the box 2 front side rotationally connected with the electric rotating door 3, the sterilizer 4 bottom wall front left and right sides are fixedly connected with the rough connecting pipe 5, the rough connecting pipe 5 through the box 2 left and right two walls, the rough connecting pipe 5 lower end port fixedly connected with the spray pipe 6, the rough connecting pipe 5 lower end port and the spray pipe 6 communication, the spray pipe 6 is fixedly connected in the box 2 left and right side inner wall lower part, the sterilizer 4 will be through the rough connecting pipe 5 to the spray pipe 6 to transport the disinfectant, the spray pipe 6 sprays the disinfectant to the surface of the medicine for disinfection, the chassis 1 front side is provided with a trigger switch, the trigger switch is connected with the electric rotating door 3 line, press the trigger switch on the fixed plate 201, then retreat and wait for the electric rotating door 3 to open, the box 2 rear wall is fixedly connected with the transmission pipeline 202 having the function of conveying medicine, the box 2 left and right side inner wall is fixedly connected with the air cylinder 7 through the connecting block 9, the box 2 left and right wall lower part is provided with the load plate 8 in sliding mode, the air cylinder 7 telescopic rod end and the load plate 8 are fixedly connected.
[0042] When the patient starts the operation in the operating room, after the emergency, the nurse will report to the outside the required medicine, the personnel located outside the operating room uses the transmission pipeline 202 to convey the medicine to the load plate 8, when the medicine is conveyed, the sterilizer 4 will be through the rough connecting pipe 5 to the spray pipe 6 to transport the disinfectant, the spray pipe 6 sprays the disinfectant to the surface of the medicine for disinfection, when people need to use medicine, people will press the trigger switch on the fixed plate 201, then retreat and wait for the electric rotating door 3 to open, after the electric rotating door 3 rotates one hundred and fifty degrees outward, the air cylinder 7 will drive the load plate 8 and the medicine on it to slide to the front side, at this time, stop after sliding to the maximum distance, people start to take medicine, after taking the medicine, the air cylinder 7 contracts to the original position with the load plate 8, at this time, press the trigger switch again, the electric rotating door 3 will be closed and wait for the next time to open.
[0043] Example 2: on the basis of example 1, as shown in Figure 2 and Figure 3 It also includes the fixed plate 201 arranged symmetrically, the fixed plate 201 arranged symmetrically is arranged on the left and right sides of the rear part of the box 2, the number of the fixed plate 201 on the left and right sides of the box 2 is 2.
[0044] The above-mentioned automatic supply device is fixed on the wall in the operating room, and additional reinforcement is required through the fixed plate 201 to avoid the vibration generated during the operation of the whole device, so as to ensure that the whole device will not fall off.
[0045] As shown in Figures 5-7As shown, it also includes symmetrically arranged upper connecting pipes 11, which are fixed to the front and rear sides of the outer wall of the spray pipe 6, and the spray pipe 6 communicates with the upper connecting pipes 11. The upper wall of the left and right sides of the rear part of the carrier plate 8 is provided with gas outlets 10, and the upper wall of the left and right sides of the rear part of the carrier plate 8 is fixed with lower connecting pipes 1101. The upper end of the gas outlet 10 communicates with the lower connecting pipe 1101, the upper end of the lower connecting pipe 1101 contacts the lower end of the upper connecting pipe 11, the lower connecting pipe 1101 communicates with the upper connecting pipe 11, the rear wall of the upper connecting pipe 11 is fixed with a limiting frame 1103, the limiting frame 1103 is slidably provided with a sliding plate 1102, the upper wall of the sliding plate 1102 contacts the lower wall of the upper connecting pipe 11, and the first reset spring 1104 is connected between the sliding plate 1102 and the limiting frame 1103. When the carrier plate 8 moves forward with the lower connecting pipe 1101, the first reset spring 1104 changes from the compressed state to the released state, the first reset spring 1104 pushes the sliding plate 1102 to move forward, and blocks the lower end of the upper connecting pipe 11 to prevent the disinfectant from being sprayed out.
[0046] When the medicine on the carrier plate 8 starts to be disinfected, the upper connecting pipe 11 connected to the rear part of the spray pipe 6 communicates with the lower connecting pipe 1101, and the lower connecting pipe 1101 and the gas outlet 10 on the carrier plate 8 also communicate. At the same time that the disinfectant goes out of the spray pipe 6, it will also be transported to the lower part of the medicine through the upper connecting pipe 11, the lower connecting pipe 1101 and the gas outlet 10 to achieve the effect of comprehensive disinfection. When the carrier plate 8 moves forward with the lower connecting pipe 1101, in order to avoid waste, the first reset spring 1104 changes from the compressed state to the released state, and the first reset spring 1104 will push the sliding plate 1102 to move forward, and block the lower end of the upper connecting pipe 11. When the carrier plate 8 starts to move backward, the sliding plate 1102 will be pushed back to the original position by the lower connecting pipe 1101, so that the upper connecting pipe 11 and the lower connecting pipe 1101 restore communication.
[0047] As shown in Figure 6 and Figure 8 It also includes a rotating thin rod 12, which is rotatably connected to the lower end of the thick connecting pipe 5. The rotating thin rod 12 is fixedly connected with a rotating disc 1201 in the middle. The upper and lower ends of the rotating thin rod 12 are fixedly connected with a round head block 14. The round head block 14 and the outer wall of the inner side of the thick connecting pipe 5 are fixedly connected with a torsion spring 13. The torsion spring 13 is sleeved on the rotating thin rod 12. The round head block 14 will be extruded with the forward moving lower connecting pipe 1101. The round head block 14 is extruded by the lower connecting pipe 1101, and the rotating thin rod 12 and the rotating disc 1201 rotate at the same time. The rotating disc 1201 rotates ninety degrees from the horizontal state to the vertical state to block the thick connecting pipe 5, and the disinfectant can no longer be sprayed out.
[0048] When the carrier plate 8 moves forward, the lower connecting pipe 1101 and the carrier plate 8 move simultaneously, and the lower connecting pipe 1101 touches the round head block 14 during the movement, the round head block 14 rotates around the center of the rotating thin rod 12 under the extrusion of the lower connecting pipe 1101, the rotating thin rod 12 fixed to the round head block 14 rotates simultaneously with the rotating circular plate 1201, the rotating circular plate 1201 rotates 90 degrees from the horizontal state to the vertical state, the torsion spring 13 outside the connecting upper pipe wall deforms, the rotating circular plate 1201 in the changed state blocks the outlet of the thick connecting pipe 5, since the diameter of the rotating circular plate 1201 is the same as the inner diameter of the thick connecting pipe 5, the disinfectant is blocked outside the rotating circular plate 1201 in the changed state and cannot flow, when the carrier plate 8 moves backward, the lower connecting pipe 1101 and the round head block 14 are separated, the torsion spring 13 starts to reset, the round head block 14, the rotating thin rod 12 and the rotating circular plate 1201 recover from the vertical state to the horizontal state under the power of the resetting of the torsion spring 13, and the disinfectant recovers to flow.
[0049] As shown in Figure 9 and Figure 10 , it further comprises a long cylinder 15, which is uniformly arranged in the left and right walls inside the carrier plate 8 in a transverse rotating manner.
[0050] When the medicine comes out of the transmission pipe 202, the long cylinder 15 arranged on the carrier plate 8 contacts the medicine, and the medicine is transmitted from the rear side of the carrier plate 8 to the front side through the long cylinder 15, so that the medicine is not accumulated at the outlet of the transmission pipe 202, to ensure that the medicine is not left in the device or outside the device when the carrier plate 8 moves forward, and to avoid that the medicine is broken.
[0051] As shown in Figure 9 and Figure 10 , it further comprises a baffle 16, which is fixed to the front side of the upper wall of the carrier plate 8.
[0052] When the medicine moves forward on the long cylinder 15, the baffle 16 fixed to the carrier plate 8 intercepts the medicine, to avoid that the medicine slides out of the carrier plate 8.
[0053] As shown in Figure 11 , it further comprises a pointed plate 17, which is fixed to the middle of the rear wall of the baffle 16.
[0054] When the medicine moves forward on the long cylinder 15, in order to avoid that the medicine is too concentrated, the pointed plate 17 uniformly divides the medicine into two sides from the middle by using the special herringbone shape, to ensure that the medicine is taken more quickly and placed more reasonably.
[0055] As shown in Figure 11 and Figure 12As shown in the drawings, the device also comprises a conveying assembly 18 fixed to the rear wall of the carrier plate 8, the flat belt of the conveying assembly 18 and the lower end of the long cylinders 15 are in friction fit.
[0056] When the medicine moves on the long cylinders 15, the movement is by pushing between the medicines, so their power is very weak, and there is a risk of damage to the medicines in the process of collision, in order to reduce the occurrence of such cases, the conveying assembly 18 arranged below the group of long cylinders 15 will transfer its power through the friction between the conveying assembly 18 and the long cylinders 15, so that the long cylinders 15 rotate, and the medicines above obtain power and accelerate to move to the correct position on the carrier plate 8.
[0057] As shown in the drawings, Figure 11 and Figure 13 The device also comprises uniformly arranged limiting rods 19, the adjacent limiting rods 19 are slidingly installed with elastic plates 20, the elastic plates 20 are located on both sides of the pointed plate 17, the left and right sides of the elastic plates 20 are connected with the second return springs 21 between the baffles 16, the second return springs 21 are wound on the limiting rods 19, and the elastic plates 20 convert the kinetic energy of the medicines into elastic potential energy, providing a buffer for the movement of the medicines.
[0058] When the medicines move forward on the long cylinders 15, due to the different materials of the medicine packaging, in order to avoid damage to the packaging of fragile materials, when the medicines move to the rear of the baffles 16, the rear wall of the elastic plates 20 will contact the medicines, the medicines will compress the elastic plates 20 forward, because the two ends of the elastic plates 20 are connected with the second return springs 21, and they are sliding on the limiting rods 19, so when the elastic plates 20 are compressed, the second return springs 21 are also compressed, through this series of movements, the kinetic energy of the medicines is completely converted into elastic potential energy, and the medicines are safely stopped.
[0059] As shown in the drawings, Figure 11 and Figure 14 The device also comprises a slope frame 22 fixed to the left and right sides of the carrier plate 8, the slope frame 22 is uniformly provided with a plurality of short cylinders 23 inside, the front end of the slope frame 22 is connected with the baffles 16, and the rolling of the short cylinders 23 and the inclined arrangement of the slope frame 22 guide the movement of the medicines.
[0060] When the medicine moves on the long cylinder 15, because the shape of the medicine is different, the moving direction of the medicine will change, which will cause the medicine to be transferred to the edge of the carrier plate 8, and then fall to the left and right sides and be damaged when the carrier plate 8 moves forward. At this time, the inclined plate frame 22 and the short cylinder 23 arranged on the carrier plate 8 begin to play a role. The short cylinder 23 rolls and the inclined plate frame 22 is inclined, so that the movement of the medicine is standardized, the medicine is prevented from moving randomly, and the correct placement of the medicine is ensured to be reasonably used.
[0061] The above only describes the preferred embodiments of the present application, and it should be pointed out that for ordinary skilled persons in the art, several improvements and refinements can be made without departing from the principles of the present application, and these improvements and refinements should also be considered as the protection scope of the present application.
Claims
1. An automatic supply device for surgical supplies used in operating room care, characterized in that: It includes a base frame (1), a box (2) for disinfecting medicines is fixedly attached to the top of the base frame (1), a sterilizer (4) is fixedly attached to the top of the box (2), an electric rotating door (3) is rotatably connected to the side wall of the box (2), a thick connecting pipe (5) for conveying disinfectant is symmetrically arranged and fixed to the side wall of the sterilizer (4), the thick connecting pipe (5) passes through the side wall of the box (2), a spray pipe (6) is installed on the inner wall of the box (2) near the lower end of the thick connecting pipe (5), the lower end of the thick connecting pipe (5) is connected to the spray pipe (6), and the base frame (1) is close to A trigger switch is provided on one side of the electric revolving door (3). The trigger switch is connected to the circuit of the electric revolving door (3). A transmission pipe (202) with the function of conveying medicine is fixedly connected to the side wall of the box (2) away from the electric revolving door (3). A cylinder (7) is fixedly connected to the side of the inner wall of the box (2) near the nozzle (6) through a connecting block (9). A loading plate (8) is slidably provided on the side of the inner wall of the box (2) near the nozzle (6). The loading plate (8) is located above the cylinder (7). The end of the telescopic rod of the cylinder (7) is fixedly connected to the loading plate (8). It also includes symmetrically arranged fixing plates (201), which are arranged on the side of the housing (2) near the transmission pipe (202); It also includes symmetrically arranged upper connecting pipes (11), which are fixed to the side of the nozzle (6) away from the thick connecting pipe (5). The nozzle (6) is connected to the upper connecting pipes (11). The side wall of the carrying plate (8) near the transmission pipe (202) has symmetrically arranged air outlets (10). The top wall of the carrying plate (8) near the side of the upper connecting pipe (11) is symmetrically fixed to the lower connecting pipes (1101). The upper end of the air outlets (10) is connected to the lower connecting pipes (1101). The upper end of the lower connecting pipe (1101) contacts the lower end of the upper connecting pipe (11), and the lower connecting pipe (1101) is connected to the upper connecting pipe (11). A limit frame (1103) is fixedly connected to the side wall of the upper connecting pipe (11). A sliding plate (1102) is slidably provided on the limit frame (1103). The upper wall of the sliding plate (1102) contacts the lower wall of the upper connecting pipe (11). A first reset spring (1104) is connected between the sliding plate (1102) and the limit frame (1103). It also includes a rotating thin rod (12), which is rotatably connected to the side of the thick connecting pipe (5) near the nozzle (6). A rotating circular plate (1201) is fixed in the middle of the rotating thin rod (12). Round head blocks (14) are fixed at both ends of the side of the rotating thin rod (12) near the nozzle (6). Torsion springs (13) are fixed between the round head blocks (14) and the outer wall of the inner side of the thick connecting pipe (5). The torsion springs (13) are sleeved on the rotating thin rod (12).
2. The automatic supply device for surgical supplies in the operating room according to claim 1, characterized in that: It also includes a long cylinder (15), which is horizontally rotated and evenly arranged on the upper part of the carrier plate (8).
3. An automatic supply device for surgical supplies in the operating room according to claim 2, characterized in that: It also includes a baffle (16), which is fixed to the upper wall of the carrier plate (8) on the side away from the transmission pipe (202).
4. An automatic supply device for surgical supplies in the operating room according to claim 3, characterized in that: It also includes a pointed plate (17), which is fixed to the middle of the baffle (16), with the tip of the pointed plate (17) facing the side of the transmission pipe (202).
5. An automatic supply device for surgical supplies in the operating room according to claim 4, characterized in that: It also includes a conveying assembly (18), which is fixed to the upper wall of the carrier plate (8) on the side away from the baffle (16).
6. An automatic supply device for surgical supplies in the operating room according to claim 5, characterized in that: It also includes uniformly arranged limiting rods (19), the limiting rods (19) are installed on the limiting rods (19), and elastic plates (20) are slidably installed on the limiting rods (19). The symmetrically arranged elastic plates (20) are located on both sides of the pointed plate (17). A second return spring (21) is connected between the side wall of the elastic plate (20) and the baffle (16). The second return spring (21) is wound around the limiting rods (19).
7. An automatic supply device for surgical supplies in the operating room according to claim 6, characterized in that: It also includes a slant frame (22), which is symmetrically arranged and fixed on the top wall of the carrier plate (8) near the elastic plate (20). Multiple short cylinders (23) for guiding the medicine are evenly arranged inside the slant frame (22).
Citation Information
Patent Citations
Medical surgical knife sterilization and disinfection device
CN113181393A
E-commerce-based scanning device
CN113479604A
A stainless steel delivery bin for medical environment
CN210239533U