CN111895534A - Super gaseous plasma air sterilizer - Google Patents

Super gaseous plasma air sterilizer Download PDF

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Publication number
CN111895534A
CN111895534A CN202010680234.0A CN202010680234A CN111895534A CN 111895534 A CN111895534 A CN 111895534A CN 202010680234 A CN202010680234 A CN 202010680234A CN 111895534 A CN111895534 A CN 111895534A
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CN
China
Prior art keywords
frame
connecting rod
louver
filtering
filter
Prior art date
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Pending
Application number
CN202010680234.0A
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Chinese (zh)
Inventor
陈旭
丁英杰
刘慧娜
孙孝红
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Weihai Airgd Medical Equipment Co ltd
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Weihai Airgd Medical Equipment Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Weihai Airgd Medical Equipment Co ltd filed Critical Weihai Airgd Medical Equipment Co ltd
Priority to CN202010680234.0A priority Critical patent/CN111895534A/en
Publication of CN111895534A publication Critical patent/CN111895534A/en
Pending legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/52Indication arrangements, e.g. displays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/89Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/32Supports for air-conditioning, air-humidification or ventilation units
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/50Air quality properties
    • F24F2110/65Concentration of specific substances or contaminants
    • F24F2110/76Oxygen
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The invention provides a super-gaseous plasma air sterilizer which comprises a panel, a shell, a filtering and sealing system, a control system, an oxygen generation system, a fan system and an automatic air outlet adjusting device, wherein the panel is arranged on the surface of the shell, the control system is arranged in the panel, the filtering and sealing system, the oxygen generation system, the fan system and the automatic air outlet system are all arranged in the shell, the automatic air outlet adjusting device is positioned at the uppermost end of the shell, the fan system is positioned below the filtering and sealing system, the oxygen generation system is positioned below the fan system, and a base parallel to the bottom surface of the shell is arranged at the lower end of the filtering and sealing system. The invention can control the airflow direction of the air outlet, has quick air diffusion and good filtering and sealing effect, and the filtering module is easy to maintain and replace.

Description

Super gaseous plasma air sterilizer
Technical Field
The invention relates to the field of disinfection and sterilization equipment, in particular to a super-gaseous plasma air disinfector.
Background
The plasma super-gaseous plasma air sterilizer is a super-gaseous plasma air sterilizer with the current international advanced level, has high-efficiency sterilization and filtration performance, has extremely strong plasma sterilization and disinfection effects and short action time, and is far from the time of high-strength ultraviolet rays.
Disclosure of Invention
The invention aims to provide a super-gaseous plasma air sterilizer which can control the airflow direction of an air outlet, has quick air diffusion and good filtering and sealing effects and is easy to maintain and replace a filtering module.
The technical scheme of the invention is as follows: a super-gaseous plasma air sterilizer comprises a panel, a shell, a filtering and sealing system, a control system, an oxygen generation system, a fan system and an automatic air outlet adjusting device, wherein the panel is arranged on the surface of the shell, the control system is arranged in the panel, the filtering and sealing system, the oxygen generation system, the fan system and an automatic air outlet system are all arranged in the shell, the automatic air outlet adjusting device is positioned at the uppermost end of the shell, the fan system is positioned below the filtering and sealing system, the oxygen generation system is positioned below the fan system, and the lower end of the filtering and sealing system is provided with a base parallel to the bottom surface of the shell;
the automatic air outlet adjusting device comprises a frame, a shutter mechanism, a distance meter, a driving device and a bottom surface, wherein the distance meter is arranged on the inner surface of the side wall of the frame, and the distance meter is connected with the control system through a data line;
the shutter mechanism includes: the device comprises a frame, louver blades, a rotating shaft, a driving device, a connecting rod and a bottom surface; the frame is provided with a partition which is triangular and is arranged in the middle of two sides of the frame, two sides of the frame are provided with through holes, the rotating shaft is rotatably arranged in the through holes, the rotating shaft is fixedly connected with the middle parts of the louver blades, the louver blades are provided with a plurality of louver blades, and the louver blades are uniformly distributed, parallel and rotatably arranged in the frame; the two sides of the end parts of the louver blades at the upper and lower positions of the axial surface of the partition are respectively connected with the connecting rods by taking the partition as a boundary;
the driving device comprises a control louver rotating motor, a speed reducer coaxial with the control louver rotating motor, a synchronous gear belt, a large synchronous belt pulley, a small synchronous belt pulley and a louver rotating motor support, the louver rotating motor support is installed at the bottom of the bottom surface, the control louver rotating motor and the speed reducer are both installed on the louver rotating motor support, the shaft end of the speed reducer and the rotating shaft of any louver blade are located on the same vertical plane, the small synchronous belt pulley is in key connection with the shaft end of the speed reducer, the large synchronous belt pulley is in key connection with a first rotating shaft at the upper end of the shaft end of the speed reducer, the synchronous gear belt is connected with the large synchronous belt pulley and the small synchronous belt pulley, and the control system is connected with the control louver rotating motor through;
the two driving devices are respectively in transmission connection with the rotating shaft of any one of the louver blades at the upper and lower positions of the axial surface of the partition;
the filtering and sealing system comprises an ion generation and high-efficiency multistage filter combined module and a movable support frame, the ion generation and high-efficiency multistage filter combined module is arranged in parallel to the bottom surface of the base, and the movable support frame is positioned below the ion generation and high-efficiency multistage filter combined module; the ion generation and high efficiency multistage filter combination module comprises a plurality of filter modules which are stacked in parallel, wherein each filter module comprises a filter frame and a filter screen assembly arranged in the filter frame; the movable support frame comprises a follow-up frame, a cross rod and a support, wherein the follow-up frame corresponds to the filtering frame; the left end and the right end of the outer surfaces of the two side walls of the follow-up frame are respectively provided with a first hinge mechanism and a second hinge mechanism, the first hinge mechanism comprises an upper left connecting rod and a lower left connecting rod, the upper end of the upper left connecting rod is hinged with the outer surface of the side wall of the follow-up frame, and the lower end of the upper left connecting rod is hinged with the upper end of the lower left connecting rod and fixed at one end of the cross rod; the cross bar is parallel to the side wall of the follow-up frame; the second hinge mechanism comprises a right upper connecting rod and a handle connecting rod, the upper end of the right upper connecting rod is hinged with the outer surface of the side wall of the follow-up frame, the lower end of the right upper connecting rod is hinged with the middle part of the handle connecting rod and is fixed at the other end of the cross rod, and a handle connecting hole is formed in the upper end of the handle connecting rod; the lower end of the left lower connecting rod and the lower end of the handle connecting rod are respectively arranged on a first plane of the bracket in parallel, and a second plane of the bracket is arranged on the base in parallel; the upper parts of the follow-up frame and the filtering frame are both provided with sealing gaskets; an elastic sealing cavity is arranged between the bottom of the follow-up frame and the base;
the oxygen generation system comprises an air inlet, a nitrogen outlet and an oxygen outlet.
Further, a USB interface is arranged on the surface of the panel and connected with the control system.
Furthermore, an electrical apparatus interface module is arranged on the surface of the shell body and below the panel, and the electrical apparatus interface module is electrically connected with the control system.
Furthermore, an intelligent wireless remote monitoring module is arranged inside the shell and close to the electric appliance interface module, and the intelligent wireless remote monitoring module is electrically connected with the electric appliance interface module and is in signal connection with the control system and the external host.
Further, ion generation and high efficiency multi-stage filter combination module includes filter degassing unit and ultraviolet ray sterilization apparatus, ultraviolet ray sterilization apparatus install in on the filter degassing unit.
Further, the panel comprises a touch screen control panel and an operation indicating lamp, the touch screen control panel is connected with the control system through a line, and the operation indicating lamp is connected with the control system through a line.
Further, the bottom of the shell is provided with universal wheels.
The invention has the advantages and positive effects that: the air outlet device can control the angle of the air flow at the air outlet and accelerate the diffusion of the air flow at the air outlet; the sealing system has strong filtering effect and good sealing effect, and the filtering device is easy to maintain and replace the filter screen.
Drawings
FIG. 1 is a front view of the ultra-gaseous plasma air sterilizer of the present invention;
fig. 2 is a cross-sectional view of the super gaseous plasma air sterilizer of the present invention shown in fig. 1.
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
As shown in fig. 1-2: a super-gaseous plasma air sterilizer comprises a panel 3, a shell 2, a filtering and sealing system, a control system, an oxygen generation system, a fan 7 system and an air outlet automatic adjusting device 4, wherein the panel 3 is installed on the surface of the shell 2, the control system is installed in the panel 3, the filtering and sealing system, the oxygen generation system, the fan 7 system and an automatic air outlet system are all arranged in the shell 2, the air outlet automatic adjusting device 4 is positioned at the uppermost end of the shell 2, the fan 7 system is positioned below the filtering and sealing system, the oxygen generation system is positioned below the fan 7 system, and the lower end of the filtering and sealing system is provided with a base parallel to the bottom surface of the shell 2;
the automatic air outlet adjusting device 4 comprises a frame, a shutter mechanism, a distance meter 16, a driving device and a bottom surface, wherein the distance meter 16 is arranged on the inner surface of the side wall of the frame, and the distance meter 16 is connected with a control system through a data line;
the shutter mechanism includes: the device comprises a frame, louver blades, a rotating shaft, a driving device, a connecting rod and a bottom surface; the frame is provided with a partition which is triangular and is arranged in the middle of two sides of the frame, two sides of the frame are provided with through holes, the rotating shaft is rotatably arranged in the through holes, the rotating shaft is fixedly connected with the middle parts of the louver blades, the louver blades are provided with a plurality of louver blades, and the louver blades are uniformly distributed, parallel and rotatably arranged in the frame; the two sides of the end parts of the louver blades at the upper and lower positions of the axial surface of the partition are respectively connected with the connecting rods by taking the partition as a boundary;
the driving device comprises a control louver rotating motor 17, a speed reducer coaxial with the control louver rotating motor 17, a synchronous gear belt, a large synchronous belt pulley, a small synchronous belt pulley and a louver rotating motor 17 support, wherein the louver rotating motor 17 support is installed at the bottom of the bottom surface, the control louver rotating motor 17 and the speed reducer are both installed on the louver rotating motor 17 support, the shaft end of the speed reducer and the rotating shaft of any louver blade are located on the same vertical plane, the small synchronous belt pulley is in key connection with the shaft end of the speed reducer, the large synchronous belt pulley is in key connection with a first rotating shaft at the upper end of the shaft end of the speed reducer, the synchronous gear belt is connected with the large synchronous belt pulley and the small synchronous belt pulley, and the control system is connected with the control louver rotating motor 17;
the two driving devices are respectively in transmission connection with the rotating shaft of any one of the louver blades at the upper and lower positions of the axial surface of the partition;
the filtering and sealing system comprises an ion generating and high-efficiency multistage filter combined module and a movable support frame 12, the ion generating and high-efficiency multistage filter combined module is arranged in parallel to the bottom surface of the base, and the movable support frame 12 is positioned below the ion generating and high-efficiency multistage filter combined module; the ion generation and high efficiency multistage filter combination module comprises a plurality of filter modules which are stacked in parallel, wherein each filter module comprises a filter frame and a filter screen assembly arranged in the filter frame; the movable support frame 12 comprises a follow-up frame, a cross bar and a support which correspond to the filtering frame, and the support comprises a support first plane and a support second plane which is vertical to the upper end of the support first plane; the left end and the right end of the outer surfaces of the two side walls of the follow-up frame are respectively provided with a first hinge mechanism and a second hinge mechanism, the first hinge mechanism comprises an upper left connecting rod and a lower left connecting rod, the upper end of the upper left connecting rod is hinged with the outer surface of the side wall of the follow-up frame, and the lower end of the upper left connecting rod is hinged with the upper end of the lower left connecting rod and fixed at one end of the cross rod; the cross bar is parallel to the side wall of the follow-up frame; the second hinge mechanism comprises a right upper connecting rod and a handle connecting rod, the upper end of the right upper connecting rod is hinged with the outer surface of the side wall of the follow-up frame, the lower end of the right upper connecting rod is hinged with the middle part of the handle connecting rod and is fixed at the other end of the cross rod, and a handle connecting hole is formed in the upper end of the handle connecting rod; the lower end of the left lower connecting rod and the lower end of the handle connecting rod are respectively arranged on a first plane of the bracket in parallel, and a second plane of the bracket is arranged on the base in parallel; the upper parts of the follow-up frame and the filtering frame are both provided with sealing gaskets; an elastic sealing cavity is arranged between the bottom of the follow-up frame and the base;
the oxygen generation system includes an air inlet 13, a nitrogen outlet 14, and an oxygen outlet 15.
The surface of the panel 3 is provided with a USB interface 18, and the USB interface 18 is connected with the control system.
An electrical appliance interface module 8 is arranged on the surface of the shell 2 and lower than the panel 3, and the electrical appliance interface module 8 is electrically connected with the control system.
Inside the casing 2, be close to electrical apparatus interface module 8 department is provided with intelligent wireless remote monitoring module 19, intelligent wireless remote monitoring module 19 electricity is connected electrical apparatus interface module 8, and with control system and external host computer signal connection.
The ion generation and high-efficiency multistage filter combined module comprises a filter disinfection device 20 and an ultraviolet sterilization device, wherein the ultraviolet sterilization device is arranged on the filter disinfection device 20.
The panel 3 comprises a touch screen control panel 3 and an operation indicating lamp 1, the touch screen control panel 3 is connected with the control system through a line, and the operation indicating lamp 1 is connected with the control system through a line.
The bottom of the shell 2 is provided with universal wheels 9.
The automatic air outlet adjusting device 4 further comprises a distance meter 16, the distance meter 16 is arranged on the inner surface of the side wall of the frame, and the distance meter 16 is connected with the control system through a data line; the driving device comprises a control shutter rotating motor 17, a speed reducer coaxial with the control shutter rotating motor 17, a synchronous gear belt, a large synchronous belt wheel, a small synchronous belt wheel and a shutter rotating motor 17 support, and the control system is connected with the control shutter rotating motor 17 through a data line.
The shutter rotating motor 17 is arranged at the bottom of the bottom surface; the shutter rotating electrical machines 17 support includes first plane and with first plane vertically second plane, first plane parallel mount is in the bottom of bottom surface, control shutter rotating electrical machines 17 and speed reducer are installed perpendicularly on the second plane, the axle head of speed reducer is located same vertical plane with the pivot of arbitrary one shutter blade, little synchronous pulley links to each other with speed reducer axle head key, and big synchronous pulley links to each other with the first pivot key of speed reducer axle head upper end, be equipped with the second through-hole on the first plane of shutter rotating electrical machines 17 support, the second through-hole is located the axle head of speed reducer directly over, be provided with the third through-hole that corresponds with the second through-hole on the bottom surface, the synchronizing gear band-pass is through second through-hole and third through-hole and is connected big synchronous pulley and little synchronous pulley.
The width of the bottom surface is smaller than the width of the frame, and the length of the bottom surface is preferably equal to the width of the frame.
The first plane of the bracket of the louver rotating motor 17 is equal to the width of the bottom surface.
The filtering and sealing system comprises a movable support frame 12, the filtering and sealing system is arranged in parallel with the base, and the movable support frame 12 is positioned below the filtering and sealing system; the filtration sealing system comprises a plurality of filtration modules stacked in parallel, the filtration modules comprising a filtration frame and a filter screen assembly mounted within the filtration frame, the filtration frame preferably being rectangular; the movable support frame 12 comprises a follow-up frame, a cross rod and supports corresponding to the filtering frame, the supports comprise first support planes and second support planes perpendicular to the upper ends of the first support planes, and the two supports can be arranged on the left side and the right side of the follow-up frame respectively, so that materials can be saved.
The left end and the right end of the outer surfaces of the two side walls of the follow-up frame are respectively provided with a first hinge mechanism and a second hinge mechanism, the first hinge mechanism comprises an upper left connecting rod and a lower left connecting rod, the upper end of the upper left connecting rod is hinged with the outer surface of the side wall of the follow-up frame, and the lower end of the upper left connecting rod is hinged with the upper end of the lower left connecting rod and fixed at one end of the cross rod; the cross bar is parallel to the side wall of the follow-up frame.
The second hinge mechanism comprises an upper right connecting rod and a handle connecting rod, the upper end of the upper right connecting rod is hinged to the outer surface of the side wall of the servo frame, the lower end of the upper right connecting rod is hinged to the middle of the handle connecting rod and fixed to the other end of the cross rod, a handle connecting hole is formed in the upper end of the handle connecting rod, the movable support frame 12 further comprises a handle, the handle connecting hole can be connected with the handle, and the handle can be inserted into the handle connecting hole to be controlled when the movable support frame 12 needs to be adjusted to move up and down.
The lower end of the left lower connecting rod and the lower end of the handle connecting rod are respectively arranged on a first plane of the bracket in parallel, and a second plane of the bracket is arranged on the bottom surface of the base in parallel; the upper parts of the follow-up frame and the filtering frame are both provided with sealing gaskets; an elastic sealing cavity is arranged between the bottom of the follow-up frame and the bottom surface of the base, and the sealing performance of the filtering sealing system is enhanced by the arrangement of the sealing gasket and the elastic sealing cavity.
The structure before the sealing of the filtering and sealing system is as follows: the handle is inserted into the handle connecting hole, so that the handle connecting rod falls down, the handle connecting rod falls down to drive the first hinge mechanism and the second hinge mechanism to fall down, the movable support frame 12 falls down, the filter module is supported on the filter module supporting guide rail through the filter module supporting plate on the filter module, and gaps are respectively reserved at the upper position and the lower position between the filter modules, so that the filter modules can be respectively maintained and replaced.
The structure of the filtering and sealing system after sealing: after the maintenance and replacement of the filter module are completed, the handle is rotated to drive the handle connecting rod to ascend, the handle connecting rod ascends to drive the first hinge mechanism and the second hinge mechanism to ascend, the rear part of the follow-up frame is forced to move upwards due to the restraint of the rear supporting plate according to the four-rod mechanism principle, so that the filter module is supported at the upper part of the follow-up frame in a circulating manner, and the follow-up frame and the sealing gasket at the upper part of the filter module are extruded to achieve the sealing effect.
The super gaseous state plasma air sterilizing machine still includes the system oxygen system, the system oxygen system is located the below of fan 7 system, the system oxygen system includes air intlet 13, nitrogen gas export 14 and oxygen export 15.
The lower end of the housing 2 is provided with universal wheels 9. The top frame is provided with two upper cover bodies, the side walls of the two upper cover bodies are connected, and the side walls of the connected cover bodies are provided with vent holes. The side wall of the cover body is provided with a plurality of air inlets, and the air inlets are provided with sealing gaskets or are connected with a gas channel of the super-gaseous plasma air sterilizer. And an LED lamp strip is arranged on the inner side of the top frame. The height of the plastic transparent cover is less than that of the upright post. The gas channel is an arc-shaped side wall, one end of the arc-shaped side wall is connected with the lower end of the gas outlet, and the other end of the arc-shaped side wall is connected with the upper edge of the gas inlet.
Working examples of the invention: the utility model provides a super gaseous state plasma air sterilizing machine need rotate the handle before the work and drive the handle connecting rod and rise, the handle connecting rod rises and drives first hinge mechanism and second hinge mechanism and rise, according to four-bar linkage principle can know follow-up frame rear portion because there is its upward movement of restraint compelling of back backup pad, thereby it gets the filter module to follow time to hold up its upper portion, thereby the sealed pad on extrusion follow-up frame and the filter module upper portion reaches encapsulated situation, when system oxygen system during operation, the air gets into through system oxygen system's air inlet 13 separation from system oxygen system, nitrogen gas passes through nitrogen outlet 14 discharge outside the environment, oxygen passes through oxygen outlet 15 again through fan 7 system entering filtration sealing system passageway and sterilizes, filter, then follow the aseptic oxygen outlet contained angle automatic regulating apparatus and discharge aseptic oxygen.
The working process of the automatic air outlet adjusting device 4 is as follows: before the equipment works, the hinge mechanism is required to be pulled to drive the movable sealing frame to move upwards and sequentially support the upper plasma generation and high-efficiency multi-stage filter combined module 5 to move upwards, sealing rubber strips are adhered to the upper parts of the modules, so that the modules can be mutually sealed, and finally, the modules are contacted with the upper plate of the cavity to form a sealing channel. When the fan 7 acts, ambient air enters a sealed gas channel consisting of the elastic sealing cover 10, the plasma generator module and the high-efficiency multistage filter module through the primary filtering module. Firstly, gas enters an ion current discharge system, plasma generated by discharge of the ion current discharge system can decompose and react bacteria entering the system, and the decomposed and reacted gas passes through a high-efficiency multistage filter module and finally is discharged from an air outlet assembly to form harmless gas.
Oxygen module 6 mainly is environment supplementary oxygen, and system oxygen module 6 can the during operation, and the air gets into through system oxygen module 6 separation from system oxygen module 6's air inlet 13, and outside the nitrogen gas discharge environment, oxygen got into the sealed gas passage of constituteing by elasticity sealed cowling 10-plasma generator and high-efficient multi-stage filter module and then the sterilization, filter and follow the aseptic oxygen of air outlet subassembly discharge through fan 7.
The automatic air outlet adjusting device 4 is provided with a distance meter 16 and a louver rotating motor 17, the distance meter 16 measures the distance between the air outlet and the top environment space plane and feeds the distance to the system, the system controls the louver rotating motor 17 to rotate according to the feedback data of the distance meter 16, and the louver rotating motor 17 rotates to control the louver angle, so that the purposes of optimal turbulence and diffusion are achieved when air is blown to the top environment space plane.
If the filter element in the filter needs to be replaced and maintained, the hinge mechanism is only needed to be pulled down to drive the movable sealing frame to move downwards, so that all the modules return to the positions before mutual sealing, gaps are reserved among all the modules and are all arranged on the respective sliding guide rails, and the modules are only needed to be pulled out along the guide rails to be replaced and maintained.
The device is externally provided with a USB interface 18 which can be connected with storage devices such as a USB flash disk, and important operation parameters such as the operation recording time, the temperature and the air volume of the device are stored in the USB flash disk in real time.
Intelligent wireless remote monitoring module 19: the equipment is provided with the wireless Internet of things card, the intelligent wireless remote monitoring and maintenance function can be realized, the running condition of the core component and the alarm record are transmitted to the cloud data server in real time, and the detailed running record is automatically stored all the time
Filter sterilizing device 20: be furnished with filter disinfection, sterilizing equipment in the middle of plasma generation and high-efficient multi-stage filter composite module 5, filter degassing unit 20 is furnished with ultraviolet sterilization device, utilize the ultraviolet ray to produce the destructive action to the DNA of the microorganism that depends on the filter combination, can kill bacterium and the virus on the filter, filter degassing unit 20 mainly makes up regularly disinfecting, disinfects to the filter every day, guarantees the filter cleanliness, guarantee equipment high performance operation, reduce the filter change cycle, practice thrift the cost.
The above description is only a preferred embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (7)

1. A super-gaseous plasma air sterilizer is characterized by comprising a panel, a shell, a filtering and sealing system, a control system, an oxygen generation system, a fan system and an automatic air outlet adjusting device, wherein the panel is arranged on the surface of the shell, the control system is arranged in the panel, the filtering and sealing system, the oxygen generation system, the fan system and the automatic air outlet system are all arranged in the shell, the automatic air outlet adjusting device is positioned at the uppermost end of the shell, the fan system is positioned below the filtering and sealing system, the oxygen generation system is positioned below the fan system, and a base parallel to the bottom surface of the shell is arranged at the lower end of the filtering and sealing system;
the automatic air outlet adjusting device comprises a frame, a shutter mechanism, a distance meter, a driving device and a bottom surface, wherein the distance meter is arranged on the inner surface of the side wall of the frame, and the distance meter is connected with the control system through a data line;
the shutter mechanism includes: the device comprises a frame, louver blades, a rotating shaft, a driving device, a connecting rod and a bottom surface; the frame is provided with a partition which is triangular and is arranged in the middle of two sides of the frame, two sides of the frame are provided with through holes, the rotating shaft is rotatably arranged in the through holes, the rotating shaft is fixedly connected with the middle parts of the louver blades, the louver blades are provided with a plurality of louver blades, and the louver blades are uniformly distributed, parallel and rotatably arranged in the frame; the two sides of the end parts of the louver blades at the upper and lower positions of the axial surface of the partition are respectively connected with the connecting rods by taking the partition as a boundary;
the driving device comprises a control louver rotating motor, a speed reducer coaxial with the control louver rotating motor, a synchronous gear belt, a large synchronous belt pulley, a small synchronous belt pulley and a louver rotating motor support, the louver rotating motor support is installed at the bottom of the bottom surface, the control louver rotating motor and the speed reducer are both installed on the louver rotating motor support, the shaft end of the speed reducer and the rotating shaft of any louver blade are located on the same vertical plane, the small synchronous belt pulley is in key connection with the shaft end of the speed reducer, the large synchronous belt pulley is in key connection with a first rotating shaft at the upper end of the shaft end of the speed reducer, the synchronous gear belt is connected with the large synchronous belt pulley and the small synchronous belt pulley, and the control system is connected with the control louver rotating motor through;
the two driving devices are respectively in transmission connection with the rotating shaft of any one of the louver blades at the upper and lower positions of the axial surface of the partition;
the filtering and sealing system comprises an ion generation and high-efficiency multistage filter combined module and a movable support frame, the ion generation and high-efficiency multistage filter combined module is arranged in parallel to the bottom surface of the base, and the movable support frame is positioned below the ion generation and high-efficiency multistage filter combined module; the ion generation and high efficiency multistage filter combination module comprises a plurality of filter modules which are stacked in parallel, wherein each filter module comprises a filter frame and a filter screen assembly arranged in the filter frame; the movable support frame comprises a follow-up frame, a cross rod and a support, wherein the follow-up frame corresponds to the filtering frame; the left end and the right end of the outer surfaces of the two side walls of the follow-up frame are respectively provided with a first hinge mechanism and a second hinge mechanism, the first hinge mechanism comprises an upper left connecting rod and a lower left connecting rod, the upper end of the upper left connecting rod is hinged with the outer surface of the side wall of the follow-up frame, and the lower end of the upper left connecting rod is hinged with the upper end of the lower left connecting rod and fixed at one end of the cross rod; the cross bar is parallel to the side wall of the follow-up frame; the second hinge mechanism comprises a right upper connecting rod and a handle connecting rod, the upper end of the right upper connecting rod is hinged with the outer surface of the side wall of the follow-up frame, the lower end of the right upper connecting rod is hinged with the middle part of the handle connecting rod and is fixed at the other end of the cross rod, and a handle connecting hole is formed in the upper end of the handle connecting rod; the lower end of the left lower connecting rod and the lower end of the handle connecting rod are respectively arranged on a first plane of the bracket in parallel, and a second plane of the bracket is arranged on the base in parallel; the upper parts of the follow-up frame and the filtering frame are both provided with sealing gaskets; an elastic sealing cavity is arranged between the bottom of the follow-up frame and the base;
the oxygen generation system comprises an air inlet, a nitrogen outlet and an oxygen outlet.
2. The super gaseous plasma air sanitizer according to claim 1, wherein: and a USB interface is arranged on the surface of the panel and is connected with the control system.
3. The super gaseous plasma air sanitizer according to claim 1, wherein: an electrical appliance interface module is arranged on the surface of the shell and lower than the panel, and the electrical appliance interface module is electrically connected with the control system.
4. The super gaseous plasma air sanitizer according to claim 3, wherein: and an intelligent wireless remote monitoring module is arranged in the shell and close to the electric appliance interface module, and the intelligent wireless remote monitoring module is electrically connected with the electric appliance interface module and is in signal connection with the control system and an external host.
5. The super gaseous plasma air sanitizer according to claim 4, wherein: the ion generation and high-efficiency multistage filter combined module comprises a filter disinfection device and an ultraviolet sterilization device, wherein the ultraviolet sterilization device is arranged on the filter disinfection device.
6. The super gaseous plasma air sanitizer according to claim 1, wherein: the panel comprises a touch screen control panel and an operation indicating lamp, the touch screen control panel is connected with the control system through a wire, and the operation indicating lamp is connected with the control system through a wire.
7. The super gaseous plasma air sanitizer according to claim 1, wherein: the bottom of the shell is provided with universal wheels.
CN202010680234.0A 2020-07-15 2020-07-15 Super gaseous plasma air sterilizer Pending CN111895534A (en)

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Application publication date: 20201106