An intermediate disinfection device and method for isolation

By designing a transit disinfection device containing ultraviolet lamps and disinfectant, combined with an automated packaging system, the problem of poor disinfection effect of existing devices has been solved, efficient disinfection and safe waste disposal are achieved, and user safety is ensured.

CN119868619BActive Publication Date: 2025-08-05JIANGSU CANCER HOSPITAL
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Patent Information

Application Number
CN202510099676.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-08-05
Estimated Expiration
2045-01-22

AI Technical Summary

Technical Problem

The existing transit disinfection devices have poor disinfection effects, increasing the risk of infection for medical staff, especially when dealing with high-risk infectious disease waste.

Method used

A transit disinfection device including a contactless box, an automatic collection unit and a cleaning mechanism is designed. It uses a combination of ultraviolet lamps and disinfectant to perform comprehensive disinfection, and ensures that the garbage does not directly contact the user through automatic packaging and sealing mechanisms, including electric push rods, motors, ultraviolet lamps, disinfection tubes, atomization nozzles and automatic packaging systems.

Benefits of technology

It improves the disinfection and sterilization effect, avoids user infection, ensures that bacteria or viruses do not spread, and realizes fully enclosed automatic packaging and sealing to ensure user safety to the greatest extent.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of transfer disinfection, and specifically relates to a transfer disinfection device and method for isolation, including a contactless box, an automatic collection mechanism, and a cleaning mechanism. The top of the contactless box is fixedly connected to a disinfection and sterilization box. One end of the disinfection and sterilization box is fixedly connected to a feeding box. Both ends of the disinfection and sterilization box are connected to a second sealing door through a rotating shaft. The top of the first liquid storage tank is connected to a first connecting pipe. This device is not only applicable to various environments, but also convenient for more comprehensive disinfection and sterilization work on garbage, improving the disinfection and sterilization effect, avoiding the situation of user infection. At the same time, it can also automatically pack and automatically open and fix the garbage, so as to ensure that users outside the isolation room do not need to directly contact the garbage, thereby improving the safety of user use. At the same time, it can also ensure the spread of bacteria or viruses, further ensuring the safety of user use.
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Description

Technical Field

[0001] The present invention relates to the technical field of transfer disinfection, and specifically relates to a transfer disinfection device and method for isolation. Background Art

[0002] An isolation ward is a specially demarcated area in a hospital to prevent cross-infection of viruses. By providing a positive-pressure protection area, isolation is provided to effectively protect the safety of medical staff. When something needs to be submitted between the isolation ward and the external environment, repeated disinfection is required to avoid infecting external personnel. Usually, a transfer disinfection device is set on one side of the isolation ward for use in the transfer between the isolation ward and the outside.

[0003] Currently, in the use of some existing transfer disinfection devices, the disinfection effect is poor, which increases the risk of infection for medical staff, and further increases the danger in the use by medical staff. When dealing with high-risk infectious diseases and submitting the garbage inside the isolation ward to the outside, the risk of infection is even higher. Summary of the Invention

[0004] The purpose of the present invention is to provide a transfer disinfection device and method for isolation, so as to solve the problem raised in the above background art that in the use of some existing transfer disinfection devices, the disinfection effect is poor, which increases the risk of infection for medical staff, and further increases the danger in the use by medical staff. When dealing with high-risk infectious diseases and submitting the garbage inside the isolation ward to the outside, the risk of infection is even higher. This solution is not only applicable to various environments, but also convenient for more comprehensive disinfection and sterilization work on garbage, improving the disinfection and sterilization effect, avoiding the situation of user infection, and at the same time, it can also automatically pack and automatically open and fix the garbage, so as to ensure that users outside the isolation ward do not need to directly contact the garbage, thereby improving the safety of user use. At the same time, it can also ensure the diffusion of bacteria or viruses, further ensuring the safety of user use.

[0005] To achieve the above object, the present invention provides the following technical solutions: A transfer disinfection device and method for isolation, the device includes a contactless box, an automatic collection mechanism, and a cleaning mechanism. The top of the contactless box is fixedly connected with a disinfection and sterilization box. One end of the disinfection and sterilization box is fixedly connected with a feeding box, and the feeding box is located on the top of the contactless box. One end of the contactless box is connected with a first sealing door through a rotating shaft. Both ends of the disinfection and sterilization box are connected with second sealing doors through rotating shafts. One end of the feeding box is connected with a third sealing door through a rotating shaft. A connection port is opened at the bottom of the disinfection and sterilization box. The bottom of the disinfection and sterilization box is connected with a rotating plate through a rotating shaft, and the rotating plate is located on the top of the contactless box. A lifting plate is slidably connected to the top of the rotating plate. A first electric push rod is arranged in the middle of the rotating plate, and the output end of the first electric push rod is fixedly connected with the bottom end of the lifting plate. The inner wall of the top of the contactless box is fixedly connected with a track. One end of the track is slidably connected with an electric sliding sleeve. A first motor is arranged at the bottom end of the electric sliding sleeve. The output end of the first motor is fixedly connected with an ultraviolet lamp. The output end of the first motor is connected with a disinfection pipe through a rotary seal. The side of the disinfection pipe facing the ultraviolet lamp is evenly connected with atomizing nozzles. A first liquid storage tank is arranged on the inner wall of one side of the contactless box. One end of the first liquid storage tank is connected with a first liquid adding pipe, and one end of the first liquid adding pipe is located outside the disinfection and sterilization box. The top of the first liquid storage tank is connected with a first connecting pipe, and one end of the first connecting pipe is connected with one end of the disinfection pipe through a rotary seal. A first water pump is arranged in the middle of the first connecting pipe.

[0006] Preferably, the connection port is funnel-shaped, which is convenient for guiding the liquid to flow into the inside of the liquid guiding groove. Both the ultraviolet lamp and the disinfection pipe are C-shaped, which improves the disinfection and sterilization range, so that the garbage can be disinfected and sterilized more comprehensively. The control ends of the first electric push rod, the electric sliding sleeve, the first motor, the ultraviolet lamp and the first water pump are all electrically connected to an external power supply through an external switch, which is convenient for the operation of this device.

[0007] Preferably, the automatic collection mechanism includes a second electric push rod, a packing box, a material inlet, a rotating rod, a second motor, a roll of medical garbage bags, a first medical garbage bag, a shrinker, a receiving groove, a shrinkage belt, a rotating groove, a connecting groove, a rotating roller, a gear, a third motor, a pulling hole, a sliding column, a spring, a steel wire rope, a bag-tying device, a shearing device, a third electric push rod, a fourth motor and clamping blocks. The inner walls of the contactless box are symmetrically provided with second electric push rods, and the tops of the second electric push rods are connected to a rotating plate through a rotating shaft. One end of the contactless box is fixedly connected to a packing box. A material inlet is formed through the top end of one side of the contactless box and extends into the inside of the feeding box. A second motor is arranged at one end of the feeding box. A rotating rod is arranged inside the feeding box, and one end of the rotating rod passes through the feeding box and is fixedly connected to the output end of the second motor. The other end of the rotating rod is rotatably connected to the middle of the third sealing door. A roll of medical garbage bags is arranged inside the feeding box, and the inside of the roll of medical garbage bags is slidably connected to the rotating rod. A first medical garbage bag is arranged inside the packing box, and the top end of the first medical garbage bag passes through the material inlet and is fixedly connected to the roll of medical garbage bags. A shrinker is fixedly connected to one end of the packing box. A receiving groove is formed in the middle of the shrinker. A shrinkage belt is arranged inside the packing box, and the surface of the shrinkage belt is fitted to the inner walls of the contactless box and the packing box. The two ends of the shrinkage belt are fitted to each other and are fixedly connected. One end of the shrinkage belt is slidably connected to the receiving groove. The shrinkage belt is located on the surface of the first medical garbage bag. Rotating grooves are symmetrically formed inside the shrinker, and the middle of each rotating groove is connected to the receiving groove. A gear is arranged inside the shrinker and is connected to the bottom ends of the two rotating grooves. Rotating rollers are arranged inside the rotating grooves, and the surfaces of the rotating rollers are fitted to the surface of the shrinkage belt. The bottom ends of the rotating rollers are fixedly connected to gears, and the bottom ends of the gears are connected to the inner wall of the connecting groove through bearings. The gears mesh with each other. A third motor is arranged on the inner wall of the top end of one of the rotating grooves, and the output end of the third motor is fixedly connected to one of the rotating rollers. The top end of the other rotating roller is connected to the inner wall of the rotating groove through a bearing. A bag-tying device is arranged at the bottom end of the shrinker, and a shearing device is arranged at the top end of the shrinker, which facilitates the user to pack the garbage.

[0008] Preferably, the shrinkage belt has flexibility and supportability, which facilitates the reset of the shrinkage belt. The receiving groove is in a horn shape, which facilitates the sliding of the shrinkage belt.

[0009] Preferably, pulling holes are symmetrically formed at one end of the packing box. Sliding columns are slidably connected inside the pulling holes. Springs are fixedly connected to the top ends of the sliding columns, and the top ends of the springs are fixedly connected to the pulling holes. Steel wire ropes are fixedly connected to the bottom ends of the sliding columns, and one end of each steel wire rope passes through the pulling hole and is fixedly connected to the shrinkage belt, which facilitates the reset of the shrinkage belt and enables it to be fully opened.

[0010] Preferably, third electric push rods are symmetrically arranged at one end of the packing box, and the third electric push rods are respectively located at both ends of the shearing device. A fourth motor is arranged at one end of each of the third electric push rods. The output ends of the fourth motors are fixedly connected with clamping blocks, and one ends of the clamping blocks are respectively in contact with the inner walls of the first medical garbage bags. The bottoms of the clamping blocks are located at the tops of the shrinkage belts, which facilitates clamping and fixing one end of the first medical garbage bag.

[0011] Preferably, the control ends of the second electric push rod, the second motor, the third motor, the bag-tying device, the shearing device, the third electric push rod and the fourth motor are all electrically connected to an external power supply through an external switch, which facilitates the operation of the device.

[0012] Preferably, the cleaning mechanism includes a liquid guide groove, a shunt pipe, a liquid outlet head, a second liquid storage tank, a second liquid adding pipe, a second connecting pipe and a second water pump. Liquid guide grooves are evenly formed at the tops of the rotating plate and the lifting plate, and both ends of the liquid guide grooves are bevel-shaped. The liquid guide grooves at the top of the lifting plate are all through-type. The lifting plate is of a mesh structure. Four groups of shunt pipes are evenly arranged at the bottom of the rotating plate. Liquid outlet heads are evenly connected to the surfaces of the shunt pipes, and one ends of the liquid outlet heads pass through the rotating plate and extend into the liquid guide grooves. A second liquid storage tank is arranged inside the contactless box. One end of the second liquid storage tank is connected with a second liquid adding pipe, and one end of the second liquid adding pipe extends to the outside of the contactless box. A second connecting pipe is connected to the top of the second liquid storage tank, and one end of the second connecting pipe is connected to two groups of shunt pipes. A second water pump is arranged in the middle of the second connecting pipe. The control end of the second water pump is electrically connected to an external power supply through an external switch, which facilitates the user to clean and disinfect the rotating plate and the lifting plate.

[0013] The operation method of the device:

[0014] Step 1: Disinfection of non-infectious garbage. The user opens the disinfection and sterilization box through the second sealing door, then places the garbage on the top of the lifting plate. The lifting plate and the garbage can be lifted by the first electric push rod. At the same time, the electric sliding sleeve can move the first motor, the ultraviolet lamp and the disinfection pipe to the top of the center of the lifting plate. Then the first water pump, the first motor and the ultraviolet lamp work simultaneously. The first motor drives the ultraviolet lamp and the disinfection pipe to rotate around the lifting plate and the garbage. Under the action of the first water pump, the first connecting pipe and the disinfection pipe, the disinfectant liquid in the first liquid storage tank can be sprayed out through the atomizing nozzle. At the same time, the ultraviolet rays generated by the ultraviolet lamp can also be used for disinfection. After the disinfection and sterilization are completed, the first motor and the electric sliding sleeve control the ultraviolet lamp and the disinfection pipe to reset. At this time, the user can open the second sealing door to take out the garbage.

[0015] Step 2: Disinfection of infectious waste. The user opens the second sealed door in the isolation room, places the waste on the top of the lifting plate, raises the lifting plate and the waste again through the first electric push rod. At the same time, the ultraviolet lamp and the disinfection tube are made to be located on both sides of the waste again through the electric sliding sleeve and the first motor, and disinfection and sterilization are carried out again through the disinfectant liquid and ultraviolet rays. After the disinfection and sterilization are completed, the ultraviolet lamp and the disinfection tube are reset, and the generated waste liquid remains inside the liquid guide groove;

[0016] Step 3: Pouring and rinsing. The output end of the second electric push rod is shortened, and the second electric push rod drives one end of the rotating plate and the lifting plate to rotate downward until one end of the rotating plate fits with one end of the packing box. At the same time, the waste at the top of the lifting plate will automatically slide into the first medical garbage bag, and the waste liquid will also flow into the first medical garbage bag through the liquid guide groove. Then the second water pump works, and the disinfection cleaning liquid in the second liquid storage tank enters the inside of the shunt pipe through the second water pump and the second connecting pipe, and then is discharged into the liquid guide groove through the liquid outlet head, flows into the first medical garbage bag through the liquid guide groove, and finally completes the flushing and disinfection work of the liquid guide groove. After the flushing is completed, the second electric push rod controls the rotating plate to reset;

[0017] Step 4: Tightening and packing. The output end of the third motor drives a set of rollers and gears to rotate. Through the gears, the two sets of rollers can rotate in opposite directions at the same time. Through the gears, the shrinkage belt can slide inside the receiving groove, so that the shrinkage belt shrinks the first medical garbage bag. At the same time, one end of the receiving groove can pull the steel wire rope, and the steel wire rope pulls the sliding column, and the sliding column can stretch the spring. Through the receiving groove, the upper part of the first medical garbage bag can be shrunk. At the same time, the output end of the fourth motor drives the clamping blocks to rotate slowly, so that the bottom ends of the clamping blocks rotate towards the mutually approaching ends. When the top of the first medical garbage bag is tightened, it is tied up through the tying device, and at the same time, the top end of the first medical garbage bag is cut off through the shearing device. At this time, the user can open the first sealed door and take out the first medical garbage bag that has been packed and tied inside the contactless box;

[0018] Step 5: Preparation work. After taking out, the output end of the third motor drives the roller to rotate in the reverse direction, so that the shrinkage band moves towards the inside of the packing box. At this time, through the spring, the sliding column and the steel wire rope, the surface of the shrinkage band can be made to fit with the inner wall of the packing box. By continuously moving the shrinkage band towards the inside of the packing box through the third motor and the roller, the height of both ends of the shrinkage band can be restricted through the steel wire rope and the shrinker. At the same time, the shrinkage band itself has elasticity, so that the surface of the shrinkage band can fit with the inner wall of the contactless box. Then, the output end of the second motor drives the rotating rod to rotate, and the rotating rod drives the medical garbage bag roll to rotate. Through the rotating medical garbage bag roll, the first medical garbage bag can be released downward until the bottom end of the first medical garbage bag fits with the inner wall of the packing box. Then, the output end of the third electric push rod extends, and at the same time, the output end of the fourth motor drives the clamping block to rotate slowly in the reverse direction until the clamping block is in a vertical state. Since the first medical garbage bag itself is not made of ordinary soft material, the first medical garbage bag will not be in a loose state. Through the continuously extending third electric push rod and the rotating fourth motor, the clamping block can be made to be inside the first medical garbage bag. Then, by resetting the third electric push rod, the clamping block can pull one side of the first medical garbage bag until one side of the first medical garbage bag is tightly fitted with the packing box through the clamping block. At this time, the first medical garbage bag is fixed for the next use.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] When a patient without an infectious disease needs to be treated in a special aseptic environment, the user opens the disinfection and sterilization box through the second sealed door, then places the garbage on the top of the lifting plate, closes the second sealed door. At this time, the first electric push rod works, and through the first electric push rod, the lifting plate and the garbage can be moved. At the same time, the electric sliding sleeve can move the first motor, the ultraviolet lamp and the disinfection pipe to the top of the center of the lifting plate. Then, the first water pump, the first motor and the ultraviolet lamp work simultaneously. The first motor drives the ultraviolet lamp and the disinfection pipe to rotate around the lifting plate and the garbage. Under the action of the first water pump, the first connecting pipe and the disinfection pipe, the disinfectant liquid in the first liquid storage tank can be sprayed out through the atomizing nozzle. At the same time, the ultraviolet rays generated by the ultraviolet lamp can also be used for disinfection. The C-shaped ultraviolet lamp and the disinfection pipe can increase the scope of disinfection and sterilization. At the same time, through the disinfectant liquid and ultraviolet rays, the disinfection and sterilization effect can be improved, further enhancing the safety of the user. After disinfection and sterilization, the first motor and the electric sliding sleeve control the ultraviolet lamp and the disinfection pipe to reset. At this time, the user can open the second sealed door to take out the garbage. When the user needs to deliver the infectious garbage inside the isolation room, the user opens the second sealed door inside the isolation room, places the garbage on the top of the lifting plate, raises the lifting plate and the garbage again through the first electric push rod. At the same time, the ultraviolet lamp and the disinfection pipe are located on both sides of the garbage again through the electric sliding sleeve and the first motor. Disinfection and sterilization are carried out again through the disinfectant liquid and ultraviolet rays. After disinfection and sterilization, the ultraviolet lamp and the disinfection pipe are reset. The generated waste liquid remains in the liquid guide groove. At this time, the output end of the second electric push rod is shortened, and the second electric push rod drives the turntable and one end of the lifting plate to rotate downward until one end of the turntable fits with one end of the packing box. At the same time, the garbage on the top of the lifting plate will also automatically slide into the first medical garbage bag. The waste liquid will also flow into the first medical garbage bag through the liquid guide groove. Then, the second water pump works. Through the second water pump and the second connecting pipe, the disinfection cleaning liquid in the second liquid storage tank enters the inside of the shunt pipe, and then is discharged into the liquid guide groove through the liquid outlet head, flows through the liquid guide groove into the first medical garbage bag, and finally completes the flushing and disinfection work of the liquid guide groove. After flushing is completed, the second electric push rod controls the turntable to reset. Then, the output end of the third motor drives a set of rollers and gears to rotate. Through the gears, the two rollers can rotate in opposite directions at the same time. Through the gears, the shrinkage belt can slide in the receiving groove, so that the shrinkage belt shrinks the first medical garbage bag. At the same time, one end of the receiving groove can pull the steel wire rope, and the steel wire rope pulls the sliding column. Through the sliding column, the spring can be stretched. Through the receiving groove, the upper part of the first medical garbage bag can be shrunk. At the same time, the output end of the fourth motor drives the clamp block to slowly rotate, so that the bottom end of the clamp block rotates towards the mutually approaching end, thus preventing the clamp block from blocking the shrinkage belt from tightening the top of the first medical garbage bag. When the top of the first medical garbage bag is tightened, it is tied up through the tying device, and at the same time, the top of the first medical garbage bag is cut off through the shearing device.At this time, the user can open the first sealed door and take out the first medical garbage bag that has been packed and tied inside the contactless box, thus avoiding the bacteria or viruses inside the isolation room from infecting the users outside. By first disinfecting and sterilizing and then performing fully enclosed automatic packing and sealing, it can further avoid the remaining bacteria and viruses from spreading to the outside, further improving the safety of user use. Through the non-direct contact inside and outside the isolation room, the safety of the user is guaranteed to the greatest extent. After taking out, at the same time, the output end of the third motor drives the roller to rotate in the reverse direction, so that the shrinkage belt moves towards the inside of the packing box. At this time, through the spring, sliding column and steel wire rope, the surface of the shrinkage belt can be made to fit the inner wall of the packing box. By continuously making the shrinkage belt move towards the inside of the packing box through the third motor and the roller, the height of both ends of the shrinkage belt can be restricted through the steel wire rope and the shrinker. At the same time, the shrinkage belt itself has elasticity, so that the surface of the shrinkage belt can fit the inner wall of the contactless box. Then, the output end of the second motor drives the rotating rod to rotate, and the rotating rod drives the medical garbage bag roll to rotate. Through the rotating medical garbage bag roll, the first medical garbage bag can be released downward until the bottom end of the first medical garbage bag fits the inner wall of the packing box. Then, the output end of the third electric push rod extends, and at the same time, the output end of the fourth motor drives the clamping block to rotate slowly in the reverse direction until the clamping block is in a vertical state. Since the first medical garbage bag itself is not made of ordinary soft material, the first medical garbage bag will not be in a loose state. Through the continuously extending third electric push rod and the rotating fourth motor, the clamping block can be made to be inside the first medical garbage bag. Then, through the reset of the third electric push rod, the clamping block can pull one side of the first medical garbage bag until one side of the first medical garbage bag is tightly fitted to the packing box through the clamping block. At this time, the first medical garbage bag is fixed for the next use. This device is not only applicable to various environments, but also convenient for more comprehensive disinfection and sterilization work on garbage, improving the disinfection and sterilization effect, avoiding the situation of user infection. At the same time, it can also automatically pack and automatically open and fix the garbage, so as to ensure that the users outside the isolation room do not need to directly contact the garbage, thereby improving the safety of user use. At the same time, it can also ensure the diffusion of bacteria or viruses, further ensuring the safety of user use., BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a three-dimensional schematic diagram of the present invention;

[0022] Figure 2 is a sectional three-dimensional schematic diagram of the present invention;

[0023] Figure 3 is a sectional three-dimensional schematic diagram of the disinfection and sterilization box and the first liquid storage box in the present invention;

[0024] Figure 4 is a sectional three-dimensional schematic diagram of the contactless box and the disinfection and sterilization box in the present invention;

[0025] Figure 5 This is a sectional three-dimensional schematic diagram of the contactless box and the feeding box in the present invention;

[0026] Figure 6 This is a sectional three-dimensional schematic diagram of the contactless box and the packing box in the present invention;

[0027] Figure 7 This is a sectional three-dimensional schematic diagram of the shrinker and the drawing hole in the present invention;

[0028] Figure 8 This is a sectional three-dimensional schematic diagram of the transfer groove and the connecting groove in the present invention;

[0029] Figure 9 This is a sectional three-dimensional schematic diagram of the receiving groove and the transfer groove in the present invention.

[0030] In the figure: 1, contactless box; 2, disinfection and sterilization box; 3, feeding box; 4, first sealing door; 5, second sealing door; 6, third sealing door; 7, rotating plate; 8, lifting plate; 9, first electric push rod; 10, connection port; 11, track; 12, electric sliding sleeve; 13, first motor; 14, ultraviolet lamp; 15, disinfection pipe; 16, atomizing nozzle; 17, first liquid storage tank; 18, first liquid adding pipe; 19, first connecting pipe; 20, first water pump; 21, second electric push rod; 22, packing box; 23, material port; 24, rotating rod; 25, second motor; 26, medical garbage bag roll; 27, first medical garbage bag; 28, shrinker; 29, receiving groove; 30, shrinkage belt; 31, transfer groove; 32, connecting groove; 33, rotating roller; 34, gear; 35, third motor; 36, drawing hole; 37, sliding column; 38, spring; 39, steel wire rope; 40, tying device; 41, shearing device; 42, third electric push rod; 43, fourth motor; 44, clamping block; 45, liquid guiding groove; 46, shunt pipe; 47, liquid outlet head; 48, second liquid storage tank; 49, second liquid adding pipe; 50, second connecting pipe; 51, second water pump. Detailed implementation manners

[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0032] Please refer to Figures 1-9 , an embodiment provided by the present invention:

[0033] A transfer disinfection device and method for isolation. The device includes a contactless box 1, an automatic collection mechanism, and a cleaning mechanism. A disinfection and sterilization box 2 is fixedly connected to the top end of the contactless box 1. One end of the disinfection and sterilization box 2 is fixedly connected to a feeding box 3, and the feeding box 3 is located at the top end of the contactless box 1. One end of the contactless box 1 is connected to a first sealing door 4 through a rotating shaft. Both ends of the disinfection and sterilization box 2 are connected to second sealing doors 5 through rotating shafts. One end of the feeding box 3 is connected to a third sealing door 6 through a rotating shaft. A connection port 10 is opened at the bottom end of the disinfection and sterilization box 2. A rotating plate 7 is connected to the bottom end of the disinfection and sterilization box 2 through a rotating shaft, and the rotating plate 7 is located at the top end of the contactless box 1. A lifting plate 8 is slidably connected to the top end of the rotating plate 7. A first electric push rod 9 is arranged in the middle of the rotating plate 7, and the output end of the first electric push rod 9 is fixedly connected to the bottom end of the lifting plate 8. The inner wall of the top end of the contactless box 1 is fixedly connected with a track 11. One end of the track 11 is slidably connected with an electric sliding sleeve 12. A first motor 13 is arranged at the bottom end of the electric sliding sleeve 12. The output end of the first motor 13 is fixedly connected with an ultraviolet lamp 14. The output end of the first motor 13 is connected to a disinfection pipe 15 through a rotary seal. A plurality of atomizing nozzles 16 are uniformly connected to one side of the disinfection pipe 15 facing the ultraviolet lamp 14. A first liquid storage tank 17 is arranged on the inner wall of one side of the contactless box 1. One end of the first liquid storage tank 17 is connected to a first liquid adding pipe 18, and one end of the first liquid adding pipe 18 is located outside the disinfection and sterilization box 2. The top end of the first liquid storage tank 17 is connected to a first connecting pipe 19, and one end of the first connecting pipe 19 is connected to one end of the disinfection pipe 15 through a rotary seal. A first water pump 20 is arranged in the middle of the first connecting pipe 19;

[0034] Please refer to Figures 2-9, in this embodiment, the automatic collection mechanism includes a second electric push rod 21, a packing box 22, a material inlet 23, a rotating rod 24, a second motor 25, a medical garbage bag roll 26, a first medical garbage bag 27, a shrinker 28, a receiving groove 29, a shrinkage belt 30, a rotating groove 31, a connecting groove 32, a rotating roller 33, a gear 34, a third motor 35, a pulling hole 36, a sliding column 37, a spring 38, a steel wire rope 39, a bag-tying device 40, a shearing device 41, a third electric push rod 42, a fourth motor 43 and a clamping block 44. The inner walls of the contactless box 1 are symmetrically provided with second electric push rods 21, and the tops of the second electric push rods 21 are all connected to the rotating plate 7 through a rotating shaft. One end of the contactless box 1 is fixedly connected to a packing box 22. A material inlet 23 is penetrated and opened at the top of one side of the contactless box 1, and the material inlet 23 extends into the internal of the feeding box 3. A second motor 25 is provided at one end of the feeding box 3. A rotating rod 24 is provided in the feeding box 3, and one end of the rotating rod 24 passes through the feeding box 3 and is fixedly connected to the output end of the second motor 25. The other end of the rotating rod 24 is rotatably connected to the middle of the third sealing door 6. A medical garbage bag roll 26 is provided in the feeding box 3, and the inside of the medical garbage bag roll 26 is slidably connected to the rotating rod 24. A first medical garbage bag 27 is provided in the packing box 22, and the top of the first medical garbage bag 27 passes through the material inlet 23 and is fixedly connected to the medical garbage bag roll 26. One end of the packing box 22 is fixedly connected to a shrinker 28. A receiving groove 29 is opened in the middle of the shrinker 28. A shrinkage belt 30 is provided in the packing box 22, and the surface of the shrinkage belt 30 is fitted to the inner walls of the contactless box 1 and the packing box 22. The two ends of the shrinkage belt 30 are fitted to each other and are fixedly connected. One end of the shrinkage belt 30 is slidably connected to the receiving groove 29. The shrinkage belt 30 is located on the surface of the first medical garbage bag 27. Rotating grooves 31 are symmetrically opened in the shrinker 28, and the middle of the rotating grooves 31 is connected to the receiving groove 29. A gear 34 is provided in the shrinker 28, and the gear 34 is connected to the bottom ends of the two rotating grooves 31. Rotating rollers 33 are provided in the rotating grooves 31, and the surfaces of the rotating rollers 33 are all fitted to the surface of the shrinkage belt 30. The bottom ends of the rotating rollers 33 are all fixedly connected to the gear 34, and the bottom ends of the gear 34 are all connected to the inner wall of the connecting groove 32 through a bearing. The gears 34 are meshed with each other. A third motor 35 is provided on the inner wall at the top of one of the rotating grooves 31, and the output end of the third motor 35 is fixedly connected to one of the rotating rollers 33. The top of the other rotating roller 33 is connected to the inner wall of the rotating groove 31 through a bearing. A bag-tying device 40 is provided at the bottom end of the shrinker 28. A shearing device 41 is provided at the top end of the shrinker 28. The output end of the second electric push rod 21 shortens, and the second electric push rod 21 drives one end of the rotating plate 7 and the lifting plate 8 to rotate downward until one end of the rotating plate 7 is fitted to one end of the packing box 22. At the same time, the garbage at the top of the lifting plate 8 will also automatically slide into the first medical garbage bag 27. The waste liquid will also flow into the first medical garbage bag 27 through the liquid guiding groove 45. After the garbage is dumped and the rotating plate 7 and the lifting plate 8 are rinsed clean,After the transfer plate 7 and the lifting plate 8 are reset, at this time, the output end of the third motor 35 drives a set of rollers 33 and gears 34 to rotate. Through two sets of meshing gears 34, the two sets of rollers 33 can rotate in opposite directions at the same time. Through the two sets of gears 34, the shrinkage belt 30 can slide inside the receiving groove 29, so that the shrinkage belt 30 shrinks the first medical garbage bag 27. When the top of the first medical garbage bag 27 is tightened, it is tied up by the tying device 40, and at the same time, the top end of the first medical garbage bag 27 is cut off by the cutter 41. At this time, the user can open the first sealing door 4 to take out the first medical garbage bag 27 that has been packed and ligated inside the contactless box 1, which is convenient for the user to pack the garbage;

[0035] Please refer to Figure 7 , in this embodiment, pulling holes 36 are symmetrically opened at one end of the packing box 22. Slide columns 37 are slidably connected inside the pulling holes 36. Springs 38 are fixedly connected to the tops of the slide columns 37, and the tops of the springs 38 are fixedly connected to the pulling holes 36. Steel wire ropes 39 are fixedly connected to the bottoms of the slide columns 37, and one ends of the steel wire ropes 39 pass through the pulling holes 36 and are fixedly connected to the shrinkage belt 30. When the receiving groove 29 shrinks, one end of the receiving groove 29 can pull the steel wire rope 39, and the steel wire rope 39 pulls the slide column 37 to slide downward inside the pulling hole 36. The spring 38 can be stretched through the slide column 37, which is convenient for the shrinkage belt 30 to reset so that it can be fully opened. When the shrinkage belt 30 resets, the shrinkage belt 30 moves into the packing box 22. At this time, under the action of the self-elastic force of the spring 38, the slide column 37 moves upward. The upward slide column 37 pulls one end of the steel wire rope 39 upward, and through the steel wire rope 39, one end of the shrinkage belt 30 can be pulled to approach the inner wall of one side of the packing box 22, so that the surface of the shrinkage belt 30 fits with the inner wall of the packing box 22. Through the continuous movement of the third motor 35 and the rollers 33, the shrinkage belt 30 is continuously moved into the packing box 22. The heights of both ends of the shrinkage belt 30 can be limited through the steel wire rope 39 and the shrinker 28. At the same time, the shrinkage belt 30 itself has elasticity, so that the surface of the shrinkage belt 30 can fit with the inner wall of the contactless box 1;

[0036] Please refer to Figure 6, in this embodiment, third electric push rods 42 are symmetrically arranged at one end of the packing box 22, and the third electric push rods 42 are respectively located at both ends of the shearing device 41. A fourth motor 43 is arranged at one end of each of the third electric push rods 42. The output ends of the fourth motors 43 are fixedly connected with clamping blocks 44, and one ends of the clamping blocks 44 are respectively in contact with the inner wall of the first medical garbage bag 27. The bottom ends of the clamping blocks 44 are located at the top end of the shrinkage belt 30. When the upper part of the first medical garbage bag 27 is shrunk by the shrinkage groove 29, at this time, the output ends of the fourth motors 43 drive the clamping blocks 44 to slowly rotate, so that the bottom ends of the clamping blocks 44 rotate towards the mutually approaching ends, thereby preventing the clamping blocks 44 from blocking the shrinkage belt 30 from tightening the top end of the first medical garbage bag 27. When the bottom end of the first medical garbage bag 27 is in contact with the inner wall of the packing box 22, then the output ends of the third electric push rods 42 extend, and at the same time, the output ends of the fourth motors 43 drive the clamping blocks 44 to slowly rotate in the reverse direction until the clamping blocks 44 are in a vertical state. Since the first medical garbage bag 27 itself is not an ordinary soft material and has a certain hardness to support itself, the first medical garbage bag 27 will not be in a loose state. Through the continuously extending third electric push rods 42 and the rotating fourth motors 43, the clamping blocks 44 can be located inside the first medical garbage bag 27. Then, by resetting the third electric push rods 42, the clamping blocks 44 can pull one side of the first medical garbage bag 27 until one side of the first medical garbage bag 27 is closely attached to the packing box 22 through the clamping blocks 44. At this time, the first medical garbage bag 27 is fixed, which is convenient for clamping and fixing one end of the first medical garbage bag 27;

[0037] Please refer to Figures 2-4, in this embodiment, the cleaning mechanism includes a liquid guide groove 45, a shunt pipe 46, a liquid outlet head 47, a second liquid storage tank 48, a second liquid adding pipe 49, a second connecting pipe 50, and a second water pump 51. Liquid guide grooves 45 are evenly formed at the tops of the rotating plate 7 and the lifting plate 8, and both ends of the liquid guide groove 45 are bevel-shaped. The liquid guide grooves 45 at the top of the lifting plate 8 are all through-type, and the lifting plate 8 is a mesh structure. Four groups of shunt pipes 46 are evenly arranged at the bottom end of the rotating plate 7. Liquid outlet heads 47 are evenly connected to the surfaces of the shunt pipes 46, and one end of each liquid outlet head 47 passes through the rotating plate 7 and extends into the interior of the liquid guide groove 45. A second liquid storage tank 48 is arranged inside the contactless box 1. One end of the second liquid storage tank 48 is connected to a second liquid adding pipe 49, and one end of the second liquid adding pipe 49 extends to the outside of the contactless box 1. The top end of the second liquid storage tank 48 is connected to a second connecting pipe 50, and one end of the second connecting pipe 50 is connected to two groups of shunt pipes 46. A second water pump 51 is arranged in the middle of the second connecting pipe 50. The control end of the second water pump 51 is electrically connected to an external power supply through an external switch. When the second water pump 51 works, the disinfection and cleaning liquid inside the second liquid storage tank 48 enters the interior of the shunt pipe 46 through the second water pump 51 and the second connecting pipe 50, and then is discharged into the interior of the liquid guide groove 45 through the liquid outlet heads 47, and flows into the interior of the first medical garbage bag 27 through the liquid guide groove 45, finally completing the flushing and disinfection work of the liquid guide groove 45, facilitating the user to clean and disinfect the rotating plate 7 and the lifting plate 8;

[0038] It should be noted that the connection port 10 is funnel-shaped, which is convenient for guiding the liquid to flow into the interior of the liquid guide groove 45. Both the ultraviolet lamp 14 and the disinfection pipe 15 are C-shaped, which increases the disinfection and sterilization range, so that the garbage can be disinfected and sterilized more comprehensively. The control ends of the first electric push rod 9, the electric sliding sleeve 12, the first motor 13, the ultraviolet lamp 14, and the first water pump 20 are all electrically connected to an external power supply through an external switch, which is convenient for the operation of this device. The shrinkage belt 30 has flexibility and support, facilitating the reset of the shrinkage belt 30. The receiving groove 29 is trumpet-shaped, facilitating the sliding of the shrinkage belt 30. The control ends of the second electric push rod 21, the second motor 25, the third motor 35, the bag tying device 40, the shearing device 41, the third electric push rod 42, and the fourth motor 43 are all electrically connected to an external power supply through an external switch, which is convenient for the operation of this device;

[0039] The operation method of this device:

[0040] Step 1: Disinfection of non-infectious waste. The user opens the disinfection and sterilization box 2 through the second sealing door 5, then places the waste on the top of the lifting plate 8. The first electric push rod 9 can make the lifting plate 8 and the waste move upward. At the same time, the electric sliding sleeve 12 can move the first motor 13, the ultraviolet lamp 14 and the disinfection pipe 15 to the top of the center of the lifting plate 8. Then the first water pump 20, the first motor 13 and the ultraviolet lamp 14 work simultaneously. The first motor 13 drives the ultraviolet lamp 14 and the disinfection pipe 15 to rotate around the lifting plate 8 and the waste. Under the action of the first water pump 20, the first connecting pipe 19 and the disinfection pipe 15, the disinfectant liquid in the first liquid storage tank 17 can be sprayed out through the atomizing nozzle 16. At the same time, the ultraviolet rays generated by the ultraviolet lamp 14 can also disinfect. After the disinfection and sterilization are completed, the first motor 13 and the electric sliding sleeve 12 control the ultraviolet lamp 14 and the disinfection pipe 15 to reset. At this time, the user can open the second sealing door 5 to take out the waste;

[0041] Step 2: Disinfection of infectious waste. The user opens the second sealing door 5 in the isolation room, places the waste on the top of the lifting plate 8, and raises the lifting plate 8 and the waste again through the first electric push rod 9. At the same time, the ultraviolet lamp 14 and the disinfection pipe 15 are again made to be located on both sides of the waste through the electric sliding sleeve 12 and the first motor 13. Disinfection and sterilization are carried out again through the disinfectant liquid and ultraviolet rays. After the disinfection and sterilization are completed, the ultraviolet lamp 14 and the disinfection pipe 15 are reset, and the generated waste liquid remains in the liquid guide groove 45;

[0042] Step 3: Pouring and flushing. The output end of the second electric push rod 21 is shortened. The second electric push rod 21 drives the rotating plate 7 and one end of the lifting plate 8 to rotate downward until one end of the rotating plate 7 is in contact with one end of the packing box 22. At the same time, the waste on the top of the lifting plate 8 will also automatically slide into the first medical garbage bag 27. The waste liquid will also flow into the first medical garbage bag 27 through the liquid guide groove 45. Then the second water pump 51 works. Through the second water pump 51 and the second connecting pipe 50, the disinfection and cleaning liquid in the second liquid storage tank 48 enters the inside of the shunt pipe 46, and then is discharged into the liquid guide groove 45 through the liquid outlet head 47, and flows into the first medical garbage bag 27 through the liquid guide groove 45, finally completing the flushing and disinfection work of the liquid guide groove 45. After the flushing is completed, the second electric push rod 21 controls the rotating plate 7 to reset;

[0043] Step 4: Tighten and pack. The output end of the third motor 35 drives a set of rollers 33 and a gear 34 to rotate. Through the gear 34, the two sets of rollers 33 can rotate in opposite directions simultaneously. Through the gear 34, the shrink tape 30 can slide inside the receiving groove 29, so that the shrink tape 30 shrinks the first medical garbage bag 27. At the same time, one end of the receiving groove 29 can pull the steel wire rope 39, and the steel wire rope 39 pulls the sliding column 37. Through the sliding column 37, the spring 38 can be stretched. Through the receiving groove 29, the upper part of the first medical garbage bag 27 can be shrunk. At the same time, the output end of the fourth motor 43 drives the clamping block 44 to rotate slowly, so that the bottom end of the clamping block 44 rotates towards the mutually approaching end. When the top of the first medical garbage bag 27 is tightened, it is then tied up by the tying device 40, and at the same time, the top end of the first medical garbage bag 27 is cut off by the cutter 41. At this time, the user can open the first sealing door 4 to take out the first medical garbage bag 27 that has been packed and tied inside the contactless box 1;

[0044] Step 5: Preparation work. After taking out, the output end of the third motor 35 drives the roller 33 to rotate in the reverse direction, so that the shrink tape 30 moves into the packing box 22. At this time, through the spring 38, the sliding column 37 and the steel wire rope 39, the surface of the shrink tape 30 can be made to fit the inner wall of the packing box 22. By continuously moving the shrink tape 30 into the packing box 22 through the third motor 35 and the roller 33, the height of both ends of the shrink tape 30 can be restricted through the steel wire rope 39 and the shrinker 28. At the same time, the shrink tape 30 itself has elasticity, so that the surface of the shrink tape 30 can fit the inner wall of the contactless box 1. Then, the output end of the second motor 25 drives the rotating rod 24 to rotate, and the rotating rod 24 drives the medical garbage bag roll 26 to rotate. Through the rotating medical garbage bag roll 26, the first medical garbage bag 27 can be released downward until the bottom end of the first medical garbage bag 27 fits the inner wall of the packing box 22. Then, the output end of the third electric push rod 42 extends, and at the same time, the output end of the fourth motor 43 drives the clamping block 44 to rotate slowly in the reverse direction until the clamping block 44 is in a vertical state. Since the first medical garbage bag 27 itself is not made of ordinary soft material, the first medical garbage bag 27 will not be in a loose state. Through the continuously extending third electric push rod 42 and the rotating fourth motor 43, the clamping block 44 can be made to be inside the first medical garbage bag 27. Then, by resetting the third electric push rod 42, the clamping block 44 can pull one side of the first medical garbage bag 27 until the side of the first medical garbage bag 27 is tightly fitted with the packing box 22 through the clamping block 44. At this time, the first medical garbage bag 27 is fixed for the next use.

[0045] Working principle: When a patient without an infectious disease needs to be treated in a special aseptic environment, the user opens the disinfection and sterilization box 2 through the second sealing door 5, then places the garbage on the top of the lifting plate 8, and closes the second sealing door 5. At this time, the first electric push rod 9 works, and the lifting plate 8 and the garbage can be lifted through the first electric push rod 9. At the same time, the electric sliding sleeve 12 can drive the first motor 13 to move, and the first motor 13 drives the ultraviolet lamp 14 and the disinfection tube 15 to move to the top of the center of the lifting plate 8. Then, the first water pump 20, the first motor 13 and the ultraviolet lamp 14 work simultaneously. The first motor 13 drives the ultraviolet lamp 14 and the disinfection tube 15 to rotate around the lifting plate 8 and the garbage. Under the action of the first water pump 20, the first connecting pipe 19 and the disinfection tube 15, the disinfectant liquid in the first liquid storage tank 17 can be sprayed out through the atomizing nozzle 16. At the same time, the ultraviolet rays generated by the ultraviolet lamp 14 can also be used for disinfection. The C-shaped ultraviolet lamp 14 and the disinfection tube 15 can increase the scope of disinfection and sterilization. At the same time, the disinfectant liquid and ultraviolet rays can improve the disinfection and sterilization effect, further improving the safety of user use. After disinfection and sterilization, the first motor 13 and the electric sliding sleeve 12 control the ultraviolet lamp 14 and the disinfection tube 15 to reset. At this time, the user can open the second sealing door 5 to take out the garbage. When the user needs to deliver the infectious garbage inside the isolation room, the user opens the second sealing door 5 inside the isolation room, places the garbage on the top of the lifting plate 8, raises the lifting plate 8 and the garbage again through the first electric push rod 9, and at the same time, the ultraviolet lamp 14 and the disinfection tube 15 are located on both sides of the garbage again through the electric sliding sleeve 12 and the first motor 13. Disinfection and sterilization are carried out again through the disinfectant liquid and ultraviolet rays. After disinfection and sterilization, the ultraviolet lamp 14 and the disinfection tube 15 are reset, and the generated waste liquid remains in the liquid guide groove 45. At this time, the output end of the second electric push rod 21 is shortened, and the second electric push rod 21 drives the rotating plate 7 and one end of the lifting plate 8 to rotate downward until one end of the rotating plate 7 fits with one end of the packing box 22. At the same time, the garbage on the top of the lifting plate 8 will also automatically slide into the first medical garbage bag 27. The waste liquid will also flow into the first medical garbage bag 27 through the liquid guide groove 45. Then, the second water pump 51 works, and the disinfection and cleaning liquid in the second liquid storage tank 48 enters the inside of the shunt pipe 46 through the second water pump 51 and the second connecting pipe 50, and then is discharged into the liquid guide groove 45 through the liquid outlet head 47, and flows into the first medical garbage bag 27 through the liquid guide groove 45, finally completing the flushing and disinfection work of the liquid guide groove 45. After flushing is completed, the second electric push rod 21 controls the rotating plate 7 to reset. Then, the output end of the third motor 35 drives a set of rotating rollers 33 and gears 34 to rotate. Through the two mutually meshing gears 34, the two rotating rollers 33 can rotate in opposite directions at the same time. Through the two gears 34, the contraction belt 30 can slide inside the receiving groove 29, so that the contraction belt 30 contracts the first medical garbage bag 27. At the same time, one end of the receiving groove 29 can pull the steel wire rope 39,The wire rope 39 pulls the sliding column 37 to slide downward inside the pulling hole 36. The spring 38 can be stretched through the sliding column 37. The upper part of the first medical garbage bag 27 can be contracted through the receiving groove 29. At the same time, the output end of the fourth motor 43 drives the clamping block 44 to slowly rotate, so that the bottom end of the clamping block 44 rotates towards the mutually approaching end, thus preventing the clamping block 44 from blocking the tightening of the top end of the first medical garbage bag 27 by the tightening belt 30. When the top of the first medical garbage bag 27 is tightened, it is then tied up by the tying device 40, and at the same time, the top end of the first medical garbage bag 27 is cut off by the cutter 41. At this time, the user can open the first sealing door 4 to take out the first medical garbage bag 27 that has been packed and tied inside the contactless box 1, thus avoiding the transmission of bacteria or viruses inside the isolation room to the users outside. By first disinfecting and then performing a fully enclosed automatic packing and sealing, it can further avoid the spread of residual bacteria and viruses to the outside, further improving the safety of user use. By having no direct contact inside and outside the isolation room, the safety of the user can be maximally guaranteed. After taking out, at the same time, the output end of the third motor 35 drives the roller 33 to rotate in the reverse direction, so that the tightening belt 30 moves towards the inside of the packing box 22. At this time, under the action of the elastic force of the spring 38 itself, the sliding column 37 moves upward. The upward movement of the sliding column 37 pulls one end of the wire rope 39 upward. Through the wire rope 39, one end of the tightening belt 30 can be pulled towards the inner wall of one side of the packing box 22, so that the surface of the tightening belt 30 fits with the inner wall of the packing box 22. By continuously moving the tightening belt 30 towards the inside of the packing box 22 by the third motor 35 and the roller 33, the height of both ends of the tightening belt 30 can be restricted through the wire rope 39 and the retractor 28. At the same time, the tightening belt 30 itself has elasticity, so that the surface of the tightening belt 30 can fit with the inner wall of the contactless box 1. Then, the output end of the second motor 25 drives the rotating rod 24 to rotate, and the rotating rod 24 drives the medical garbage bag roll 26 to rotate. Through the rotating medical garbage bag roll 26, the first medical garbage bag 27 can be released downward until the bottom end of the first medical garbage bag 27 fits with the inner wall of the packing box 22. Then, the output end of the third electric push rod 42 extends, and at the same time, the output end of the fourth motor 43 drives the clamping block 44 to rotate slowly in the reverse direction until the clamping block 44 is in a vertical state. Since the first medical garbage bag 27 itself is not made of ordinary soft material and has a certain hardness to support itself, the first medical garbage bag 27 will not be in a loose state. Through the continuously extending third electric push rod 42 and the rotating fourth motor 43, the clamping block 44 can be placed inside the first medical garbage bag 27. Then, by the reset of the third electric push rod 42, the clamping block 44 can pull one side of the first medical garbage bag 27 until one side of the first medical garbage bag 27 is tightly fitted with the packing box 22 through the clamping block 44. At this time, the first medical garbage bag 27 is fixed for the next use. This device is not only applicable to various environments but also convenient for more comprehensive disinfection and sterilization work on garbage.Improve the disinfection and sterilization effect, avoid the situation of user infection, and at the same time can automatically pack and automatically open and fix the garbage, so as to ensure that users outside the isolation room do not need to directly contact the garbage, thereby improving the safety of user use. At the same time, it can also ensure the spread of bacteria or viruses, further ensuring the safety of user use.

[0046] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A transfer disinfection device for isolation, characterized in that: The invention comprises a non-contact box (1), an automatic collecting mechanism, and a cleaning mechanism. The top of the non-contact box (1) is fixedly connected to a disinfection and sterilization box (2). One end of the disinfection and sterilization box (2) is fixedly connected to a discharge box (3), and the discharge box (3) is located at the top of the non-contact box (1). One end of the non-contact box (1) is connected to a first sealing door (4) via a rotating shaft. Both ends of the disinfection and sterilization box (2) are connected to a second sealing door (5) via a rotating shaft. One end of the discharge box (3) is connected to a first sealing door (4) via a rotating shaft. The rotating shaft is connected to a third sealing door (6), the bottom end of the disinfection and sterilization box (2) is provided with a connection port (10), the bottom end of the disinfection and sterilization box (2) is connected to a rotating plate (7) through a rotating shaft, and the rotating plate (7) is located at the top end of the contactless box (1), the top end of the rotating plate (7) is slidably connected to a lifting plate (8), the middle part of the rotating plate (7) is provided with a first electric push rod (9), and the output end of the first electric push rod (9) is fixedly connected to the bottom end of the lifting plate (8), and the top of the contactless box (1) is connected to the rotating plate (7). The inner wall of the end is fixedly connected to a track (11), one end of the track (11) is slidably connected to an electric sleeve (12), the bottom end of the electric sleeve (12) is provided with a first motor (13), the output end of the first motor (13) is fixedly connected to an ultraviolet lamp (14), the output end of the first motor (13) is connected to a disinfection tube (15) through a rotating seal, the side of the disinfection tube (15) facing the ultraviolet lamp (14) is evenly connected to an atomizing nozzle (16), the inner wall of one side of the non-contact box (1) is provided with a first liquid storage tank (17), one end of the first liquid storage tank (17) is connected to a first liquid adding pipe (18), and one end of the first liquid adding pipe (18) is located outside the disinfection and sterilization box (2), the top end of the first liquid storage tank (17) is connected to a first connecting pipe (19), and one end of the first connecting pipe (19) is connected to one end of the disinfection pipe (15) through a rotating seal, and a first water pump (20) is provided in the middle of the first connecting pipe (19); The automatic collection mechanism includes a second electric push rod (21), a packing box (22), a material port (23), a rotating rod (24), a second motor (25), a medical waste bag roll (26), a first medical waste bag (27), a shrinkage device (28), a collecting slot (29), a shrinking belt (30), a rotating slot (31), a connecting slot (32), a rotating roller (33), a gear (34), a third motor (35), a pulling hole (36), a sliding column (37), a spring (38), a steel wire rope (39), a tying device (40), a shear (41), a third electric push rod (42), a fourth motor (43) and a clamping block (44). The inner wall of the contactless box (1) is symmetrically provided with a second electric push rod (21), and the top end of the second electric push rod (21) is connected to the inner wall of the contactless box (1). The non-contact box (1) is connected to the rotating plate (7) through a rotating shaft. One end of the non-contact box (1) is fixedly connected to a packing box (22). A material port (23) is provided through the top of one side of the non-contact box (1), and the material port (23) extends to the interior of the discharge box (3). A second motor (25) is provided at one end of the discharge box (3). A rotating rod (24) is provided inside the discharge box (3), and one end of the rotating rod (24) passes through the discharge box (3) and is fixedly connected to the output end of the second motor (25). The other end of the rotating rod (24) is rotatably connected to the middle part of the third sealing door (6). A medical waste bag roll (26) is provided inside the discharge box (3), and the interior of the medical waste bag roll (26) is slidably connected to the rotating rod (24). A first medical waste bag (27) is provided inside the (22), and the top end of the first medical waste bag (27) passes through the material port (23) and is fixedly connected to the medical waste bag roll (26). One end of the packing box (22) is fixedly connected to a shrinkage device (28), and a receiving groove (29) is provided in the middle of the shrinkage device (28). A shrinkage belt (30) is provided inside the packing box (22), and the surface of the shrinkage belt (30) is in contact with the inner wall of the contactless box (1) and the packing box (22). The two ends of the shrinkage belt (30) are in contact with each other and are fixedly connected. One end of the shrinkage belt (30) is slidably connected to the receiving groove (29). The shrinkage belt (30) is located on the surface of the first medical waste bag (27). The inside of the shrinkage device (28) is provided with a receiving groove (29). The rotating grooves (31) are symmetrically provided on the upper part, and the middle part of the rotating grooves (31) is connected to the receiving groove (29). The shrinking device (28) is provided with a gear (34) inside, and the gear (34) is connected to the bottom end of the two groups of rotating grooves (31). The rotating grooves (31) are provided with rollers (33) inside, and the surfaces of the rollers (33) are in contact with the surface of the shrinking belt (30). The bottom ends of the rollers (33) are fixedly connected with gears (34), and the bottom ends of the gears (34) are connected to the inner wall of the connecting groove (32) through bearings. The gears (34) are meshed with each other. A third motor (35) is provided on the inner wall of the top end of one group of the rotating grooves (31), and the output end of the third motor (35) is fixedly connected to one group of rotating rollers (33).The top end of the other group of rollers (33) is connected to the inner wall of the rotating groove (31) through a bearing, the bottom end of the shrinkage device (28) is provided with a tying device (40), and the top end of the shrinkage device (28) is provided with a shearing device (41).

2. The isolation transfer disinfection device according to claim 1, characterized in that: The connecting port (10) is funnel-shaped, the ultraviolet lamp (14) and the disinfection tube (15) are both C-shaped, and the control ends of the first electric push rod (9), the electric sleeve (12), the first motor (13), the ultraviolet lamp (14) and the first water pump (20) are all electrically connected to an external power supply through an external switch.

3. The isolation transfer disinfection device according to claim 2, characterized in that: The shrinking band (30) is flexible and supportive, and the receiving groove (29) is trumpet-shaped.

4. The isolation transfer disinfection device according to claim 3, characterized in that: A pulling hole (36) is symmetrically provided at one end of the packing box (22), and a sliding column (37) is slidably connected to the inside of the pulling hole (36), and the top of the sliding column (37) is fixedly connected to a spring (38), and the top of the spring (38) is fixedly connected to the pulling hole (36), and the bottom end of the sliding column (37) is fixedly connected to a steel wire rope (39), and one end of the steel wire rope (39) passes through the pulling hole (36) and is fixedly connected to the shrinkage belt (30).

5. The isolation transfer disinfection device according to claim 4, characterized in that: A third electric push rod (42) is symmetrically provided at one end of the packing box (22), and the third electric push rod (42) is respectively located at both ends of the shear (41), and a fourth motor (43) is provided at one end of each of the third electric push rods (42), and the output end of each of the fourth motors (43) is fixedly connected to a clamping block (44), and one end of each of the clamping blocks (44) is respectively fitted with the inner wall of the first medical waste bag (27), and the bottom end of each of the clamping blocks (44) is located at the top end of the shrinking band (30).

6. The isolation transfer disinfection device according to claim 5, characterized in that: The control ends of the second electric push rod (21), the second motor (25), the third motor (35), the tying device (40), the shearing device (41), the third electric push rod (42) and the fourth motor (43) are all electrically connected to an external power supply via an external switch.

7. The isolation transfer disinfection device according to claim 6, characterized in that: The cleaning mechanism includes a liquid guide groove (45), a shunt pipe (46), a liquid outlet head (47), a second liquid storage tank (48), a second liquid adding pipe (49), a second connecting pipe (50) and a second water pump (51). The tops of the rotating plate (7) and the lifting plate (8) are uniformly provided with a liquid guide groove (45), and both ends of the liquid guide groove (45) are inclined. The liquid guide groove (45) at the top of the lifting plate (8) is a through-type. The lifting plate (8) is a mesh structure. The bottom end of the rotating plate (7) is uniformly provided with four groups of shunt pipes (46). The surface of the shunt pipe (46) is uniformly connected with a liquid outlet head (47), and the liquid outlet head (47) is uniformly connected to the liquid outlet head (47). ) pass through the rotating plate (7) and extend to the interior of the liquid guide groove (45); a second liquid storage tank (48) is provided inside the contactless box (1); one end of the second liquid storage tank (48) is connected to a second liquid adding pipe (49), and one end of the second liquid adding pipe (49) extends to the outside of the contactless box (1); the top of the second liquid storage tank (48) is connected to a second connecting pipe (50), and one end of the second connecting pipe (50) is connected to the two groups of diverter pipes (46); a second water pump (51) is provided in the middle of the second connecting pipe (50), and the control end of the second water pump (51) is electrically connected to the external power supply through an external switch.

8. A method for operating the isolation transfer disinfection device according to claim 7, characterized in that: Step 1: Disinfection of non-infectious garbage. The user opens the disinfection and sterilization box (2) through the second sealed door (5), and then places the garbage on the top of the lifting plate (8). The lifting plate (8) and the garbage can be moved upward by the first electric push rod (9). At the same time, the electric sliding sleeve (12) can move the first motor (13), the ultraviolet lamp (14) and the disinfection tube (15) to the top of the center of the lifting plate (8). Then, the first water pump (20), the first motor (13) and the ultraviolet lamp (14) work at the same time. The first motor (13) drives the ultraviolet lamp ( 14) and the disinfection tube (15) rotate around the lifting plate (8) and the garbage. Under the action of the first water pump (20), the first connecting tube (19) and the disinfection tube (15), the disinfectant in the first liquid storage tank (17) can be sprayed out through the atomizing nozzle (16). At the same time, the ultraviolet rays generated by the ultraviolet lamp (14) can also be used for disinfection. After the disinfection and sterilization is completed, the first motor (13) and the electric sleeve (12) control the ultraviolet lamp (14) and the disinfection tube (15) to reset. At this time, the user can open the second sealed door (5) to take out the garbage. Step 2: Disinfection of infectious waste: the user opens the second sealed door (5) in the isolation room, places the waste on the top of the lifting plate (8), and raises the lifting plate (8) and the waste again through the first electric push rod (9). At the same time, the ultraviolet lamp (14) and the disinfection tube (15) are positioned on both sides of the waste again through the electric sliding sleeve (12) and the first motor (13). Disinfection and sterilization are performed again using disinfectant and ultraviolet rays. After the disinfection and sterilization are completed, the ultraviolet lamp (14) and the disinfection tube (15) are reset, and the generated waste liquid is retained in the liquid guide groove (45); Step 3: Dumping and flushing, the output end of the second electric push rod (21) is shortened, and the second electric push rod (21) drives one end of the rotating plate (7) and the lifting plate (8) to rotate downward until one end of the rotating plate (7) is in contact with one end of the packing box (22). At the same time, the garbage on the top of the lifting plate (8) will automatically slide into the interior of the first medical waste bag (27), and the waste liquid will also flow into the interior of the first medical waste bag (27) through the liquid guide groove (45). Then the second water pump (51) works, and the disinfectant cleaning liquid in the second liquid storage tank (48) enters the interior of the shunt pipe (46) through the second water pump (51) and the second connecting pipe (50), and then is discharged into the interior of the liquid guide groove (45) through the liquid outlet head (47), and flows into the interior of the first medical waste bag (27) through the liquid guide groove (45), finally completing the flushing and disinfection work of the liquid guide groove (45). After flushing is completed, the second electric push rod (21) controls the rotating plate (7) to reset; Step 4: Tighten the bag. The output end of the third motor (35) drives a set of rollers (33) and gears (34) to rotate. The gears (34) can make the two sets of rollers (33) rotate in opposite directions at the same time. The gears (34) can make the shrink belt (30) slide inside the receiving groove (29), so that the shrink belt (30) shrinks the first medical waste bag (27). At the same time, one end of the receiving groove (29) can pull the wire rope (39), and the wire rope (39) pulls the slide column (37). The slide column (37) can stretch the spring (38). The upper portion of the first medical waste bag (27) can be retracted through the receiving groove (29), and at the same time, the output end of the fourth motor (43) drives the clamping block (44) to rotate slowly, so that the bottom end of the clamping block (44) rotates toward one end closer to each other. When the top of the first medical waste bag (27) is tightened, it is tied by the tie-off device (40), and at the same time, the top of the first medical waste bag (27) is cut off by the shear (41). At this time, the user can open the first sealing door (4) and take out the first medical waste bag (27) that has been packed and tied inside the contactless box (1); Step 5: Preparation work. After the removal is completed, the output end of the third motor (35) drives the roller (33) to rotate in the opposite direction, so that the shrink belt (30) moves toward the inside of the packing box (22). At this time, the spring (38), the slide column (37) and the wire rope (39) can make the surface of the shrink belt (30) fit the inner wall of the packing box (22). The third motor (35) and the roller (33) continuously move the shrink belt (30) toward the inside of the packing box (22). The wire rope (39) and the shrink device (28) can limit the height of the two ends of the shrink belt (30). At the same time, the specific elasticity of the shrink belt (30) itself can make the surface of the shrink belt (30) fit the inner wall of the contactless box (1). Then, the output end of the second motor (25) drives the rotating rod (24) to rotate, and the rotating rod (24) drives the medical waste bag roll (26) to rotate. The rotating medical waste bag roll (26) can move the first medical waste bag into the packing box (22). The medical waste bag (27) is released downward until the bottom end of the first medical waste bag (27) fits against the inner wall of the packing box (22), and then the output end of the third electric push rod (42) is extended, and at the same time, the output end of the fourth motor (43) drives the clamping block (44) to rotate slowly in the opposite direction until the clamping block (44) is in a vertical state. Since the first medical waste bag (27) itself is not an ordinary soft material, the first medical waste bag (27) will not be loose. The clamping block (44) can be placed inside the first medical waste bag (27) by the continuously extended third electric push rod (42) and the rotating fourth motor (43). Then, the clamping block (44) can pull one side of the first medical waste bag (27) by resetting the third electric push rod (42) until one side of the first medical waste bag (27) is tightly fitted with the packing box (22) through the clamping block (44). At this time, the first medical waste bag (27) is fixed for the next use.

Citation Information

Patent Citations

  • Solar classified-garbage compressor

    CN102079429A

  • Medical waste sterilization and disinfection collection box for outdoor sampling of infectious diseases

    CN115231162A