Low-noise intelligent oxygen cabin
The silent oxygen chamber addresses noise and environmental instability issues by using soundproof materials and a control system to ensure a quiet and stable treatment environment, improving therapeutic outcomes.
Patent Information
- Application Number
- CN202421863700.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-02
AI Technical Summary
The existing high-pressure oxygen chambers are noise interference due to unstable module work, which affects the immersive medical effect, and the parameters in the chamber are not constant, affecting the use effect.
The cabin and the cabin door made of sound insulation materials are equipped with internal isolation plates of sound absorption materials to form a silent oxygen chamber, and the cabin environment is controlled in real time through the integrated control unit and monitoring sensor group to maintain constant temperature, constant pressure and constant oxygen.
It achieves long-term silent effect, maintains an immersive treatment environment, and ensures the medical effect and user experience of the personnel in the cabin.
Smart Images

Figure CN223095758U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of health care equipment, in particular to a low-noise intelligent oxygen chamber. Background Art
[0002] Micro-hyperbaric oxygen chambers are widely used in hospitals or health physiotherapy and rehabilitation institutions. The principle of the micro-hyperbaric oxygen chamber is as follows: generating a micro-high atmospheric pressure and 85-90% oxygen-rich air. When a user is inside, under the action of pressure, the content of combined oxygen and dissolved oxygen in the body's blood is high, which can relieve physical and mental fatigue, maintain high energy, improve work efficiency, improve the sub-healthy state, and promote recovery after illness. It is widely applicable to groups such as mental workers, sub-healthy people, elderly people, and patients with chronic diseases.
[0003] At present, the oxygen generation module, pressurization module, and other related modules of the hyperbaric oxygen chamber are all integrally arranged inside the chamber body. Its defects are as follows: First, due to the working condition parameters, various modules work randomly to stabilize the environment inside the chamber, generating random and irregular noises during various operations, which interfere with and affect the psychology of the people inside the chamber, and it is difficult to achieve the medical effect of immersive use. Second, the parameters inside the chamber are not constant, affecting the use effect. Summary of the Utility Model
[0004] In order to solve one or more of the above problems, the utility model provides a low-noise intelligent oxygen chamber.
[0005] According to one aspect of the utility model, the low-noise intelligent oxygen chamber includes: a chamber body, a chamber door, an inner partition board, an integrated control part, a monitoring sensor group, and an operation part;
[0006] The chamber body includes a hollow outer shell made of sound insulation material. There is an access port at the front end of the outer shell, and a connecting step is arranged at the lower end of the inner cavity.
[0007] The chamber door is made of sound insulation glass and is openably installed at the access port.
[0008] An inner partition board is provided with a sound absorption and noise reduction isolation layer made of sound absorption material. The inner partition board is detachably and sealingly connected to the connecting step. The inner partition board, the chamber body, and the chamber door form an openable or closable silent oxygen chamber. Below the inner partition board and below the chamber body is a control room.
[0009] The integrated control part, and the oxygen generation module, pressurization module, and temperature control module electrically connected to the integrated control part are installed in the control room. The oxygen generation module, pressurization module, and temperature control module are respectively connected to the silent oxygen chamber through pipelines.
[0010] The monitoring sensor group is installed in the silent oxygen chamber. The monitoring sensor group is electrically connected to the integrated control unit. The monitoring sensor group monitors the pressure, temperature, and oxygen enrichment concentration data in real time and feeds back to the integrated control unit. The integrated control unit controls the operation or opening / closing of the oxygen generation module, pressurization module, and temperature control module, so that the inside of the silent oxygen chamber is at the set temperature, pressure, and oxygen enrichment concentration;
[0011] The operation unit is installed on the inner side of the cabin body and is electrically connected to the integrated control unit.
[0012] In some embodiments, the cabin door includes two layers of sound-insulating glass. The four sides of the two layers of sound-insulating glass are connected by a frame adhesive, and support units of flexible support points or star-shaped support frames are evenly arranged in the middle.
[0013] In some embodiments, the cabin door further includes tempered glass. The tempered glass is connected to the outer layer of sound-insulating glass through a sound-insulating damping layer,
[0014] or the sound-insulating damping layer is any one of sound-insulating damping glue, sound-insulating film, and PVB interlayer film.
[0015] In some embodiments, the connecting step is a right-angle step, and an elastic sound-insulating rubber pad is further provided between the right-angle step and the inner isolation board.
[0016] In some embodiments, the inner isolation board includes a sound-absorbing and noise-reducing isolation layer, a first protective layer, and a second protective layer. The sound-absorbing and noise-reducing isolation layer is clamped and connected between the first protective layer and the second protective layer.
[0017] In some embodiments, the cabin body is any one of high-strength and high-sound-insulating plastic steel, carbon fiber, and metal materials;
[0018] or the sound-absorbing and noise-reducing isolation layer is one or more of butyl rubber damping plates, sound-absorbing and heat-insulating cotton, mineral wool sound-absorbing boards, polyurethane foam boards, and polyester fiber sound-absorbing boards stacked on top of each other.
[0019] In some embodiments, the seat built in the cabin body is fixedly connected to the first protective layer of the inner isolation board above through a metal bracket;
[0020] or the headrest of the seat is provided with a speaker, and a hidden display screen is arranged inside the handle on one side of the seat, and the user can listen to music and watch videos at the same time.
[0021] In some embodiments, the monitoring sensor group includes an air pressure sensor, an air humidity sensor, an oxygen enrichment concentration sensor, and a temperature sensor;
[0022] The integrated control unit is also electrically connected to an air humidity adjustment module and a negative ion generator;
[0023] or the signal source of the integrated control unit uses wired transmission or Bluetooth transmission.
[0024] In some embodiments, the operation part is two touch LED screens, one LED screen is placed inside the cabin body and the other LED screen is placed outside the cabin;
[0025] Or the integrated control part is provided with a dedicated operating system inside or outside the cabin to enable direct voice conversations between the personnel inside and outside the cabin.
[0026] Or a camera is provided inside the cabin body, and the cabin body is connected to 4G and 5G networks and is provided with a backup power supply.
[0027] In some embodiments, the cabin body is also provided with an overpressure automatic pressure relief valve, an emergency manual pressure relief valve, and an emergency stop module that communicate with a silent oxygen chamber.
[0028] The beneficial effects of the low-noise intelligent oxygen chamber are as follows: First, through the cabin body made of sound insulation materials, the cabin door made of sound insulation glass, and the inner partition board made of sound absorption materials, a silent oxygen chamber is formed. The inner partition board strongly absorbs the noise generated by the sound source below, and the cabin door and the cabin body are sound-insulated, enabling a long-term good silent effect, allowing the personnel inside the cabin to achieve immersive treatment and having good medical effects; Second, the integrated control part and the monitoring sensor group control each module to work in real time, maintaining a medical environment with constant temperature, constant pressure, and constant oxygen in the silent oxygen chamber, achieving good medical effects; Third, the inner partition board is detachably and hermetically connected to the connection step, with no gaps, leaks, or silent blind spots at the connection. Description of the Drawings
[0029] Figure 1 It is a front view schematic diagram of a low-noise intelligent oxygen chamber according to an embodiment of the present invention;
[0030] Figure 2 is Figure 1 A cross-sectional schematic diagram of the low-noise intelligent oxygen chamber shown;
[0031] Figure 3 is Figure 2 A cross-sectional schematic diagram I of the low-noise intelligent oxygen chamber shown;
[0032] Figure 4 is Figure 2 A cross-sectional schematic diagram II of the low-noise intelligent oxygen chamber shown;
[0033] Cabin body 1, outer shell 10, access port 100, connection step 101, silent oxygen chamber 102, control room 103, elastic sound insulation rubber pad 11, seat 12, overpressure automatic pressure relief valve 13, cabin seat 14;
[0034] Cabin door 2, tempered glass 20, sound insulation glass 21, border glue 22, sound insulation damping layer 23, support unit 24;
[0035] Inner partition board 3, sound absorption and noise reduction isolation layer 30, first protective layer 31, second protective layer 32;
[0036] Integrated control unit 4; Monitoring sensor group 5; Operation unit 6;
[0037] Oxygen generation module 7; Pressurization module 8; Temperature control module 9. Specific implementation mode
[0038] The present utility model will be further described in detail below with reference to the accompanying drawings. It should be noted that the terms "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the terms "inner" and "outer" respectively refer to the directions towards or away from the geometric center of a specific component.
[0039] Figures 1 to 4 A low-noise intelligent oxygen chamber according to an embodiment of the present utility model is schematically shown. As shown in the figure, the low-noise intelligent oxygen chamber includes: a chamber body 1, a chamber door 2, an inner partition board 3, an integrated control unit 4, a monitoring sensor group 5, and an operation unit 6;
[0040] The chamber body 1 includes a hollow outer shell 10 made of sound insulation material. There is an access port 100 at the front end of the outer shell 10, and a connection step 101 is provided at the lower end of the inner cavity;
[0041] The chamber door 2 is made of sound insulation glass and is installed on the access port 100 in an openable manner;
[0042] An inner partition board 3 is provided with a sound absorption and noise reduction isolation layer 30 made of sound absorption material. The inner partition board 3 is detachably and hermetically connected to the connection step 101. The inner partition board 3, the chamber body 1, and the chamber door 2 form an openable or closed silent oxygen chamber 102. Below the inner partition board 3 and below the chamber body 1 is a control room 103;
[0043] The integrated control unit 4 and the oxygen generation module 7, pressurization module 8, and temperature control module 9 electrically connected to the integrated control unit 4 are installed in the control room 103. The oxygen generation module 7, pressurization module 8, and temperature control module 9 are respectively connected to the silent oxygen chamber 102 through pipelines;
[0044] The monitoring sensor group 5 is installed in the silent oxygen chamber 102. The monitoring sensor group 5 is electrically connected to the integrated control unit 4. The monitoring sensor group 5 monitors the pressure, temperature, and oxygen enrichment concentration data in real time and feeds them back to the integrated control unit 4. The integrated control unit 4 controls the operation or opening and closing of the oxygen generation module 7, pressurization module 8, and temperature control module 9, so that the temperature, pressure, and oxygen enrichment concentration in the silent oxygen chamber 102 are at the set values;
[0045] The operation unit 6 is installed on the inner side of the chamber body 1. The operation unit 6 is electrically connected to the integrated control unit 4 to set the operating parameters and open and close.
[0046] The beneficial effects of this low-noise intelligent oxygen cabin are: first, a silent oxygen chamber 102 is formed by a cabin body 1 made of sound-proof material, a cabin door 2 made of sound-proof glass, and an inner isolation board 3 made of sound-absorbing material. The inner isolation board 3 strongly absorbs the noise generated by the sound source below, and the cabin door 2 and the cabin body 1 are soundproofed, which can achieve a good silent effect for a long time, so that the people in the cabin can achieve immersive treatment with good medical effects; second, the integrated control unit 4 and the monitoring sensor group 5 control the operation of each module in real time, so that the silent oxygen chamber 102 maintains a medical environment of constant temperature, constant pressure and constant oxygen, and achieves good medical effects; third, the inner isolation board 3 is detachably and sealedly connected to the connecting step 101, and there is no gap at the connection, and there is no leakage or silent blind spot.
[0047] Furthermore, the cabin door 2 includes two layers of soundproof glass 21, the four sides of the two layers of soundproof glass 21 are connected by frame glue 22 and support units 24 of flexible support points or star-shaped support frames are evenly arranged in the middle. Preferably, the cabin door 2 also includes tempered glass 20, and the tempered glass 20 is connected to the outer layer of soundproof glass 21 through a sound insulation damping layer 23. The sound insulation damping layer 23 can be preferably set to any one of the three: sound insulation damping glue, sound insulation film and PVB intermediate film. The beneficial effect is that the cabin door 2 with this setting has a good medical effect
[0048] Furthermore, the connecting step 101 is a right-angle step, the inner isolation plate 3 and the connecting step 101 have the same profile and size, and an elastic sound-insulating rubber pad 11 is provided between the right-angle step and the inner isolation plate 3 .
[0049] Preferably, the inner isolation plate 3 comprises a sound-absorbing and noise-reducing isolation layer 30, a first protective layer 31 and a second protective layer 32. The sound-absorbing and noise-reducing isolation layer 30 is clamped and connected between the first protective layer 31 and the second protective layer 32. The first protective layer 31 and the second protective layer 32 are threaded or clamped at four corners. The beneficial effect is that the above arrangement can realize the seamless installation of the inner isolation plate 3 and has a good sound-absorbing effect.
[0050] Preferably, the cabin 1 is made of any one of plastic steel, carbon fiber and metal materials with high strength and high sound insulation performance;
[0051] Preferably, the sound-absorbing and noise-reducing isolation layer 30 is one or more of butyl rubber damping board, sound-absorbing and heat-insulating cotton, mineral wool sound-absorbing board, polyurethane foam board, polyester fiber sound-absorbing board, which are stacked on each other. The beneficial effect is that the above arrangement has a good sound-absorbing effect.
[0052] Furthermore, the seat 12 built into the cabin 1 is fixedly connected to the first protective layer 31 of the inner isolation plate 3 above by a metal bracket; preferably, the headrest of the seat 12 is provided with a speaker, and a hidden display screen is provided in a side handle of the seat 12, so that the user can listen to music and watch videos at the same time.
[0053] Furthermore, the monitoring sensor group 5 includes an air pressure sensor, an air humidity sensor, an oxygen enrichment concentration sensor, and a temperature sensor;
[0054] The integrated control unit 4 is also electrically connected to an air humidity adjustment module, a negative ion generator; as well as a carbon dioxide detection module inside the oxygen chamber, an air quality detection and circulation control module inside the oxygen chamber, a noise control module inside the oxygen chamber, an electric and manual dual-purpose module for the oxygen chamber door, a pressure detection module for the oxygen chamber, an immediate constant and adjustment module for the oxygen chamber pressure, a sterilization and disinfection module, a lighting and audio-visual entertainment control module inside the oxygen chamber, a seat adjustment module inside the oxygen chamber, an immediate communication call module inside and outside the oxygen chamber, an electronic voice prompt and warning module for oxygen chamber use, a usage times and time statistics module for the oxygen chamber, and a remote network control module for the oxygen chamber;
[0055] Among them, the pressure range is 1.01 - 1.8 ATM, the pressure can be adjusted and selected in grades, air pressurization, and independent oxygen generation and supply;
[0056] Preferably, the signal source of the integrated control unit 4 adopts wired transmission or Bluetooth transmission.
[0057] Preferably, the operation unit 6 is two touch LED screens, one LED screen is placed inside the cabin body 1 and the other LED screen is placed outside the cabin; it is convenient for the user to use and the caregiver to timely understand the usage situation;
[0058] The integrated control unit 4 is provided with a dedicated operating system inside or outside the cabin to enable direct voice conversations between the people inside and outside the cabin,
[0059] A camera is installed inside the cabin body 1, and the system operator can observe the conditions of the people inside the cabin at any time on-site or remotely through the network;
[0060] The cabin body 1 is connected to 4G and 5G networks and has a backup power supply. In case of special circumstances, it can contact the outside world at any time.
[0061] Furthermore, the cabin body 1 is also provided with an overpressure automatic pressure relief valve 13, an emergency manual pressure relief valve, and an emergency stop module that communicate with the silent oxygen chamber 102.
[0062] Furthermore, the upper end of the cabin body 1 is a cylindrical shell with a hollow interior, and the lower end is integrally connected to the cabin seat 14.
[0063] The above are only some embodiments of the present invention. For those of ordinary skill in the art, without departing from the creative concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention.
Claims
1. An intelligent oxygen chamber with low noise, characterized in that, Including: a cabin body (1), a cabin door (2), an inner partition board (3), an integrated control unit (4), a monitoring sensor group (5), and an operation unit (6); The cabin body (1) includes a hollow outer shell (10) made of sound insulation material. At the front end of the outer shell (10), there is an access port (100), and at the lower end of the inner cavity, there is a connecting step (101); The cabin door (2) is made of sound insulation glass and is openably installed at the access port (100); An acoustic noise reduction isolation layer (30) made of sound absorption material is arranged inside the inner partition board (3). The inner partition board (3) is detachably and sealingly connected to the connecting step (101). The inner partition board (3), the cabin body (1), and the cabin door (2) form an openable or closable silent oxygen chamber (102). Below the inner partition board (3) and below the cabin body (1) is a control room (103); The integrated control unit (4), and an oxygen generation module (7), a pressurization module (8), and a temperature control module (9) electrically connected to the integrated control unit (4) are installed in the control room (103). The oxygen generation module (7), the pressurization module (8), and the temperature control module (9) are respectively connected to the silent oxygen chamber (102) through pipelines; The monitoring sensor group (5) is installed in the silent oxygen chamber (102). The monitoring sensor group (5) is electrically connected to the integrated control unit (4). The monitoring sensor group (5) monitors the pressure, temperature, and oxygen enrichment concentration data in real time and feeds them back to the integrated control unit (4). The integrated control unit (4) controls the operation or opening and closing of the oxygen generation module (7), the pressurization module (8), and the temperature control module (9) so that the temperature, pressure, and oxygen enrichment concentration in the silent oxygen chamber (102) are at the set values; The operation unit (6) is installed on the inner side of the cabin body (1) and is electrically connected to the integrated control unit (4).
2. The intelligent oxygen chamber with low noise according to claim 1, characterized in that, The cabin door (2) includes two layers of sound insulation glass (21). The four sides of the two layers of sound insulation glass (21) are connected by a frame adhesive (22), and a support unit (24) with flexible support points or a star-shaped support frame is evenly arranged in the middle.
3. The intelligent oxygen chamber with low noise according to claim 2, characterized in that, The cabin door (2) further includes tempered glass (20). The tempered glass (20) is connected to the outer layer of the sound insulation glass (21) through a sound insulation damping layer (23), Or the sound insulation damping layer (23) is any one of sound insulation damping glue, sound insulation film, and PVB interlayer film.
4. The intelligent oxygen chamber with low noise according to claim 1, characterized in that The connecting step (101) is a right-angle step, and an elastic sound insulation rubber pad (11) is further arranged between the right-angle step and the inner partition board (3).
5. The intelligent oxygen chamber with low noise according to claim 1, characterized in that The inner partition board (3) includes an acoustic noise reduction isolation layer (30), a first protective layer (31), and a second protective layer (32). The acoustic noise reduction isolation layer (30) is clamped and connected between the first protective layer (31) and the second protective layer (32).
6. A low-noise intelligent oxygen chamber according to claim 1 or 5, characterized in that The cabin body (1) is any one of high-strength and high-sound insulation performance plastic steel, carbon fiber, and metal materials; Or the sound deadening, noise reduction and isolation layer (30) is one or more of a butyl rubber damping plate, a sound deadening and heat insulating cotton, a mineral wool sound absorbing board, a polyurethane foam board, and a polyester fiber sound absorbing board, which are laminated with each other.
7. The intelligent oxygen chamber with low noise according to claim 1, characterized in that, The seat (12) built in the cabin body (1) is fixedly connected to the first protective layer (31) of the inner isolation board (3) above through a metal bracket; Or the headrest of the seat (12) is provided with a speaker, and a hidden display screen is arranged inside one side handle of the seat (12), so that the user can listen to music and watch videos at the same time.
8. The intelligent oxygen chamber with low noise according to claim 1, characterized in that, The monitoring sensor group (5) includes an air pressure sensor, an air humidity sensor, an oxygen enrichment concentration sensor, and a temperature sensor; The integrated control unit (4) is also electrically connected to an air humidity adjustment module and a negative ion generator; Or the signal source of the integrated control unit (4) adopts wired transmission or Bluetooth transmission.
9. The intelligent oxygen chamber with low noise according to claim 1, characterized in that, The operation unit (6) is two touch-type LED screens, one LED screen is placed inside the upper part of the cabin body (1), and the other LED screen is placed outside the cabin; Or the integrated control unit (4) is provided with a dedicated operating system inside or outside the cabin to enable direct voice conversations between the personnel inside and outside the cabin, Or a camera is arranged inside the cabin body (1), the cabin body (1) is connected to 4G and 5G networks, and a backup power supply is provided.
10. The intelligent oxygen chamber with low noise according to claim 1, characterized in that, The cabin body (1) is also provided with an overpressure automatic pressure relief valve (13), an emergency manual pressure relief valve, and an emergency stop module that communicate with the silent oxygen chamber (102).
Citation Information
Cited By
Multi-person oxygen-enriched cabin for organism recovery
CN224655574U