CN214260275U - Atomizing reagent hand degassing unit of induction type - Google Patents

Atomizing reagent hand degassing unit of induction type Download PDF

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Publication number
CN214260275U
CN214260275U CN202022853872.6U CN202022853872U CN214260275U CN 214260275 U CN214260275 U CN 214260275U CN 202022853872 U CN202022853872 U CN 202022853872U CN 214260275 U CN214260275 U CN 214260275U
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China
Prior art keywords
interface
inner frame
atomization generator
generator
outer frame
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Expired - Fee Related
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CN202022853872.6U
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Chinese (zh)
Inventor
郜鑫
张志彪
刘国强
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Individual
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Individual
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Abstract

The utility model discloses an atomizing reagent hand degassing unit, the utility model relates to a hand disinfection utensil among the sanitary disinfection technical field especially relates to an induction type's atomizing reagent hand degassing unit. Comprises an atomizer operation main body, a circuit controller, a reagent box, a fan and a shell. The atomizer working body includes an atomizing generator, an inner frame, and an outer frame. The atomization generator comprises an atomization sheet, an atomizer shell, a sealing rubber ring and an extension column, wherein an interface is arranged at the tail end of the extension column and is linked with the circuit controller, and a sucking rod is filled in the extension column; the utility model discloses a human hand of infrared human body sensor monitoring that sets up to pass through circuit transmission to circuit controller with monitoring data, thereby make the atomizing operation main part can atomize the disinfection to user's hand, put into back auto-induction when user's hand and start the aerosol generator and atomize the disinfection, automatic reagent of filling and start the fan ventilation after the disinfection.

Description

Atomizing reagent hand degassing unit of induction type
Technical Field
The utility model relates to an atomizing reagent hand degassing unit relates to the hand disinfection utensil among the sanitary disinfection technical field, concretely relates to atomizing reagent hand degassing unit of induction type.
Background
The hands are most easily polluted by pathogenic microorganisms, the chance that the hands contact with external bacteria, viruses and pollutants is high, and hundreds of thousands of bacteria exist in a pair of unwashed hands. The hand disinfection method is characterized in that a hand is disinfected by spraying alcohol on the hand in public places such as pharmaceutical enterprises, food processing factories, medical care, banks, hotels, campuses and the like. However, people in public places have large mobility, and do not have enough time and space for disinfection, so that the disinfection is not guaranteed, and various diseases can be caused due to the careless hand disinfection mode. In addition, daily hand washing is performed in places with water, and then the hands are wiped dry by using towels or paper towels or dried by using a dryer after being washed by clean water, so that the whole hand washing and disinfecting work is completed, the sanitary condition cannot meet the requirement, and therefore a better device for disinfecting the hands needs to be provided in a simpler and more convenient mode. At present, various forms of drying and disinfectors are full of precious and various, and products in the form of spraying are also diversified, so that the design is more convenient and universal, the most common and simple technology is combined and a novel hand washing and disinfecting tool is innovated, and more convenient service is provided for various occasions both indoors and outdoors.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that needs to solve provides an atomizing reagent hand degassing unit of induction type, and the purpose is in order to possess the function of atomizing reagent to disinfecting the hand, solves the unable swift convenient problem of disinfecting of traditional hand degassing unit to the hand.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is:
an induction type hand disinfection device with atomized reagent comprises an atomizer operation main body, a circuit controller, a kit, a fan and a shell. The atomizer working body includes an atomizing generator, an inner frame, and an outer frame. The inner frame comprises an inner frame main body and an inner frame interface, the inner frame interface is connected with the atomization generator, the circuit controller and the outer shell, and the inner frame main body is filled with absorption cotton. The utility model discloses technical scheme's further improvement lies in: the atomization generator comprises an atomization sheet, an atomizer shell, a sealing rubber ring and an extension column, wherein an interface is arranged at the tail end of the extension column and is linked with the circuit controller, and a sucking rod is filled in the extension column.
The utility model discloses technical scheme's further improvement lies in: the circuit controller comprises a control panel, an upper circuit channel, a middle circuit channel, a lower circuit channel and a power supply channel, wherein the upper circuit channel, the middle circuit channel and the lower circuit channel are respectively provided with an interface, the tail end of the middle circuit channel is provided with an infrared human body sensor, and the infrared human body sensor is connected with the circuit controller.
The utility model discloses technical scheme's further improvement lies in: the automatic filling pipe is connected with the kit and the circuit controller, and the manual filling pipe is connected with the atomizer operation main body.
The utility model discloses technical scheme's further improvement lies in: the outer frame comprises an outer frame main body and an outer frame interface, and the outer frame interface is connected with the atomization generator and the circuit controller.
The utility model discloses technical scheme's further improvement lies in: the fan comprises a fan main body, a power supply circuit and a control circuit, wherein the power supply circuit and the control circuit are connected with the power supply circuit and the control circuit.
The utility model discloses technical scheme's further improvement lies in: the shell comprises a shell main body, an automatic filling pipe and a manual filling pipe, four screw holes are formed in the back of the shell main body, and a power supply hole and a ventilation hole are formed in the right of the shell main body.
The utility model discloses technical scheme's further improvement lies in: the kit comprises a main container, a filling port and a discharge port, wherein the discharge port is connected with an inner frame.
Owing to adopted above-mentioned technical scheme, the utility model discloses relative prior art, the technological progress who gains is:
the utility model provides an atomizing reagent hand degassing unit of induction type, adopt and atomize generating device and circuit controller, infrared human body sensor combines together, the human hand state of infrared human body sensor monitoring through outer frame setting, and transmit monitoring data to circuit controller through circuit channel, under circuit controller's control, atomization generator, the filler and the fan of kit can both automatic start, thereby make the atomizing operation main part can atomize the automatic reagent of annotating after the disinfection and ventilate to user's hand. After the hand of the user is put in, the atomization generator is started to perform atomization and disinfection by automatic induction, and after the disinfection is finished, the reagent is automatically filled and the fan is started to ventilate.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the housing of the present invention;
fig. 3 is a front view of the housing of the present invention;
FIG. 4 is a schematic view of the main structure of the atomizing operation of the present invention;
FIG. 5 is a schematic view of the assembly of the atomizing operation main body and the circuit controller according to the present invention;
FIG. 6 is a schematic view of the inner frame structure of the present invention;
fig. 7 is a schematic structural diagram of the circuit controller of the present invention;
FIG. 8 is a schematic view of the outer frame structure of the present invention;
fig. 9 is a schematic structural diagram of the kit of the present invention;
fig. 10 is a schematic structural view of the atomization generator of the present invention;
fig. 11 is a schematic view of the fan of the present invention.
In the figure: 111. an atomizer working body; 3. a circuit controller; 5. a kit; 7. a fan; 4. a housing; 61. a first atomization generator; 62. a second atomization generator; 63. a third atomization generator; 64. an atomization generator IV; 65. a fifth atomization generator; 66. a sixth atomization generator; 2. an inner frame; 1. an outer frame; 614. an atomizing sheet; 613. an atomizer housing; 612. sealing the rubber ring; 611. extending the column; 31. a control panel; 33. an upper circuit channel; 34. a middle circuit channel; 32. a lower circuit path; 35. a power supply channel; 53. a main vessel; 51. a filling port; 52. a discharge port; 73. a fan main body; 71. a power supply line; 72. a control circuit; 411. a housing main body; 42. automatic filling pipe; 43. a manual filler pipe; 411. a housing main body; 451. a first screw hole; 452. a second screw hole; 453. a third screw hole; 454. a screw hole IV; 44. a power supply hole; 41. a vent hole; 611. extending the column; 615. an atomizer interface; 334. an interface I; 333. interface two; 332. interface three; 331. interface four; 34. a middle circuit channel; 342. interface five; 321. a sixth interface; 322. a seventh interface; 323. an eighth interface; 341. an infrared human body sensor; 342. interface five; 18. an outer frame main body; 11. an outer frame interface I; 12. an outer frame interface II; 13. an outer frame interface III; 14. the outer frame interface IV; 15. an outer frame interface V; 16. an outer frame interface six; 17. an outer frame interface seven; 255. an inner frame body; 21. an inner frame interface I; 22. an inner frame interface II; 23. an inner frame interface III; 24. an inner frame interface IV; 25. an inner frame interface V; 26. an inner frame interface six; 27. an inner frame interface seventh; 28. an inner frame interface eight; 29. an inner frame interface nine; 211. drawing cotton; 71. a power supply line; 72. and (4) control lines.
Detailed Description
The present invention will be described in further detail with reference to the following examples:
example 1
As shown in fig. 1-5, the utility model provides an induction type hand disinfection device with atomized reagent, which comprises an atomizer operation main body 111, a circuit controller 3, a reagent box 5, a fan 7 and a shell 4. The atomizer operation body 111 is assembled by a first atomization generator 61, a second atomization generator 62, a third atomization generator 63, a fourth atomization generator 64, a fifth atomization generator 65, a sixth atomization generator 66, an inner frame 2 and an outer frame 1, and the assembling mode is as follows: the first outer frame interface 11, the second outer frame interface 12, the third outer frame interface 13, the fourth outer frame interface 14, the sixth outer frame interface 16 and the seventh outer frame interface 17 are respectively connected with the first atomization generator 61, the fourth atomization generator 64, the fifth atomization generator 65, the sixth atomization generator 66, the third atomization generator 63 and the second atomization generator 62. The inner frame interface II 22, the inner frame interface III 23, the inner frame interface IV 24, the inner frame interface VI 26, the inner frame interface VII 27 and the inner frame interface VIII 28 are respectively connected with the atomization generator IV 64, the atomization generator V65, the atomization generator VI 66, the atomization generator III 63, the atomization generator II 62 and the atomization generator I61. A sealing rubber ring 612 is arranged between the atomization generator and the outer frame interface, and the inner frame main body 255 is internally filled with a drawing cotton 211 for storing an added reagent.
Example 2
As shown in fig. 1-7, on the basis of embodiment 1, the utility model provides a technical solution,
the circuit controller 3 is assembled with the atomizer work body 111 in the following manner: the upper circuit channel 33 is provided with a second interface 333, a third interface 332 and a fourth interface 331 which are respectively connected with a fourth atomization generator 64, a fifth atomization generator 65 and a sixth atomization generator 66, the lower circuit channel 32 is provided with a sixth interface 321, a seventh interface 322 and an eighth interface 323 which are respectively connected with a first atomization generator 61, a second atomization generator 62 and a third atomization generator 63, the tail end of the middle circuit channel 34 is provided with a fifth interface 342 and an infrared human body sensor 341, and the infrared human body sensor 341 is connected with the fifth interface 342.
Example 3
As shown in fig. 1 to 11, in addition to embodiment 2, the present invention provides a technical solution to assemble the housing 4 with the assembled circuit controller 3 and the atomizer working body 111, the method is as follows: the inner sides of an automatic filling pipe 42 and a manual filling pipe 43 on the outer shell 4 are respectively connected with an inner frame interface 21 and an inner frame interface 29 on the inner frame, a power supply hole 44 arranged on the right side of the outer shell 4 is connected with a power supply channel 35 on the circuit controller 3, the outer side of the automatic filling pipe 42 on the outer shell 4 is connected with a discharge hole 52 arranged on the kit 5, and the automatic filling pipe 42 is connected with a first interface 334 arranged on an upper circuit channel 33. Finally, the fan main body 73 of the fan 7 is mounted at the vent hole 41 provided in the casing 4, and the power supply line 71 and the control line 72 are directly connected to the control board 31 on the circuit controller 3.
Example 4
As shown in fig. 1-11, on the basis of embodiment 3, the utility model provides a technical scheme, be connected power supply channel 35 and external power source, after the hand got into this device, infrared human body sensor 341 monitored when people's hand put into the signal send control panel 31 through well circuit channel 34, control panel 31 judges back signals by last circuit channel 33 on interface two 333, interface three 332, interface four 331 and the lower circuit channel 32 on interface six 321, interface seven 322, interface eight 323 control respectively with atomization generator four 64, atomization generator five 65, atomization generator six 66, atomization generator one 61, atomization generator two 62, atomization generator three 63 open, realize the atomization disinfection to the hand.
Example 5
As shown in fig. 1-11, on the basis of embodiment 4, the utility model provides a technical scheme, after the hand disinfection is accomplished, the hand leaves this device, infrared human body sensor 341 monitors when the human hand leaves send the control panel 31 through well circuit channel 34 with the signal, control panel 31 sends the signal after judging by last circuit channel 33 on interface two 333, interface three 332, interface four 331 and the lower circuit channel 32 on interface six 321, interface seven 322, interface eight 323 control respectively with atomization generator four 64, atomization generator five 65, atomization generator six 66, atomization generator one 61, atomization generator two 62, atomization generator three 63 close, the automatic filling pipe 42 on the shell 4 is controlled to open a period by interface 334 on last circuit channel 33 to the signal simultaneously, realize the filling to the reagent. Meanwhile, the signal is used for controlling the fan to be started for a period of time by the control panel 31 through the control circuit 72, so that the air inside and outside the device is circulated, and the atomized liquid after the disinfection is finished is discharged.
Example 6
As shown in fig. 1 and 10, the present invention provides a technical solution, when the reagent in the reagent kit 5 is used up, the reagent can be filled through the filling port 51 provided in the reagent kit 5, and when the reagent kit is used for the first time, the reagent needs to be filled through the manual filling pipe 43 provided on the housing 4.
The working principle of the induction type hand disinfection device with atomized reagent will be described in detail below.
As shown in fig. 1-11, when the hand disinfection device with the inductive atomized reagent works, the power channel 35 needs to be connected with an external power supply, when the hand disinfection device is used for the first time, the hand filling tube 43 arranged on the shell 4 needs to be filled with the reagent, the reagent enters the absorbent cotton 211, the device is ready, when a hand enters the device, the infrared human body sensor 341 sends a signal to the control panel 31 through the middle circuit channel 34 when monitoring that the hand is put in, the control panel 31 sends the signal after judging, and the atomization generator four 64, the atomization generator five 65, the atomization generator six 66, the atomization generator one 61, the atomization generator two 62 and the atomization generator three 63 are respectively controlled to be synchronously started by the interface two 333, the interface three 332, the interface four 331 on the upper circuit channel 33 and the interface six 321, the interface seven 322 and the interface eight 323 on the lower circuit channel 32 respectively, so that the atomization disinfection of the hand is realized. After the hand disinfection is finished, the hand leaves the device, when the infrared human body sensor 341 monitors that the human hand leaves, a signal is sent to the control panel 31 through the middle circuit channel 34, the control panel 31 sends out a signal after judgment, the atomization generator four 64, the atomization generator five 65, the atomization generator six 66, the atomization generator one 61, the atomization generator two 62 and the atomization generator three 63 are respectively controlled to be synchronously closed by the interface two 333, the interface three 332, the interface four 331 on the upper circuit channel 33 and the interface six 321, the interface seven 322 and the interface eight 323 on the lower circuit channel 32, and meanwhile, the automatic filling pipe 42 on the shell 4 is controlled to be opened for a period of time by the interface 334 on the upper circuit channel 33, so that the reagent is filled in a supplementing manner. Meanwhile, the signal is used for controlling the fan to be started for a period of time by the control panel 31 through the control circuit 72, so that the air inside and outside the device is circulated, and the atomized liquid after the disinfection is finished is discharged outside the device. When the reagent in the reagent cartridge 5 is used up, the reagent can be filled through a filling port 51 provided in the reagent cartridge 5.
The present invention has been described in detail with reference to the above general description, but it will be apparent to one of ordinary skill in the art that modifications and improvements can be made to the invention. Therefore, modifications or improvements without departing from the spirit of the invention are within the scope of the invention.

Claims (1)

1. The utility model provides an atomizing reagent hand degassing unit of induction type, includes atomizer operation main part (111), circuit controller (3), kit (5), fan (7) and shell (4), its characterized in that: the atomizer working body (111) comprises a first atomizer generator (61), a second atomizer generator (62), a third atomizer generator (63), a fourth atomizer generator (64), a fifth atomizer generator (65), a sixth atomizer generator (66), an inner frame (2) and an outer frame (1);
the structures of the first atomization generator (61), the second atomization generator (62), the third atomization generator (63), the fourth atomization generator (64), the fifth atomization generator (65) and the sixth atomization generator (66) respectively comprise an atomization sheet (614), an atomizer shell (613), a sealing rubber ring (612) and an extension column (611);
the circuit controller (3) comprises a control board (31), an upper circuit channel (33), a middle circuit channel (34), a lower circuit channel (32) and a power supply channel (35);
the kit (5) comprises a main container (53), a filling port (51) and a discharge port (52);
the fan (7) comprises a fan body (73), a power supply circuit (71) and a control circuit (72);
the shell (4) comprises a shell main body (411), an automatic filling pipe (42) and a manual filling pipe (43), wherein a first screw hole (451), a second screw hole (452), a third screw hole (453) and a fourth screw hole (454) are formed in the back of the shell main body (411), and a power supply hole (44) and a vent hole (41) are formed in the right part of the shell main body (411);
the tail end of the extension column (611) is provided with an atomizer interface (615) connected with the circuit controller (3), and a cotton sucking rod is filled in the extension column (611);
the upper circuit channel (33) is provided with a first interface (334), a second interface (333), a third interface (332) and a fourth interface (331) which are respectively connected with a fourth atomization generator (64), a fifth atomization generator (65) and a sixth atomization generator (66), the lower circuit channel (32) is provided with a sixth interface (321), a seventh interface (322) and an eighth interface (323) which are respectively connected with a first atomization generator (61), a second atomization generator (62) and a third atomization generator (63), the tail end of the middle circuit channel (34) is provided with a fifth interface (342) and an infrared human body sensor (341), and the infrared human body sensor (341) is connected with the fifth interface (342);
the outer frame (1) comprises an outer frame main body (18), an outer frame interface I (11), an outer frame interface II (12), an outer frame interface III (13), an outer frame interface IV (14), an outer frame interface V (15), an outer frame interface VI (16) and an outer frame interface VII (17);
the inner frame (2) comprises an inner frame main body (255), an inner frame interface I (21), an inner frame interface II (22), an inner frame interface III (23), an inner frame interface IV (24), an inner frame interface V (25), an inner frame interface VI (26), an inner frame interface seven (27), an inner frame interface eight (28) and an inner frame interface nine (29);
the outer frame interface I (11), the outer frame interface II (12), the outer frame interface III (13), the outer frame interface IV (14), the outer frame interface VI (16) and the outer frame interface VII (17) are respectively connected with the atomization generator I (61), the atomization generator IV (64), the atomization generator V (65), the atomization generator VI (66), the atomization generator III (63) and the atomization generator II (62), and the outer frame interface V (15) is connected with the middle circuit channel (34);
the inner frame connector II (22), the inner frame connector III (23), the inner frame connector IV (24), the inner frame connector VI (26), the inner frame connector seventh (27) and the inner frame connector eighth (28) are respectively connected with the atomization generator IV (64), the atomization generator V (65), the atomization generator VI (66), the atomization generator III (63), the atomization generator II (62) and the atomization generator I (61), the inner frame connector V (25) is connected with the middle circuit channel (34), the inner frame connector I (21) and the inner frame connector nine (29) are respectively connected with the automatic filling pipe (42) and the manual filling pipe (43), and the inner frame main body (255) is filled with drawing cotton (211);
the power supply circuit (71) and the control circuit (72) are connected with the circuit controller (3);
the discharge hole (52) is connected with the first inner frame interface (21);
the automatic filling pipe (42) is connected with the discharge hole (52) and the first connector (334), and the manual filling pipe (43) is connected with the ninth inner frame connector (29).
CN202022853872.6U 2020-12-02 2020-12-02 Atomizing reagent hand degassing unit of induction type Expired - Fee Related CN214260275U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022853872.6U CN214260275U (en) 2020-12-02 2020-12-02 Atomizing reagent hand degassing unit of induction type

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022853872.6U CN214260275U (en) 2020-12-02 2020-12-02 Atomizing reagent hand degassing unit of induction type

Publications (1)

Publication Number Publication Date
CN214260275U true CN214260275U (en) 2021-09-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022853872.6U Expired - Fee Related CN214260275U (en) 2020-12-02 2020-12-02 Atomizing reagent hand degassing unit of induction type

Country Status (1)

Country Link
CN (1) CN214260275U (en)

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Granted publication date: 20210924