Aromatherapy device
By incorporating a control switch within the aromatherapy device, and utilizing the movement of the housing to trigger the switch for mode switching and parameter adjustment, the problems of unattractive appearance and inconvenient user operation in existing devices are solved, achieving a simple operating experience and aesthetically pleasing results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2026-04-03
AI Technical Summary
Existing aromatherapy devices control power and adjust brightness via switches, which affects the aesthetics of the design and makes it inconvenient for users to locate the switch button.
Design an aromatherapy device with a built-in control switch. The mode switching and parameter adjustment are triggered by the movement of the housing. The switch includes a combination of pressing and rotating switches. The housing and the base assembly are movably connected to achieve buttonless operation.
The design of the aromatherapy device has been improved, enhancing its simplicity and user experience. It eliminates the inconvenience of searching for buttons and improves the product's waterproof performance and aesthetics.
Smart Images

Figure CN224070862U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aromatherapy technology, and in particular to an aromatherapy device. Background Technology
[0002] Aroma diffusers are devices that combine aromatherapy and lighting functions, typically used to create a relaxing atmosphere, improve air quality, or as part of interior décor. Existing aroma diffusers use switches to control power and adjust brightness, but these switches can disrupt the overall design, affecting their aesthetic appeal as interior decoration. Furthermore, users need to locate the switch before using the diffuser, causing inconvenience. Utility Model Content
[0003] The purpose of this invention is to provide an aromatherapy device with a built-in switch to solve the above-mentioned technical problems.
[0004] To achieve the above objectives, the technical solution of this utility model embodiment is as follows:
[0005] An aromatherapy device, comprising:
[0006] A base assembly, including a base and a control switch disposed above the base;
[0007] A housing is disposed on the base assembly and is movably connected to the base assembly;
[0008] When the housing moves relative to the base assembly, the housing triggers the control switch to switch modes.
[0009] Furthermore,
[0010] The base is provided with a guide shaft, and the housing is sleeved on the guide shaft to restrict the movement of the housing (20) in a fixed direction.
[0011] Furthermore,
[0012] The control switch includes a push switch, and the housing is movable up and down relative to the base assembly via the guide shaft, so that the housing moves closer to or further away from the push switch.
[0013] Furthermore,
[0014] The housing is provided with a stop, which is located above the push switch. The stop can contact the push switch to trigger the push switch to control the aromatherapy device to turn on or off.
[0015] Furthermore,
[0016] The control switch includes a rotary switch connected to the housing. The housing can rotate relative to the base assembly via the guide shaft to trigger the rotary switch to adjust the operating parameters of the aromatherapy device.
[0017] Furthermore,
[0018] The housing includes a rotating disk, which is disposed above the base assembly;
[0019] The rotating disk is provided with a shaft fitting that is fitted to the guide shaft; the shaft fitting can move up and down and rotate relative to the guide shaft.
[0020] Furthermore,
[0021] The rotating disk is spaced apart from the base.
[0022] Furthermore,
[0023] One of the guide shaft and the shaft ligand is provided with an annular limiting groove, and the other is provided with a first limiting block inserted into the annular limiting groove; the width of the annular limiting groove extends along the axial direction of the guide shaft, and the thickness of the first limiting block is less than the width of the annular limiting groove.
[0024] Furthermore,
[0025] The control switch includes a rotary switch, and one of the rotary disk and the rotary switch is provided with a male hook, while the other is provided with a female hook that is compatible with the male hook.
[0026] Furthermore,
[0027] The male card hook is provided with a second limiting block, and the female card hook is provided with a limiting groove for the limiting block to be inserted.
[0028] Furthermore,
[0029] An elastic reset element is provided between the base assembly and the rotating disk, and the control switch includes a press-to-close switch. The elastic reset element can drive the rotating disk away from the press-to-close switch.
[0030] Furthermore,
[0031] The control switch includes a rotary switch, the elastic reset member is disposed on the rotary disk, the elastic reset member includes an elastic arm, the end of the elastic arm is provided with a fixing protrusion, the rotary switch is provided with a fixing groove, and the fixing protrusion is inserted into the fixing groove.
[0032] Furthermore,
[0033] The base is provided with a first blocking plate, and the rotating disk is provided with a second blocking plate; the first blocking plate and the second blocking plate cooperate to limit the rotation angle range of the rotating disk relative to the base.
[0034] Furthermore,
[0035] The housing further includes an outer shell, a first receiving cavity is formed inside the outer shell, the rotating disk is disposed in the first receiving cavity, and the rotating disk is connected to the outer shell;
[0036] Alternatively, the housing may further include a cover, which is fitted over the outside of the rotating disk and connected to the rotating disk; or...
[0037] The housing also includes an outer shell and a cover. The cover is fitted around the outside of the rotating disk and connected to the rotating disk. The cover is located in the first accommodating cavity of the outer shell and is connected to the outer shell.
[0038] Compared with the prior art, the embodiments of this utility model have at least the following technical effects:
[0039] This invention relates to an aromatherapy device comprising a base assembly and a housing. The base assembly includes a base and a control circuit module mounted on the base. The control circuit module includes a control switch. The housing is mounted on the base assembly and is movably connected to the base assembly. When the housing moves relative to the base assembly, it can move relative to the control switch to trigger mode switching. This aromatherapy device integrates the control switch, resulting in a simpler appearance without additional buttons or switches, leading to a smoother and more elegant overall design. The switch is triggered by the movement of the housing to adjust various parameters of the aromatherapy device, eliminating the need for users to search for or remember button locations, thus improving the user experience. Attached Figure Description
[0040] Figure 1 This is a three-dimensional schematic diagram of one embodiment;
[0041] Figure 2 This is a cross-sectional view in one embodiment;
[0042] Figure 3 for Figure 2 A magnified view of a portion of the image;
[0043] Figure 4 This is a cross-sectional view from another angle in one embodiment;
[0044] Figure 5 This is an exploded view of one embodiment.
[0045] Explanation of icon numbers:
[0046] 10. Base assembly; 11. Control switch; 110. Press switch; 111. Rotary switch; 12. Base; 120. First blocking plate; 20. Housing; 21. Main housing part; 22. Head; 23. Outer shell; 24. Stop part; 220. Receiving cavity; 30. Lighting assembly; 40. Cover; 41. Main cover; 42. Reinforced shield; 420. First part; 421. Second part; 50. Heating element; 60. Heat insulation cotton; 70. Container tray; 81. Rotating disk; 810. Fixing protrusion; 811. Fixing groove; 812. Elastic reset element; 813. Male hook; 814. Female hook; 8130. Second limiting block; 8140. Limiting groove; 815. Second blocking plate; 82. Guide shaft; 820. Annular limiting groove; 821. First limiting block; 83. Shaft fitting. Detailed Implementation
[0047] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used in this specification of this utility model is for the purpose of describing particular embodiments only and is not intended to limit the utility model. In the following description, the expression "some embodiments" refers to a subset of all possible embodiments; however, it should be understood that "some embodiments" can be the same subset or different subsets of all possible embodiments and can be combined with each other without conflict.
[0048] It should also be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "inner," "outer," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.
[0049] like Figure 1-2As shown, in one embodiment of the utility model, the aromatherapy device includes a base assembly 10, a housing 20, and a light assembly 30. The housing 20 includes an outer shell 23, a cover 40, and a rotating disk 81, wherein the outer shell 23, the cover 40, and the rotating disk 81 are sequentially arranged from the outside to the inside. The outer shell 23 covers the base assembly 10, and the rotating disk 81 is movably connected to the base assembly 10 so that the entire housing 20 can move relative to the base assembly 10. The aromatherapy device also includes a light component 30, which is placed in a cavity within the housing 23, for example, in the cavity formed by the cover 40 and the rotating disk 81. The light component 30 is located in the cover, and the cover 40 transmits the light from the light component 30 while keeping the components inside the cover 40 in a non-transparent state. The cover 40 is provided between the housing 23 and the light component 30. The cover 40 can process the light projected by the light component 30 into soft light to create a romantic atmosphere suitable for nighttime lighting. At the same time, the cover 40 can cover the components and wires inside the aromatherapy device, making them invisible and improving the overall aesthetic effect of the aromatherapy device.
[0050] In other embodiments, the housing 20 includes only a rotating disk 81, which is connected to the base assembly 10. Alternatively, the housing 20 includes a rotating disk 81 and an outer shell 23 and / or a cover 40. Specifically, the housing 20 mainly has a rotating disk 81 closest to the base assembly 10 to connect the rotating disk 81 to the base assembly 10. In some embodiments, an outer shell 23 or a cover 40 may also be fitted over the rotating disk 81; this is not a specific limitation. The lighting component may be located inside the rotating disk 81 or between the outer shell 23 and the cover 40, depending on the actual design; this is not a specific limitation either.
[0051] like Figure 1-2 As shown, in one embodiment of the utility model, the outer shell 23 includes a main shell portion 21 and a head 22 located at the top of the main shell portion 21. The main shell portion 21 tapers towards the head 22 from the base assembly 10. The head 22 is provided with a receiving cavity 220 for accommodating solid aromatherapy wax. Positioning the receiving cavity 220 at the top makes replacing solid aromatherapy wax more convenient. The receiving cavity 220 at the top allows users to visually see the remaining amount of aromatherapy wax, facilitating timely addition or replacement. The design of the receiving cavity 220 at the top also makes cleaning the aromatherapy device more convenient; users can easily wipe or clean the receiving cavity 220 and its surrounding area.
[0052] like Figure 1-2As shown, in one embodiment of the utility model, a heating element 50 is provided at the top of the main shell 21 near the receiving cavity 220. The receiving cavity 220 contains solid aromatherapy wax. The heating element 50 is a heating plate, which heats the solid aromatherapy wax to more effectively melt the wax and release the fragrance. In this embodiment, the heating element 50 is a heating plate. Of course, in other embodiments, the user can set the specific type of heating element according to actual needs, which is not limited here.
[0053] like Figure 1-2 As shown, in one embodiment of the utility model, the cover 40 is located inside the main shell 21, the heating element 50 is located at the top of the cover 40, and a heat insulation cotton 60 is provided between the cover 40 and the heating element 50. The heating element generates heat during operation. Without the heat insulation cotton 60, the high temperature may deform or damage the material of the cover 40. The heat insulation cotton 60 reduces this risk. It also protects other components of the aromatherapy device from high temperatures. Furthermore, the heat insulation cotton 60 helps to evenly distribute the heat generated by the heating element, ensuring that the solid aromatherapy wax is heated evenly and avoiding localized overheating.
[0054] like Figure 1-2 As shown, in one embodiment of the utility model, the receiving cavity 220 is provided with a container tray 70. The container tray 70 can hold solid aromatherapy wax, preventing the solid aromatherapy wax from being placed directly inside the receiving cavity 220. The tray protects the interior of the receiving cavity 220, preventing the aromatherapy wax from adhering directly to the surface of the receiving cavity 220 during melting or use, thus avoiding damage or difficulty in cleaning the receiving cavity 220. Using the tray makes it convenient for users to replace the aromatherapy wax; users only need to replace the aromatherapy wax in the tray, without having to clean the entire receiving cavity 220 each time. In addition, the container tray 70 may be provided with a handle. The handle allows users to easily carry or move the tray containing the aromatherapy wax, especially when it needs to be replaced or cleaned. During transport, the handle reduces the risk of the tray slipping. When the tray is heated or at a high temperature, the handle protects the user's hands from burns. The handle also reduces direct contact between the user and other parts of the tray, especially when the tray needs cleaning or the aromatherapy wax needs to be replaced.
[0055] like Figure 1-2 As shown, in one embodiment of the utility model, the lighting assembly 30 includes a light-emitting strip. The length direction of the light-emitting strip is the same as the height direction of the housing 20. The distance between the top of the light-emitting strip and the top of the main shell portion 21 in the housing 20 is 'a', which ranges from 10mm to 15mm. This distance range allows the light emitted by the light-emitting strip to form a relatively realistic flame shape within the housing 20, simulating the effect of real flames jumping and flickering.
[0056] like Figure 1-2As shown, in one embodiment of the utility model, the cover 40 includes a main cover 41 and a reinforcing shield 42 disposed inside the main cover 41. The reinforcing shield 42 is spaced apart from the main cover 41 and is arranged around the periphery of the lighting assembly 30. The reinforcing shield 42 is provided inside the cover 40, that is, a double-layer cover is provided around the light-emitting lamp. The double-layer cover can more effectively shield the components and wires inside the housing 20, making them invisible. The design of the double-layer cover can further scatter and soften the light, providing a more uniform and comfortable lighting effect.
[0057] like Figure 1-2 As shown, in one embodiment of the utility model, the cover 40 is in the shape of a frustum, and the side wall of the cover 40 is an arc-shaped wall that transitions from the top of the frustum to the bottom of the frustum and is concave inward. By means of the arc-shaped side wall of the cover 40, the processing performance of processing the light projected by the light assembly 30 into flexible light can be further improved.
[0058] like Figure 1-2 As shown, in one embodiment of the utility model, the reinforcing shield 42 is integrally formed with the main shield 41. The reinforcing shield 42 includes a first portion 420 extending inward from the top of the main shield 41 and a second portion 421 extending inward from the first portion 420 into the main shield 41. The integral forming reduces assembly steps, improving production efficiency and reducing manufacturing costs. The integral design makes the shield 40 appear neater and more harmonious. Furthermore, the integral design allows for more precise control of the light propagation path, thereby providing a more uniform and softer light effect.
[0059] In one embodiment of the utility model, the sidewall of the cover 40 is provided with a plurality of protrusions evenly and at intervals along its outer periphery in a ring shape. The protrusions are strip-shaped and extend from the top to the bottom of the cover 40 along the height direction of the cover. The strip-shaped structure of the protrusions can increase the visual depth of the cover, thereby creating a three-dimensional effect and making the product look more refined. In other embodiments, the cover 40 is also provided with light diffusing powder. The light diffusing powder is provided on the side of the cover 40 near the housing 20 to improve the uniformity and softness of the light. In addition, in other embodiments, the user can choose to make the sidewall of the cover 40 an arc-shaped wall or to provide protrusions on the outer periphery of the sidewall of the cover 40 according to specific actual needs.
[0060] like Figure 1-5As shown, in one embodiment of the utility model, an aromatherapy device is provided, including a base assembly 10 and a housing 20. The base assembly 10 includes a base 12 and a control circuit module disposed on the base 12. The control circuit module includes a circuit board and a control switch 11, with the control switch 11 disposed on the side of the circuit board near the housing 20. The housing 20 is disposed on the base assembly 10 and is movably connected to the base assembly 10. Understandably, the housing 20 can be movably connected to the base assembly 10. When the housing 20 moves relative to the base assembly 10, the housing 20 can move relative to the control switch 11 to trigger the control switch 11 to switch modes.
[0061] In the above-described embodiment of the utility model, the control switch 11 is built-in. This built-in switch makes the aromatherapy device more streamlined in appearance, eliminating the need for additional buttons or switches, resulting in a smoother and more elegant overall design. The switch is triggered by the movement of the housing 20 to adjust various parameters of the aromatherapy device. Users do not need to search for or remember the location of buttons, leading to a better user experience. Furthermore, the aromatherapy device is designed for use in bathrooms or outdoors, and the built-in switch reduces the possibility of external moisture entering the switch area, improving the product's waterproof performance.
[0062] like Figure 1-5 As shown, in one embodiment of the utility model, a guide shaft 82 is provided on the side of the base 12 near the top of the housing 20, and the housing 20 is sleeved on the guide shaft 82 to restrict the movement of the housing 20 in a fixed direction. By sleeved on the guide shaft 82, the housing 20 can be moved or rotated relative to the base 12.
[0063] like Figure 1-5 As shown, in one embodiment of the utility model, the control switch 11 includes a push switch 110. The housing 20 can move up and down relative to the base assembly 10 via a guide shaft 82, causing the housing 20 to move closer to or further away from the push switch 110, thereby triggering the push switch 110 to control the aromatherapy device to open or close. More specifically, a stop 24 is provided on the housing 20. For example, the stop 24 is located on the side of the rotating disk 81 near the circuit board and is positioned above the push switch 110. When the housing 20 moves downward, the stop 24 presses against the push switch 110, triggering the push switch 110 to control the aromatherapy device to open or close. The stop 24 is, for example, a protrusion on the rotating disk 81. In this embodiment, the rotating disk 81 has a stepped surface near the top, and the stepped surface forms the stop 24. The stepped surface and the top of the rotating disk 81 form a height difference. The push switch 110 is located below the stepped surface. The stepped surface is, for example, parallel to the top surface of the rotating disk 81. When the housing 20 moves downward along the guide shaft 82, the stepped surface can contact the push switch 110.
[0064] The control switch 11 also includes a rotary switch 111. The housing 20 is connected to the rotary switch 111, for example, the housing 20 is fixedly connected to the rotary switch 111. When the housing 20 rotates relative to the base assembly 10 via the guide shaft 82, it drives the rotary switch 111 to rotate, thereby triggering the rotary switch 111 to adjust the operating parameters of the aromatherapy device. For example, it can adjust the light intensity or light mode of the light component 30 inside the aromatherapy device; or adjust the sound mode of the sound control component inside the aromatherapy device. The rotary switch 111 can also control the aromatherapy device to be turned on or off. In other embodiments, the user can set the control switch 11 to either the aforementioned push switch 110 or the aforementioned rotary switch 111, or both switches can be set simultaneously, according to actual needs. There is no limitation here. When using the aromatherapy device, the user only needs to press or twist the housing 20 to operate and adjust it, resulting in a better user experience.
[0065] like Figure 1-5 As shown, in one embodiment of the utility model, the housing 20 further includes a rotating disk 81, which is disposed above the base 12 and is arranged vertically and horizontally at intervals from the base 12, so that the vertical or rotational movement is smoother and not interfered with.
[0066] Furthermore, the rotating disk 81 is provided with a shaft fitting 83 (e.g., a guide sleeve) that is fitted and sleeved with the guide shaft 82. The guide sleeve can move up and down and rotate relative to the guide shaft.
[0067] like Figure 1-5 As shown, in one embodiment of the utility model, the rotating disk 81 is provided with a fixing protrusion 810, and the rotary switch 111 is provided with a fixing groove 811 for the fixing protrusion 810 to be inserted. The fixing protrusion 810 is embedded in the fixing groove 811 to achieve circumferential fixation between the rotating disk 81 and the rotary switch 111, preventing relative rotation of the rotating disk 81 in the circumferential direction of the rotary switch 111 (i.e., along the circumferential direction of the rotary switch 111). When the user twists the housing 20, the housing 20 rotates, and the rotating disk 81 rotates accordingly, driving the movable part on the rotary switch 111 to rotate, thereby adjusting various operating parameters of the aromatherapy device. In other embodiments, the user can provide the rotating switch 111 with the fixing protrusion 810 and the rotating disk 81 with the fixing groove 811 for the fixing protrusion 810 to be inserted, according to actual needs; this is not a limitation.
[0068] In one embodiment of the utility model, an elastic reset member 812 is provided between the base assembly 10 and the housing 20. For example, the elastic reset member 812 is located between the control circuit module and the rotating disk 81, and the elastic reset member 812 is connected to the rotating disk 81 and the circuit board respectively, or the elastic reset member 812 is connected to the rotating disk 81 and the control switch 11 respectively. In other embodiments, the elastic reset member 812 may be located between the base 12 and the rotating disk 81, which is not a unique limitation. In one embodiment, an elastic reset member 812 is provided between the control circuit module and the rotating disk 81. The elastic reset member 812 can drive the rotating disk 81 away from the press switch 110. The elastic reset member 812 is used to deform when the rotating disk 81 moves closer to the base 12 to press the press switch 110. When the pressing force is released, the elastic reset member 812 restores its deformation and drives the rotating disk 81 to return to its initial position. The elastic element provides a tactile feedback when the user presses the housing 20. After pressing, the elastic reset element 812 returns to its original shape, causing the rotating disk 81 to move back to its initial position so that the push switch 110 can be pressed again later.
[0069] Specific options, such as Figure 1-5 As shown, in one embodiment of the utility model, an elastic reset member 812 is disposed on a rotating disk 81. The elastic reset member 81 includes multiple elastic arms disposed on the outer periphery of the shaft fitting 83, a fixing protrusion 810 at the end of the elastic arm, and a fixing groove 811 disposed on the rotary switch 111 and corresponding to the fixing protrusion 810. Under the action of the gravity of the rotating disk 81, the elastic arm abuts against the fixing groove 811 of the rotary switch 111 through the fixing protrusion 810. The rotating disk 81 presses the push switch 110 under the drive of the housing 20. During the pressing of the switch 110, the elastic arm deforms under force and begins to store elastic force. After the pressing is completed, the elastic arm wants to return to its original shape and drive the rotating disk 81 back to the initial position so that the push switch 110 can be pressed again later. The fixing protrusion 810 is set in the elastic arm that serves as the elastic reset member 812. That is, the elastic reset member 812 and the fixing protrusion 810 for circumferential limitation are integrated into the elastic arm. This reduces the number of components, simplifies the implementation structure to reduce manufacturing costs, and improves assembly efficiency. The integrated design occupies less space. Of course, users can abut the elastic arm at other positions according to the actual needs of the product. It does not necessarily have to abut in the fixing groove 811 of the rotary switch 111. As long as the elastic reset member 812 can drive the rotating disk 81 to move back to the initial position to restore its original shape, it is acceptable. In addition, the fixing protrusion 810 does not necessarily have to be set at the end of the elastic arm. Users can set it according to their actual needs.
[0070] like Figure 1-5As shown, in one embodiment of the utility model, the guide shaft 82 is provided with an annular limiting groove 820, and the shaft fitting 83 is provided with a first limiting block 821 inserted into the annular limiting groove 820. The width of the annular limiting groove 820 extends along the axial direction of the guide shaft 82, and the width of the annular limiting groove 820 forms a travel distance. The first limiting block 821 is disposed within the annular limiting groove 820 and moves along the width direction of the annular limiting groove 820 (the axial direction of the guide shaft 82). The thickness of the first limiting block 821 is less than the width of the annular limiting groove 820, so that the housing 20 can move up and down relative to the base assembly 10. In other embodiments, the user can provide the shaft fitting 83 with an annular limiting groove 820 and the guide shaft 82 with a first limiting block 821 inserted into the annular limiting groove 820 according to actual needs, which is not limited here. The two side walls of the annular limiting groove 820 face the first limiting block 821 to limit the movement of the rotating disk 81 relative to the base 12. This movement limits the appropriate stroke for the user to press the push switch 110. If the pressing stroke is too long, the user will exert too much effort; if the stroke is too short, the switch cannot be effectively triggered. In addition, it also prevents the rotating disk 81 from moving out of the base 12.
[0071] like Figure 1-5 As shown, in one embodiment of the utility model, the rotating disk 81 is provided with a male hook 813, and the rotary switch 111 is provided with a female hook 814 that matches the male hook 813. Through the pairing of the male hook 813 and the female hook 814, the rotating disk 81 and the rotary switch 111 achieve quick connection. After connection, the elastic arm can tightly abut against the rotary switch 111, providing an elastic pressing feel for the user to press the housing 20. In other embodiments, the user can provide the rotary switch 111 with the male hook 813 and the rotating disk 81 with the female hook 814 that matches the male hook 813, according to actual needs; this is not a limitation.
[0072] like Figure 1-5 As shown, in one embodiment of the utility model, the male hook 813 is provided with a second limiting block 8130, and the female hook 814 is provided with a limiting groove 8140 for the second limiting block 8130 to be inserted. The second limiting block is embedded in the limiting groove 8140 to fix the rotating disk 81 and the rotary switch 111 circumferentially, so as to prevent the rotating disk 81 from rotating in the circumferential direction of the rotary switch 111 (i.e., along the circumferential direction of the rotary switch 111). When the user twists the housing 20, the housing 20 rotates, and the rotating disk 81 rotates accordingly to drive the movable part on the rotary switch 111 to rotate, so as to adjust various parameters of the aromatherapy device. In addition, when the rotating disk 81 moves toward the rotary switch 111, the second limiting block 8130 and the limiting groove 8140 are used together to guide the movement of the rotating disk 81 relative to the rotary switch 111.
[0073] like Figure 1-5As shown, in one embodiment of the utility model, the base 12 is provided with a first blocking plate 120, and the rotating disk 81 is provided with a second blocking plate 815. The first blocking plate 120 can be connected to the second blocking plate 815. The first blocking plate 120 and the second blocking plate 815 cooperate to form a rotation barrier, which is used to limit the rotation angle range of the rotating disk 81 relative to the base 12. Multiple wires are arranged between the rotating disk 81 and the base 12 in the aromatherapy device. If the rotation angle of the rotating disk 81 relative to the base 12 is not limited, for example, to 360° or 720°, the wires between the rotating disk 81 and the base 12 can easily be twisted. To protect the angle of the wires, the rotating disk 81 is limited to rotating around the base 12 within a range of 0-360 degrees or a certain angle range.
[0074] like Figure 1-5 As shown, in one embodiment of the utility model, the housing 20 further includes an outer shell 23, a first receiving cavity is formed inside the outer shell 23, the rotating disk 81 is disposed in the first receiving cavity, and the rotating disk 81 is connected to the outer shell 23. In another embodiment, the housing 20 further includes a cover 40, the cover 40 is sleeved on the outside of the rotating disk 81 and is connected to the rotating disk 81. In yet another embodiment, the housing 20 further includes an outer shell 23 and a cover 40, the cover 40 is sleeved on the outside of the rotating disk 81 and is connected to the rotating disk 81, the cover 40 is disposed in the first receiving cavity provided in the outer shell 23, and the cover 40 is connected to the outer shell 23. The specific configuration can be determined according to actual needs.
[0075] To facilitate understanding of the embodiments of this utility model, the assembly and usage processes of the embodiments of this utility model are described in detail below:
[0076] Assembly process: First, install the base 12 onto the base of the base assembly 10 using screws. Then, install the PCB board with the push switch 110 and rotary switch 111 onto the base 12 using screws. After installing the LED strip onto the mounting bracket of the rotating disk 81, place the rotating disk 81 into the inner cavity of the cover 40 and snap it into the cover 40. Place the guide sleeve of the rotating disk 81 onto the guide shaft 82 of the base 12, and ensure that the guide sleeve 83 contains the... The first limiting block 821 is inserted into the annular limiting groove 820 provided in the guide shaft 82. Then, pressing down on the cover 40 causes the rotating disk 81 inside the cover 40 to move towards the base 12 until the male latch 813 inside the rotating disk 81 is engaged with the female latch 814 inside the rotary switch 111. After the engagement, the fixing protrusion 810 of the elastic arm can tightly abut against the fixing groove 811 inside the rotary switch 111. The elastic arm tightly abuts against the rotary switch 111, allowing the user to press the housing 20 by hand. The mechanism provides a tactile, elastic feel. A male latch 813, located within the rotary switch 111 and rotary disk 81, engages with a female latch 814 within the rotary switch 111 via an elastic arm. Essentially, the rotary disk 81, through the combination of the elastic arm and the male latch 813, clamps the upper and lower sides of the rotary switch 111, thus connecting the rotary disk 81 to the rotary switch 111. Once connected, the initial position of the rotary disk 81 triggering the push-button switch 110 can be determined. When the rotating disk 81 is in the initial position, there is a gap between the rotating disk 81 and the push switch 110. Then, heat insulation cotton 60 and heating element are placed from bottom to top on the top of the cover 40. The outer shell 23 is then fitted onto the cover 40 and connected to the cover 40 by adhesive bonding. The heat insulation cotton 60 and heating element are clamped between the main shell 21 of the cover 40 and the outer shell 23. Then, the container tray 70 is placed into the receiving cavity 220 of the top head 22 of the shell 20 to complete the assembly.
[0077] Usage process:
[0078] When a person presses the housing 20, the rotating disk 81 inside the cover 40 moves towards the base 12 in a fixed direction under the guidance of the guide shaft 82, the guide sleeve, the second limiting block 8130, and the limiting groove 8140, until the press switch 110 is triggered to control the opening or closing of the aromatherapy device. When the person releases the press of the housing 20, the elastic arm returns to its original shape, causing the rotating disk 81 to move back to the initial position of triggering the press switch 110, so that the press switch 110 can be pressed again later. When the aromatherapy device is in the open state, the cover 40 processes the light projected by the light strip into soft light to create a romantic atmosphere. The double-layer cover 40 covers the internal components and wires of the aromatherapy device, making them invisible and improving the overall aesthetic effect of the aromatherapy device. If it is necessary to switch the aromatherapy device to the closed state, simply press the housing 20 again to trigger the press switch 110.
[0079] When the user twists the housing 20, the rotating disk 81 follows the housing 20 to rotate relative to the base 12. Under the circumferential fixing action of the fixed protrusion 810, the fixed groove 811, the second limiting block 8130, and the limiting groove 8140, the user can twist the rotary switch 111 on the base 12 to trigger the rotary switch 111 to adjust the working parameters of the aromatherapy device, such as light brightness, sound level, etc.
[0080] The above are merely specific embodiments of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. The protection scope of this utility model shall be determined by the protection scope of the claims.
Claims
1. An aromatherapy device, characterized in that, include: The base assembly (10) includes a base (12) and a control switch (11) disposed above the base (12); A housing (20) is disposed on the base assembly (10) and movably connected to the base assembly (10); When the housing (20) moves relative to the base assembly (10), the housing (20) triggers the control switch (11) to switch modes; The base (12) is provided with a guide shaft (82), and the housing (20) is sleeved on the guide shaft (82) to restrict the movement of the housing (20) in a fixed direction.
2. The aromatherapy device according to claim 1, characterized in that, The control switch (11) includes a push switch (110), and the housing (20) is movable up and down relative to the base assembly (10) via the guide shaft (82), so that the housing (20) moves closer to or further away from the push switch (110).
3. The aromatherapy device according to claim 2, characterized in that, A stop (24) is provided on the housing (20). The stop (24) is located above the push switch (110). The stop (24) can contact the push switch (110) to trigger the push switch (110) to control the aromatherapy device to open or close.
4. The aromatherapy device according to claim 1, characterized in that, The control switch (11) includes a rotary switch (111) connected to the housing (20). The housing (20) is rotatable relative to the base assembly (10) via the guide shaft (82) to trigger the rotary switch (111) to adjust the operating parameters of the aromatherapy device.
5. The aromatherapy device according to any one of claims 1 to 4, characterized in that, The housing includes a rotating disk (81) which covers the base assembly (10). The rotating disk (81) is provided with a shaft fitting that is fitted with the guide shaft (82). The shaft fitting can move up and down and rotate relative to the guide shaft.
6. The aromatherapy device according to claim 5, characterized in that, The rotating disk (81) and the base (12) are spaced apart.
7. The aromatherapy device according to claim 5, characterized in that, One of the guide shaft (82) and the shaft ligand is provided with an annular limiting groove (820), and the other is provided with a first limiting block (821) inserted into the annular limiting groove (820); The width of the annular limiting groove (820) extends along the axial direction of the guide shaft (82), and the thickness of the first limiting block (821) is less than the width of the annular limiting groove (820).
8. The aromatherapy device according to claim 5, characterized in that, The control switch (11) includes a rotary switch (111). One of the rotary disk (81) and the rotary switch (111) is provided with a male hook (813), and the other is provided with a female hook (814) adapted to the male hook (813).
9. The aromatherapy device according to claim 8, characterized in that, The male card hook (813) is provided with a second limiting block (8130), and the female card hook (814) is provided with a limiting groove (8140) for the second limiting block (8130) to be inserted.
10. The aromatherapy device according to claim 5, characterized in that, An elastic reset member (812) is provided between the base assembly (10) and the rotating disk (81). The control switch (11) includes a push switch (110). The elastic reset member (812) can drive the rotating disk (81) away from the push switch (110).
11. The aromatherapy device according to claim 10, characterized in that, The control switch (11) includes a rotary switch (111), the elastic reset member (812) is disposed on the rotary disk (81), the elastic reset member (812) includes an elastic arm, the end of the elastic arm is provided with a fixing protrusion (810), the rotary switch (111) is provided with a fixing groove (811), and the fixing protrusion (810) is inserted into the fixing groove (811).
12. The aromatherapy device according to claim 5, characterized in that, The base (12) is provided with a first blocking plate (120), and the rotating disk (81) is provided with a second blocking plate (815); The first blocking plate (120) cooperates with the second blocking plate (815) to limit the range of rotation angle of the rotating disk (81) relative to the base (12).
13. The aromatherapy device according to claim 5, characterized in that, The housing further includes an outer shell, within which a first receiving cavity is formed. The rotating disk (81) is disposed within the first receiving cavity and is connected to the outer shell; or, The housing also includes a cover, which is fitted over the outside of the rotating disk (81) and connected to the rotating disk (81); or, The housing also includes an outer shell and a cover. The cover is fitted around the outside of the rotating disk (81) and connected to the rotating disk (81). The cover is located in the first accommodating cavity of the outer shell and is connected to the outer shell.