Micro-high-pressure movable cabin with oxygen supply system

Through the movable cabin main body made of metal materials, with multifunctional areas and living facilities, the existing cabin has solved the problems of single functions and poor air purification effect, and achieved a multifunctional and highly adaptable cabin design.

CN223075227UActive Publication Date: 2025-07-08OXYGEN HEALTH TECHNOLOGY (JIANGSU) CO LTD
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Patent Information

Application Number
CN202421699083.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-07-08
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The existing cabins with oxygen supply systems have fewer functional structures, which cannot adapt to multiple usage scenarios, have poor air purification effects, and insufficient entertainment facilities.

Method used

The main body of the cabin is made of metal high-strength materials. The wall and ground surface are divided into the cabin, which can be moved as a whole. Multifunctional areas are set up at the bottom, with domestic sewage storage areas, electric water heater areas, air pressure system areas, electronic circuit areas, high-pressure oxygen suppression areas and air conditioning main areas. They are equipped with shower rooms, bathrooms, beds, computer desks and other facilities. There are fire-proof and thermal insulation materials layers inside and outside the cabin walls, and fixed lighting windows that are transparent and not breathable.

Benefits of technology

It realizes the versatility and adaptability of the cabin, improves the use effect, provides better living conditions and air purification capabilities, and has a variety of entertainment facilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a micro-high-pressure movable cabin with an oxygen supply system, which comprises a cabin main body, a functional area separation bottom plate for function setting is positioned and mounted at the bottom of the cabin main body, a first cover body is positioned at one end of the cabin main body, a second cover body is positioned at the other end of the cabin main body, and the oxygen supply system is arranged in the cabin main body. An entrance door is arranged on the first cover body, an anti-explosion glass window is arranged in the middle of the second cover body, and an adjustable distance support is positioned on the outer side of the functional area separation bottom plate. According to the micro-high-pressure movable cabin with the oxygen supply system, a cabin main body is made of a metal high-strength material, the cabin main body comprises a bearing structure part, a cabin inner division part wall body and a ground surface, the cabin main body can move integrally, the whole cabin is separated from the ground, and the cabin main body is fixed on the ground surface by virtue of a plurality of fixing feet or brackets at the bottom of the cabin; and the bottom is provided with a multifunctional area to adapt to more use scenes.
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Description

Technical Field

[0001] The utility model relates to the field of cabins, and particularly relates to a micro-high-pressure movable cabin with an oxygen supply system. Background Technique

[0002] A cabin with an oxygen supply system is a support device for personnel living in special scenarios, and is used for the assistance, health care, rehabilitation life assistance and guarantee of personnel in areas such as plateaus, high altitudes, high cold, and high humidity, or for the health needs of special populations. With the continuous development of technology, people's requirements for the manufacturing process of cabins with oxygen supply systems are also getting higher and higher.

[0003] The existing cabins with oxygen supply systems have certain drawbacks when in use. First of all, the existing cabins have fewer functional structures when in use, and the living conditions cannot be well adapted to more scenarios, which is not conducive to people's use. Moreover, when in use, the air purification effect is poor, and the corresponding functional facilities and entertainment facilities are fewer, which brings certain adverse effects to the actual use process. For this reason, we propose a micro-high-pressure movable cabin with an oxygen supply system. Content of the Utility Model

[0004] Technical problems to be solved: Aiming at the deficiencies of the prior art, the utility model provides a micro-high-pressure movable cabin with an oxygen supply system. The main body of the cabin is made of high-strength metal materials, including a load-bearing structure part, partition walls and the ground surface inside the cabin. It can be moved as a whole. The whole cabin is separated from the ground and fixed on the ground surface by multiple fixed feet or brackets at the bottom of the cabin. A multi-functional area is arranged at the bottom to adapt to more usage scenarios, and the problems in the background technique can be effectively solved.

[0005] Technical solution: To achieve the above purpose, the technical solution adopted by the utility model is: A micro-high-pressure movable cabin with an oxygen supply system, including the main body of the cabin. A functional area partition bottom plate for function setting is fixedly installed at the bottom of the main body of the cabin. A first cover body is positioned at one end of the main body of the cabin, and a second cover body is positioned at the other end of the main body of the cabin. An entrance door is arranged on the first cover body, and an explosion-proof glass window is arranged in the middle of the second cover body. Inside the functional area partition bottom plate, there are successively arranged a domestic sewage temporary storage and collection area, an electric water heater storage area, an air pressure system setting area, an electronic circuit setting area, a high-pressure oxygen generator setting area and an air-conditioning host storage area. An adjustable air separation bracket is positioned outside the functional area partition bottom plate, and movable wheels for movement are arranged at the bottom of the functional area partition bottom plate.

[0006] Preferably, a shower room, a toilet, a washbasin, a tea table, a bed body and a computer desk are installed inside the cabin main body at a position above the functional partition bottom plate. An electric projection screen is arranged inside the second cover body. A main engine heat preservation room and a rain shield are installed at the end of the cabin main body outside the first cover body.

[0007] Preferably, the electric projection screen is wound and retracted inside the second cover body. The bed body is one of a double bed and a single bed.

[0008] Preferably, a reinforced curtain track is positioned on the inner wall of the cabin main body. A positioning shaft is positioned on one inner wall body of the cabin main body. A plurality of telescopic curtain shafts are arranged on the positioning shaft. And at the position where the telescopic curtain shaft is connected to the reinforced curtain track, a telescopic device is arranged in the telescopic curtain shaft. At the other end position of the telescopic curtain shaft, a movable shaft is positioned. A light-shielding curtain is arranged between the telescopic curtain shafts.

[0009] Preferably, the positioning shaft is fixed to the cabin main body. The telescopic curtain shaft can telescopically move on the reinforced curtain track through the telescopic device. The movable shaft can move on the reinforced curtain track and is engaged with the cabin main body. The telescopic curtain shaft drives the light-shielding curtain to telescopically move.

[0010] Preferably, the bottom of the functional partition bottom plate is moved by moving wheels. The adjustable air-insulating support supports the functional partition bottom plate.

[0011] Beneficial effects: Compared with the prior art, the utility model provides a micro-high-pressure movable cabin with an oxygen supply system, which has the following beneficial effects: The micro-high-pressure movable cabin with an oxygen supply system is made of metal materials and includes a load-bearing structure part, partitioned partial walls and a ground surface inside the cabin. It can be moved as a whole. The whole cabin is separated from the ground and fixed on the ground surface by multiple fixed feet or brackets at the bottom of the cabin. A multi-functional area is arranged at the bottom to adapt to more usage scenarios. The overall structural shape of the cabin is mainly a horizontally placed cylinder. The lower quarter of the cabin height is changed to a plane and completely divided into two parts. The main structure of the cabin adopts an overall design. Fireproof and heat-insulating material layers are attached to both the inside and outside of the cabin walls. Two of the four surrounding walls of the cabin can be designed into an arc shape or a plane shape according to pressure requirements. For the arc-shaped wall, the doors and windows can be designed into a circular shape. For the plane-shaped wall, the doors and windows can be designed into a quadrilateral shape. A fixed lighting window that transmits light but is airtight can be opened in the middle part of the cabin wall. A washing area, a living and working functional area and a sleeping area are arranged inside the cabin, and corresponding furniture facilities are installed. Or only a multi-person and multi-position oxygen supply functional area is set up according to needs. The whole cabin with an oxygen supply system has a simple structure, is convenient to operate, and has a better use effect than the traditional method. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 The utility model is a schematic diagram of the overall structure of a slightly high-pressure movable cabin with an oxygen supply system.

[0013] Figure 2 The utility model is a structural schematic diagram of a double bed in a cabin with a slightly high-pressure movable oxygen supply system.

[0014] Figure 3 The utility model is a structural schematic diagram of a single bed in a cabin of a slightly high-pressure movable type with an oxygen supply system.

[0015] Figure 4 The utility model is a structural schematic diagram of the installation of a light-shielding curtain in a slightly high-pressure movable cabin with an oxygen supply system.

[0016] In the figure: 1. Cabin body; 2. Shower room; 3. Entrance door; 4. Toilet; 5. First cover; 6. Adjustable air-space bracket; 7. Temporary storage and collection area for domestic sewage; 8. Storage area for electric water heater; 9. Air pressure system setting area; 10. Electronic circuit setting area; 11. High-pressure oxygen generator setting area; 12. Air-conditioning host storage area; 13. Moving wheels; 14. Functional area separation bottom plate; 15. Positioning axis; 16. Explosion-proof glass window; 17. Second cover; 18. Reinforced curtain track; 19. Host insulation room; 20. Rain shield; 21. Washbasin; 22. Coffee table; 23. Bed; 24. Computer desk; 25. Electric projection screen; 26. Telescopic device; 27. Telescopic curtain axis; 28. Movable axis; 29. ​​Blackout curtain. DETAILED DESCRIPTION

[0017] The technical solution of the utility model will be clearly and completely described below in conjunction with the accompanying drawings and specific embodiments, but those skilled in the art will understand that the embodiments described below are part of the embodiments of the utility model, rather than all of the embodiments, and are only used to illustrate the utility model, and should not be considered as limiting the scope of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in the field without making creative work are within the scope of protection of the utility model. If the specific conditions are not specified in the embodiments, they are carried out according to conventional conditions or conditions recommended by the manufacturer. If the manufacturer is not specified for the reagents or instruments used, they are all conventional products that can be purchased commercially.

[0018] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0019] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0020] like Figures 1-4 As shown, a micro-high pressure movable cabin with an oxygen supply system comprises a cabin body 1, a functional area separation bottom plate 14 for function setting is positioned and installed at the bottom of the cabin body 1, a first cover body 5 is positioned at one end of the cabin body 1, a second cover body 17 is positioned at the other end of the cabin body 1, an entrance door 3 is arranged on the first cover body 5, an explosion-proof glass window 16 is arranged in the middle of the second cover body 17, and a domestic sewage temporary storage and collection area 7, an electric water heater storage area 8, and an air pressure system setting area are arranged in sequence inside the functional area separation bottom plate 14. 9. Electronic circuit setting area 10, high-pressure oxygenator setting area 11 and air-conditioning host storage area 12. An adjustable air-partitioning bracket 6 is positioned on the outer side of the functional area separation bottom plate 14. A movable wheel 13 for movement is arranged at the bottom of the functional area separation bottom plate 14. The cabin body is made of metal material, including a load-bearing structure part, a partition wall part and a ground surface in the cabin, which can be moved as a whole. The cabin is separated from the ground as a whole and is fixed to the ground surface by multiple fixed feet or brackets at the bottom of the cabin. A multi-functional area is arranged at the bottom to adapt to more usage scenarios.

[0021] Furthermore, a shower room 2, a toilet 4, a washbasin 21, a coffee table 22, a bed 23 and a computer desk 24 are installed at the upper end of the functional area dividing bottom plate 14 inside the cabin body 1, an electric projection screen 25 is provided on the inner side of the second cover body 17, and a main engine insulation room 19 and a rain shield 20 are installed at the end of the cabin body 1 located on the outer side of the first cover body 5.

[0022] Further, the electric projection screen 25 winds and contracts inside the second housing 17, and the bed body 23 is one of a double bed and a single bed.

[0023] Further, a reinforced curtain track 18 is positioned on the inner wall of the cabin main body 1. A positioning shaft 15 is positioned on one inner wall body of the cabin main body 1. A plurality of telescopic curtain shafts 27 are arranged on the positioning shaft 15. And at the position where the telescopic curtain shaft 27 is connected to the reinforced curtain track 18, a telescopic device 26 is arranged in the telescopic curtain shaft 27. At the other end position of the telescopic curtain shaft 27, a movable shaft 28 is positioned. A light-shielding curtain 29 is arranged between the telescopic curtain shafts 27.

[0024] Further, the positioning shaft 15 is fixed to the cabin main body 1. The telescopic curtain shaft 27 telescopically moves on the reinforced curtain track 18 through the telescopic device 26. The movable shaft 28 moves on the reinforced curtain track 18 and is engaged with the cabin main body 1. The telescopic curtain shaft 27 drives the light-shielding curtain 29 to telescopically move.

[0025] Further, the bottom of the functional partition bottom plate 14 moves through the moving wheels 13. The adjustable air separation bracket 6 supports the functional partition bottom plate 14. Openable doors for maintenance are arranged on the domestic sewage temporary storage and collection area 7, the electric water heater storage area 8, the air pressure system setting area 9, the electronic circuit setting area 10, the high-pressure oxygen generator setting area 11 and the air-conditioning main unit storage area 12.

[0026] Working principle: The utility model includes a cabin main body 1, a shower room 2, an entrance door 3, a toilet 4, a first housing 5, an adjustable air separation bracket 6, a domestic sewage temporary storage and collection area 7, an electric water heater storage area 8, an air pressure system setting area 9, an electronic circuit setting area 10, a high-pressure oxygen generator setting area 11, an air-conditioning main unit storage area 12, moving wheels 13, a functional partition bottom plate 14, a positioning shaft 15, an explosion-proof glass window 16, a second housing 17, a reinforced curtain track 18, a main engine heat preservation room 19, a rain shield 20, a washbasin 21, a tea table 22, a bed body 23, a computer desk 24, an electric projection screen 25, a telescopic device 26, telescopic curtain shafts 27, a movable shaft 28 and a light-shielding curtain 29. The cabin main body is made of metal materials and includes a load-bearing structure part, partial partition walls and the ground surface inside the cabin. It can be moved integrally. The whole cabin is separated from the ground, and is fixed on the ground surface by multiple fixed feet or brackets at the bottom of the cabin. A multi-functional area is arranged at the bottom to adapt to more usage scenarios.

[0027] The overall structural shape of the cabin is mainly a horizontally placed cylinder. The lower quarter of the cabin height is changed to a plane and is completely divided into two parts. The upper three-quarters of the space is the living space for people, and the lower quarter is the domestic sewage temporary storage and collection area, the electric water heater storage area, the air pressure system setting area, the high-pressure oxygen generator setting area, the electronic circuit setting area and the air-conditioning main unit storage area.

[0028] The main structure of the cabin adopts an integral design. Fireproof and heat-insulating material layers are attached to both the inside and outside of the cabin walls. The surrounding walls of the cabin are designed in a cylindrical shape. For the cylindrical walls, the doors and windows can be designed in a circular shape, and fixed daylighting windows that allow light but not air can be opened in the middle part of the cabin walls.

[0029] The interior of the cabin is equipped with a washing area, a living and working functional area, and a sleeping area, and corresponding furniture and facilities are installed. Or a multi-person and multi-position oxygen supply functional area can be set up according to needs.

[0030] Water supply and drainage system:

[0031] The water supply and drainage pipelines in the cabin are laid in accordance with the civil building code. The water supply pipeline is in the indoor space, and an electric water heater is used for hot water. The electric water heater is set in the storage area under the house, and hot water is connected to the living and washing area through pipelines.

[0032] The drainage pipeline is at the bottom. A pressure air purification device and a pressure sealing device are installed at the corner of the bathroom floor. When in use, open the pressure sealing device, and the domestic sewage will be discharged to the temporary storage and collection area due to the action of gravity. Polluted gas will be discharged into the indoor space above. A pressure air purification device is installed at the gas outlet to ensure the air safety of the living space above.

[0033] A flushing hole or flushing port for cleaning and flushing the temporary storage and collection area of domestic sewage below is reserved in the center above the indoor washing area or the temporary storage and collection area of domestic sewage, so as to facilitate flushing and cleaning the domestic sewage storage and collection area during the later discharge of domestic sewage.

[0034] An electric or manual domestic sewage discharge valve is installed in the temporary storage and collection area of domestic sewage. When draining under pressure, close the pressure sealing device and the flushing hole or flushing port, and then open the domestic sewage discharge valve. The sewage in the temporary storage and collection area of domestic sewage will be quickly discharged outdoors under the action of pressure. If the solid waste in the domestic sewage storage and collection area fails to be completely discharged, close the sewage discharge valve again, open the pressure sealing device and the flushing hole or flushing port, clean the domestic sewage storage and collection area with a water gun or other cleaning devices. After the solid waste is dispersed in the wastewater, close the pressure sealing device and the flushing hole or flushing port again, and then open the domestic sewage discharge valve. The sewage will be quickly discharged outdoors under the action of pressure.

[0035] When draining under normal pressure, just open the flushing hole or flushing port first, and then open the domestic sewage discharge valve to discharge the wastewater. Clean the domestic sewage storage and collection area with a high-pressure water gun or other cleaning devices to keep the domestic sewage storage and collection area clean.

[0036] After the cleaning of the domestic sewage storage and collection area is completed, close the sewage discharge valve, close the flushing hole or flushing port, and turn on the pressure air purification device and the pressure sealing device.

[0037] Circuit and network system:

[0038] The circuits and network pipelines in the cabin are laid in accordance with the civil building codes and are buried in the internal insulation layer of the cabin wall at the same time. The electrical switches use anti-static switches. There are wired network and WIFI devices installed in the cabin.

[0039] Pressure system:

[0040] An independent air pressure system setting area is set at the bottom outside the cabin wall. The air pressure system setting area includes a supercharger and a negative pressure pump. The supercharger has multiple air purification devices. Through the pre-laid air pipelines leading to the room, the purified air is input into the room. After the doors and windows in the room are closed, the pressure in the room gradually rises. The pressure adjustment range is 50 - 60 Kpa difference between indoor and outdoor. The pressure in the room can be adjusted arbitrarily according to needs. When the pressure reaches the set pressure, the supercharger will reduce the intake air flow, and at the same time the negative pressure pump starts to work to discharge the gas with excess pressure, so that the air in the room always remains in a circulating state and keeps the indoor air fresh.

[0041] There are at least 1 automatic pressure relief valve and 1 emergency manual relief valve set on the cabin wall. In case of special circumstances, the air in the cabin can be quickly discharged to reduce the pressure so that people can quickly leave the room.

[0042] Oxygen generation system:

[0043] An independent high-pressure oxygen generator setting area is set at the bottom outside the cabin wall. The high-pressure oxygen generator separates and aggregates the oxygen in the air into high-concentration oxygen of not less than 90%. Through the pre-laid oxygen pipelines leading to the room, the high-concentration oxygen is input into the room. Openable oxygen supply plugs are set at the head of the bed, at the seat or other places where needed in the room for the people in the room to use reasonably according to needs. When all the oxygen supply plugs in the room are in the closed state, the high-pressure oxygen generator will automatically shut down according to the information of the sensor. At the same time, if the oxygen generator is used in the room for a long time and the oxygen content concentration in the indoor air exceeds 23%, the oxygen generator will also automatically stop working to ensure the safety of oxygen use in the room.

[0044] Air conditioning system:

[0045] For the adjustment of the air temperature in the cabin, an independent air-conditioning main unit storage area is set at the bottom outside the cabin wall, and an air conditioner is installed in the room. The temperature of the air in the room is mainly adjusted according to the air-conditioning system.

[0046] Emergency call for rescue and access control management system:

[0047] An emergency call system is installed in the cabin. By installing a one-button or dial-free instant communication system in the cabin, relevant service personnel can be contacted quickly.

[0048] The access control management system is an independent system relying on the Internet and has functions such as authorized check-in, unauthorized check-in, continuous stay extension, authorized door opening, check-out, face recognition, two-dimensional code scanning, and indoor voice response call.

[0049] Audio-visual entertainment system:

[0050] High-quality audio facilities, an electric projection screen, and a network projector are installed in the cabin. When in use, the user can unfold the electric projection screen and turn on the network projector to carry out various network audio-visual services. When the service is over, the electric projection screen can be retracted.

[0051] Use of the cabin: When in use, after the user checks in through the access control management system, close the door and windows. If pressurization is not required, various in-cabin living facilities, air conditioning system, circuit and network system, emergency call for rescue, and audio-visual entertainment system can be used arbitrarily. If only oxygen inhalation is needed, on this basis, turn on the oxygen generation system. The maximum usage time of the oxygen generation system each time shall not exceed 2 hours, and the oxygen supply time per day shall not exceed 4 hours without pressurization. If pressurization is required, on the above basis, turn on the supercharger, the pressure air purification device, and the pressure sealing device, close the electric or manual domestic sewage discharge valve, close the flushing hole or flushing port, and close the emergency manual pressure relief valve. When inhaling oxygen, make sure the oxygen mask, oxygen inhalation earphone, or nasal cannula is close to the mouth and nose.

[0052] It should be noted that in this article, relational terms such as first and second (No. 1, No. 2) are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "including", "comprising", or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article, or device including a series of elements not only includes those elements but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article, or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article, or device including the said element.

[0053] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed.

Claims

1. A micro-high-pressure movable cabin with an oxygen supply system, comprising a cabin main body (1), characterized in that: A functional area separation bottom plate (14) for functional setting is positioned and installed at the bottom of the cabin body (1); a first cover body (5) is positioned at one end of the cabin body (1); a second cover body (17) is positioned at the other end of the cabin body (1); an entrance door (3) is arranged on the first cover body (5); an explosion-proof glass window (16) is arranged in the middle of the second cover body (17); a temporary domestic sewage storage and collection area (7), an electric water heater storage area (8), an air pressure system setting area (9), an electronic circuit setting area (10), a high-pressure oxygenator setting area (11) and an air conditioner main unit storage area (12) are arranged in sequence inside the functional area separation bottom plate (14); an adjustable air-space bracket (6) is positioned on the outer side of the functional area separation bottom plate (14); and movable wheels (13) for movement are arranged at the bottom of the functional area separation bottom plate (14).

2. The cabin with a micro-high pressure and movable oxygen supply system according to claim 1, characterized in that: A shower room (2), a toilet (4), a wash basin (21), a coffee table (22), a bed (23) and a computer desk (24) are installed in the cabin body (1) at the upper end of the functional area partition bottom plate (14); an electric projection screen (25) is arranged on the inner side of the second cover body (17); and a main engine insulation room (19) and a rain shield (20) are installed at the end of the cabin body (1) located on the outer side of the first cover body (5).

3. The micro-high-pressure movable cabin with an oxygen supply system according to claim 2, characterized in that: The electric projection screen (25) is rolled and retracted at the inner side of the second cover (17), and the bed (23) is one of a double bed and a single bed.

4. A micro-high-pressure movable cabin with an oxygen supply system according to claim 1, characterized in that: A reinforced curtain track (18) is positioned on the inner wall of the cabin body (1), a positioning shaft (15) is positioned on the inner wall of one side of the cabin body (1), a plurality of groups of telescopic curtain shafts (27) are arranged on the positioning shaft (15), and the telescopic curtain shafts (27) are connected to the position of the reinforced curtain track (18), a telescopic device (26) is arranged in the telescopic curtain shaft (27), a movable shaft (28) is positioned at the other end of the telescopic curtain shaft (27), and a blackout curtain (29) is arranged between the telescopic curtain shafts (27).

5. The cabin with a micro-high pressure and movable oxygen supply system according to claim 4, characterized in that: The positioning shaft (15) is fixed to the cabin body (1); the telescopic curtain shaft (27) is telescopically movable on the reinforced curtain track (18) via a telescoping device (26); the movable shaft (28) is movable on the reinforced curtain track (18) and is engaged with the cabin body (1); the telescopic curtain shaft (27) drives the blackout curtain (29) to telescope.

6. The mobile cabin with an oxygen supply system under micro-high pressure according to claim 1, wherein: The bottom of the functional area separation bottom plate (14) is moved by means of a moving wheel (13), and the adjustable spacer bracket (6) supports the functional area separation bottom plate (14).