CN212662301U - Full-automatic sterilizer - Google Patents
Full-automatic sterilizer Download PDFInfo
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- CN212662301U CN212662301U CN202020568743.XU CN202020568743U CN212662301U CN 212662301 U CN212662301 U CN 212662301U CN 202020568743 U CN202020568743 U CN 202020568743U CN 212662301 U CN212662301 U CN 212662301U
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- disinfectant
- door body
- pipeline
- antiseptic solution
- negative pressure
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Abstract
The utility model provides a pair of full-automatic sterilizing machine, including door body, the total pipeline of antiseptic solution is fixed in on the door body through pipeline fixing device, the antiseptic solution container is connected to the one end of the total pipeline of antiseptic solution, and its other end passes through the solenoid valve and connects the antiseptic solution shower nozzle, the total pipeline of antiseptic solution still is provided with a plurality of antiseptic solution branch road pipeline along its length direction uniformly, antiseptic solution branch road pipeline, solenoid valve, transition pipeline and water outlet member connect gradually, solenoid valve, transition pipeline and water outlet member all are located the mounting hole on the door body, water outlet member's free end threaded connection has the antiseptic solution shower nozzle, be provided with a plurality of aperture on the antiseptic solution shower nozzle, be fixed with infrared induction controller on the water outlet member. The utility model provides a full-automatic sterilizing machine can all carry out 360 degrees all-round disinfections in surface to the people of every process, kills attached to bacterium and the virus on surface, prevents it to get into safe region.
Description
Technical Field
The utility model belongs to the disinfecting equipment field, concretely relates to full-automatic sterilizing machine.
Background
The epidemic situation of the novel coronavirus type pneumonia begins, no attention is paid to the upper and lower parts of the country, and the suspected patients are often screened primarily by each unit and are judged by measuring the body temperature. However, fever is not an early manifestation, nor a typical symptom, clinical manifestations are not obvious in many patients, and body temperature measurement can only exclude some suspected patients. Meanwhile, many departments find that the disinfection of soles is carried out by adopting disinfection ground mats, but the water absorption of the ground mats is limited, and in addition, the situations of large flow of people, evaporation of the external environment and the like result in that the disinfection liquid on the ground mats in a short time is consumed, the disinfection effect cannot be achieved, and manpower and material resources are consumed. Therefore, the temperature measurement should be carried out while all people are preliminarily disinfected, so that the spread of viruses can be greatly reduced.
SUMMERY OF THE UTILITY MODEL
The utility model provides a full-automatic sterilizer aiming at the technical problem of existence.
The utility model adopts the technical proposal that:
a full-automatic sterilizer comprises a door body, and further comprises a disinfectant main pipeline arranged on the outer wall of the door body, wherein the disinfectant main pipeline is fixed on the door body through a pipeline fixing device, one end of the disinfectant main pipeline is connected with a disinfectant container, the other end of the disinfectant main pipeline is connected with a disinfectant nozzle through an electromagnetic valve, the disinfectant main pipeline is also uniformly provided with a plurality of disinfectant branch pipelines along the length direction, the disinfectant branch pipelines, the electromagnetic valve, a transition pipeline and a water outlet component are sequentially connected, the electromagnetic valve, the transition pipeline and the water outlet component are all positioned in a mounting hole on the door body, the free end of the water outlet component is in threaded connection with the disinfectant nozzle, the disinfectant nozzle is provided with a plurality of small holes, the water outlet component is fixedly provided with an infrared induction controller, and the infrared induction controller comprises a shell, the electromagnetic valve comprises a shell, a receiving tube, a transmitting tube, a circuit board, a power supply unit, a receiving tube, a transmitting tube, an indicating lamp, a light-diffusing film, a lamp shade, a circuit board and the like, wherein the cavity is arranged in the shell, the light-diffusing film, the lamp shade, the transmitting tube and the indicating lamp are sequentially arranged in the cavity, the receiving tube, the transmitting tube and the indicating lamp are sleeved on the circuit board, the light-diffusing film is arranged at the front end of the lamp shade and fixed on the inner wall of the shell, one path of control line output by; the inner wall of the door body is also provided with an arc-shaped induction window for the normal work of the infrared induction controller, and the arc-shaped induction window is positioned above the disinfectant sprayer;
the door body top is provided with infrared body temperature detector, infrared body temperature detector passes through the concentrator and is connected with the host computer, the host computer is used for showing the body temperature number of degrees.
Preferably, still be provided with two sets of negative pressure air flow pipeline on the lateral wall about the door body, it is two sets of negative pressure air flow pipeline is located antiseptic solution main pipe both sides respectively to be fixed in on the door body through pipeline fixing device, negative pressure air flow pipeline's one end is connected with gas recovery jar through the fan of airing exhaust, and the toper air exit is connected to its other end, negative pressure air flow pipeline still is provided with a plurality of negative pressure air flow branch road pipeline along its length direction with being equal, the toper air exit is connected to the free end of negative pressure air flow branch road pipeline, the toper air exit is rather than adjacent antiseptic solution shower nozzle staggered arrangement, the motor of airing exhaust passes through the controller and is connected with the concentrator.
Preferably, the pipeline fixing device comprises a base fixed on the door body, a first arc-shaped fixing plate is fixed on the base, and two ends of the first arc-shaped fixing plate are connected with a second arc-shaped fixing plate through screws.
Preferably, the sterilizing machine also comprises a ground mat, the ground mat is arranged inside the door body, the width of the ground mat is less than that of the door body, and is positioned at the central position inside the door body, the ground mat sequentially comprises an upper layer, a middle layer and a lower layer from top to bottom, the upper layer is made of cotton, the middle layer is made of sponge, the lower layer is made of stainless steel, the lower layer is of an inner concave structure, the upper layer and the middle layer are arranged in the inner concave of the lower layer, two symmetrical edges of the upper end surface of the lower layer are respectively provided with a circuitous part along the length direction, used for limiting the upper layer and the middle layer in the concave structure of the lower layer, one side of the ground mat is provided with a through hole, the through hole is internally provided with a disinfectant liquid supply pipeline, the other end of the disinfectant liquid supply pipeline is connected to the disinfectant liquid container, and the disinfectant liquid supply pipeline is provided with a stop valve.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model provides a full-automatic sterilizing machine can all carry out 360 degrees all-round disinfections in surface to the people of every process, kills bacterium and the virus attached to the surface, prevents it to get into safe region to set up infrared body temperature detector on the door body, measure the body temperature through the people, and upload to the host computer and show. Still be provided with absorption formula disinfection ground mat in the bottom, the ground mat includes upper strata, middle level and lower floor by last to lower in proper order, the upper strata adopts the strong cotton goods of water permeability, the middle level is the sponge material that the hydroscopicity is strong, the upper strata adopts infiltration-free, corrosion-resistant stainless steel material, and upper strata and middle level have all been soaked the antiseptic solution, disinfect shoes portion.
In addition, still be provided with negative pressure air flow pipeline and toper air exit, can in time adsorb the antiseptic solution particle that produces among the disinfection process, get rid of to the gas recovery jar in through negative pressure air flow pipeline, in order to avoid too much antiseptic solution particle to float in external environment, cause certain influence to the respiratory track, and set up gas concentration detector on the door body, detect the interior gas concentration of door body through gas concentration, and then operate the work of air exhaust motor through the control director by the host computer, realize the automatic antiseptic solution particle that adsorbs.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
Fig. 1 is a schematic structural view of a fully automatic sterilizer according to an embodiment of the present invention;
FIG. 2 is an enlarged internal view at A of FIG. 1;
fig. 3 is a schematic structural view of an infrared sensor controller in a full-automatic sterilizer according to an embodiment of the present invention;
fig. 4 is a schematic structural view of a water outlet component in a fully automatic sterilizer according to an embodiment of the present invention;
FIG. 5 is a side view of an inner side wall of a door body of a fully automatic sterilizer according to an embodiment of the present invention;
fig. 6 is a side view of a floor mat in the fully automatic sterilizer according to an embodiment of the present invention;
fig. 7 is a schematic structural view of a pipeline fixing device in a fully automatic sterilizer according to an embodiment of the present invention;
fig. 8 is a connection block diagram of a control portion in the fully automatic sterilizer according to an embodiment of the present invention.
Wherein, 1-door body; 2-an upper computer; 3-infrared body temperature detector; 4-a disinfectant container; 5-a gas recovery tank; 6-an exhaust fan; 7-a disinfectant main pipeline; 8-disinfectant nozzle; 9-negative pressure airflow channel; 10-a conical air outlet; 11-a ground mat; 1101-lower layer; 1102-middle layer; 1103-upper layer; 12-a disinfectant supply line; 13-a pipe fixing device; 1301-a base; 1302-a first arc fixation plate; 1303-second arc fixing plate; 1304-screw rod; 14-a water outlet member; 15-a transition duct; 16-an infrared induction controller; 1601-a housing; 1602-a light-diffusing film; 1603-lampshade; 1604-a circuit board; 1605-a power supply unit; 1606-a receiving tube; 1607-a transmitting tube; 1608-indicator light; 17-a solenoid valve; 18-a disinfectant branch conduit; 19-a negative pressure gas flow branch pipeline; 20-arc induction window; 21-a hub; 22-a controller.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The present invention provides a fully automatic sterilizer, as shown in fig. 1, 2 and 4, comprising a door body 1, the sterilizer also comprises a disinfectant main pipeline 7 arranged on the outer wall of the door body 1, the disinfectant main pipeline 7 is fixed on the door body 1 through a pipeline fixing device 13, one end of the disinfectant main pipeline 7 is connected with a disinfectant container 4, the other end of the disinfection solution main pipeline 7 is connected with a disinfection solution spray nozzle 8 through an electromagnetic valve 17, a plurality of disinfection solution branch pipelines 18 are uniformly arranged along the length direction of the disinfection solution main pipeline 7, the disinfectant branch pipeline 18, the electromagnetic valve 17, the transition pipeline 15 and the water outlet component 14 are connected in sequence, the electromagnetic valve 17, the transition pipeline 15 and the water outlet component 14 are all positioned in a mounting hole on the door body 1, the free end of the water outlet component 14 is in threaded connection with a disinfectant nozzle 8, and the disinfectant nozzle 8 is provided with a plurality of small holes.
As shown in fig. 3, be fixed with infrared induction controller 16 on the water outlet component, infrared induction controller 16 includes shell 1601, the inside cavity that is provided with of shell 1601 has set gradually light diffusing film 1602, lamp shade 1603, circuit board 1604 and power supply unit 1605 in the cavity, be provided with receiving tube 1606, transmitting tube 1607 and pilot lamp 1608 on the circuit board 1604, lamp shade 1603 overlaps on receiving tube 1606, transmitting tube 1607 and the pilot lamp 1608 on the circuit board, light diffusing film 1602 sets up in the front end of lamp shade 1603, is fixed in on the shell 1601 inner wall, circuit board 1604 output is all the way control line and solenoid valve 17 coiled connection, power supply unit 1605 is connected to the power supply lead of the same way in addition, power supply unit 1605 sets up in circuit board 1604 below, power supply unit 1605 adopts the lithium cell for charge for infrared induction controller 16. An arc-shaped induction window 20 used for the infrared induction controller 16 to work normally is further arranged on the inner wall of the door body 1, and the arc-shaped induction window 20 is located above the disinfectant sprayer 8.
In this embodiment, the light-diffusing film 1603 is a frosted film, so that the problem of liquid discharge failure can be solved by the light-diffusing film 1603, and a general film is rubbed by sandpaper to make the surface thereof blurred for use, wherein the indicator lamp 1608 indicates whether the circuit is working normally.
The transmitting tube 1606 of the infrared induction controller 16 transmits a long-distance infrared signal from the arc-shaped induction window 20, if the infrared light transmitted by the transmitting tube 1606 meets a reflector, the receiving tube 1607 receives the reflected infrared light, the infrared induction controller 16 starts to work, the control electromagnetic valve 17 is opened, so that the disinfectant nozzle 8 is opened, the disinfectant can be automatically sprayed out from the disinfectant nozzle 8 in a radioactive manner, and the automatic transmission control induction disinfectant nozzle is realized. In this embodiment, the disinfectant nozzle is provided with a bubbler, so that the disinfectant sprayed by the disinfectant nozzle is closer to a gaseous structure, and direct damage to a human body is reduced.
As shown in fig. 8, the aforesaid 1 top of door body be provided with infrared body temperature detector 3, infrared body temperature detector 3 passes through concentrator 21 and is connected with host computer 2, host computer 2 is still including the information storage ware that is used for data storage for data display's display, and the individual alarm of central processing unit, central processing unit is connected with information storage ware, display and alarm electricity respectively, and the central processing unit of accessible host computer 2 handles the body temperature data of gathering, shows through the display to with temperature information storage in information storage ware, if the body temperature data that record is greater than the body temperature data that sets up, then send out the alarm by central processing unit and send alarm sound, inform near staff in time to arrive, and keep apart its personnel.
Referring to fig. 1 and 8 again, two sets of negative pressure airflow pipelines 9 are further disposed on the left and right outer side walls of the door body 1, the two sets of negative pressure airflow pipelines 9 are respectively located on two sides of the disinfectant main pipeline 7 and are fixed on the door body 1 through a pipeline fixing device 13, one end of each negative pressure airflow pipeline 9 is connected with the gas recovery tank 5 through an exhaust fan 6, the other end of each negative pressure airflow pipeline is connected with a conical exhaust outlet 10, the negative pressure airflow pipelines 9 are further provided with a plurality of negative pressure airflow branch pipelines 19 along the length direction of each negative pressure airflow pipeline, the free ends of the negative pressure airflow branch pipelines 19 are connected with the conical exhaust outlets 10, the conical exhaust outlets 10 are staggered with adjacent disinfectant nozzles 8 (as shown in fig. 5), and the exhaust motor 6 is connected with the concentrator 21 through a controller 22.
The upper computer 2 also comprises a time interval counter which is processed by a central processing unit in the upper computer when the upper computer receives the data uploaded by the infrared body temperature detector, displaying through a display screen, sending a signal to a time interval counter, starting timing by the time interval counter, when the preset value (set for 8-10 seconds) is reached, the time interval counter sends a signal to the central processing unit, the central processing unit sends an instruction to the controller, the controller 22 controls the air exhaust motor 6 to start working, the disinfection liquid particles in the door body 1 are adsorbed through the conical air outlet 10, and are conveyed into the gas recovery tank 5 through the negative pressure air flow pipeline 9, tap water is filled in the gas recovery tank 5 and is used for absorbing the disinfection liquid particles, thereby, the purpose of avoiding that excessive disinfection liquid particles float in the external environment and causing certain influence on the respiratory tract of passing personnel is achieved.
As shown in fig. 7, the pipeline fixing device 13 includes a base 1301 fixed to the door body, a first arc fixing plate 1302 is fixed to the base 1301, and two ends of the first arc fixing plate 1302 are connected to a second arc fixing plate 1303 through screws 1304. The first arc-shaped fixing plate 1302 and the second arc-shaped fixing plate 1303 can be made of steel plates.
As shown in fig. 6, the disinfection machine further comprises a floor mat 11, the floor mat 11 is disposed inside the door body, the width of the floor mat 11 is smaller than the width of the door body 1 and is located at the center position inside the door body 1, the floor mat 11 sequentially comprises an upper layer 1103, a middle layer 1102 and a lower layer 1101 from top to bottom, the upper layer 1103 adopts a cotton product with strong water permeability, the middle layer 1102 adopts a sponge material with strong water absorption, the lower layer 1101 adopts a stainless steel material with no water permeability and corrosion resistance, the lower layer 1101 is a concave structure, the upper layer 1103 and the middle layer 1102 are disposed in the concave of the lower layer, two symmetrical edges of the upper end surface of the lower layer 1101 are respectively provided with a circuitous part 1104 along the length direction thereof for limiting the upper layer 1103 and the middle layer 1102 in the concave structure of the lower layer, one side of the floor mat 11 is provided with a through hole, a supply disinfection solution, the other end of the disinfectant liquid supply pipeline 12 is connected to the disinfectant liquid container 4, and a stop valve is arranged on the disinfectant liquid supply pipeline 12. Every 4-6 hours, change the inside antiseptic solution of ground mat once, the accessible is changed upper 1103 and middle level 1102 structure, and upper 1103 and middle level 1102 structure can realize using repeatedly, after changing upper 1103 and middle level 1102 structure, open the stop valve on disinfection supply pipeline 12, wait that the sponge layer absorbs water the volume saturation, during the cotton structure of infiltration upper strata, close the stop valve, after the people wears the shoes station to go, the sole can be stained with the antiseptic solution, can disinfect to shoes portion.
The floor mat structure can be used independently, can be placed in front of residents' own doors, and can be used for daily disinfection of soles after home.
The working principle is as follows: the sterilizer is assembled as required and can be used at entrances of various malls, ultrasonic departments, enterprises, hospitals and the like, when a person passes through a door body, firstly, the infrared body temperature detector measures the temperature of the passing person and uploads the measured temperature to an upper computer, a central processing unit of the upper computer processes the measured temperature, if the body temperature of the detected person is higher than the preset body temperature, an alarm is sent out by an alarm to inform nearby workers to arrive, the detected person is inquired in detail, or the temperature is measured and determined again; then the detected person stands on the ground mat by two feet, at the moment, the detected person is detected by the infrared induction controller on the door body, the electromagnetic valve is controlled to be opened, the disinfectant sprayer starts to work to spray mist disinfectant, the detected person can pause on the ground mat for 5-7s, in the process, the gas concentration detector at the top of the door body is always in a working state to detect the concentration of disinfectant particles in the door body and upload collected data information to an upper computer to be processed by the central processing unit, if the concentration of the collected disinfectant particles is greater than a preset concentration value, the controller controls the air exhaust motor to work, the particles are adsorbed by the conical air outlet, the gas concentration in the door body is reduced, and the damage of high-concentration disinfectant particles to the human body is reduced.
In the disinfection process, the detected person should close eyes and cover the mouth and nose, or cover the eyes and nose with a mask.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention in any way. Any simple modifications, changes and equivalent changes made to the above embodiments according to the technical spirit of the present invention all fall within the protection scope of the technical solution of the present invention.
Claims (4)
1. A full-automatic sterilizer comprises a door body and is characterized by further comprising a disinfectant main pipeline arranged on the outer wall of the door body, wherein the disinfectant main pipeline is fixed on the door body through a pipeline fixing device, one end of the disinfectant main pipeline is connected with a disinfectant container, the other end of the disinfectant main pipeline is connected with a disinfectant nozzle through an electromagnetic valve, a plurality of disinfectant branch pipelines are uniformly arranged on the disinfectant main pipeline along the length direction of the disinfectant main pipeline, the disinfectant branch pipelines, the electromagnetic valve, a transition pipeline and a water outlet component are sequentially connected, the electromagnetic valve, the transition pipeline and the water outlet component are all positioned in a mounting hole on the door body, the free end of the water outlet component is in threaded connection with the disinfectant nozzle, a plurality of small holes are formed in the disinfectant nozzle, an infrared induction controller is fixed on the water outlet component and comprises a shell, the electromagnetic valve comprises a shell, a receiving tube, a transmitting tube, a circuit board, a power supply unit, a receiving tube, a transmitting tube, an indicating lamp, a light-diffusing film, a lamp shade, a circuit board and the like, wherein the cavity is arranged in the shell, the light-diffusing film, the lamp shade, the transmitting tube and the indicating lamp are sequentially arranged in the cavity, the receiving tube, the transmitting tube and the indicating lamp are sleeved on the circuit board, the light-diffusing film is arranged at the front end of the lamp shade and fixed on the inner wall of the shell, one path of control line output by; the inner wall of the door body is also provided with an arc-shaped induction window for the normal work of the infrared induction controller, and the arc-shaped induction window is positioned above the disinfectant sprayer;
the door body top is provided with infrared body temperature detector, infrared body temperature detector passes through the concentrator and is connected with the host computer, the host computer is used for showing the body temperature number of degrees.
2. The automatic sterilizer of claim 1, wherein two sets of negative pressure air flow pipes are disposed on the left and right outer side walls of the door body, the two sets of negative pressure air flow pipes are respectively disposed on both sides of the disinfectant main pipe and fixed to the door body by a pipe fixing device, one end of the negative pressure air flow pipe is connected to the gas recovery tank by an exhaust fan, the other end of the negative pressure air flow pipe is connected to the tapered air outlet, the negative pressure air flow pipe is also provided with a plurality of negative pressure air flow branch pipes along the length direction thereof, the free end of the negative pressure air flow branch pipe is connected to the tapered air outlet, the tapered air outlet is staggered with the adjacent disinfectant nozzles, and the exhaust motor is connected to the hub by a controller.
3. The automatic sterilizer of claim 2, wherein the pipe fixing device comprises a base fixed on the door body, a first arc-shaped fixing plate is fixed on the base, and two ends of the first arc-shaped fixing plate are connected with a second arc-shaped fixing plate through screws.
4. The automatic sterilizer of claim 1, further comprising a floor mat disposed inside the door body, wherein the floor mat has a width smaller than that of the door body and is disposed at a central position inside the door body, the floor mat sequentially comprises an upper layer, a middle layer and a lower layer from top to bottom, the upper layer is made of cotton, the middle layer is made of sponge, the lower layer is made of stainless steel, the lower layer is a concave structure, the upper layer and the middle layer are disposed in the concave portion of the lower layer, two symmetrical edges of the upper end surface of the lower layer are respectively provided with a circuitous portion along the length direction thereof for limiting the upper layer and the middle layer in the concave structure of the lower layer, one side of the floor mat is provided with a through hole, a disinfectant solution supply pipe is disposed in the through hole, and the other end of the disinfectant solution supply pipe is connected to a disinfectant solution container, and a stop valve is arranged on the disinfectant liquid supply pipeline.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020568743.XU CN212662301U (en) | 2020-04-16 | 2020-04-16 | Full-automatic sterilizer |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202020568743.XU CN212662301U (en) | 2020-04-16 | 2020-04-16 | Full-automatic sterilizer |
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| Publication Number | Publication Date |
|---|---|
| CN212662301U true CN212662301U (en) | 2021-03-09 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202020568743.XU Expired - Fee Related CN212662301U (en) | 2020-04-16 | 2020-04-16 | Full-automatic sterilizer |
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| Country | Link |
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| CN (1) | CN212662301U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN115364258A (en) * | 2022-07-26 | 2022-11-22 | 陕西中医药大学 | A degassing unit for public health epidemic prevention |
-
2020
- 2020-04-16 CN CN202020568743.XU patent/CN212662301U/en not_active Expired - Fee Related
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN115364258A (en) * | 2022-07-26 | 2022-11-22 | 陕西中医药大学 | A degassing unit for public health epidemic prevention |
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