CN212687560U - Portable oxygenerator of shared formula - Google Patents

Portable oxygenerator of shared formula Download PDF

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Publication number
CN212687560U
CN212687560U CN202020859068.6U CN202020859068U CN212687560U CN 212687560 U CN212687560 U CN 212687560U CN 202020859068 U CN202020859068 U CN 202020859068U CN 212687560 U CN212687560 U CN 212687560U
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assembly
oxygen
shell
locking
oxygenerator
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CN202020859068.6U
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王群龙
荆语婷
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Jiangsu Suhu Intelligent Technology Co Ltd
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Jiangsu Suhu Intelligent Technology Co Ltd
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Abstract

The utility model discloses a shared portable oxygenerator, which comprises an oxygenerator body, a locking component, a control component and a display component, wherein the locking component, the control component and the display component are arranged on the oxygenerator body; the control assembly is electrically connected with the locking assembly and the display assembly; the control assembly comprises a communication module, a positioning module and a controller; the oxygen generator body comprises a shell and an oxygen generating assembly arranged in the shell, the locking assembly is arranged on the shell, and the oxygen generator body is in locking connection with the shared parent body through the locking assembly; still including sweeping a yard terminal, be provided with on the oxygenerator body and supply sweep the sharing identification code that yard terminal discerned. The sharing function of the oxygen generator is realized through the control assembly and the locking assembly, the oxygen generator can be conveniently acquired outdoors and on a plateau, the whole process is not needed to be carried, and the backpack of a user is liberated.

Description

Portable oxygenerator of shared formula
Technical Field
The utility model relates to an oxygenerator technical field especially relates to a portable oxygenerator of shared.
Background
Oxygen is one of necessary substances for human beings, and is particularly important in high altitude anoxic areas, the area of the high altitude anoxic area in China exceeds 300 ten thousand square kilometers and occupies about 1/4 of the native area in China, and the oxygen deficiency is a cause of delayed development of tourism industry in the high altitude area in China, for example, Tibet is suitable for tourism in 8 months every year, the peak season of tourism is concentrated in summer, and the oxygen is thin in winter, so that tourists cannot travel. The traditional oxygen supply means can cause serious environmental pollution, plastic bottles and aluminum can bottles are discarded at will after being used, so that the plateau environment in China is seriously polluted, a plurality of treasure animals die due to eating by mistake, the Jufeng Dabenying declaration in 2 months in 2019 is closed indefinitely, and the most main reason is the environmental pollution. The liquid oxygen steel cylinder has certain potential safety hazard due to large mass and large pressure.
The principle of the oxygen generator is to utilize air separation technology, firstly to compress air with high density and then to separate the air by utilizing the difference of each component in the air. The oxygen generator has the concept and technology from abroad, and the oxygen generation principle is that air is absorbed from the surrounding environment and the air is separated into two gases of oxygen and nitrogen through a molecular sieve. At that time, the oxygen generator is very large in size, very heavy, high in noise, high in power consumption and fast in temperature rise. With the progress of science and technology, the oxygen generator is also changed. The popularity of oil-free compressors, the popularity of adsorption tower structures, and the use of integrated circuits have made manufacturers competent to produce smaller, lighter, longer-lived, more efficient oxygen plants. Small volume, light weight, low noise and long continuous working time become important standards for examining the advancement of the household oxygenerator abroad.
Compared with the advanced concept abroad, the development in China is slightly slow, the principle, the science and technology and the knowledge of oxygen therapy of the oxygen generator are not comprehensively popularized, and common consumers can know little about the knowledge, so that some old-fashioned oxygen generators with high noise and heavy volume are still sold in the market. In addition, most companies in the oxygen generation industry position the development direction to oxygen for medical treatment, so the development space of the oxygen market for highland tourism is huge. Except for being applied to highland tourism, company products are applied to the industries of military and civil integration, plateau capital construction, plateau mining, municipal engineering, old-age care, health and the like. However, the traditional oxygen supply means can cause serious environmental pollution, plastic bottles and aluminum can bottles are discarded at will after use, so that the ecological environment problem that the plateau environment of China is seriously polluted is caused, and if the traditional oxygen supply means is not properly treated, the survival of the whole human is threatened.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects and shortcomings of the prior art, the shared portable oxygenerator comprises an oxygenerator body, a locking assembly, a control assembly and a display assembly, wherein the locking assembly, the control assembly and the display assembly are arranged on the oxygenerator body; the control assembly is electrically connected with the locking assembly and the display assembly; the control assembly comprises a communication module, a positioning module and a controller; the oxygen generator body comprises a shell and an oxygen generating assembly arranged in the shell, the locking assembly is arranged on the shell, and the oxygen generator body is in locking connection with the shared parent body through the locking assembly; the shell is provided with an air inlet and an air outlet; the oxygen generation assembly is connected with the control assembly; the oxygen generation assembly comprises a membrane separation assembly and an air compression assembly; the membrane separation component comprises a plurality of layers of hydrogen bond-rich polymer membranes, and the hydrogen bond-rich polymer membranes are superposed; the air compression assembly comprises an air compression pump and a support frame, the air compression pump is arranged on the support frame, the support frame is rigidly connected with the shell, a damping elastic piece is arranged between the air compression pump and the support frame, and the air compression pump is connected with the hydrogen-rich polymer membrane; the hydrogen bond-rich polymer film is arranged on the shell in a tangential way, and a secondary air outlet is arranged on the shell at a position corresponding to the blowing direction of the blower; the blower is connected with the control assembly; still including sweeping a yard terminal, be provided with on the oxygenerator body and supply sweep the sharing identification code that yard terminal discerned.
Preferably, an oxygen concentration sensor is further arranged in the oxygen generation assembly and used for showing the current oxygen concentration, the oxygen concentration sensor is connected with the control assembly, and when the oxygen concentration is abnormal, the control assembly sends out a warning to prompt a user.
Preferably, the oxygen exit linkage is provided with the nasal suction pipe, the nasal suction pipe connection is provided with breathes the detection subassembly, the pressure in the detectable nasal suction pipe to acquire respiratory state, and the control assembly makes oxygen process through respiratory state control.
Preferably, the battery module is a solar rechargeable battery, and accords with outdoor use environment; the battery module is electrically connected with the oxygen generator body, the locking assembly, the control assembly and the display assembly.
Preferably, the control component is further connected with a sound module, and the sound module comprises an alarm sound module and a prompt sound module; the alarm module is connected with the oxygen concentration sensor, the respiration detection assembly and the battery module through the controller.
The utility model discloses owing to adopt above technical scheme, make it compare with prior art, realized the sharing function of oxygenerator through control assembly and locking subassembly, outdoor, in the plateau, all can very convenient acquire the oxygenerator, need not whole the process carry, only need sweep the sign indicating number with the cell-phone when needing and can acquire, liberated user's knapsack.
Drawings
Fig. 1 is a control block diagram of the present invention;
fig. 2 is a schematic structural view of the shared portable oxygen generator provided by the present invention.
Wherein: the device comprises a gas inlet 1, a dust removal filter screen 2, a blower 3, a control circuit 4, an air compression pump 5, a hydrogen-rich bond polymer membrane 6, an oxygen storage chamber 7, an oxygen concentration sensor 8, a gas outlet 9, a battery module 10 and a breath detection assembly 11.
Detailed Description
The invention will be described in more detail hereinafter with reference to the accompanying drawings showing embodiments of the invention. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. In the drawings, the size and relative sizes of layers and regions may be exaggerated for clarity.
As shown in attached figures 1-2, the utility model provides a shared portable oxygenerator, which comprises an oxygenerator body, a locking component, a control component 4 and a display component, wherein the locking component, the control component and the display component are arranged on the oxygenerator body; the control component 4 is electrically connected with the locking component and the display component; the control component 4 comprises a communication module, a positioning module and a controller; the oxygen generator body comprises a shell and an oxygen generating assembly arranged in the shell, the locking assembly is arranged on the shell, the oxygen generator body is in locking connection with the shared parent body through the locking assembly, and the shared parent body is a leasing frame; the shell is provided with an air inlet 1 and an air outlet 9; the oxygen generating component is connected with the control component 4; the oxygen generation component comprises a membrane separation component and an air compression component; the membrane separation component comprises a plurality of layers of hydrogen-rich bond polymer membranes 6, the plurality of layers of hydrogen-rich bond polymer membranes 6 are overlapped, and the hydrogen-rich bond polymer membranes 6 can improve the permeation selectivity of oxygen by 250% compared with the prior art; the air compression assembly comprises an air compression pump 5 and a support frame, the air compression pump 5 is arranged on the support frame, the support frame is rigidly connected with the shell, a damping elastic part is arranged between the air compression pump 5 and the support frame, the air compression pump 5 is connected with the hydrogen-rich bond polymer membrane 6, and heat generated by the air compressor can be directly transferred to the hydrogen-rich bond polymer membrane 6, so that the oxygen permeation selectivity and the oxygen permeation rate are enhanced, a cooling device in the prior art can be omitted, and the good effects of saving cost and enhancing efficiency are achieved; the hydrogen bond-rich polymer film generator further comprises a blower 3, wherein the blower 3 is arranged in a tangent way with the hydrogen bond-rich polymer film 6, and a secondary air outlet 9 is arranged on the shell at a position corresponding to the blowing direction of the blower 3; the blower 3 is connected with the control component 4; still including sweeping a yard terminal, sweep a yard terminal for the user's cell-phone of this embodiment, hand-carry, be provided with the sharing identification code that can supply to sweep yard terminal discernment on the oxygenerator body. The utility model discloses a control assembly 4 and locking Assembly have realized the sharing function of oxygenerator, outdoor, on the plateau, all can very convenient acquisition oxygenerator, need not whole the journey carry, only need sweep the sign indicating number with the cell-phone when needing and can acquire, liberated user's knapsack.
When the mobile phone unlocking device is used, a user aligns the mobile phone to the shared identification code, the identification is successful, the unlocking is completed, information of the successful unlocking is displayed on the display assembly, and the user can obtain the oxygenerator. Furthermore, a payment unlocking system can be arranged, and the payment unlocking system can be arranged between the code scanning step and the code unlocking step or arranged before the code scanning step and can be flexibly adjusted according to the actual situation.
In this embodiment, an oxygen storage chamber 7 is further disposed in the oxygen generator body, the oxygen storage chamber 7 is connected to the membrane separation module and the air outlet 9, respectively, and oxygen coming out of the membrane separation module enters the oxygen storage chamber 7 to be temporarily stored and can be released through the air outlet 9. An oxygen concentration sensor 8 and an oxygen outlet valve are further arranged between the oxygen storage chamber 7 and the air outlet 9, the oxygen concentration sensor 8 and the oxygen outlet valve are both connected with the control component 4, the oxygen concentration sensor 8 is used for showing the current oxygen concentration, and the oxygen outlet valve is used for controlling the release and temporary storage of oxygen in the oxygen storage chamber 7.
In this embodiment, the oxygen exit linkage is provided with the snuffing pipe, and the snuffing pipe connection is provided with breathes detecting element 11, the pressure in the detectable snuffing pipe to acquire respiratory state, and control assembly 4 makes oxygen process through respiratory state control.
In this embodiment, the battery module 10 is a solar rechargeable battery, and conforms to the outdoor use environment; the battery module 10 is electrically connected with the oxygen generator body, the locking assembly, the control assembly 4 and the display assembly.
In this embodiment, the control component 4 is further connected with a sound module, and the sound module includes an alarm sound module and a prompt sound module; the alarm module is connected with the oxygen concentration sensor 8, the respiration detection component 11 and the battery module 10 through the controller, and when the oxygen concentration is abnormal, the respiration pressure is abnormal and the battery electric quantity is too small, the alarm module can be triggered through the control component 4 to warn a user.
In this embodiment, still including dust removal filter screen 2, dust removal filter sets up with air inlet 1 is corresponding, sets up with air inlet 1 is used for collecting the dust, purifies the gas, prevents that it from influencing follow-up separation process.
As those skilled in the art will appreciate, the invention may be embodied in many other specific forms without departing from the spirit or scope thereof. Although embodiments of the present invention have been described, it is to be understood that the present invention should not be limited to those precise embodiments, and that various changes and modifications can be effected therein by one skilled in the art without departing from the scope or spirit of the invention as defined by the appended claims.

Claims (5)

1. A shared portable oxygenerator is characterized by comprising an oxygenerator body, a locking assembly, a control assembly and a display assembly, wherein the locking assembly, the control assembly and the display assembly are arranged on the oxygenerator body; the control assembly is electrically connected with the locking assembly and the display assembly; the control assembly comprises a communication module, a positioning module and a controller;
the oxygen generator body comprises a shell and an oxygen generating assembly arranged in the shell, the locking assembly is arranged on the shell, and the oxygen generator body is in locking connection with the shared parent body through the locking assembly; the shell is provided with an air inlet and an air outlet;
the oxygen generation assembly is connected with the control assembly; the oxygen generation assembly comprises a membrane separation assembly and an air compression assembly; the membrane separation component comprises a plurality of layers of hydrogen bond-rich polymer membranes, and the hydrogen bond-rich polymer membranes are superposed; the air compression assembly comprises an air compression pump and a support frame, the air compression pump is arranged on the support frame, the support frame is rigidly connected with the shell, a damping elastic piece is arranged between the air compression pump and the support frame, and the air compression pump is connected with the hydrogen-rich polymer membrane; the hydrogen bond-rich polymer film is arranged on the shell in a tangential way, and a secondary air outlet is arranged on the shell at a position corresponding to the blowing direction of the blower; the blower is connected with the control assembly;
still including sweeping a yard terminal, be provided with on the oxygenerator body and supply sweep the sharing identification code that yard terminal discerned.
2. The shared portable oxygen generator as claimed in claim 1, wherein an oxygen concentration sensor is further disposed in the oxygen generation assembly, and the oxygen concentration sensor is connected to the control assembly.
3. The shared portable oxygen generator as claimed in claim 1, wherein the air outlet is provided with a nasal suction tube connected with a breath detection assembly.
4. The shared portable oxygen generator as claimed in claim 1, further comprising a battery module, wherein the battery module is a solar rechargeable battery; the battery module is electrically connected with the oxygen generator body, the locking assembly, the control assembly and the display assembly.
5. The shared portable oxygen generator as claimed in claim 2, wherein the control component is further provided with a sound module, and the sound module comprises an alarm sound module and a prompt sound module;
the alarm sound module is connected with the oxygen concentration sensor, the respiration detection assembly and the battery module through the controller.
CN202020859068.6U 2020-05-21 2020-05-21 Portable oxygenerator of shared formula Active CN212687560U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020859068.6U CN212687560U (en) 2020-05-21 2020-05-21 Portable oxygenerator of shared formula

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020859068.6U CN212687560U (en) 2020-05-21 2020-05-21 Portable oxygenerator of shared formula

Publications (1)

Publication Number Publication Date
CN212687560U true CN212687560U (en) 2021-03-12

Family

ID=74887610

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020859068.6U Active CN212687560U (en) 2020-05-21 2020-05-21 Portable oxygenerator of shared formula

Country Status (1)

Country Link
CN (1) CN212687560U (en)

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