Aromatherapy device
By incorporating barrier and heat insulation components within the aromatherapy device, the problem of heat affecting components under electric heating is solved, thereby improving safety and stability while providing soft lighting effects and an aesthetically pleasing design.
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
Traditional scented candles use open flames for heating, posing safety hazards, while electric heating can affect the normal operation of internal components in the aromatherapy device.
The aromatherapy device incorporates a barrier, including a cover and a heat insulation component, to separate the heating element from the electronic control components, thereby reducing heat transfer. The cover, made of translucent material, provides a soft lighting effect and enhances aesthetics.
It improves the safety of aromatherapy devices and the stability of electronic control components, reduces the impact of heat on components, and provides soft lighting effects and a better user experience.
Smart Images

Figure CN224070861U_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] Scented candles are often used to create a romantic atmosphere, relieving the tension and busyness of life through their flame and fragrance.
[0003] They are typically placed in various indoor spaces as decorative accents. However, traditional scented candles have drawbacks such as poor safety and limited functionality.
[0004] Traditional scented candles use an open flame to heat the fragrance material to accelerate the release of the aroma, which poses safety concerns. Therefore, existing aromatherapy devices use electric heating instead of open flame heating. For example, a heating element is installed inside the aromatherapy device to heat the fragrance material. However, the heat generated by the heating element is relatively large, which can affect the normal operation of other components inside the aromatherapy device. Utility Model Content
[0005] The purpose of this invention is to provide an aromatherapy device that can reduce the impact of heat generated by the heating element on the components.
[0006] To achieve the above objectives, the technical solution of this utility model embodiment is as follows:
[0007] An aromatherapy device, comprising:
[0008] The aromatherapy body has an installation cavity formed inside it;
[0009] A heating element is disposed within the mounting cavity;
[0010] An electronic control component is disposed within the mounting cavity, and a barrier is provided between the electronic control component and the heating element.
[0011] Furthermore, the barrier includes a heat insulation element, which covers the heating element.
[0012] Furthermore, the barrier includes a cover body disposed within the mounting cavity, the electronic control component is disposed within the cavity formed by the cover body, and the heating element is disposed between the cover body and the wall of the mounting cavity.
[0013] Furthermore, the barrier also includes a heat insulation component; the heat insulation component covers the heating component and is connected to the top of the cover, and / or the top of the cover is provided with a clearance hole, and the heat insulation component covers the clearance hole.
[0014] Furthermore, the electronic control component includes a lighting component, which is disposed within the cavity, and the cover is made of a light-transmitting material.
[0015] Furthermore, the top of the aromatherapy body is provided with a receiving cavity that communicates with the outside.
[0016] Furthermore, the side wall of the cover is provided with a recessed portion facing the light assembly; and / or, the side of the cover away from the light assembly is provided with a plurality of protrusions, the protrusions being spaced apart circumferentially along the side wall of the cover.
[0017] Furthermore, the cover includes a main cover and a reinforcing shield disposed inside the main cover, the reinforcing shield being arranged around the light-emitting part of the light assembly.
[0018] Furthermore, the lighting assembly includes a light-emitting element, which is located at the top of the aromatherapy body in the height direction, and the distance between the light-emitting element and the wall of the mounting cavity ranges from 25mm to 42mm.
[0019] Furthermore, the top of the aromatherapy body is provided with a receiving cavity that communicates with the outside.
[0020] Furthermore, the receiving cavity is provided with a container tray, which is detachably connected to the receiving cavity.
[0021] Furthermore, both the cover and the aromatherapy body are rotating bodies, and the rotation axis of the cover coincides with the rotation axis of the aromatherapy body. The top of the cover abuts against the top of the aromatherapy body, and the bottom of the cover is bonded to the bottom of the aromatherapy body.
[0022] Furthermore, the aromatherapy body includes a base assembly and a housing, the base assembly and the housing enclose the mounting cavity, the bottom of the cover is connected to the base assembly, and the cover is at least partially connected to the housing on the side closest to the housing.
[0023] Furthermore, the housing includes a main housing portion and a head located at the top of the main housing portion, the main housing portion and the base assembly together with the housing to form the mounting cavity; the head is provided with a receiving cavity.
[0024] Furthermore, the heating element is located at the top of the mounting cavity and below the head.
[0025] Furthermore, the top of the cover is provided with a receiving groove, and the heat insulation component is disposed in the receiving groove.
[0026] Furthermore, the lighting assembly includes a lamp panel, and the cover has a locking part on the side near the lamp panel, the locking part being engaged with the lamp panel.
[0027] Compared with the prior art, the embodiments of this utility model have at least the following technical effects:
[0028] The aromatherapy device of this utility model includes an aromatherapy body, a heating element, and an electronic control component. An installation cavity is formed inside the aromatherapy body, and the heating element and the electronic control component are both located inside the installation cavity. By setting a barrier between the heating element and the electronic control component, the heating element is separated from the electronic control component, reducing the heat generated by the heating element from being transferred to the electronic control component and affecting the operation of the electronic control component. Attached Figure Description
[0029] Figure 1 This is a three-dimensional schematic diagram of one embodiment;
[0030] Figure 2 This is a cross-sectional view in one embodiment;
[0031] Figure 3 This is a three-dimensional schematic diagram of the cover in one embodiment;
[0032] Figure 4 This is a three-dimensional schematic diagram of the heat insulation component in one embodiment.
[0033] Explanation of icon numbers:
[0034] 10. Base assembly; 20. Housing; 21. Main housing part; 22. Head; 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 element; 70. Container tray; 80. Aromatherapy body; 81. Mounting cavity; 43. Recessed part; 44. Protruding part; 45. Clearance hole; 46. Cavity; 61. Clearance part. Detailed Implementation
[0035] 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.
[0036] 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.
[0037] like Figure 1-4 As shown, in one embodiment of the utility model, the aromatherapy device includes an aromatherapy body 80, an electronic control component, and a heating element 60. An installation cavity 81 is formed within the aromatherapy body 80. The wall of the installation cavity 81 has, for example, a visible structure. The electronic control component and the heating element 60 are both located within the installation cavity 81. A barrier is provided between the electronic control component and the heating element 60 to separate the heating element 60 from the electronic control component, reducing the heat generated by the heating element 60 from being transferred to the electronic control component, thus preventing the electronic control component from overheating and malfunctioning. On the other hand, if the heating element 60 overheats and catches fire, the barrier prevents the open flame from burning the electronic control component, further improving safety.
[0038] In one embodiment of the utility model, the barrier includes a cover 40 disposed within the mounting cavity 81, and an electronic control component disposed within the cavity 46 formed by the cover 40. The wall of the mounting cavity 81 is, for example, the housing 20 of an aromatherapy device. The cover 40 can be connected to the base assembly 10 or the housing 20 to form a relatively enclosed cavity 46. The heating element 60 is disposed within the mounting cavity 81 and located outside the cavity 46, separated from the electronic control component within the cavity 46, thereby reducing the transfer of heat generated by the heating element 60 to the electronic control component.
[0039] In one embodiment of the utility model, the barrier includes a heat insulation component 60, such as heat insulation cotton. The heat insulation component 60 covers and completely covers the heating component 60, thus isolating the heating component 60 from the electronic control component. This reduces the heat generated by the heating component 60 from being transferred to the electronic control component, preventing the electronic control component from overheating and malfunctioning. The heating component 60 is, for example, a heating plate, attached to the wall of the mounting cavity 81. The heat insulation component 60 only needs to be attached above the heating component 60, and its outer periphery is connected to the wall of the mounting cavity 81, resulting in better heat insulation.
[0040] In one embodiment of the utility model, the barrier may include only the cover 40, or only the heat insulation component 60; or it may include both the cover 40 and the heat insulation component 60, depending on the actual situation, and is not limited to a single one here.
[0041] In one embodiment of the utility model, the electronic control component includes an electronic control board and a light component 30 electrically connected to the electronic control board, both of which are disposed within the cavity 46. The aromatherapy body 80 includes a housing 20, with an installation cavity 81 disposed inside the housing 20. The housing 20 is provided with a visualization structure, allowing light emitted by the light component 30 to illuminate the aromatherapy device through the housing 20; the visualization structure may be, for example, a light-transmitting material structure (e.g., polycarbonate structure, polystyrene structure, etc.), a transparent material structure (e.g., glass structure), or a viewing window structure, etc., and is not limited to any single type. The cover 40 can be made of a translucent or opaque material and is positioned around the outside of the light-emitting part of the light assembly 30, or around the entire light assembly 30. The light-emitting part is a light-emitting element, such as a light-emitting bead or a light-emitting strip. The cover 40 not only serves as heat insulation but also blocks the light projected from the light assembly 30, reducing the intensity of the light after it passes through the cover 40. Alternatively, the cover 40 may refract the light within the cover 40, causing it to exit from a non-direct direction from the light assembly 30, thus reducing the light intensity for nighttime lighting and minimizing the glare caused by direct light shining into the user's eyes. Simultaneously, the cover 40 can conceal the internal components and wiring of the aromatherapy device, making them invisible and enhancing the overall aesthetics of the device. In other embodiments, the electronic control component also includes a control switch, which is also located within the cavity.
[0042] In one embodiment of the utility model, the cover 40 is made of a light-transmitting material, such as polycarbonate, polystyrene, polymethyl methacrylate, etc. The cover 40 transmits the light from the light assembly 30 while keeping the components inside the cover 40 in a non-transparent state. The housing 20 is, for example, a visible structure made of glass. The cover 40, which is light-transmitting but not transparent, is provided between the light assemblies 30, such as a milky white plastic cover 40 made of polyethylene. The cover 40 can not only block the components and wires inside the aromatherapy device, but also soften the light emitted by the light assembly 30, avoid glare, and improve the user experience. The glass housing 20 and the cover 40 are used together to make the aromatherapy device more beautiful and can also create a romantic lighting atmosphere.
[0043] like Figure 1-4As shown, in one embodiment of the utility model, the cover 40 is shaped like a frustum, and the side wall of the cover 40 is provided with a recessed portion 43. For example, the recessed portion 43 is an arc transition from the top end of the frustum to the bottom end of the frustum, runs through the entire side wall of the cover 40, and is recessed towards the side of the light assembly 30. By means of the recessed portion 43 on the side wall of the cover 40, the processing performance of the light projected by the light assembly 30 can be further improved to process it into flexible light. The side wall of the cover 40 is provided with a plurality of protrusions 44 evenly and at intervals along its outer periphery. The protrusions 44 are strip-shaped and extend from the top of the cover 40 to the bottom of the cover 40 along the height direction of the cover 40. By means of the strip-shaped structure of the protrusions 44, the cover 40 can be given visual depth, thereby creating a three-dimensional effect and making the product look more exquisite. In some other embodiments, the cover 40 is also provided with light diffusing powder, which 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 set the side wall of the cover 40 as a recessed part 43 or to provide a protruding part 44 on the outer periphery of the side wall of the cover 40 according to specific actual needs.
[0044] like Figure 1-4 As shown, in one embodiment of the utility model, both the cover 40 and the aromatherapy body 80 are rotating bodies, and the rotation axis of the cover 40 coincides with the rotation axis of the aromatherapy body 80. The top end of the cover 40 abuts against the top end of the aromatherapy body 80, and the bottom end of the cover 40 is bonded to the bottom end of the aromatherapy body 80, thereby achieving a stable connection between the cover 40 and the aromatherapy body 80. Figure 1-2 As 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 includes a first portion 420 extending inward from the top of the main cover 41 and a second portion 42 extending inward from the first portion 420 into the main cover 41. The second portion 421 of the reinforcing shield 42 is spaced apart from the main cover 41 and is arranged around the periphery of the light-emitting part of the light-emitting assembly 30. The reinforcing shield 42 is disposed 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.
[0045] like Figure 1-4As 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. Understandably, the first portion 420 connects the main shield 41 and the reinforcing shield 42; the second portion 421 extends along the height of the aromatherapy body 80, forming a tubular body, and the light assembly 30 is disposed inside the tubular body. The integral forming of the reinforcing shield 42 and the main shield 41 reduces assembly steps, improves production efficiency, and reduces manufacturing costs. The integral design makes the appearance of the shield 40 neater and more harmonious, and it allows for more precise control of the light propagation path, thereby providing a more uniform and softer light effect.
[0046] like Figure 1-4 As shown, in one embodiment of the utility model, the top of the aromatherapy body 80 is provided with a receiving cavity 220 communicating with the outside. Specifically, the aromatherapy body 80 includes a base assembly 10 and a shell 20. The shell 20 may be made of transparent glass material. The base assembly 10 and the shell 20 enclose a mounting cavity 81. A heating element 50 is provided at the top of the mounting cavity 81. The shell 20 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 and the base assembly 10 enclose a mounting cavity 81. The heating element 50 is located at the top of the main shell portion 21. The bottom of the cover 40 is connected to the base assembly 10. The cover 40 is at least partially connected to the shell 20 on the side closest to the shell 20 to fix the cover 40. The connection between the cover 40 and the shell 20 makes the cavity 46 larger, allowing more electronic components to be accommodated in the cavity. The greater the distance between the cover 40 and the light assembly 30, the better the soft light effect of the cover 40. In one embodiment, the bottom of the cover 40 is connected to the base assembly 10, and the top of the cover 40 is connected to the top of the main shell 21. A recess 43 is formed between the top and bottom of the cover 40, making the cavity 46 as large as possible and providing a good soft light effect. The head 22 is provided with a receiving cavity 220 communicating with the outside. The receiving cavity 220 contains solid aromatherapy wax. The heating element 50 is a heating plate, located on the top wall of the mounting cavity 81 and directly below the head 22, which facilitates the heating plate to heat the solid aromatherapy wax, more effectively melting the wax and releasing the fragrance; or the receiving cavity 220 contains aromatherapy crystals, on which fragrance liquid is adsorbed. The heating element 50 heats the aromatherapy crystals, quickly evaporating the fragrance liquid and releasing 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 50 according to actual needs, which is not limited here.
[0047] like Figure 1-2As shown, in one embodiment of the utility model, the housing 20 includes a main housing portion 21 and a head 22 located at the top of the main housing portion 21. The main housing portion 21 gradually narrows from the base assembly 10 toward the head 22, forming a tapered shape. The receiving cavity 220 is located at the top of the housing, making it more convenient to replace solid aromatherapy wax. The receiving cavity 220 at the top allows users to intuitively see the remaining amount of aromatherapy wax, making it convenient to add or replace it in a timely manner. The design of the receiving cavity 220 at the top makes it more convenient to clean the aromatherapy device, and users can easily wipe or clean the receiving cavity 220 and its surrounding area.
[0048] like Figure 1-2 As shown, in one embodiment of the utility model, the aromatherapy lamp further includes a heat insulation component 60. The heat insulation component 60 covers the heating component 50 and is connected to the top of the cover 40. The cover 40 is located inside the main housing 21, and the heating component 50 is located at the top of the mounting cavity 81, specifically between the wall of the mounting cavity 81 and the top of the cover 40. The heat insulation component 60 completely covers the heating component 50, preventing the heat generated by the heating component 50 from being transferred to the electronic components inside the cover 40, thus affecting the normal operation of the electronic components.
[0049] In one embodiment of the utility model, a heat insulation component 60 (e.g., heat insulation cotton 60) is provided between the cover 40 and the heating element 50. For example, the cover 40 has a clearance hole 45 near the top of the heating element 50, and the heat insulation component 60 is connected to the top of the cover 40 and covers the clearance hole 45. The cover 40 includes a main cover 41, and the main cover 41 has a connecting part at the top near the heating element 50. The connecting part is located on the outer periphery of the clearance hole 45, and the heat insulation component 60 is connected to the connecting part to completely cover the clearance hole 45, so as to prevent the heat generated by the heating element 50 from being transferred to the electronic components inside the cover 40 and affecting the normal operation of the electronic components. The connecting portion is, for example, the circumferential top wall of the main cover 41. In some embodiments, the connecting portion is a first part 42, which is located on the top of the main cover 41 near the heating element 50, protruding circumferentially along the main cover 41 and extending towards the center of the clearance hole. The heat insulation cotton 60 is disposed on the first part 420 and completely covers the clearance hole 45. Whether the heat insulation cotton 60 is placed on the heating element 50 or on the clearance hole 45, it serves to insulate the heat of 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 can reduce this risk. The heat insulation cotton 60 also protects other components of the aromatherapy device from high temperatures. 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. In some other embodiments, the heat insulation component 60 is provided with a clearance portion 61, which penetrates the heat insulation component 60 along its height direction. The clearance portion 61 is, for example, a wire through hole. The heat insulation component 60 is provided with a wire through hole that penetrates the heat insulation cotton along its height direction. The wires on the heating component 50 are electrically connected to the main control board inside the cover 40 through the wire through hole. In some embodiments, the circumferential sidewall of the cover 40 is provided with an extension portion that protrudes from the top wall of the main cover 41. For example, the extension portion is an annular body that surrounds the circumference of the top wall of the main cover 41 and extends toward the side closer to the heating component 50 to form a receiving groove. The receiving groove is located on the side of the main cover 41 closer to the heating component 50. The heat insulation component 60 is sized to match the receiving groove and is disposed in the receiving groove to restrict the movement of the heat insulation component 60. The cover 40 also includes a reinforcing shield 42, which is connected to the main cover 41. For example, when the reinforcing shield 42 and the main cover 41 are two separate parts, the extension and the receiving groove provided on the main cover 41 can also be provided on the reinforcing shield 42. The structural features are similar to the structural principle of the extension and the receiving groove provided on the main cover 41, and will not be described in detail here.
[0050] like Figure 1-2As shown, in one embodiment of the utility model, the receiving cavity 220 is provided with a container tray 70, which is detachably connected to the receiving cavity 220. 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 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.
[0051] like Figure 1-2 As shown, in one embodiment of the utility model, the lighting assembly 30 includes a lamp panel and a light-emitting element. The light-emitting element is disposed on the lamp panel, and the light-emitting element is, for example, an LED bead. The length direction of the lamp panel is the same as the height direction of the aromatherapy body 80. There is one or more light-emitting elements. When there are multiple light-emitting elements, they can be arranged along the length of the lamp panel. For example, the length direction of the lamp panel is the same as the height of the housing 20. The distance between the top of the light-emitting element closest to the wall of the mounting cavity 81 in the height direction of the aromatherapy body 80 and the wall of the mounting cavity 81 is 'a', where 'a' ranges from 25mm to 42mm. Specifically, 'a' is the distance from the top of the main shell portion 21 in the housing 20. This distance range allows the light emitted by the light-emitting element to present a shaped lighting effect within the housing 20, and the effect is better. For example, in this embodiment, the light source needs to form a flame shape. If the distance between the top of the light source and the top of the main shell 21 in the housing 20 is less than 25mm, the flame shape will be affected by the top of the main shell 21 in the housing 20, and most of the light will not form a clear flame shape after refraction. If the distance between the top of the light source and the top of the main shell 21 in the housing 20 is greater than 42mm, the flame-shaped light is too far from the top of the main shell 21 in the housing 20, resulting in a poor visual effect. For example, in this embodiment, the flame-shaped light is not enough to create the effect of burning the scented candle on the top of the housing 20, as the distance between the light and the top of the main shell 21 in the housing 20 is too great, thus reducing the user experience. A range of 25mm-42mm can create a more realistic flame shape, simulating the effect of a real flame jumping and swaying.
[0052] In one embodiment of the utility model, the cover 40 has a locking part on the side near the lamp plate. For example, a locking protrusion or locking groove is provided on the side wall of the reinforcing shield 42 near the lamp plate, located at the top of the cover 40. The lamp plate is elongated and vertically arranged in the cavity 46. The upper and lower ends of the lamp plate need to be fixed to prevent the lamp plate from shaking. The bottom of the lamp plate is fixed to the base assembly 10, and its top is fixedly connected to the locking part. The lamp plate can be configured as a "T" shape, for example. The lamp plate includes a vertical part and a connecting part. The vertical part and the connecting part are arranged perpendicularly. The connecting part is located at the end of the vertical part near the heating element 50, which is also located at the top of the lamp plate. The connecting part is fixedly connected to the locking part on the reinforcing shield 42 to fix the lamp plate.
[0053] 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, The application relates to an aromatherapy device. The aromatherapy device comprises: an aromatherapy body (80) with an installation cavity (81) formed therein; a heating element (50) arranged in the installation cavity (81); an electric control assembly arranged in the installation cavity (81) and separated from the heating element (50) by a barrier; the top end of the aromatherapy body (80) is provided with a containing cavity (220) in communication with the outside world; the aromatherapy body (80) comprises a base assembly (10) and a shell (20); 2. The aromatherapy device of claim 1, wherein, the shell (20) comprises a main shell part (21) and a head part (22) arranged at the top end of the main shell part (21), the main shell part (21) and the base assembly (10) form the installation cavity (81), and the head part (22) is provided with the containing cavity (220).
3. The aromatherapy device of claim 1, wherein, the barrier comprises a heat insulation element (60) arranged on the heating element (50).
4. The aromatherapy device of claim 3, wherein, the barrier comprises a cover (40) arranged in the installation cavity (81), the electric control assembly is arranged in a cavity (46) formed by the cover (40), and the heating element (50) is arranged between the cover (40) and the wall of the installation cavity (81).
5. The aromatherapy device of claim 3, wherein, the barrier further comprises a heat insulation element (60) arranged on the heating element (50) and connected to the top of the cover (40), and / or the top of the cover (40) is provided with a relief hole (45), and the heat insulation element (60) is arranged on the relief hole (45).
6. The aromatherapy device of claim 5, wherein, the electric control assembly comprises a light assembly (30) arranged in the cavity (46), and the cover (40) is made of a light-transmitting material. the side wall of the cover (40) is provided with a recessed part recessed towards the side of the light assembly; and / or 7. The aromatherapy device of claim 5, wherein, the side of the cover (40) away from the light assembly (30) is provided with a plurality of protruding parts (44) arranged in a circumferential direction along the side wall of the cover (40).
8. The aromatherapy device of claim 5, wherein, the cover (40) comprises a main cover (41) and a reinforced shielding cover (42) arranged in the main cover (41), and the reinforced shielding cover (42) is arranged around the light-emitting part of the light assembly (30).
9. The aromatherapy device of claim 1, wherein, the light assembly (30) comprises a light-emitting body, and the distance between the top of the light-emitting body in the height direction of the aromatherapy body (80) and the wall of the installation cavity (81) is 25-42 mm.
10. The aromatherapy device of any one of claims 3 to 8, wherein, the containing cavity (220) is provided with a container tray (70) detachably connected with the containing cavity (220).
11. The aromatherapy device of any one of claims 3 to 8, wherein, the cover (40) and the aromatherapy body (80) are both rotary bodies, the rotary axis of the cover (40) coincides with the rotary axis of the aromatherapy body (80), the top end of the cover (40) abuts against the top of the aromatherapy body (80), and the bottom end of the cover (40) is bonded with the bottom end of the aromatherapy body (80). the bottom of the cover (40) is connected with the base assembly (10), and the cover (40) is at least partially connected with the shell (20) on the side close to the shell (20).
12. The aromatherapy device of claim 1, wherein, The heating element (50) is arranged at the top end of the mounting cavity (81) and below the head (22).
13. The aromatherapy device of claim 4, wherein, The cover (40) is provided with a receiving groove on the side close to the heating element (50), and the heat insulation element (60) is arranged in the receiving groove.
14. The aromatherapy device of claim 7, wherein, The light assembly (30) comprises a lamp plate, and the cover (40) is provided with a clamping portion on the side close to the lamp plate, and the clamping portion is clamped with the lamp plate.