Vehicle

By installing an oxygen generator inside the vehicle's dashboard and using a magnetic suction device and roller structure for stable installation, the problem of fatigue caused by hypoxia during high-altitude driving is solved, driving safety and comfort are improved, and the utilization of interior space is optimized.

CN223750619UActive Publication Date: 2026-01-02GREAT WALL MOTOR CO LTD
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Patent Information

Application Number
CN202520466677.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-01-02
Estimated Expiration
2035-03-17

AI Technical Summary

Technical Problem

When driving in high-altitude or plateau regions, users are prone to hypoxia, which can lead to driver fatigue, dizziness, and loss of concentration, increasing the risk of traffic accidents. Existing vehicles lack effective oxygen generation devices, reducing safety and comfort.

Method used

An oxygen generator is installed in the vehicle's dashboard, supplying oxygen to the living body through an oxygen delivery system. The system is secured by a magnetic suction device and a roller structure, simplifying operation. It is connected to the oxygen supply connector via an adapter pipe, ensuring the connectivity and convenience of the oxygen supply.

Benefits of technology

It effectively avoids driving fatigue and lack of concentration caused by hypoxia, improves driving safety and passenger comfort, and optimizes the use of interior space, enhancing user experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a vehicle, and relates to the technical field of vehicles, and the vehicle comprises an auxiliary instrument desk; at least part of the oxygen generation device is installed in the auxiliary instrument desk, the oxygen generation device is provided with an oxygen supply connector, the oxygen supply connector is connected with the oxygen supply connector to supply oxygen to the living body, oxygen deficit of a user in the vehicle driving and taking process can be avoided, and then the problems of driving fatigue, dizziness, inattention and the like caused by oxygen deficit are effectively avoided; and at least part of the oxygen generating device is installed in the auxiliary instrument desk, so that the space in the vehicle is effectively utilized, the situation that a luggage compartment or other areas of the compartment are additionally occupied is avoided, and the space in the vehicle is wider and neater.
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Description

TECHNICAL FIELD

[0001] The utility model relates to vehicle technical field especially is related to a vehicle. BACKGROUND

[0002] In the related art, more and more users drive to go self-driving, when the user drives to the plateau, high altitude area to play, there can be hypoxia reaction, drive under the condition of hypoxia is very tired, not only reduce the user's vehicle comfort, also can cause the traffic accident that can avoid to happen because of the unresponsive hands and feet, therefore, the vehicle does not have the vehicle-mounted oxygen generator device greatly reduces the safety of user. SUMMARY

[0003] The utility model discloses at least one of the technical problems in the prior art is solved, for this, one purpose of the utility model is to propose a vehicle, has oxygen generator device and oxygen supply part, can be used to supply oxygen to living body, to avoid the user hypoxia in the process of driving and riding vehicle, and then effectively avoid the driving fatigue, dizziness, inattentive etc. caused by hypoxia, thereby improve driving safety and ride comfort.

[0004] According to the vehicle of the utility model embodiment, at least part of the oxygen generator device is installed in the vice instrument desk, the oxygen generator device has the oxygen supply connector, and the oxygen supply part is connected with the oxygen supply connector to supply oxygen to the living body.

[0005] According to the vehicle of the utility model embodiment, at least part of the oxygen generator device is installed in the vice instrument desk, the oxygen generator device has the oxygen supply connector, and the oxygen supply part is connected with the oxygen supply connector to supply oxygen to the living body, can avoid the user hypoxia in the process of driving and riding vehicle, and then effectively avoid the driving fatigue, dizziness, inattentive etc. caused by hypoxia, thereby improve driving safety and ride comfort, and at least part of the oxygen generator device is installed in the vice instrument desk, effectively utilize the space inside the vehicle, avoid the extra occupation of luggage compartment or other area of car compartment, make the more spacious and neat in the car space.

[0006] According to some embodiments of the utility model, the vice instrument desk is formed with the installation space, the rear end of the installation space is open along the length direction of the vehicle, the oxygen generator device can be installed in the installation space through the open end of the installation space, and the oxygen generator device can also be removed from the installation space through the open end of the installation space.

[0007] According to some embodiments of the utility model, the vehicle further comprises: a magnetic attraction device, the magnetic attraction device is fixedly arranged in the installation space, and the magnetic attraction device is selectively magnetically attracted to the oxygen generator device to lock or unlock the oxygen generator device.

[0008] According to some embodiments of the utility model, the space bottom wall of the installation space is provided with a magnetic attraction device, the space bottom wall is further formed with a locking groove which is open towards the installation space, the oxygen generating device is provided with a roller structure which is movable along the height direction of the vehicle, and the magnetic attraction device is suitable for magnetic attraction cooperation with the roller structure to enable the roller structure to be assembled in the locking groove to lock the oxygen generating device.

[0009] According to some embodiments of the utility model, the roller structure comprises: a mounting shaft and a roller, the mounting shaft is movably arranged on the bottom wall of the oxygen generating device along the height direction of the vehicle, the roller is sleeved on the mounting shaft and is rotatable relative to the mounting shaft, and the magnetic attraction device is suitable for magnetic attraction cooperation with the mounting shaft to enable the roller to be assembled in the locking groove.

[0010] According to some embodiments of the utility model, the bottom wall of the oxygen generating device is formed with an installation groove which is open towards the space bottom wall, the mounting shaft is installed in the installation groove, part of the roller extends out of the installation groove through the open end of the installation groove, the oxygen generating device is provided with a damping elastic member, and the damping elastic member is assembled between the mounting shaft and the top wall of the installation groove.

[0011] According to some embodiments of the utility model, the inner side wall of the installation groove has a first inner side wall and a second inner side wall, the first inner side wall and the second inner side wall are opposite and spaced apart along the width direction of the vehicle, the first inner side wall and the second inner side wall are both formed with a guide groove which extends along the height direction of the vehicle, and the two ends of the mounting shaft are respectively assembled in the guide groove of the first inner side wall and the guide groove of the second inner side wall.

[0012] According to some embodiments of the utility model, the vehicle further comprises: a locking switch, the installation space has an installation side wall which is opposite to the open end of the installation space, the locking switch is movably installed on the installation side wall along the length direction of the vehicle, at least part of the locking switch is located in the installation space and is in communication connection with the magnetic attraction device, in the case that the oxygen generating device is assembled into the installation space, the oxygen generating device and the locking switch abut to drive the locking switch to move towards the installation side wall, so that the locking switch triggers the magnetic attraction device to be in magnetic attraction cooperation with the oxygen generating device.

[0013] According to some embodiments of the utility model, the vehicle further comprises: an unlocking switch, the unlocking switch is configured to be de-energized in the case of being triggered, and to move the locking switch into the installation space to push the oxygen generating device out of the installation space.

[0014] According to some embodiments of the utility model, the vehicle further comprises: an adapter pipe, along the width direction of the vehicle, the installation space has opposite first and second side walls, at least one of the first and second side walls is formed with an assembly hole, under the condition that the oxygen generating device is assembled in the installation space, the assembly hole is arranged opposite to the corresponding oxygen supply joint, the adapter pipe is assembled in the corresponding assembly hole, the adapter pipe connects the corresponding oxygen supply joint and the corresponding oxygen supply joint to communicate the corresponding oxygen supply joint and the corresponding oxygen supply joint, and the adapter pipe is movable along the width direction of the vehicle to connect or separate from the corresponding oxygen supply joint.

[0015] Additional aspects and advantages of the utility model will be partially given in the following description, some will become obvious from the following description, or be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0016] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, in which:

[0017] Figure 1 is the assembly schematic view of the vice instrument desk, the oxygen generating device and the main driver seat of the utility model embodiment;

[0018] Figure 2 is the assembly schematic view of the vice instrument desk and the main driver seat of the utility model embodiment;

[0019] Figure 3 is Figure 2 the enlarged schematic view of A in

[0020] Figure 4 is Figure 2 another view of

[0021] Figure 5 is the structure schematic view of the oxygen generating device of the utility model embodiment;

[0022] Figure 6 is the structure schematic view of the adapter pipe of the utility model embodiment.

[0023] REFERENCE SIGNS:

[0024] Vehicle 100;

[0025] Vice instrument desk 10;Installation space 11;Locking groove 12;Installation side wall 13;First side wall 14;Second side wall 15;Assembly hole 16;Space bottom wall 17;

[0026] Oxygen generating device 20;Oxygen supply joint 21;

[0027] Roller structure 22;Mounting shaft 221;Roller 222;

[0028] mounting groove 23; first inner side wall 231; second inner side wall 232; guide groove 233;

[0029] damping elastic member 24;

[0030] oxygen supply member 30;

[0031] magnetic attraction device 40;

[0032] locking switch 50;

[0033] unlocking switch 60;

[0034] adapting pipe 70; driving member 71; running support 72;

[0035] main driver seat 80; oxygen supply mask 81. DETAILED DESCRIPTION

[0036] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the present application, and cannot be understood as a limitation of the present application.

[0037] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, only for explaining the present application, and cannot be understood as a limitation of the present application. Figures 1-6 The vehicle 100 according to the embodiments of the present application is described below, comprising: a sub-instrument desk 10; an oxygen production device 20 and an oxygen supply member 30, at least part of the oxygen production device 20 is installed in the sub-instrument desk 10, the oxygen production device 20 has an oxygen supply connector 21, the oxygen supply member 30 and the oxygen supply connector 21 are connected to supply oxygen to a living body.

[0038] For example, the oxygen production device 20 comprises: Figure 1The X direction shown is the length direction of the vehicle, and the Y direction is the width direction of the vehicle. At least part of the oxygen generating device 20 is installed in the auxiliary instrument panel 10. In some embodiments of the present application, the oxygen generating device 20 can have one-half, one-third, or the like proportion of the part installed in the auxiliary instrument panel 10, but the present application is not limited thereto, and the oxygen generating device 20 can also be entirely installed in the auxiliary instrument panel 10, as long as at least part of the oxygen generating device 20 is installed in the auxiliary instrument panel 10. Installing at least part of the oxygen generating device 20 in the auxiliary instrument panel 10 effectively utilizes the space inside the vehicle 100, avoids additional occupation of the luggage compartment or other areas of the vehicle cabin, and makes the vehicle space more spacious and tidy. The auxiliary instrument panel 10 is part of the interior of the vehicle 100, and its structure and position facilitate the installation and fixation of the oxygen generating device 20, and also facilitate the maintenance and replacement of the oxygen generating device 20 in the later stage. The oxygen generating device 20 has an oxygen supply connector 21, and the oxygen supply connector 21 is connected to the oxygen supply member 30 to supply oxygen to a living body (the living body can be a human passenger, a pet, and other animals). The oxygen generating device 20 can provide sufficient oxygen supply for the user during long-distance driving or high-altitude driving, effectively alleviate the fatigue of the driver, and improve the driving experience and safety. For passengers with respiratory diseases or high-altitude reactions, the oxygen generating device 20 can provide timely oxygen therapy to protect their health and safety.

[0039] Therefore, the technology of integrating the oxygen generating device 20 and the oxygen supply member 30 in the auxiliary instrument panel 10 of the vehicle 100 has the effects of significant space optimization, safety, reliability, comfort, and health protection, and improves the practicability of the vehicle 100 and the driving experience of the driver, and also provides a strong guarantee for the health and safety of the passengers.

[0040] According to the vehicle 100 of the embodiment of the present application, at least part of the oxygen generating device 20 is installed in the auxiliary instrument panel 10, the oxygen generating device 20 has an oxygen supply connector 21, and the oxygen supply connector 21 is connected to the oxygen supply member 30 to supply oxygen to a living body. This can avoid oxygen deficiency of the user during driving, thereby effectively avoiding problems such as driving fatigue, dizziness, and lack of concentration caused by oxygen deficiency, thereby improving driving safety and comfort. Moreover, at least part of the oxygen generating device 20 is installed in the auxiliary instrument panel 10, which effectively utilizes the space inside the vehicle 100, avoids additional occupation of the luggage compartment or other areas of the vehicle cabin, and makes the vehicle space more spacious and tidy.

[0041] According to some embodiments of the present application, as shown in Figure 1 and Figure 2 The auxiliary instrument panel 10 can form an installation space 11. The rear end of the installation space 11 is open along the length direction of the vehicle 100. The oxygen generating device 20 can be installed in the installation space 11 through the open end of the installation space 11, and the oxygen generating device 20 can also be removed from the installation space 11 through the open end of the installation space 11.

[0042] The auxiliary instrument desk 10 can be formed with a mounting space 11, the rear end of the mounting space 11 is open along the length direction of the vehicle 100, and it can be explained that the rear end of the mounting space 11 is the end towards the tail along the length direction of the vehicle 100.

[0043] The rear end of the mounting space 11 is open, and the shape and size of the mounting space 11 can be matched with the oxygen generating device 20, so that the oxygen generating device 20 can be installed in the mounting space 11 through the open end of the mounting space 11, and the oxygen generating device 20 can also be removed from the mounting space 11 through the open end of the mounting space 11, so that the oxygen generating device 20 is more easily installed, maintained or replaced, without disassembling the entire auxiliary instrument desk 10, improving the maintenance efficiency. And make full use of the space inside the auxiliary instrument desk 10, provide a suitable installation position for the oxygen generating device 20, avoid occupying other space of the vehicle 100, the oxygen generating device 20 is hidden in the auxiliary instrument desk 10, so that the inside of the vehicle 100 is more clean and beautiful, improve the driving and riding experience.

[0044] According to some embodiments of the present application, as shown in Figure 3 The vehicle 100 can further include a magnetic attraction device 40, the magnetic attraction device 40 is fixedly arranged in the mounting space 11, and the magnetic attraction device 40 is selectively magnetically attracted to the oxygen generating device 20 to lock or unlock the oxygen generating device 20.

[0045] The magnetic attraction device 40 is fixedly arranged in the mounting space 11, the oxygen generating device 20 is installed in the mounting space 11, and the magnetic attraction device 40 is selectively magnetically attracted to the oxygen generating device 20 to lock or unlock the oxygen generating device 20, which can selectively lock the oxygen generating device 20 in the mounting space 11 or unlock the oxygen generating device 20 from the mounting space 11. The magnetic attraction device 40 firmly adsorbs the oxygen generating device 20 in the mounting space 11 through strong magnetic force, effectively prevents the oxygen generating device 20 from shaking or falling off during the driving of the vehicle 100, not only improves the use safety of the oxygen generating device 20, but also reduces the noise and vibration caused by shaking.

[0046] It can be explained that the magnetic attraction device 40 can be arranged on the space bottom wall 17 or the mounting side wall 13 of the mounting space 11, as long as the magnetic attraction device 40 can be magnetically attracted to the oxygen generating device 20.

[0047] According to some embodiments of the present application, as shown in Figure 3As shown, the space bottom wall 17 of the mounting space 11 is provided with a magnetic attraction device 40, and the space bottom wall 17 is also formed with a locking groove 12 open to the mounting space 11. The oxygen generator 20 has a roller structure 22 movable along the height direction of the vehicle 100. The magnetic attraction device 40 is adapted to be magnetically attracted to the roller structure 22 to enable the roller structure 22 to be assembled in the locking groove 12, so as to lock the oxygen generator 20.

[0048] In some embodiments of the present application, the space bottom wall 17 and the magnetic attraction device 40 can be fixedly connected by bonding or clamping, but the present application is not limited thereto, as long as the space bottom wall 17 of the mounting space 11 is provided with the magnetic attraction device 40. The space bottom wall 17 is also formed with a locking groove 12 open to the mounting space 11. The oxygen generator 20 has a roller structure 22 movable along the height direction of the vehicle 100. The roller structure 22 can be provided with a magnetic attraction member magnetically attracted to the magnetic attraction device 40, so that the magnetic attraction device 40 is adapted to be magnetically attracted to the roller structure 22 to enable the roller structure 22 to be assembled in the locking groove 12, so as to lock the oxygen generator 20, thereby providing stable support and fixation for the oxygen generator 20. Even if the vehicle 100 encounters bumps or sudden braking during driving, the oxygen generator 20 can be stably installed in the mounting space 11 without shaking, ensuring the safety of the oxygen generator 20. The locking groove 12 can also limit the roller structure 22 to prevent accidental disengagement, further enhancing the reliability of the oxygen generator 20.

[0049] The cooperation of the roller structure 22 and the magnetic attraction device 40 makes the installation and disassembly of the oxygen generator 20 extremely simple. By pushing the oxygen generator 20 into the mounting space 11, the roller structure 22 slides into the locking groove 12 and is attracted to the magnetic attraction device 40, thereby completing the installation of the oxygen generator 20. Similarly, when disassembling, the roller structure 22 and the magnetic attraction device 40 are separated and the oxygen generator 20 is pushed or pulled, and the roller structure 22 is disengaged from the locking groove 12, thereby achieving unlocking. This provides users with a more convenient and automated operation experience, without the need for tedious manual operation to complete the installation and disassembly of the oxygen generator 20.

[0050] According to some embodiments of the present application, as shown in Figure 3 The roller structure 22 can include a mounting shaft 221 and a roller 222. The mounting shaft 221 is movably arranged on the bottom wall of the oxygen generator 20 along the height direction of the vehicle 100. The roller 222 is sleeved on the mounting shaft 221 and is rotatable relative to the mounting shaft 221. The magnetic attraction device 40 is adapted to be magnetically attracted to the mounting shaft 221 to enable the roller 222 to be assembled in the locking groove 12.

[0051] The mounting shaft 221 is movably arranged on the bottom wall of the oxygen generating device 20 along the height direction of the vehicle 100, allowing the oxygen generating device 20 to be adjusted in the mounting space 11 along the height direction of the vehicle 100, and the roller 222 is sleeved on the mounting shaft 221 and rotatable relative to the mounting shaft 221, so that the oxygen generating device 20 can move in the mounting space 11 along the length direction of the vehicle 100, and the magnetic attraction device 40 is adapted to be magnetically attracted to the mounting shaft 221 to enable the roller 222 to be fitted in the locking groove 12.

[0052] Specifically, when installing the oxygen generating device 20, the roller 222 is driven to move along the length direction of the vehicle 100 to push the oxygen generating device 20 into the mounting space 11, and then the roller structure 22 is close to the locking groove 12, the magnetic attraction device 40 is magnetically attracted to the mounting shaft 221 to enable the roller 222 to fall into the locking groove 12, so that the roller 222 can be locked, and the oxygen generating device 20 can be firmly installed in the mounting space 11, which is flexible and convenient, avoids the cumbersome operation of the traditional screw fixing method, and greatly saves the installation and disassembly time and effort. The relative rotation design of the roller 222 and the mounting shaft 221 reduces the noise generated when the oxygen generating device 20 moves in the mounting space 11, and improves the user experience.

[0053] According to some embodiments of the present application, as shown in Figure 5 The bottom wall of the oxygen generating device 20 can be formed with a mounting groove 23 open toward the space bottom wall 17, the mounting shaft 221 is installed in the mounting groove 23, part of the roller 222 extends out of the mounting groove 23 through the open end of the mounting groove 23, the oxygen generating device 20 has a damping elastic member 24, and the damping elastic member 24 is fitted between the mounting shaft 221 and the top wall of the mounting groove 23.

[0054] The bottom wall of the oxygen generating device 20 can be formed with a mounting groove 23 open toward the space bottom wall 17, the mounting shaft 221 is installed in the mounting groove 23, part of the roller 222 extends out of the mounting groove 23 through the open end of the mounting groove 23, the oxygen generating device 20 has a damping elastic member 24, and the damping elastic member 24 is fitted between the mounting shaft 221 and the top wall of the mounting groove 23.

[0055] The oxygen generating device 20 can have a damping elastic member 24 which can be configured as a spring, rubber or other elastic member, and is fitted between the mounting shaft 221 and the top wall of the mounting groove 23, so as to effectively absorb the vibration and impact generated by the oxygen generating device 20 during operation, thereby reducing noise and preventing equipment damage. Through the buffering effect of the damping elastic member 24, the oxygen generating device 20 can be kept more stable during placement or movement, avoiding equipment displacement or damage caused by vibration or impact. Directly designing the mounting groove 23 on the bottom wall of the oxygen generating device 20 not only saves the space required for additional installation of the roller 222 and the damping device, but also makes the oxygen generating device 20 more compact.

[0056] According to some embodiments of the present application, as shown in Figure 5 The inner side wall of the mounting groove 23 has a first inner side wall 231 and a second inner side wall 232, which are opposite and spaced apart along the width direction of the vehicle 100, and the first inner side wall 231 and the second inner side wall 232 are both formed with a guide groove 233 extending along the height direction of the vehicle 100, and the two ends of the mounting shaft 221 are respectively fitted into the guide grooves 233 of the first inner side wall 231 and the second inner side wall 232.

[0057] Among them, the design of the guide groove 233 makes the mounting shaft 221 can be accurately fitted to the predetermined position, avoiding the position deviation in the installation process, the guide groove 233 extends along the height direction of the vehicle 100, so that the extension direction of the guide groove 233 is consistent with the moving direction of the damping elastic member 24, providing a stable guide path for the damping elastic member 24, which can make the damping elastic member 24 play a damping effect on the mounting shaft 221, improve the stability and reliability of the oxygen generating device 20.

[0058] The design of the guide groove 233 can enhance the carrying capacity of the mounting shaft 221 and the damping elastic member 24, so that the oxygen generating device 20 can remain stable when subjected to the vibration and impact of the vehicle 100, and through the stable guiding effect of the guide groove 233, the wear and fatigue damage of the damping elastic member 24 and the mounting shaft 221 can be reduced, thereby prolonging the service life.

[0059] According to some embodiments of the present application, as shown in Figure 4As shown, the vehicle 100 further comprises: a locking switch 50, the mounting space 11 has a mounting side wall 13 opposite to the open end of the mounting space 11, the locking switch 50 is movably mounted to the mounting side wall 13 along the length direction of the vehicle 100, at least part of the locking switch 50 is located in the mounting space 11 and is in communication connection with the magnetic attraction device 40, in the case of assembling the oxygen generating device 20 into the mounting space 11, the oxygen generating device 20 abuts against the locking switch 50 to drive the locking switch 50 to move to the mounting side wall 13, so that the locking switch 50 triggers the magnetic attraction device 40 to be magnetically attracted to the oxygen generating device 20.

[0060] In some embodiments of the present application, at least part of the locking switch 50 is located in the mounting space 11, and in some embodiments of the present application, the locking switch 50 can have one-half, one-third, one-fourth, etc. Proportion of the locking switch 50 is located in the mounting space 11, but the present application is not limited thereto, and the locking switch 50 can also have other proportions located in the mounting space 11, as long as at least part of the locking switch 50 is located in the mounting space 11. The locking switch 50 can be provided through the mounting side wall 13, and the locking switch 50 is movably mounted to the mounting side wall 13 along the length direction of the vehicle 100, which can make the locking switch 50 extend out of the mounting side wall 13 or retract into the mounting side wall 13, thereby ensuring that the oxygen generating device 20 accurately abuts against the locking switch 50 to trigger the magnetic attraction device 40 to realize stable fixing or dismounting of the oxygen generating device 20.

[0061] The locking switch 50 and the magnetic attraction device 40 can be in communication connection through a wire harness, or the locking switch 50 and the magnetic attraction device 40 can be in wireless communication connection, as long as the locking switch 50 and the magnetic attraction device 40 are in communication connection. In the case of assembling the oxygen generating device 20 into the mounting space 11, the oxygen generating device 20 abuts against the locking switch 50 to drive the locking switch 50 to move to the mounting side wall 13, so that the locking switch 50 triggers the magnetic attraction device 40 to be magnetically attracted to the oxygen generating device 20, which can stably mount the oxygen generating device 20 in the mounting space 11. The locking switch 50 triggers the magnetic attraction device 40 to be magnetically attracted to the oxygen generating device 20, which provides strong fixing force and ensures that the oxygen generating device 20 is stable in the mounting space 11. The magnetic attraction mode reduces the risk of the oxygen generating device 20 falling off or moving due to vibration or impact, improves the stability and safety of assembly. The communication connection design of the locking switch 50 and the magnetic attraction device 40 also enables the connection to be easily disconnected and operated when the oxygen generating device 20 needs to be maintained or replaced, which helps to reduce the maintenance cost of the oxygen generating device 20 and improve the maintenance efficiency of the oxygen generating device 20.

[0062] According to some embodiments of the present application, as Figure 1As shown in the drawings, the vehicle 100 further comprises an unlocking switch 60 configured to, in the event of being triggered, power off the magnetic suction device 40 and move the locking switch 50 into the installation space 11 to push the oxygen generator 20 out of the installation space 11.

[0063] The unlocking switch 60 can be arranged on the auxiliary instrument desk 10, and the unlocking switch 60 can be configured as a button switch. In the event of being triggered, the unlocking switch 60 is configured to power off the magnetic suction device 40 and move the locking switch 50 into the installation space 11 to push the oxygen generator 20 out of the installation space 11.

[0064] Specifically, as an embodiment of the present application, the unlocking switch 60 can be in communication connection with the magnetic suction device 40, and the unlocking switch 60 can be in communication connection with the locking switch 50. When the unlocking switch 60 is triggered, the unlocking switch 60 controls the magnetic suction device 40 to be powered off while the unlocking switch 60 controls the locking switch 50 to move into the installation space 11 to push the oxygen generator 20 out of the installation space 11.

[0065] Alternatively, as another embodiment of the present application, the unlocking switch 60 can be in communication connection with the magnetic suction device 40, and the magnetic suction device 40 can be in communication connection with the locking switch 50. When the unlocking switch 60 is triggered, the magnetic suction device 40 is powered off while the locking switch 50 is controlled to move into the installation space 11 to push the oxygen generator 20 out of the installation space 11.

[0066] Therefore, the disassembly process of the oxygen generator 20 can be simplified. The user only needs to press the unlocking switch 60 on the auxiliary instrument desk 10 to trigger the magnetic suction device 40 to be powered off and the locking switch 50 to move at the same time, thereby realizing the disassembly of the oxygen generator 20 without the need for multiple steps or operations. The disassembled oxygen generator 20 can be conveniently stored in other positions of the vehicle 100 or used for transportation, improving the space utilization rate, and the installation space 11 can also be used to install other equipment, such as a refrigerator, a storage box, and the like.

[0067] According to some embodiments of the present application, as shown in Figure 5 and Figure 6 As shown in the drawings, the vehicle 100 can further comprise an adapter pipe 70. Along the width direction of the vehicle 100, the installation space 11 has opposite first and second side walls 14 and 15, at least one of the first and second side walls 14 and 15 is formed with a fitting hole 16, and the fitting hole 16 is arranged opposite to the corresponding oxygen supply connector 21 when the oxygen generator 20 is fitted in the installation space 11. The adapter pipe 70 is fitted in the corresponding fitting hole 16, the adapter pipe 70 connects the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21 to communicate the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21, and the adapter pipe 70 is movable along the width direction of the vehicle 100 to connect or separate from the corresponding oxygen supply connector 21.

[0068] At least one of the first side wall 14 and the second side wall 15 is formed with a fitting hole 16. In some embodiments of the present application, the first side wall 14 can be formed with the fitting hole 16, or the second side wall 15 can be formed with the fitting hole 16, or both the first side wall 14 and the second side wall 15 can be formed with the fitting hole 16, as long as at least one of the first side wall 14 and the second side wall 15 is formed with the fitting hole 16. The present application is described by taking the first side wall 14 as an example, which is the side wall close to the driver's seat 80. When the oxygen generating device 20 is fitted in the installation space 11, the fitting hole 16 is arranged opposite to the corresponding oxygen supply connector 21. The adapter pipe 70 is fitted in the corresponding fitting hole 16. The adapter pipe 70 connects the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21 to communicate the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21. The adapter pipe 70 is movable along the width direction of the vehicle 100 to connect or separate the corresponding oxygen supply connector 21.

[0069] When it is necessary to fit the oxygen generating device 20 in the installation space 11, the adapter pipe 70 can be driven to move along the width direction of the vehicle 100, so that the adapter pipe 70 connects the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21 to communicate the corresponding oxygen supply connector 21 and the corresponding oxygen supply connector 21, so that the corresponding oxygen supply connector 21 can deliver oxygen in the oxygen generating device 20 to the living body through the corresponding oxygen supply connector 21.

[0070] When it is necessary to remove the oxygen generating device 20 from the installation space 11, the adapter pipe 70 can be driven to move along the width direction of the vehicle 100, so that the adapter pipe 70 is separated from the corresponding oxygen supply connector 21, so as to avoid the interference between the adapter pipe 70 and the oxygen generating device 20, thereby limiting the movement of the oxygen generating device 20, and further enabling the oxygen generating device 20 to be smoothly removed from the installation space 11.

[0071] Further, as an example of the present application, the first side wall 14 can be the side wall close to the driver's seat 80. The first side wall 14 is formed with the fitting hole 16. The adapter pipe 70 is fitted in the corresponding fitting hole 16. The adapter pipe 70 is fixedly provided with a running bracket 72. The running bracket 72 is formed with a threaded hole. The first side wall 14 is fixedly provided with a driving member 71, which can be a motor, a motor, etc. As an example of the present application, the driving member 71 can be a motor. The motor includes a motor shaft. The motor shaft extends along the width direction of the vehicle 100. The motor shaft is threadedly connected with the running bracket 72. The motor can drive the motor shaft to rotate, so as to drive the running bracket 72 to drive the adapter pipe 70 to move along the width direction of the vehicle 100, thereby connecting or separating the adapter pipe 70 and the corresponding oxygen supply connector 21. Through the driving of the motor, the connection state of the adapter pipe 70 and the oxygen supply connector 21 can be automatically controlled, thereby facilitating the control of the oxygen generating device 20 of the vehicle 100.

[0072] The dismounting process of the oxygen supply device is as follows: the motor is controlled to drive the motor shaft to rotate to drive the running bracket 72 and the adapter pipe 70 connected with the running bracket 72 to move along the width direction of the vehicle 100 towards the main driver seat 80 to separate the adapter pipe 70 from the corresponding oxygen supply connector 21, the unlocking switch 60 is triggered to make the magnetic attraction device 40 lose power, and the locking switch 50 is moved into the installation space 11 to push the oxygen generator device 20 out of the installation space 11, thereby achieving the dismounting of the oxygen generator device 20.

[0073] The installation process of the oxygen supply device is as follows: the oxygen supply device is pushed into the installation space 11 to abut against the locking switch 50 to drive the locking switch 50 to move towards the installation side wall 13 to trigger the magnetic attraction device 40 to magnetically attract and cooperate with the oxygen generator device 20 to fix the oxygen generator device 20 in the installation space 11, and the motor is controlled to drive the motor shaft to rotate to drive the running bracket 72 and the adapter pipe 70 connected with the running bracket 72 to move along the width direction of the vehicle 100 towards the oxygen generator device 20 to connect the adapter pipe 70 with the corresponding oxygen supply connector 21, thereby installing the oxygen generator device 20 in the installation space 11. It should be noted that the adapter pipe 70 and the corresponding oxygen supply connector 21 can be connected by plugging, the inner diameter of the adapter pipe 70 is slightly larger than the outer diameter of the corresponding oxygen supply connector 21, and a sealing strip can be arranged on the inner wall of the adapter pipe 70, which can seal the gap between the adapter pipe 70 and the corresponding oxygen supply connector 21 when the corresponding oxygen supply connector 21 is plugged into the adapter pipe 70, thereby ensuring the sealing of the oxygen generator device 20.

[0074] Further, the oxygen supply connector 21 can be connected with the oxygen supply mask 81, which is directly worn by the passenger and used to receive and deliver oxygen to the passenger's nose or mouth through the air holes or valves on the oxygen supply mask 81 to ensure that the oxygen can be effectively delivered to the passenger's body. The oxygen supply connector 21, the oxygen supply mask 81 and the oxygen supply connector 21 can be multiple and one-to-one correspondence, which can be used to supply oxygen to multiple living beings (passengers, pets, etc.) in the vehicle, reflecting the flexibility and humanization of the oxygen generator device 20.

[0075] As an example of the present application, the oxygen supply connector 21 connected with the adapter pipe 70 can pass through the cushion, backrest and headrest of the main driver seat 80, and the oxygen supply mask 81 connected with the oxygen supply connector 21 is used to supply oxygen to the driver, thereby effectively avoiding the problems of driving fatigue, dizziness and lack of concentration caused by lack of oxygen, thereby improving the driving safety.

[0076] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0077] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A vehicle (100), characterized in that The application relates to a vehicle (100) comprising: a sub-instrument panel (10); an oxygen generating device (20) and an oxygen delivery member (30), at least a part of the oxygen generating device (20) being installed in the sub-instrument panel (10), the oxygen generating device (20) having an oxygen supply connector (21), and the oxygen delivery member (30) being connected to the oxygen supply connector (21) to supply oxygen to a living body.

2. The vehicle (100) according to claim 1, characterized in that The sub-instrument panel (10) is formed with an installation space (11) which is open at a rear end in a length direction of the vehicle (100), the oxygen generating device (20) being installed in the installation space (11) through the open end of the installation space (11), and the oxygen generating device (20) being removed from the installation space (11) through the open end of the installation space (11).

3. The vehicle (100) according to claim 2, characterized in that Further comprising: a magnetic attraction device (40) fixedly arranged in the installation space (11), the magnetic attraction device (40) being selectively magnetically attracted to the oxygen generating device (20) to lock or unlock the oxygen generating device (20).

4. The vehicle (100) according to claim 3, characterized in that A space bottom wall (17) of the installation space (11) is provided with the magnetic attraction device (40), the space bottom wall (17) being further formed with a locking groove (12) which is open towards the installation space (11), the oxygen generating device (20) being provided with a roller structure (22) which is movable in a height direction of the vehicle (100), the magnetic attraction device (40) being adapted to be magnetically attracted to the roller structure (22) to enable the roller structure (22) to be fitted in the locking groove (12) to lock the oxygen generating device (20).

5. The vehicle (100) according to claim 4, characterized in that The roller structure (22) comprises: an installation shaft (221) movably arranged in a bottom wall of the oxygen generating device (20) in the height direction of the vehicle (100), and a roller (222) sleeved on the installation shaft (221) and rotatable relative to the installation shaft (221), the magnetic attraction device (40) being adapted to be magnetically attracted to the installation shaft (221) to enable the roller (222) to be fitted in the locking groove (12).

6. The vehicle (100) according to claim 5, characterized in that A bottom wall of the oxygen generating device (20) is formed with an installation groove (23) which is open towards the space bottom wall (17), the installation shaft (221) being installed in the installation groove (23), a part of the roller (222) extending out of the installation groove (23) through an open end of the installation groove (23), the oxygen generating device (20) being provided with a shock-absorbing elastic member (24) fitted between the installation shaft (221) and a top wall of the installation groove (23).

7. The vehicle (100) according to claim 6, characterized in that The inner side wall of the mounting groove (23) has a first inner side wall (231) and a second inner side wall (232) opposite and spaced apart along the width direction of the vehicle (100), and the first inner side wall (231) and the second inner side wall (232) are each formed with a guide groove (233) extending along the height direction of the vehicle (100), and the two ends of the mounting shaft (221) are respectively fitted into the guide grooves (233) of the first inner side wall (231) and the second inner side wall (232).

8. The vehicle (100) according to any one of claims 3-7, characterized by Also comprising: A locking switch (50) is movably mounted on the mounting side wall (13) along the length direction of the vehicle (100), at least part of the locking switch (50) is located in the mounting space (11) and is in communication connection with the magnetic attraction device (40), when the oxygen generating device (20) is fitted into the mounting space (11), the oxygen generating device (20) abuts against the locking switch (50) to drive the locking switch (50) to move towards the mounting side wall (13), so that the locking switch (50) triggers the magnetic attraction device (40) to magnetically attract and cooperate with the oxygen generating device (20).

9. The vehicle (100) according to claim 8, characterized in that Also comprising: An unlocking switch (60) is configured to, when triggered, de-energize the magnetic attraction device (40) and move the locking switch (50) into the mounting space (11) to push the oxygen generating device (20) out of the mounting space (11).

10. The vehicle (100) according to any one of claims 3-7, characterized by Also comprising: An adapter pipe (70) is provided, and along the width direction of the vehicle (100), the mounting space (11) has opposite first and second side walls (14) and (15), at least one of the first and second side walls (14) and (15) is formed with a fitting hole (16), and when the oxygen generating device (20) is fitted into the mounting space (11), the fitting hole (16) is arranged opposite to the corresponding oxygen supply connector (21), the adapter pipe (70) is fitted into the corresponding fitting hole (16), the adapter pipe (70) connects the corresponding oxygen delivery member (30) and the corresponding oxygen supply connector (21) to communicate the corresponding oxygen delivery member (30) and the corresponding oxygen supply connector (21), and the adapter pipe (70) is movable along the width direction of the vehicle (100) to connect or disconnect with the corresponding oxygen supply connector (21).