Fast-assembly type oxygen enrichment cabin

Through the design of the drive component and the clamping component, the oxygen concentrator can be quickly installed and stably fixed, solving the problem of cumbersome and unstable installation in the existing oxygen-enriched chamber and improving the efficiency and safety of the equipment.

CN223323712UActive Publication Date: 2025-09-12SHENZHEN RUIHAI MEDICAL INSTR CO LTD
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Patent Information

Application Number
CN202421942897.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-12
Publication Date
2025-09-12
Estimated Expiration
2034-08-12

AI Technical Summary

Technical Problem

The installation method of the oxygen concentrator in the existing oxygen enrichment chamber is cumbersome and unstable, which can easily lead to equipment damage and safety hazards due to wear and tear.

Method used

The driving component and the card assembly are designed to cooperate with each other. The plug-in and card-connection structure is used to achieve rapid installation and stable fixation of the oxygen concentrator. The motor drives the gear and cam mechanism to achieve convenient installation and disassembly of the oxygen concentrator.

Benefits of technology

It improves the installation convenience and stability of the oxygen concentrator, simplifies the operating process, and reduces the risk of equipment failure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a fast installation type oxygen enrichment cabin which comprises a closed oxygen cabin structure main body, the top of the closed oxygen cabin structure main body is provided with an exhaust device, one side of the closed oxygen cabin structure main body is provided with a mounting seat, the side edge of the mounting seat is connected with an oxygen generator in an inserted mode, the side edge of the mounting seat is provided with two mounting grooves, and the two mounting grooves are connected with the oxygen generator in an inserted mode. Mounting grooves are formed in the two sides of the oxygen generator, a connecting base is arranged on the side edge of the oxygen generator, two protruding blocks are arranged on the side edge of the connecting base and inserted into the mounting grooves, and a dismounting mechanism is arranged between the two mounting grooves. According to the oxygen generator mounting base, the mounting base and the oxygen generator can be quickly mounted, operation is simple, the oxygen generator only needs to be pushed to enable the protruding block on the connecting base to be in butt joint with the mounting groove, mounting convenience of the oxygen generator is further improved, and meanwhile the stability of the oxygen generator after mounting can be improved through the arrangement of the two clamping assemblies.
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Description

Technical Field

[0001] The utility model relates to a quick-install oxygen-enriched cabin, belonging to the technical field of oxygen-enriched cabins. Background Art

[0002] Oxygen is an essential gas for maintaining life. The direct function of the quick-install oxygen-enriched chamber is to improve the body's hypoxic state. After the human body inhales high-pressure oxygen, oxygen-rich blood is transported to all parts of the body. The metabolic status of cells throughout the body can be improved, metabolism is regulated, the clearance of metabolites and cell regeneration are accelerated, and skin elasticity and radiance are effectively improved.

[0003] When using some existing oxygen enrichment chambers, it is usually necessary to install an oxygen concentrator on the oxygen enrichment chamber, and it is usually fixed by bolts. The bolt connection method is cumbersome and complicated, and the installation efficiency is slow. Moreover, after long-term use, the bolt connection part will wear and tear, which will cause the equipment to be unstable, easily causing damage to the equipment and the occurrence of safety accidents. Utility Model Content

[0004] In view of the deficiencies in the prior art, the present invention aims to provide a quick-install oxygen-enriched cabin.

[0005] In order to achieve the above purpose, the present invention is implemented through the following technical solutions:

[0006] A quick-install oxygen-enriched cabin comprises a sealed oxygen cabin structural main body, an exhaust device is provided on the top of the sealed oxygen cabin structural main body, a mounting seat is provided on one side of the sealed oxygen cabin structural main body, an oxygen concentrator is plugged into the side of the mounting seat, two mounting grooves are provided on the side of the mounting seat, a connecting seat is provided on the side of the oxygen concentrator, two protrusions are provided on the side of the connecting seat, the protrusions are plugged into the mounting grooves, a disassembly mechanism is provided between the two mounting grooves, the disassembly mechanism is clamped and fixed to the protrusions, the disassembly mechanism comprises a mounting cavity provided between the two mounting grooves, the two mounting grooves are connected to the mounting cavity by two through holes respectively, a drive assembly and two groups of clamping assemblies are provided in the mounting cavity, and the two groups of clamping assemblies are respectively located on the upper and lower sides of the drive assembly.

[0007] Furthermore, the driving assembly includes two rotating rods rotating in the installation cavity and a motor fixed in the installation cavity, the two rotating rods are respectively located on the upper and lower sides of the motor, and a small gear and a cam are respectively provided on the two rotating rods. The output end of the motor is connected to the end of the large gear, and the large gear is respectively engaged with the upper and lower small gears.

[0008] Furthermore, the clamping assembly includes a fixing seat fixed in the mounting cavity, a movable hole is opened on the fixing seat, an insertion rod is slidably connected in the movable hole, a fixing block is fixed to one end of the insertion rod, a spring is sleeved on the outer surface of the insertion rod and located between the fixing block and the fixing seat, a roller is fixed on the outer surface of the fixing block, and the roller is in contact with the cam.

[0009] Furthermore, the clamping assembly further includes a socket provided on the protrusion, and the other end of the insertion rod passes through the through hole, penetrates the installation cavity, extends into the installation groove, and is clamped in the socket.

[0010] Furthermore, the ends of the cam are respectively provided with a flat end and a protruding end.

[0011] Furthermore, an electric control box is provided on the side of the main body of the sealed oxygen chamber structure, and a sensor is provided on the side of the main body of the sealed oxygen chamber structure. The sensor, the oxygen concentrator, and the exhaust equipment are all electrically connected to the electric control box.

[0012] Furthermore, a sealed door and a display are provided on the front of the sealed oxygen chamber structure body, and the display is electrically connected to the electric control box.

[0013] The beneficial effects of the present utility model are:

[0014] By coordinating the drive assembly with the two sets of clamping assemblies, the start-up of the drive assembly can simultaneously drive the two sets of clamping assemblies to clamp the oxygen concentrator at the same time, so that the mounting base and the oxygen concentrator can be quickly installed. The operation is relatively simple. It is only necessary to push the oxygen concentrator to connect the protrusion on the connecting base with the mounting groove, thereby improving the convenience of installing the oxygen concentrator. At the same time, the setting of the two sets of clamping assemblies can improve the stability of the oxygen concentrator after installation.

[0015] By setting up the oxygen concentrator and exhaust equipment, the exhaust equipment is set at the top of the closed oxygen chamber structure body, which can transport or discharge the air inside the closed oxygen chamber structure body, thereby controlling the air quality inside the closed oxygen chamber structure body.

[0016] The sensor is used to detect the air quality in the main body of the closed oxygen chamber structure in real time and collect air data in the main body of the closed oxygen chamber structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0018] Figure 1 This is a schematic diagram of the overall structure of a quick-install oxygen-enriched cabin of the utility model;

[0019] Figure 2 This is a schematic side sectional structural diagram of a mounting base of a quick-install oxygen-enriched cabin of the utility model;

[0020] Figure 3 This is a side view structural diagram of the connection between the oxygen concentrator and the connecting seat of a quick-install oxygen-enriched cabin of the utility model;

[0021] Figure 4 This is a schematic diagram of the connection structure between the oxygen concentrator and the connecting seat of a quick-install oxygen-enriched cabin of the utility model;

[0022] Figure 5 This is a schematic diagram of the disassembly mechanism structure of a quick-install oxygen-enriched cabin of the utility model;

[0023] Figure 6 The utility model is a schematic diagram of the structure of a snap-on assembly of a quick-install oxygen-enriched cabin.

[0024] In the figure, 1. Main body of the sealed oxygen chamber structure; 2. Mounting seat; 3. Oxygen concentrator; 4. Mounting slot; 5. Mounting cavity; 6. Through hole; 7. Rotating rod; 8. Motor; 9. Cam; 10. Fixed seat; 11. Insert rod; 12. Fixed block; 13. Spring; 14. Roller; 15. Connecting seat; 16. Socket; 17. Large gear; 18. Small gear; 19. Sealing door; 20. Display; 21. Bump; 22. Exhaust equipment; 23. Sensor; 24. Electric control box. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] See also Figures 1-6The utility model provides a technical solution for a quick-install oxygen enrichment cabin, a quick-install oxygen enrichment cabin, comprising a sealed oxygen cabin structure body 1, an exhaust device 22 is provided on the top of the sealed oxygen cabin structure body 1, a mounting seat 2 is provided on one side of the sealed oxygen cabin structure body 1, an oxygen concentrator 3 is plugged into the side of the mounting seat 2, two mounting grooves 4 are provided on the side of the mounting seat 2, a connecting seat 15 is provided on the side of the oxygen concentrator 3, two protrusions 21 are provided on the side of the connecting seat 15, the protrusions 21 are plugged into the mounting grooves 4, and the two protrusions 21 are plugged into the mounting grooves 4. A disassembly mechanism is provided between the mounting grooves 4, and the disassembly mechanism is fixedly engaged with the protrusion 21. The disassembly mechanism includes a mounting cavity 5 opened between the two mounting grooves 4. The two mounting grooves 4 are connected to the mounting cavity 5 through two through holes 6 respectively. A driving assembly and two groups of snap-on assemblies are provided in the mounting cavity 5. The two groups of snap-on assemblies are respectively located on the upper and lower sides of the driving assembly. A sealing door 19 and a display 20 are provided on the front of the sealed oxygen chamber structure body 1. The display 20 is electrically connected to the electrical control box 24.

[0027] See Figure 5 The driving assembly includes two rotating rods 7 rotating in the installation cavity 5 and a motor 8 fixed in the installation cavity 5. The two rotating rods 7 are respectively located on the upper and lower sides of the motor 8. A small gear 18 and a cam 9 are respectively provided on the two rotating rods 7. The output end of the motor 8 is connected to the end of the large gear 17, and the large gear 17 is respectively engaged with the upper and lower small gears 18.

[0028] See Figure 5 and Figure 6 The clamping assembly includes a fixing seat 10 fixed in the mounting cavity 5, a movable hole is opened on the fixing seat 10, and a plug rod 11 is slidably connected in the movable hole, one end of the plug rod 11 is fixed with a fixing block 12, and a spring 13 is sleeved on the outer surface of the plug rod 11 and located between the fixing block 12 and the fixing seat 10, and a roller 14 is fixed on the outer surface of the fixing block 12, and the roller 14 is abutted against the cam 9. The clamping assembly also includes a socket 16 opened on the protrusion 21, and the other end of the plug rod 11 passes through the through hole 6 and extends through the mounting cavity 5 to the mounting groove 4 and is clamped in the socket 16. The ends of the cam 9 are respectively provided with a flat end and a protruding end.

[0029] See Figure 1An electric control box 24 is provided on the side of the sealed oxygen chamber structural body 1, and a sensor 23 is provided on the side of the sealed oxygen chamber structural body 1. The sensor 23, the oxygen concentrator 3, and the exhaust device 22 are all electrically connected to the electric control box 24. Through the arrangement of the oxygen concentrator 3 and the exhaust device 22, the exhaust device 22 is arranged at the top of the sealed oxygen chamber structural body 1, which can transport or discharge the air inside the sealed oxygen chamber structural body 1, thereby controlling the air quality inside the sealed oxygen chamber structural body 1.

[0030] See Figure 1 The front of the sealed oxygen chamber structure body 1 is provided with a sealed door 19 and a display 20 , and the display 20 is electrically connected to the electric control box 24 .

[0031] During use, the user enters the interior of the sealed oxygen chamber structure main body 1 by opening the sealed door 19, and then starts the oxygen concentrator 3. The oxygen generated by the oxygen concentrator 3 is sucked into the interior of the sealed oxygen chamber structure main body 1 by the exhaust device 22, thereby supplying oxygen to the interior of the sealed oxygen chamber structure main body 1, thereby facilitating the supply of sufficient oxygen to the user. The sensor 23 on the side of the sealed oxygen chamber structure main body 1 is used to detect the air quality in the sealed oxygen chamber structure main body 1 in real time, collect air data in the sealed oxygen chamber structure main body 1 and send the data to the electric control box 24. The electric control box 24 adjusts the operating status of the oxygen concentrator 3 and the exhaust device 22 according to the data analysis results;

[0032] When installing the oxygen concentrator 3, the two protrusions 21 on the side connecting seat 15 of the oxygen concentrator 3 are inserted into the installation groove 4, so that the socket 16 on the protrusion 21 matches the through hole 6. The motor 8 is started to rotate by controlling the external switch. The output end of the motor 8 drives the large gear 17 to rotate. The rotation of the large gear 17 drives the two small gears 18 meshing therewith to rotate. The rotation of the two small gears 18 drives the two rotating rods 7 to rotate. The rotation of the two rotating rods 7 drives the two cams 9 to rotate. The rotation of the two cams 9 respectively drives the two clamping components to operate, that is, the rotation of the cam 9 squeezes the roller 14 to move. When the protruding end of the cam 9 rotates to contact the roller 14, the cam 9 pushes the roller 14 to move to the farthest distance. When the movable hole is limited, the roller 14 drives the insertion rod 11 and the fixing block 12 to move. When the fixing block 12 moves, it squeezes the spring 13. At this time, the end of the insertion rod 11 passes through the installation groove 4 and is inserted into the insertion hole 16 to connect the mounting seat 2 with the connecting seat 15, thereby achieving the effect of installing the mounting seat 2 and the oxygen concentrator 3. When the driving component is started, it can simultaneously drive the two sets of clamping components to clamp the oxygen concentrator 3 at the same time, thereby quickly installing the mounting seat 2 and the oxygen concentrator 3. The operation is relatively simple. You only need to push the oxygen concentrator 3 to dock the protrusion 21 on the connecting seat 15 with the installation groove 4, thereby improving the convenience of installing the oxygen concentrator 3. At the same time, the setting of the two sets of clamping components can improve the stability of the oxygen concentrator 3 after installation.

[0033] When the oxygen concentrator 3 needs to be disassembled, the motor 8 can be started again. The operation of the motor 8 drives the cam 9 to rotate. When the flat end of the cam 9 rotates to a state of contact with the roller 14, the insertion rod 11 is pulled out of the insertion hole 16 and returned to the installation cavity 5 under the action of the spring 13. At this time, the oxygen concentrator 3 can be pulled out, so that the protrusion 21 on the connecting seat 15 on the side of the oxygen concentrator 3 leaves the two installation grooves 4, that is, the separation of the oxygen concentrator 3 from the sealed oxygen chamber structure body 1 is completed.

[0034] Although this specification is described according to implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A quick-install oxygen enrichment cabin, characterized in that: The invention comprises a sealed oxygen chamber structure body (1), wherein an exhaust device (22) is provided on the top of the sealed oxygen chamber structure body (1), a mounting seat (2) is provided on one side of the sealed oxygen chamber structure body (1), an oxygen concentrator (3) is plugged into the side of the mounting seat (2), two mounting grooves (4) are provided on the side of the mounting seat (2), a connecting seat (15) is provided on the side of the oxygen concentrator (3), two protrusions (21) are provided on the side of the connecting seat (15), the protrusions (21) are plugged into the mounting grooves (4), a disassembly mechanism is provided between the two mounting grooves (4), the disassembly mechanism is fixedly connected to the protrusions (21), the disassembly mechanism comprises a mounting cavity (5) provided between the two mounting grooves (4), the two mounting grooves (4) and the mounting cavity (5) are respectively communicated through two through holes (6), a driving component and two groups of snap-connecting components are provided in the mounting cavity (5), and the two groups of snap-connecting components are respectively located on the upper and lower sides of the driving component.

2. A quick-install oxygen enrichment cabin according to claim 1, characterized in that: The driving assembly comprises two rotating rods (7) rotating in the installation cavity (5) and a motor (8) fixed in the installation cavity (5), the two rotating rods (7) being respectively located on the upper and lower sides of the motor (8), a small gear (18) and a cam (9) being respectively provided on the two rotating rods (7), the output end of the motor (8) being connected to the end of a large gear (17), and the large gear (17) being respectively engaged with the upper and lower small gears (18).

3. A quick-install oxygen enrichment cabin according to claim 2, characterized in that: The clamping assembly includes a fixing seat (10) fixed in the installation cavity (5), a movable hole is opened on the fixing seat (10), an insertion rod (11) is slidably connected in the movable hole, a fixing block (12) is fixed to one end of the insertion rod (11), a spring (13) is sleeved on the outer surface of the insertion rod (11) and located between the fixing block (12) and the fixing seat (10), a roller (14) is fixed on the outer surface of the fixing block (12), and the roller (14) is in contact with the cam (9).

4. The quick-install oxygen enrichment cabin according to claim 3, characterized in that: The clamping assembly further includes a socket (16) provided on the protrusion (21), and the other end of the insertion rod (11) passes through the installation cavity (5) through the through hole (6) and extends into the installation slot (4) to be clamped in the socket (16).

5. The quick-install oxygen enrichment chamber according to claim 4, characterized in that: The ends of the cam (9) are respectively provided with a flat end and a protruding end.

6. The quick-install oxygen enrichment cabin according to claim 5, characterized in that: An electric control box (24) is provided on the side of the sealed oxygen chamber structural body (1), and a sensor (23) is provided on the side of the sealed oxygen chamber structural body (1). The sensor (23), the oxygen concentrator (3), and the exhaust device (22) are all electrically connected to the electric control box (24).

7. The quick-install oxygen enrichment cabin according to claim 6, characterized in that: The front of the sealed oxygen chamber structure body (1) is provided with a sealing door (19) and a display (20), and the display (20) is electrically connected to the electric control box (24).