CN217202077U - Portable miniature plateau oxygenerator - Google Patents
Portable miniature plateau oxygenerator Download PDFInfo
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- CN217202077U CN217202077U CN202123067177.8U CN202123067177U CN217202077U CN 217202077 U CN217202077 U CN 217202077U CN 202123067177 U CN202123067177 U CN 202123067177U CN 217202077 U CN217202077 U CN 217202077U
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/20—Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters
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Abstract
The utility model relates to the technical field of oxygenerator equipment, in particular to a portable miniature plateau oxygenerator; the device comprises a device shell, a portable handle, an energy storage power supply, a control panel, an air compressor component, a molecular sieve component, a humidifying component, a sterilizing component, an air inlet filtering component, an oxygen outlet and a control main board; the energy storage power supply, the control panel, the air compressor assembly, the humidifying assembly and the killing assembly are all electrically connected with the control mainboard; the air inlet filtering component is communicated with the internal air path passing through the air compressor component, the molecular sieve component, the humidifying component and the oxygen outlet end to end in sequence to perform oxygen production operation; by adopting the utility model, the whole structure is simple, the internal space of the device is reasonably utilized, the disinfection function, the humidification function and the air filtration function are integrated, and the portable oxygen generation experience is realized by the self-contained energy storage power supply; and whole modularization equipment, inner structure mutual noninterference, the portable oxygen uptake of the whole promotion plateau of being convenient for later stage upgrading overhauls the replacement.
Description
Technical Field
The utility model relates to an oxygenerator equipment technical field especially relates to a portable miniature plateau oxygenerator.
Background
Oxygen deficiency is the main reason for the reduction of the working capacity of human body and human brain caused by altitude reaction, and the higher the altitude is, the more the damage to the physiological function of human body is. The altitude stress is a natural physiological reaction generated when a person reaches a certain altitude and the body of the person is adapted to changes such as barometric pressure difference, low oxygen content, dry air and the like caused by the high altitude.
The plateau office environment has thin oxygen, large oxygen consumption, and is in an anoxic environment for a long time, which often disperses the attention of people, reduces the working efficiency, and can cause the people to have symptoms of headache, tiredness, fatigue and the like in severe cases;
at present, various mature oxygen supply technologies are available, including a pressurized oxygen chamber, indoor membrane separation and dispersion oxygen supply, an oxygen cylinder and the like; however, the portable wheelchair is inconvenient for people who need to do sports work on plateaus, and is not portable enough and has weak cruising ability.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a safe and reliable, the duration is strong, the function is abundant to portable convenient oxygenerator.
A portable miniature plateau oxygenerator comprises a device shell, a portable handle, an energy storage power supply, a control panel, an air compressor component, a molecular sieve component, a humidifying component, a sterilizing component, an air inlet filtering component, an oxygen outlet and a control main board;
the device shell is formed by assembling and enclosing a side cover body and a ring cover body, and an inner shell is arranged in a cavity inside the device shell; the portable handle is fixedly arranged at the top end of the outer side of the ring cover body, and the control panel and the killing assembly are embedded on the surface of the top end of the ring cover body; the air inlet filtering component is embedded at the bottom of the tail end of the ring cover body, and the oxygen outlet is formed at the bottom of the front end of the ring cover body; the molecular sieve component and the humidifying component are arranged in an inner cavity of the device shell, the molecular sieve component is positioned above the inner shell, and the humidifying component is positioned above the oxygen outlet; the energy storage power supply and the air compressor assembly are positioned in the inner shell; the control mainboard is embedded on the outer side wall of the inner shell;
the energy storage power supply, the control panel, the air compressor assembly, the humidifying assembly and the killing assembly are all electrically connected with the control mainboard; the air inlet filtering component and the internal air path passing through the air compressor component, the molecular sieve component, the humidifying component and the oxygen outlet are sequentially communicated end to perform oxygen production operation.
Furthermore, the ring cover body is also provided with a turnover cover which is arranged on the surface of the humidifying component through a connecting plate on the side cover body in a turnover cover manner;
further, the humidifying component comprises a humidifying tank, a tank body support and an air inlet pipe; the tank body support is arranged on the side cover body, and the humidification tank is assembled on the tank body support; the air inlet pipe is connected with the molecular sieve assembly at the front end, and the rear end of the air inlet pipe extends into the humidification tank and is communicated with the oxygen outlet;
further, the sterilizing assembly comprises a sterilizing bin and a sterilizing lamp tube; the sterilizing bin is embedded on the ring cover body in a sliding manner, and the sterilizing lamp tube is embedded at the top end of the inner side of the ring cover body and is connected with the control main board;
further, the air inlet filter assembly comprises an air inlet net port and a replacement filter element;
furthermore, the power supply is fixed inside the inner shell through a power supply bracket, and the air compressor assembly is fixed below the power supply;
furthermore, the air compressor component comprises an oxygen generation compressor, an installation base, a silencing pad and a buffer spring; the oxygen generation compressor is fixed on the mounting base, the lower part of the mounting base is connected with the buffering spring through the silencing pad, and two ends of the buffering spring are respectively connected with the silencing pad and the inner bottom surface of the side cover body;
the utility model has the advantages that:
the utility model has simple integral structure, reasonably utilizes the internal space of the device, integrates the disinfection function, the humidification function and the air filtration function, is provided with an energy storage power supply, and realizes portable oxygen production experience; and whole modularization equipment, inner structure mutual noninterference are convenient for later stage upgrading maintenance replacement, and the portable oxygen uptake of whole promotion plateau is experienced.
Drawings
Fig. 1 is an overall schematic view of the present invention;
fig. 2 is a rear oblique side schematic view of the present invention;
fig. 3 is a schematic diagram of the internal structure of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, a portable micro plateau oxygen generator comprises a device shell 1, a portable handle 4, an energy storage power supply 2, a control panel 3, an air compressor assembly 8, a molecular sieve assembly 7, a humidification assembly 9, a sterilization assembly 5, an air inlet filtering assembly 6, an oxygen outlet 10 and a control mainboard;
the device shell 1 is formed by assembling and enclosing a side cover body 11 and a ring cover body 12, and an inner shell 14 is further arranged in the inner cavity of the device shell 1; the portable handle 4 is fixedly arranged at the top end of the outer side of the ring cover body 12, and the control panel 3 and the sterilizing component 5 are embedded on the surface of the top end of the ring cover body 12; the air inlet filtering component 6 is embedded at the bottom of the tail end of the ring cover body 12, and the oxygen outlet 10 is arranged at the bottom of the front end of the ring cover body 12; the molecular sieve component 7 and the humidifying component 9 are arranged in the inner cavity of the device shell 1, the molecular sieve component 7 is positioned above the inner shell 14, and the humidifying component 9 is positioned above the oxygen outlet 10; the energy storage power supply 2 and the air compressor assembly 8 are positioned inside the inner shell 14; the control mainboard is embedded on the outer side wall of the inner shell 14;
the energy storage power supply 2, the control panel 3, the air compressor assembly 8, the humidifying assembly 9 and the sterilizing assembly 5 are all electrically connected with the control mainboard; the inside gas circuit that filter component 6, process air compressor machine subassembly 8, molecular sieve subassembly 7, humidifying subassembly 9 and play oxygen mouth 10 admits air feeds through end to end in proper order, makes oxygen operation.
Furthermore, the ring cover body 12 is further provided with a flip cover 13, and the flip cover 13 is arranged on the surface of the humidifying component 9 through a connecting plate 111 on the side cover body 11; the humidifying component 9 comprises a humidifying tank 91, a tank body support 92 and an air inlet pipe 93; the tank body support 92 is arranged on the side cover body 11, and the humidification tank 91 is assembled on the tank body support 92; the air inlet pipe 93 is connected with the molecular sieve component 7 at the front end, and the rear end extends into the humidification tank 91 and is communicated with the oxygen outlet 10;
in the embodiment, the cover 13 can realize the rapid humidification liquid replenishment of the humidification tank 91, and is convenient for observing the condition in the humidification tank 91; the humidifying component 9 can effectively help the gas generated by oxygen generation to be humidified, so that the drying degree is reduced, the use experience is improved, and the oxygen environment of plateau anoxic drying is improved.
Further, the sterilizing assembly 5 comprises a sterilizing bin 51 and a sterilizing lamp tube 52; the disinfection bin 51 is embedded on the ring cover body 12 in a sliding manner, and the disinfection lamp tube 52 is embedded at the top end of the inner side of the ring cover body 12 and is connected with the control mainboard;
in this embodiment, the portable disinfection and sterilization box is integrated, the disinfection chamber 51 is a pull-out box body, when ultraviolet disinfection and sterilization of small portable objects are required, the objects can be put into the disinfection chamber 51, and the disinfection and sterilization lamp tube 52 performs ultraviolet fast disinfection and sterilization, so that the portable characteristic is further improved.
Further, the intake filter assembly 6 includes an intake net port 61 and a replacement filter element 62;
in this embodiment, the stand-alone inlet filter assembly 6 is more adaptable to dry dusty plateau environments, and the rapid pre-purification requirements can be realized by replacing the filter element 62 in different forms, and the long-term continuous use can be ensured due to the rapid replacement property.
Further, the power supply 2 is fixed inside the inner shell 14 by using a power supply bracket 21, and the air compressor assembly 8 is fixed below the power supply 2;
further, the air compressor assembly 8 includes an oxygen generation compressor 81, a mounting base 82, a silencing pad 83 and a buffer spring 84; the oxygen generation compressor 81 is fixed on an installation base 82, the lower part of the installation base 82 is connected with a buffer spring 84 through a silencing pad 83, and two ends of the buffer spring 84 are respectively connected with the silencing pad 83 and the inner bottom surface of the side cover body 11;
in this embodiment, the oxygen generation compressor 81 generally generates vibration and noise due to working reasons, and is disposed in the inner casing 14 and matched with corresponding mounting components, so as to reduce negative effects while ensuring working efficiency, and is more suitable for portable use environments;
the utility model has simple integral structure, reasonably utilizes the internal space of the device, integrates the disinfection function, the humidification function and the air filtration function, is provided with an energy storage power supply, and realizes portable oxygen production experience; and whole modularization equipment, inner structure mutual noninterference, the portable oxygen uptake of the whole promotion plateau of being convenient for later stage upgrading overhauls the replacement.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein will be apparent to those skilled in the art without departing from the scope and spirit of the invention as defined in the accompanying claims.
Claims (7)
1. A portable miniature plateau oxygenerator is characterized by comprising a device shell (1), a portable handle (4), an energy storage power supply (2), a control panel (3), an air compressor component (8), a molecular sieve component (7), a humidifying component (9), a killing component (5), an air inlet filtering component (6), an oxygen outlet (10) and a control main board;
the device shell (1) is formed by assembling and enclosing a side cover body (11) and a ring cover body (12), and an inner shell (14) is further arranged in a cavity inside the device shell (1); the portable handle (4) is fixedly arranged at the top end of the outer side of the ring cover body (12), and the control panel (3) and the killing assembly (5) are embedded on the surface of the top end of the ring cover body (12); the air inlet filtering component (6) is embedded at the bottom of the tail end of the ring cover body (12), and the oxygen outlet (10) is formed at the bottom of the front end of the ring cover body (12); the molecular sieve component (7) and the humidifying component (9) are arranged in the inner cavity of the device shell (1), the molecular sieve component (7) is positioned above the inner shell (14), and the humidifying component (9) is positioned above the oxygen outlet (10); the energy storage power supply (2) and the air compressor assembly (8) are positioned inside the inner shell (14); the control main board is embedded on the outer side wall of the inner shell (14);
the energy storage power supply (2), the control panel (3), the air compressor assembly (8), the humidifying assembly (9) and the sterilizing assembly (5) are all electrically connected with the control mainboard; the air inlet filtering component (6) and the internal air channels passing through the air compressor component (8), the molecular sieve component (7), the humidifying component (9) and the oxygen outlet (10) are sequentially communicated end to perform oxygen production.
2. The portable micro plateau oxygen generator as claimed in claim 1, wherein the ring cover body (12) is further provided with a flip cover (13), and the flip cover (13) is turned over and covered on the surface of the humidifying component (9) through a connecting plate (111) on the side cover body (11).
3. The portable micro plateau oxygen generator as claimed in claim 1, wherein the humidification module (9) includes a humidification tank (91), a tank support (92) and an air inlet pipe (93); the tank body support (92) is arranged on the side cover body (11), and the humidification tank (91) is assembled on the tank body support (92); the air inlet pipe (93) is connected with the molecular sieve component (7) at the front end, and the rear end extends into the humidifying tank (91) and is communicated with the oxygen outlet (10).
4. The portable micro plateau oxygen generator as claimed in claim 1, wherein the sterilizing assembly (5) includes a sterilizing chamber (51) and a sterilizing lamp (52); the disinfection bin (51) is embedded on the ring cover body (12) in a sliding manner, and the disinfection lamp tube (52) is embedded at the top end of the inner side of the ring cover body (12) and is connected with the control main board.
5. The portable micro plateau oxygen generator as claimed in claim 1, wherein the inlet air filter assembly (6) includes an inlet air port (61) and a replacement filter element (62).
6. The portable highland oxygenerator as claimed in claim 1, wherein the power source (2) is fixed inside the inner casing (14) by a power bracket (21), and the air compressor assembly (8) is fixed under the power source (2).
7. The portable micro plateau oxygen generator as claimed in claim 1, wherein the air compressor assembly (8) includes an oxygen generating compressor (81), a mounting base (82), a silencing pad (83) and a buffer spring (84); the oxygen generation compressor (81) is fixed on the installation base (82), the lower part of the installation base (82) is connected with the buffering spring (84) through the silencing pad (83), and the two ends of the buffering spring (84) are respectively connected with the silencing pad (83) and the inner bottom surface of the side cover body (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123067177.8U CN217202077U (en) | 2021-12-08 | 2021-12-08 | Portable miniature plateau oxygenerator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123067177.8U CN217202077U (en) | 2021-12-08 | 2021-12-08 | Portable miniature plateau oxygenerator |
Publications (1)
Publication Number | Publication Date |
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CN217202077U true CN217202077U (en) | 2022-08-16 |
Family
ID=82783658
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202123067177.8U Active CN217202077U (en) | 2021-12-08 | 2021-12-08 | Portable miniature plateau oxygenerator |
Country Status (1)
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CN (1) | CN217202077U (en) |
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2021
- 2021-12-08 CN CN202123067177.8U patent/CN217202077U/en active Active
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