CN211884702U - Breathe internal medicine anti-infection equipment - Google Patents
Breathe internal medicine anti-infection equipment Download PDFInfo
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- CN211884702U CN211884702U CN202020297706.XU CN202020297706U CN211884702U CN 211884702 U CN211884702 U CN 211884702U CN 202020297706 U CN202020297706 U CN 202020297706U CN 211884702 U CN211884702 U CN 211884702U
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Abstract
An infection-preventing device for respiratory medicine comprises a sterilization dust-filtering box and a disinfection box; a dust filtering device and an ultraviolet germicidal lamp are arranged in the sterilizing dust filtering box; the air exhaust pipe is arranged on the air exhaust device and communicated with the gas collecting pipe, and the first gas pipe is arranged on the air exhaust device and communicated with the sterilization dust filtration box; the second gas pipe is communicated with the sterilization dust filtration box and the gas collection cavity; the rotating pipe is vertically arranged and is rotationally connected with the disinfection box, the first disinfection chamber is stored with disinfectant, and the aeration pipe is arranged on the rotating pipe and is immersed in the disinfectant; the transmission part is in transmission connection with the rotating pipe; the first disinfection chamber is communicated with the second disinfection chamber through a gas transmission channel; the second disinfection chamber is internally provided with filter cloth, and the liquid separation piece is arranged in the second disinfection chamber; the liquid separating piece is provided with a liquid spraying head. The utility model is simple in operation, convenient to use through carrying out multiple disinfection with the outside air suction, can effectively eliminate the pathogen in the outside air in order to interrupt the infection, is showing and is improving anti-infection performance, has the practicality.
Description
Technical Field
The utility model relates to a breathe internal medicine technical field, especially relate to a breathe internal medicine infection prevention equipment.
Background
Breathe internal medicine and have many pathogens to spread in the air, the pathogen is discharged along with breathing, cough, sneeze, rethread droplet and dust and scatter, some pathogens can freely spread in the air, and can float in the air for a long time, do long distance's removal, the pollution range is uncertain, it is comparatively difficult to disinfect, mainly break up the infection through space isolation at present, the effect of anti-infection is not good, lack one kind and eliminate the pathogen through filtering the disinfection to the air in order to block the device of infection, need improve.
SUMMERY OF THE UTILITY MODEL
Objects of the invention
For solving the technical problem that exists among the background art, the utility model provides a breathe internal medicine anti-infection equipment, easy operation, convenient to use through carrying out multiple disinfection with the outside air suction, can effectively eliminate the pathogen in the outside air in order to interrupt the infection, is showing and is improving anti-infection performance, has the practicality.
(II) technical scheme
The utility model provides an infection-preventing device for respiratory medicine, which comprises a sterilization dust-filtering box, a disinfection box, an exhaust tube, a first gas tube, a connecting piece, a second gas tube, a rotary tube, an aeration tube, a driving device, a gas transmission channel, a liquid-pumping pump, a liquid-pumping tube, a liquid-conveying tube, a liquid-separating piece and an exhaust tube;
the sterilization dust filtering box is vertically arranged on the sterilizing box, and a dust filtering device and an ultraviolet germicidal lamp are arranged in the sterilization dust filtering box; the sterilization dust filtration box is provided with an air exhaust device and an air collecting pipe, the air exhaust pipe is arranged on the air exhaust device and communicated with the air collecting pipe, and the first air delivery pipe is arranged on the air exhaust device and communicated with the sterilization dust filtration box; the connecting piece is arranged on the gas collecting pipe, and a cavity is arranged inside the connecting piece; the connecting piece is provided with a connecting pipe, and the tail end of the connecting pipe is provided with an air exhaust cover;
a first disinfection chamber, a second disinfection chamber and a gas collection chamber are arranged in the disinfection box; the second gas pipe is communicated with the sterilization dust filtration box and the gas collection cavity; the rotating pipe is vertically arranged and is rotationally connected with the sterilizing box, the top end of the rotating pipe extends into the gas collecting cavity, and the bottom end of the rotating pipe extends into the first sterilizing chamber; the first disinfection chamber is stored with disinfectant, and the aeration pipe is arranged on the rotary pipe and is immersed in the disinfectant; the driving device is arranged on the sterilizing box, and the output end of the driving device is provided with a transmission part; the transmission piece extends into the gas collection cavity and is in transmission connection with the rotating pipe;
the second disinfection chamber is positioned below the first disinfection chamber, and the first disinfection chamber is communicated with the second disinfection chamber through a gas transmission channel; the second disinfection chamber is internally provided with filter cloth, and the liquid separation piece is arranged in the second disinfection chamber; the liquid separating piece is provided with a liquid spraying head, and the liquid spraying direction of the liquid spraying head faces towards the filter cloth; the liquid pump is arranged on the disinfection box, the liquid pumping pipe is arranged on the liquid pump and is communicated with the first disinfection chamber, and the liquid conveying pipe is arranged on the liquid pump and is connected with the liquid separating piece; the exhaust pipe is arranged on the sterilizing box and is communicated with the second sterilizing chamber.
Preferably, the bottom of the sterilizing box is provided with rollers.
Preferably, the transmission part is provided with a bevel gear, the rotating pipe is correspondingly provided with the bevel gear, and the two bevel gears are in meshing transmission connection.
Preferably, the number of the ultraviolet germicidal lamps is two, one is located above the dust filter, and the other is located below the dust filter.
Preferably, the device further comprises an air exhaust device; the exhaust device is arranged on the sterilizing box, and the exhaust pipe is connected with the exhaust device.
Preferably, the connecting tube comprises a vertical tube and a plurality of transverse tubes, and the transverse tubes are distributed around the connecting piece in an annular array.
Preferably, the aeration pipe is provided with a plurality of circles along the vertical direction, and each circle of aeration pipe is distributed around the rotating pipe in an annular array.
Preferably, the communicating part of the first gas pipe and the sterilization dust filtering box is positioned below the dust filtering device, and the communicating part of the second gas pipe and the sterilization dust filtering box is positioned above the dust filtering device.
The above technical scheme of the utility model has following profitable technological effect:
the external air enters the air exhaust pipe through the air exhaust cover, the connecting pipe, the connecting piece and the air collecting pipe, and the first air conveying pipe conveys the external air into the sterilization dust filtration box; the dust filtering device filters external air to filter particles in the external air, and the ultraviolet germicidal lamp sterilizes the passing air and the filtered particles; the primarily sterilized gas enters the gas collection cavity along the second gas transmission pipe and then enters the rotary pipe, and finally, the gas is uniformly discharged into the disinfectant through each aeration pipe, so that the gas is sterilized; the disinfected gas enters the second disinfection chamber along the gas transmission channel, and the moist filter cloth filters and disinfects the gas, so that the disinfection effect is improved, and the infection prevention performance is improved;
the driving device enables the rotating pipes to rotate circumferentially in the horizontal direction through the transmission part, and each aeration pipe rotates circumferentially at a constant speed along with the rotating pipes, so that gas is fully contacted with disinfectant, the disinfection effect is obviously improved, and pathogens are killed; the liquid pump pumps the disinfectant into the liquid separating piece, and the liquid spraying head sprays the disinfectant to the filter cloth, so that the filter cloth is always kept moist, the filtering and disinfecting effect is obviously improved, and the anti-infection performance is further improved.
Drawings
Fig. 1 is a perspective view of the anti-infection device for respiratory medicine provided by the utility model.
Fig. 2 is a schematic structural view of the infection-preventing device for respiratory medicine provided by the utility model.
Fig. 3 is a schematic structural view of the respiratory medicine anti-infection device provided by the utility model.
Reference numerals: 1. a sterilization dust filtration box; 2. a sterilizing box; 3. a dust filtration device; 4. an ultraviolet germicidal lamp; 5. an air extraction device; 6. an air exhaust pipe; 7. a first gas delivery pipe; 8. a gas collecting pipe; 9. a connecting member; 10. a connecting pipe; 11. an air extraction hood; 12. a second gas delivery pipe; 13. a first sterilization chamber; 14. a second sterilization chamber; 15. a gas collection cavity; 16. rotating the tube; 17. an aeration pipe; 18. a drive device; 19. a transmission member; 20. a gas transmission channel; 21. filtering cloth; 22. a liquid pump; 23. a liquid pumping pipe; 24. a transfusion tube; 25. a liquid separating member; 26. a liquid jet head; 27. an exhaust pipe; 28. and a roller.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
As shown in fig. 1-3, the anti-infection device for respiratory medicine provided by the present invention comprises a sterilization dust filtration box 1, a disinfection box 2, an air exhaust pipe 6, a first air pipe 7, a connecting piece 9, a second air pipe 12, a rotary pipe 16, an aeration pipe 17, a driving device 18, an air transmission channel 20, a liquid pumping pump 22, a liquid pumping pipe 23, a liquid transmission pipe 24, a liquid separation piece 25 and an exhaust pipe 27;
the sterilization dust filtering box 1 is vertically arranged on the sterilizing box 2, and a dust filtering device 3 and an ultraviolet sterilizing lamp 4 are arranged in the sterilization dust filtering box 1; the sterilization dust filtration box 1 is provided with an air extractor 5 and an air collecting pipe 8, an air extracting pipe 6 is arranged on the air extractor 5 and communicated with the air collecting pipe 8, and a first air conveying pipe 7 is arranged on the air extractor 5 and communicated with the sterilization dust filtration box 1; the connecting piece 9 is arranged on the gas collecting pipe 8, and a cavity is arranged inside the connecting piece 9; a connecting pipe 10 is arranged on the connecting piece 9, and an air exhaust cover 11 is arranged at the tail end of the connecting pipe 10;
a first disinfection chamber 13, a second disinfection chamber 14 and a gas collection chamber 15 are arranged in the disinfection box 2; the second air pipe 12 is communicated with the sterilization dust filtering box 1 and the air collecting cavity 15, the communication position of the first air pipe 7 and the sterilization dust filtering box 1 is positioned below the dust filtering device 3, and the communication position of the second air pipe 12 and the sterilization dust filtering box 1 is positioned above the dust filtering device 3; the rotating pipe 16 is vertically arranged and is rotationally connected with the sterilizing box 2, the top end of the rotating pipe extends into the gas collecting cavity 15, and the bottom end of the rotating pipe extends into the first sterilizing chamber 13; the first disinfection chamber 13 is stored with disinfection solution, the aeration pipe 17 is arranged on the rotary pipe 16 and is immersed in the disinfection solution, and aeration holes are uniformly arranged on the surface of the aeration pipe 17; the aeration pipe 17 is provided with a plurality of circles along the vertical direction, and each circle of aeration pipe 17 is distributed around the rotating pipe 16 in an annular array; the driving device 18 is arranged on the sterilizing box 2, and the output end is provided with a transmission piece 19; the transmission piece 19 extends into the gas collection cavity 15 and is in transmission connection with the rotating pipe 16;
the second disinfection chamber 14 is positioned below the first disinfection chamber 13, and the first disinfection chamber 13 and the second disinfection chamber 14 are communicated through a gas transmission channel 20; the second disinfection chamber 14 is internally provided with filter cloth 21, and the liquid separation piece 25 is arranged in the second disinfection chamber 14; the liquid separating piece 25 is provided with a liquid spraying head 26, and the liquid spraying direction of the liquid spraying head 26 faces the filter cloth 21; the liquid pump 22 is arranged on the disinfection box 2, the liquid pumping pipe 23 is arranged on the liquid pump 22 and is communicated with the first disinfection chamber 13, and the liquid conveying pipe 24 is arranged on the liquid pump 22 and is connected with the liquid separating part 25; an exhaust pipe 27 is provided on the sterilizing compartment 2 and communicates with the second sterilizing compartment 14.
In an alternative embodiment, the bottom of sterilization case 2 is provided with rollers 28 to facilitate movement of the device, which is more flexible.
In an alternative embodiment, the transmission member 19 is provided with a bevel gear, and the rotating pipe 16 is correspondingly provided with a bevel gear, and the bevel gears are in meshing transmission connection. In operation, the transmission member 19 rotates the rotary pipe 16 in a horizontal direction by two bevel gears, and finally the rotation of the aeration pipe 17 is realized.
In an alternative embodiment, the number of the ultraviolet germicidal lamps 4 is two, and one is located above the dust filter 3, and the other is located below the dust filter 3, which helps to improve the germicidal effect.
In an optional embodiment, the device further comprises an air exhaust device; the exhaust device is provided on the sterilizing compartment 2, and the exhaust duct 27 is connected to the exhaust device. In the work, exhaust device can accelerate the discharge of handling back gas, helps improving operating efficiency, and the result of use is splendid.
In an alternative embodiment, the connecting pipe 10 includes a vertical pipe and a plurality of horizontal pipes, and the horizontal pipes are distributed around the connecting piece 9 in an annular array, so that the effect of pumping air in a plurality of directions is achieved, and the use effect is excellent.
In the utility model, when in use, the air extractor 5 is started, external air enters the air extracting pipe 6 through the air extracting cover 11, the connecting pipe 10, the connecting piece 9 and the air collecting pipe 8, and the first air conveying pipe 7 conveys the external air into the sterilization dust filtering box 1; the dust filtering device 3 filters external air to filter out particles in the external air, and the ultraviolet germicidal lamp 4 sterilizes the passing air and the filtered particles; the primarily sterilized gas enters the gas collecting cavity 15 along the second gas transmission pipe 12 and then enters the rotary pipe 16, and finally, the gas is uniformly discharged into the disinfectant through the aeration pipes 17, so that the gas is sterilized; the disinfected gas enters the second disinfection chamber 14 along the gas transmission channel 20, and the moist filter cloth 21 filters and disinfects the gas, so that the disinfection effect is improved, and the infection prevention performance is improved; the thoroughly sterilized gas is discharged through the gas discharge pipe 27;
in addition, the driving device 18 enables the rotating pipe 16 to perform horizontal circumferential rotation through the transmission part 19, and each aeration pipe 17 performs uniform circumferential rotation along with the horizontal circumferential rotation, so that the gas is fully contacted with the disinfectant, the disinfection effect is obviously improved, and the elimination of pathogens is facilitated; the liquid pump 22 pumps the disinfectant into the liquid separating member 25, and the liquid spraying head 26 sprays the disinfectant to the filter cloth 21, so that the filter cloth is kept moist, the filtering and disinfecting effect is obviously improved, and the infection prevention performance is further improved.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.
Claims (8)
1. An infection prevention device for respiratory medicine is characterized by comprising a sterilization and dust filtration box (1), a disinfection box (2), an air exhaust pipe (6), a first air delivery pipe (7), a connecting piece (9), a second air delivery pipe (12), a rotary pipe (16), an aeration pipe (17), a driving device (18), an air delivery channel (20), a liquid suction pump (22), a liquid suction pipe (23), a liquid delivery pipe (24), a liquid separation piece (25) and an exhaust pipe (27);
the sterilization dust filtering box (1) is vertically arranged on the sterilizing box (2), and a dust filtering device (3) and an ultraviolet germicidal lamp (4) are arranged in the sterilization dust filtering box (1); an air exhaust device (5) and an air collecting pipe (8) are arranged on the sterilization dust filtration box (1), an air exhaust pipe (6) is arranged on the air exhaust device (5) and communicated with the air collecting pipe (8), and a first air conveying pipe (7) is arranged on the air exhaust device (5) and communicated with the sterilization dust filtration box (1); the connecting piece (9) is arranged on the gas collecting pipe (8), and a cavity is arranged inside the connecting piece (9); a connecting pipe (10) is arranged on the connecting piece (9), and an air exhaust cover (11) is arranged at the tail end of the connecting pipe (10);
a first disinfection chamber (13), a second disinfection chamber (14) and a gas collection chamber (15) are arranged in the disinfection box (2); the second air pipe (12) is communicated with the sterilization dust filtration box (1) and the air collection cavity (15); the rotating pipe (16) is vertically arranged and is rotationally connected with the sterilizing box (2), the top end of the rotating pipe extends into the gas collecting cavity (15), and the bottom end of the rotating pipe extends into the first sterilizing chamber (13); the first disinfection chamber (13) is stored with disinfection solution, and the aeration pipe (17) is arranged on the rotary pipe (16) and is immersed in the disinfection solution; the driving device (18) is arranged on the sterilizing box (2), and the output end of the driving device is provided with a transmission piece (19); the transmission piece (19) extends into the gas collection cavity (15) and is in transmission connection with the rotating pipe (16);
the second disinfection chamber (14) is positioned below the first disinfection chamber (13), and the first disinfection chamber (13) is communicated with the second disinfection chamber (14) through a gas transmission channel (20); a filter cloth (21) is arranged in the second disinfection chamber (14), and a liquid separation piece (25) is arranged in the second disinfection chamber (14); the liquid separating piece (25) is provided with a liquid spraying head (26), and the liquid spraying direction of the liquid spraying head (26) faces the filter cloth (21); the liquid pump (22) is arranged on the disinfection box (2), the liquid pumping pipe (23) is arranged on the liquid pump (22) and is communicated with the first disinfection chamber (13), and the liquid conveying pipe (24) is arranged on the liquid pump (22) and is connected with the liquid separating part (25); the exhaust pipe (27) is arranged on the sterilizing box (2) and is communicated with the second sterilizing chamber (14).
2. An infection-preventing device for department of respiratory medicine according to claim 1, characterized in that rollers (28) are provided at the bottom of the sterilizing chamber (2).
3. The respiratory medicine infection prevention device according to claim 1, wherein the transmission member (19) is provided with bevel gears, the rotating tube (16) is correspondingly provided with bevel gears, and the bevel gears are in meshing transmission connection.
4. An infection prevention apparatus for department of respiratory medicine according to claim 1, wherein the number of the ultraviolet germicidal lamps (4) is two, and one is located above the dust filter (3) and the other is located below the dust filter (3).
5. The respiratory medicine infection prevention device according to claim 1, further comprising an air exhaust device; the air exhaust device is arranged on the sterilizing box (2), and the exhaust pipe (27) is connected with the air exhaust device.
6. An infection prevention apparatus for department of respiratory medicine according to claim 1, characterized in that the connecting tube (10) comprises a vertical tube and a plurality of transverse tubes, and the transverse tubes are distributed in an annular array around the connecting piece (9).
7. The infection prevention apparatus for department of respiratory medicine according to claim 1, wherein the aeration tube (17) is provided with a plurality of turns in the vertical direction, and each turn of aeration tube (17) is distributed in an annular array around the rotating tube (16).
8. The infection prevention equipment for the respiratory medicine department according to claim 1, wherein the communication part of the first air pipe (7) and the sterilization and dust filtration box (1) is positioned below the dust filtration device (3), and the communication part of the second air pipe (12) and the sterilization and dust filtration box (1) is positioned above the dust filtration device (3).
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CN202020297706.XU CN211884702U (en) | 2020-03-11 | 2020-03-11 | Breathe internal medicine anti-infection equipment |
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CN202020297706.XU CN211884702U (en) | 2020-03-11 | 2020-03-11 | Breathe internal medicine anti-infection equipment |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112569723A (en) * | 2020-12-09 | 2021-03-30 | 武汉市中卫寰宇医疗系统工程有限公司 | Full-automatic medical treatment clean system |
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2020
- 2020-03-11 CN CN202020297706.XU patent/CN211884702U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112569723A (en) * | 2020-12-09 | 2021-03-30 | 武汉市中卫寰宇医疗系统工程有限公司 | Full-automatic medical treatment clean system |
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