Fatigue relieving device and vehicle

By separating the atomizing mechanism and the power module into different cavities in the fatigue relief device, the problem of water vapor or liquid affecting the battery is solved, thereby improving the device's service life and safety performance.

CN224057682UActive Publication Date: 2026-03-31GUANGZHOU AUTOMOBILE GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-06
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing fatigue relief devices, the water vapor or overflowing liquid generated by the atomizing mechanism can easily affect the battery in the same space, causing problems such as circuit aging or short circuits.

Method used

The atomizing mechanism and the power module are placed in different accommodating cavities. The interior of the box is divided into a first accommodating cavity and a second accommodating cavity by a partition plate to prevent water vapor generated by the atomizing mechanism from escaping or liquid from overflowing and affecting the power module.

Benefits of technology

This improves the lifespan and safety performance of the device, prevents water vapor or liquid generated by the atomizing mechanism from affecting the power module, and enhances the reliability and safety of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fatigue relieving device and a vehicle. The fatigue relieving device comprises a box body, an atomization mechanism and a power supply module, a first accommodating cavity and a second accommodating cavity are formed in the box body, and a water inlet hole and a water outlet hole are formed in the box body corresponding to the first accommodating cavity; the atomization mechanism is assembled in the first containing cavity and comprises a water storage tank and an atomization assembly, the water storage tank is connected with the water inlet hole, and the atomization assembly is connected with the water storage tank and the water outlet hole; the power module is assembled in the second containing cavity, and the power module is electrically connected with the atomization assembly. According to the fatigue relieving device, the atomization mechanism and the power module are arranged in the different containing cavities respectively, water vapor generated by the atomization mechanism can be prevented from escaping into the box body or liquid stored in the atomization mechanism can be prevented from overflowing into the box body to affect the power module, the service life of the device is prolonged, and the safety performance of the device is improved.
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Description

Technical Field

[0001] This utility model relates to the field of vehicle technology, and in particular to a fatigue relief device and a vehicle. Background Technology

[0002] People are prone to fatigue, drowsiness, and decreased attention when engaging in repetitive or monotonous activities for extended periods. For example, drivers are likely to experience drowsiness and fatigue when driving on highways for long periods.

[0003] To alleviate fatigue and drowsiness, people often spray atomized liquid onto their face to refresh themselves. Most existing fatigue relief devices that can achieve this function include a nozzle that needs to be manually pressed to spray. In other devices that can electrically spray atomized liquid, the atomizing mechanism and battery are usually located in the same space. The water vapor generated by the atomizing mechanism or the stored liquid can easily escape into the space, affecting the battery located in the same space and causing problems such as aging of the circuit or short circuit. Utility Model Content

[0004] This utility model provides a fatigue relief device and vehicle to solve the problem that water vapor or overflowing liquid generated by the atomizing mechanism in existing fatigue relief devices can easily affect the battery in the same space, causing problems such as circuit aging or short circuits.

[0005] This utility model provides a fatigue relief device, including a housing, an atomizing mechanism, and a power module;

[0006] The box body is provided with a first receiving cavity and a second receiving cavity, and the box body corresponding to the first receiving cavity is provided with a water inlet and a water outlet.

[0007] The atomizing mechanism is assembled in the first accommodating cavity and includes a water tank and an atomizing component. The water tank is connected to the water inlet, and the atomizing component is connected to the water tank and the water outlet.

[0008] The power module is assembled in the second accommodating cavity and is electrically connected to the atomizing component to supply power to the atomizing component so that the atomizing component can spray.

[0009] Preferably, the box body is provided with a partition plate;

[0010] The outer edge of the partition plate is connected to the inner wall of the box, dividing the interior of the box into a first accommodating cavity and a second accommodating cavity.

[0011] Preferably, the fatigue relief device further includes at least one clamping mechanism;

[0012] Each of the clamping mechanisms is disposed on the housing and includes a support column, a clamping assembly, and an adjustment assembly;

[0013] The support column is disposed on the box body;

[0014] The clamping assembly includes two clamping frames arranged opposite each other, at least one of the two clamping frames being a movable clamping frame, which is movably mounted on the support column along the axial direction of the support column;

[0015] The adjustment component is mounted on the support column and is connected to the movable clamping frame, which is used to drive the movable clamping frame to move along the axial direction of the support column.

[0016] Preferably, the support column is provided with an installation space and a strip-shaped limiting hole communicating with the installation space;

[0017] The adjusting assembly includes a threaded rod and a threaded sleeve;

[0018] The threaded rod is assembled within the installation space, with its first end extending out of the installation space and rotatably connected to the support column.

[0019] The threaded sleeve is threadedly connected to the threaded rod, and the threaded sleeve passes through the strip-shaped limiting hole and is connected to the movable clamping frame.

[0020] Preferably, the atomizing assembly includes an atomizing pump, a first pipe, a second pipe, and at least one atomizing nozzle;

[0021] One end of the atomizing pump is connected to the water storage tank through the first pipe, and the other end of the atomizing pump is connected to at least one atomizing nozzle through the second pipe. The atomizing nozzle is used to spray atomized liquid.

[0022] The atomizing pump is connected to the power module, and the atomizing nozzle is mounted on the water outlet.

[0023] Preferably, the power module includes a battery, a control button, and a charging interface;

[0024] The battery is assembled in the second accommodating cavity and is electrically connected to the atomizing component;

[0025] The control button is mounted on the housing and is electrically connected to the battery, used to turn the power supply on or off.

[0026] The charging interface is mounted on the housing and is electrically connected to the battery.

[0027] Preferably, the fatigue relief device further includes a fatigue monitoring component and a controller;

[0028] The fatigue monitoring component is assembled outside the housing and electrically connected to the controller, and is used to send the monitoring data corresponding to the monitored object to the controller.

[0029] The controller is assembled inside the housing and electrically connected to the atomizing component, and is used to control the atomizing component to spray when it is determined based on the monitoring data that the monitored object is in a state of fatigue.

[0030] Preferably, the fatigue monitoring component includes a first camera and a second camera spaced apart on both sides of the housing along a first direction, wherein the first direction is perpendicular to the opening direction of the water outlet.

[0031] The first camera is used to collect first monitoring data; the second camera is used to collect second monitoring data.

[0032] The controller is used to control the atomizing component to work when it is determined, based on the first monitoring data and the second monitoring data, that the monitored object is in a state of fatigue.

[0033] Preferably, the fatigue relief device further includes a speaker;

[0034] The speaker is assembled outside the housing;

[0035] The controller is connected to the speaker and is used to control the speaker to work when it is determined from the monitoring data that the monitored object is in a state of fatigue.

[0036] This utility model embodiment also provides a vehicle including any of the fatigue relief devices described above.

[0037] The fatigue relief device and vehicle provided in this embodiment of the utility model, by separating the atomizing mechanism and the power module in different accommodating cavities, can prevent the water vapor generated by the atomizing mechanism from escaping into the box or the liquid stored in the atomizing mechanism from overflowing into the box and affecting the power module, thereby improving the service life and safety performance of the device. Attached Figure Description

[0038] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments of this utility model will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0039] Figure 1 This is a front view sectional view of the fatigue relief device in one embodiment of the present invention;

[0040] Figure 2 This is a schematic diagram of the main appearance structure of the fatigue relief device in one embodiment of the present invention;

[0041] Figure 3 This is a side view cross-sectional structural diagram of the fatigue relief device in one embodiment of the present invention;

[0042] Figure 4 This is a partial cross-sectional structural diagram of the fatigue relief device in one embodiment of the present invention;

[0043] Figure 5 This is a partial cross-sectional structural schematic diagram of the fatigue relief device in one embodiment of the present invention.

[0044] In the diagram: 1. Box body; 11. First accommodating cavity; 12. Second accommodating cavity; 13. Water inlet; 14. Water outlet; 15. Divider plate; 16. Charging port; 2. Atomizing mechanism; 21. Water tank; 22. Atomizing component; 221. Atomizing pump; 222. First pipe; 223. Second pipe; 224. Atomizing nozzle; 3. Power module; 31. Battery; 32. Control button; 33. Charging interface; 4. Clamping mechanism; 41. Support column; 42. Clamping component; 421. Clamping frame; 43. Adjustment component; 431. Threaded rod; 432. Threaded sleeve; 44. Strip-shaped limiting hole; 5. Fatigue monitoring component; 51. First camera; 52. Second camera; 53. Bracket; 6. Controller; 7. Speaker. Detailed Implementation

[0045] To make the technical problems solved, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0046] In the description of this utility model, it should be understood that the terms "longitudinal," "radial," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0047] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0048] This utility model embodiment provides a fatigue relief device, such as... Figure 1 As shown, the device includes a housing 1, an atomizing mechanism 2, and a power module 3. The housing 1 has a first accommodating cavity 11 and a second accommodating cavity 12. The housing 1 corresponding to the first accommodating cavity 11 has a water inlet 13 and a water outlet 14. The atomizing mechanism 2 is assembled in the first accommodating cavity 11 and includes a water tank 21 and an atomizing component 22. The water tank 21 is connected to the water inlet 13, and the atomizing component 22 is connected to the water tank 21 and the water outlet 14. The power module 3 is assembled in the second accommodating cavity 12 and is electrically connected to the atomizing component 22.

[0049] As an example, the fatigue relief device includes a housing 1, an atomizing mechanism 2, and a power module 3. The housing 1 has a first accommodating cavity 11 and a second accommodating cavity 12. The atomizing mechanism 2 and the power module 3 are respectively installed in the first accommodating cavity 11 and the second accommodating cavity 12 to prevent water vapor generated by the atomizing mechanism 2 from escaping into the housing 1, or liquid stored in the atomizing mechanism 2 from overflowing into the housing 1 and affecting the power module 3, causing short circuits or other adverse phenomena. The atomizing mechanism 2 includes a water storage tank 21 and an atomizing assembly 22. The water storage tank 21 is installed in the first accommodating cavity 11 and fixed to one side of the housing 1. The water storage tank 21 is a sealed water storage tank 21, with a first through-hole for water inlet at the top and a second through-hole for water outlet on one side of the water storage tank 21. The first through-hole of the water tank 21 connects the interior of the water tank 21 to the exterior of the housing 1 via a water inlet pipe. One end of the water inlet pipe is fitted to the first through-hole on the water tank 21, and the other end is fitted to the water inlet 13 on the housing 1. Users can replenish the water tank 21 with liquid through this pipe. The second through-hole of the water tank 21 connects to the atomizing component 22 via a first pipe 222. The atomizing component 22 draws in liquid through the first pipe 222 and atomizes it. The atomizing component 22 is also connected to the water outlet 14 on the housing 1, used to spray atomized liquid out of the housing 1. This atomized liquid can be peppermint water atomized into a mist, which can invigorate the user and relieve fatigue upon contact. The power module 3 is electrically connected to the atomizing mechanism 2 via a power cord, supplying power to the atomizing mechanism 2 so that it can pump out the atomized liquid.

[0050] In this example, an atomizing mechanism 2 is included in the fatigue relief device. Driven by the power module 3, it pumps out atomized liquid to invigorate the user and relieve fatigue. By separating the atomizing mechanism 2 and the power module 3 into different cavities, the device prevents moisture generated by the atomizing mechanism 2 from escaping into the housing 1 or liquid stored in the atomizing mechanism 2 from overflowing into the housing 1 and affecting the power module 3, thus improving the device's lifespan and safety performance.

[0051] In one embodiment, such as Figure 1 As shown, the box body 1 is provided with a partition plate 15; the outer edge of the partition plate 15 is connected to the inner wall of the box body 1, dividing the interior of the box body 1 into a first receiving cavity 11 and a second receiving cavity 12.

[0052] As an example, the box body 1 is provided with a partition plate 15. The partition plate 15 can be arranged inside the box body 1 along a direction parallel to one side of the box body 1. The outer edge of the partition plate 15 is connected to the inner wall of the box body 1, dividing the accommodating cavity inside the box body 1 into a first accommodating cavity 11 and a second accommodating cavity 12. For example, when the box body 1 is a cuboid box, the partition plate 15 can be arranged along a direction parallel to the side of the box body 1 containing its width and height, and its outer edge is connected to the inner wall of the box body 1, dividing the internal space of the cuboid box into a first accommodating cavity 11 and a second accommodating cavity 12.

[0053] In one embodiment, such as Figure 2 and Figure 3 As shown, the fatigue relief device also includes at least one clamping mechanism 4; each clamping mechanism 4 is disposed on the housing 1 and includes a support column 41, a clamping assembly 42, and an adjusting assembly 43; the support column 41 is disposed on the housing 1; the clamping assembly 42 includes two clamping frames 421 disposed opposite to each other; at least one of the two clamping frames 421 is a movable clamping frame, which is movably mounted on the support column 41 along the axial direction of the support column 41; the adjusting assembly 43 is disposed on the support column 41 and is connected to the movable clamping frame for driving the movable clamping frame to move along the axial direction of the support column 41.

[0054] As an example, the fatigue relief device also includes at least one clamping mechanism 4. One end of each clamping mechanism 4 is connected to the outer side of the housing 1, and the other end is used to clamp onto a first workpiece. The first workpiece is a workpiece used to assemble and fix the fatigue relief device. For example, the first workpiece can be a rearview mirror in the driver's cab of a vehicle. The clamping mechanism 4 clamps and fixes the fatigue relief device onto the rearview mirror so that the fatigue relief device can spray atomized liquid towards the driver and passengers to alleviate their fatigue. The clamping mechanism 4 includes a support column 41, a clamping assembly 42, and an adjusting assembly 43. The support column 41 can be a cylindrical support column, and the first end of the cylindrical support column is connected to the housing 1. The clamping assembly 42 includes two clamping frames 421 arranged opposite to each other, and the two clamping frames 421 are used to clamp the first workpiece. One of the two clamping frames 421 is a movable clamping frame, and the other is a fixed clamping frame. The movable clamping frame is movably mounted on the support column 41 along the axial direction, while the fixed clamping frame is fixedly mounted on the support column 41 along the radial direction and positioned between the movable clamping frame and the housing. An adjusting assembly 43 is mounted on the support column 41 and connected to the movable clamping frame. It moves the movable clamping frame along the axial direction of the support column 41 to change the distance between the movable and fixed clamping frames, allowing the clamping frame 421 to clamp the first workpiece. Alternatively, both clamping frames 421 are movable clamping frames, movably mounted on the support column 41 along the axial direction. The adjusting assembly 43 is mounted on the support column 41 and can move the two movable clamping frames along the axial direction of the support column 41 respectively, changing the distance between them and allowing the clamping frame 421 to clamp the first workpiece.

[0055] In one embodiment, such as Figure 3 As shown, the support column 41 is provided with an installation space and a strip-shaped limiting hole 44 communicating with the installation space; the adjustment assembly 43 includes a threaded rod 431 and a threaded sleeve 432; the threaded rod 431 is assembled in the installation space, the first end of the threaded rod 431 extends out of the installation space, and the first end of the threaded rod 431 is rotatably connected to the support column 41; the threaded sleeve 432 is threadedly connected to the threaded rod 431, and the threaded sleeve 432 passes through the strip-shaped limiting hole 44 and is connected to the movable clamping frame.

[0056] As an example, the two clamping frames 421 include a first clamping frame and a second clamping frame; the first clamping frame is a movable clamping frame, movably mounted on the support column 41 along the axial direction of the support column 41, and the second clamping frame is a non-movable clamping frame, fixedly mounted on the support column 41, and positioned between the first clamping frame and the housing 1. The support column 41 has an axially oriented installation space inside, and a strip-shaped limiting hole 44 connecting the installation space and the external space is opened on the outer side of the support column 41. The adjusting assembly 43 includes a threaded rod 431 and a threaded sleeve 432. The threaded rod 431 is assembled within the installation space, with its first end extending out of the installation space and rotatably connected to the support column 41; allowing the user to rotate the entire threaded rod 431 by rotating its first end. The threaded sleeve 432 is threadedly connected to the threaded rod 431, and passes through the strip-shaped limiting hole 44 to connect with the first clamping frame. When the user rotates the threaded rod 431, due to the limiting effect of the strip-shaped limiting hole 44, the first clamping frame cannot rotate with the threaded rod 431. It can only move away from or towards the second clamping frame in the strip-shaped limiting hole 44 under the guiding effect of the thread on the threaded rod 431, so as to change the distance between it and the second clamping frame, and achieve the function of clamping the first workpiece in cooperation with the second clamping frame.

[0057] In one embodiment, such as Figure 4 As shown, the atomizing assembly 22 includes an atomizing pump 221, a first pipe 222, a second pipe 223, and at least one atomizing nozzle 224; one end of the atomizing pump 221 is connected to the water storage tank 21 through the first pipe 222, and the other end of the atomizing pump 221 is connected to at least one atomizing nozzle 224 through the second pipe 223. The atomizing nozzle 223 is used to spray atomized liquid; the atomizing pump 221 is connected to the power module 3, and the atomizing nozzle 223 is mounted on the water outlet 14.

[0058] As an example, the atomizing assembly 22 includes an atomizing pump 221, a first pipe 222, a second pipe 223, and at least one atomizing nozzle 224. One end of the atomizing pump 221 is connected to a second through-hole of the water tank 21 through the first pipe 222 to draw in liquid. The other end of the atomizing pump 221 is connected to at least one atomizing nozzle 224 through at least one second pipe 223. Each second pipe 223 connects to one atomizing nozzle 224. The atomizing pump 221 can work with the atomizing nozzle 224 to pressurize the drawn-in liquid, and finally spray the atomized liquid to the outside of the housing 1 through the atomizing nozzle 224. Each atomizing nozzle 224 is mounted on a water outlet 14 of the housing 1. Different water outlets 14 are arranged at intervals on the housing 1 to expand the spraying area and improve the fatigue relief effect.

[0059] In one embodiment, such as Figure 5As shown, the power module 3 includes a battery 31, a control button 32, and a charging interface 33. The battery 31 is installed in the second accommodating cavity 12 and is electrically connected to the atomizing component 22. The control button 32 is installed on the housing 1 and is electrically connected to the battery 31, used to turn the power supply on or off. The charging interface 33 is installed on the housing 1 and is electrically connected to the battery 31.

[0060] As an example, the power module 3 includes a battery 31, a control button 32, and a charging interface 33. The battery 31 is assembled in the second accommodating cavity 12. Specifically, the battery 31 can be disposed in the second accommodating cavity 12 and fixedly mounted on the partition plate 15. The battery 31 is electrically connected to the atomizing assembly 22 via a power cord, supplying power to the atomizing assembly 22. The control button 32 is assembled on the outer surface of the housing 1 and is electrically connected to the battery 31. By touching the control button 32, the user can control the power supply to the battery 31 to be cut off or turned on. A charging hole 16 can be provided on the housing 1, and the charging interface 33 is assembled at the charging hole 16. The charging interface 33 is electrically connected to the battery 31 for connecting an external charger to charge the battery 31.

[0061] In one embodiment, such as Figure 2 , Figure 3 and Figure 4 As shown, the fatigue relief device also includes a fatigue monitoring component 5 and a controller 6; the fatigue monitoring component 5 is mounted outside the housing 1 and electrically connected to the controller 6, and is used to send the monitoring data corresponding to the monitored object to the controller 6; the controller 6 is mounted inside the housing 1 and electrically connected to the atomizing component 22, and is used to control the atomizing component 22 to spray when it is determined based on the monitoring data that the monitored object is in a fatigue state.

[0062] As an example, the fatigue relief device also includes a fatigue monitoring component 5 and a controller 6. The fatigue monitoring component 5 is mounted outside the housing 1 and electrically connected to the controller 6. The fatigue monitoring component 5 may include a camera capable of capturing images of the monitored object and transmitting the acquired monitoring data to the controller 6. The controller 6 is electrically connected to the atomizing component 22. The controller 6 can be a separate controller mounted inside the housing 1 and connected to the atomizing component 22 for independent control of the atomizing component 22, or it can be a main controller 6, such as the main controller 6 in a vehicle. The controller 6 can determine the state of the monitored object based on the monitoring data, identifying whether the monitored object is in a fatigued state. For example, the controller 6 can detect and judge the duration of eye closure in images of the monitored object recorded by the camera to determine whether the monitored object is in a fatigued state. When the controller 6 determines that the monitored object is currently in a fatigued state, it can control the atomizing component 22 to spray mist to boost the user's spirits and relieve fatigue.

[0063] In this example, the fatigue relief device can monitor the state of the monitored object through the fatigue monitoring component 5, and when the monitored object is in a fatigued state, it can control the atomizing mechanism 2 to be turned on through the controller 6. It can realize the automatic detection of fatigue state and actively turn on the atomizing component 22 to spray, which can boost the user's spirit and dispel drowsiness, and has a good fatigue relief effect.

[0064] In one embodiment, such as Figure 2 As shown, the fatigue monitoring component 5 includes a first camera 51 and a second camera 52 spaced apart on both sides of the housing 1 along a first direction, the first direction being perpendicular to the opening direction of the water outlet 14; the first camera 51 is used to collect first monitoring data; the second camera 52 is used to collect second monitoring data; and the controller 6 is used to control the atomizing component 22 to work when it is determined that the monitored object is in a fatigue state based on the first monitoring data and the second monitoring data.

[0065] As an example, the fatigue monitoring component 5 includes a first camera 51 and a second camera 52. The first camera 51 and the second camera 52 can be fixedly mounted on the outer side of the housing 1 by a bracket 53. By adjusting the tilt angle of the bracket 53 relative to the outer side of the housing 1, the mounting orientation of the first camera 51 and the second camera 52 can be adjusted. The first camera 51 and the second camera 52 can be spaced apart on the same side of the housing 1 along a first direction, or they can be spaced apart on different sides of the housing 1 along the first direction to monitor different objects. The first direction is perpendicular to the opening direction of the water outlet 14, and the water outlet 14 can be located between the first camera 51 and the second camera 52. For example, when the fatigue relief device is installed in the vehicle's cab, the first camera 51 and the second camera 52 can be spaced apart along a first direction on the same side of the housing 1. The first camera 51 is positioned closer to the driver's seat; by adjusting the tilt angle of the bracket 53 connected to the first camera 51, the first camera 51 can be oriented towards the driver to capture and record the driver's corresponding first monitoring data. The second camera 52 is positioned closer to the passenger's seat; by adjusting the tilt angle of the bracket 53 connected to the second camera 52, the second camera 52 can be oriented towards the passenger to capture and record the passenger's corresponding second monitoring data. The controller 6 can determine whether the driver or passenger is fatigued based on the first and second monitoring data, and when the driver or passenger is fatigued, it controls the activation of the atomizing component 22 to alleviate fatigue and prevent drowsy driving. In the fatigue monitoring component 5, multiple first cameras 51 or multiple second cameras 52 can also be installed to monitor multiple different objects or monitor the same or more objects from different angles.

[0066] In one embodiment, such as Figure 3 As shown, the fatigue relief device also includes a speaker 7; the speaker 7 is mounted outside the housing 1; the controller 6 is connected to the speaker 7 and is used to control the speaker 7 to work when it is determined that the monitored object is in a fatigue state based on the monitoring data.

[0067] As an example, the fatigue relief device also includes a speaker 7. The speaker 7 is mounted outside the housing 1, and the controller 6 is connected to the speaker 7. When the monitored object is determined to be in a state of fatigue based on monitoring data, the controller 6 controls the speaker 7 to play a prompt voice or reminder sound effect to boost morale.

[0068] This utility model embodiment also provides a vehicle including the fatigue relief device described in the above embodiment.

[0069] As an example, the vehicle includes the fatigue relief device described in the example above. The fatigue relief device can be clamped and fixed to the rearview mirror via the clamping assembly 6. The fatigue monitoring assembly 5 can be positioned relative to the driver and / or passenger to monitor their condition. When the driver and / or passenger are fatigued, the controller 6 activates the atomizing assembly 22 to spray mist, relieving fatigue, dispelling drowsiness, and boosting alertness. In this example, by installing the fatigue relief device in the vehicle, automatic detection of the driver's and / or passenger's fatigue can be achieved, and the atomizing assembly 22 can be actively activated to boost alertness and dispel drowsiness, resulting in a good fatigue relief effect. In the fatigue relief device, the atomizing mechanism 2 and the power module 3 are housed in different cavities, preventing water vapor generated by the atomizing mechanism 2 from escaping into the housing 1 or liquid stored in the atomizing mechanism 2 from overflowing into the housing 1 and affecting the power module 3, thus improving the device's lifespan and safety performance.

[0070] The above-described embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model, and should all be included within the protection scope of this utility model.

Claims

1. A fatigue relief device, characterized in that, The box body, the atomization mechanism and the power module are included; The first accommodating cavity and the second accommodating cavity are arranged in the box body, and the water inlet hole and the water outlet hole are arranged on the box body corresponding to the first accommodating cavity; The atomization mechanism is assembled in the first accommodating cavity and includes a water storage tank and an atomization assembly, the water storage tank is connected with the water inlet hole, and the atomization assembly is connected with the water storage tank and the water outlet hole; The power module is assembled in the second accommodating cavity, and the power module is electrically connected with the atomization assembly.

2. The fatigue relief device of claim 1, wherein, The box body is provided with a partition plate; The outer edge of the partition plate is connected with the inner wall of the box body, and the box body is divided into the first accommodating cavity and the second accommodating cavity.

3. The fatigue relief device of claim 1, wherein, The fatigue relieving device further comprises at least one clamping mechanism; Each clamping mechanism is arranged on the box body and comprises a supporting column, a clamping assembly and an adjusting assembly; The supporting column is arranged on the box body; The clamping assembly comprises two clamping frames arranged oppositely, at least one of the two clamping frames is a movable clamping frame, and the movable clamping frame is movably arranged on the supporting column along the axial direction of the supporting column; The adjusting assembly is arranged on the supporting column and connected with the movable clamping frame, and is used for driving the movable clamping frame to move along the axial direction of the supporting column.

4. The fatigue relief device of claim 3, wherein, The supporting column is provided with a mounting space and a strip-shaped limiting hole in communication with the mounting space; The adjusting assembly comprises a threaded rod and a threaded sleeve; The threaded rod is assembled in the mounting space, the first end of the threaded rod extends out of the mounting space, and the first end of the threaded rod is rotatably connected with the supporting column; The threaded sleeve is threadedly connected with the threaded rod, and the threaded sleeve is connected with the movable clamping frame through the strip-shaped limiting hole.

5. The fatigue relief device of claim 1, wherein, The atomization assembly comprises an atomization pump, a first pipeline, a second pipeline and at least one atomization nozzle; One end of the atomization pump is connected with the water storage tank through the first pipeline, the other end of the atomization pump is connected with at least one atomization nozzle through the second pipeline, and the atomization nozzle is used for spraying atomized liquid; The atomization pump is connected with the power module, and the atomization nozzle is assembled on the water outlet hole.

6. The fatigue relief device of claim 1, wherein, The power module comprises a storage battery, a control button and a charging interface; The storage battery is assembled in the second accommodating cavity and is electrically connected with the atomization assembly; The control button is assembled on the box body and is electrically connected with the storage battery, and is used for turning on or cutting off power supply; The charging interface is assembled on the box body and is electrically connected with the storage battery.

7. Fatigue relief device according to any of claims 1-6, characterized in that The fatigue relieving device further comprises a fatigue monitoring assembly and a controller; The fatigue monitoring assembly is assembled outside the box body and is electrically connected with the controller, and is used for sending monitoring data corresponding to a monitoring object to the controller; The controller is assembled in the box body and is electrically connected with the atomization assembly, and is used for controlling the atomization assembly to spray when it is determined that the monitoring object is in a fatigue state based on the monitoring data.

8. Fatigue relief device according to claim 7, characterized in that The fatigue monitoring assembly comprises a first camera and a second camera arranged on both sides of the box body along a first direction, and the first direction is perpendicular to the direction in which the water outlet hole is arranged. The first camera is configured to collect first monitoring data. The second camera is configured to collect second monitoring data. The controller is configured to control the atomization assembly to work when it is determined that the monitoring object is in a fatigue state based on the first monitoring data and the second monitoring data.

9. Fatigue relief device according to claim 8, characterized in that The fatigue relieving device further comprises a sound box. The sound box is arranged outside the box body. The controller is connected with the sound box and configured to control the sound box to work when it is determined that the monitoring object is in a fatigue state based on the monitoring data.

10. A vehicle characterized by comprising: A fatigue relieving device according to any one of claims 1-9.