Aerosolizing aromatherapy device

CN224649960UActive Publication Date: 2026-08-18SHENZHEN LANHE TECHNOLOGIES CO LTD
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Patent Information

Application Number
CN202521162501.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-10-17
Filing Date
2025-06-06
Publication Date
2026-08-18
Estimated Expiration
2035-06-06

AI Technical Summary

Technical Problem

位于上主体上的烟弹和位于下主体上的风机都需要与控制组件电连接,通常控制组件靠近烟弹或者风机其中一者设置,与另外一者通过电线电连接,电线显露于烟雾腔体,导致观赏性差

Benefits of technology

[0023]由上可知,本实用新型上述技术特征可以具有如下一个或多个有益效果:本实施例提供的雾化香薰装置通过将通道件设于塑形罩内,雾化组件或者风机组件与主控电路板电连接的线路设于通道件内,塑形罩可对通道件进行遮挡,防止用户观察到线路连接,影响化香薰装置的美观,也影响烟雾腔体内烟雾的观赏性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of atomization aromatherapy device.The atomization aromatherapy device includes: shell, main control circuit board, atomization component, fan assembly and the frame support, shaping structure and base sequentially arranged along the height direction of atomization aromatherapy device;The shell is transparent, and the shell is annularly arranged on the circumferential side of the shaping structure, and forms a smoke cavity;The shaping structure includes a shaping cover and a flow guide, the shaping cover is protruded on the bottom of the frame support, the flow guide is connected with the base, and the shaping cover is covered on the top of the flow guide;A containing space is formed between the flow guide and the base, and the fan assembly is arranged in the containing space;The atomization component is arranged on the frame support;A passage piece is arranged between the frame support and the flow guide, and the line electrically connected between the atomization component or the fan assembly and the main control circuit board is arranged in the passage piece, and the passage piece is located in the shaping cover.Through the above arrangement, the ornamental value of the atomization aromatherapy device is improved.
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Description

Technical Field

[0001] This utility model relates to the field of atomization technology, and in particular to an atomizing aromatherapy device. Background Technology

[0002] Existing aromatherapy diffusers not only diffuse aroma but also allow for observation of smoke flow, enhancing the visual experience. Therefore, a visible smoke chamber is incorporated within the diffuser, containing an upper and lower main body spaced apart. The smoke cartridge is typically located in the upper main body, with the smoke outlet at the bottom. Smoke flows from the outlet, first blowing down to the lower main body, then along its side wall into the smoke chamber. A fan is also required to circulate the smoke; however, due to structural limitations, the fan is usually located in the lower main body for optimal space utilization. Both the smoke cartridge in the upper body and the fan in the lower body need electrical connection to a control unit. Typically, the control unit is positioned close to either the cartridge or the fan, connected to the other via wires. These wires are exposed within the smoke chamber, resulting in poor visual appeal. Utility Model Content

[0003] In order to improve at least some of the above-mentioned disadvantages or deficiencies, embodiments of the present invention provide a misting aromatherapy device.

[0004] Specifically, this utility model provides an atomizing aromatherapy device, comprising: a housing, a main control circuit board, an atomizing component, a fan component, and a frame support, a shaping structure, and a base arranged sequentially along the height direction of the atomizing aromatherapy device; the housing is transparent, and the housing is arranged around the periphery of the shaping structure to form a smoke cavity; the shaping structure includes a shaping cover and a flow guide, the shaping cover is disposed at the bottom of the frame support, the flow guide is connected to the base, and the shaping cover is disposed on the top of the flow guide;

[0005] A receiving space is formed between the flow guide and the base, and the fan assembly is disposed within the receiving space; the atomizing assembly is disposed on the frame support, and the frame support is provided with a mist outlet corresponding to the inside of the shaping cover, and the mist outlet is respectively connected to the atomizing assembly and the smoke chamber;

[0006] A channel is provided between the frame support and the flow guide, and the line connecting the atomizing component or the fan component to the main control circuit board is located in the channel. The channel is located inside the shaping cover.

[0007] Alternatively, the main control circuit board is electrically connected to the atomizing component and the fan component respectively; the main control circuit board is disposed within the frame support; or, the main control circuit board is disposed within the accommodating space.

[0008] Alternatively, the frame support and the flow guide are spaced apart and connected by a connecting post, with the connecting post at least partially located between the frame support and the flow guide.

[0009] Alternatively, the channel component is at least partially located within the connecting column, and the channel component connects the frame support and the flow guide.

[0010] Optionally, the connecting post is disposed on the flow guide, the connecting post forming a protrusion, the protrusion protruding from the outside of the channel member; the channel member extends into the interior of the frame support, connecting the frame support and the flow guide; the protrusion is located between the frame support and the flow guide.

[0011] Alternatively, the connecting column is provided with a first air outlet channel, which connects the fan assembly and the air inlet channel in the atomizing assembly.

[0012] Alternatively, the connecting post is located on top of the flow guide and inside the shaping cover.

[0013] Optionally, the atomizing aromatherapy device further includes a fan bracket, which is mounted on the base. The fan assembly includes a second fan, which is mounted on the fan bracket. The second fan has a second air outlet, which is mounted on the fan bracket and is oriented in a direction perpendicular to the axis of the second fan. The second air outlet is connected to the smoke chamber.

[0014] Alternatively, the atomizing aromatherapy device may also include:

[0015] A battery is disposed within the accommodating space, and the battery and the fan assembly are arranged in a planar direction along a first direction;

[0016] The fan assembly further includes a first fan, and the first fan and the second fan are arranged along a second direction in the planar direction, the first direction and the second direction being perpendicular.

[0017] Further optionally, the fan bracket is provided with a first fan accommodating portion and a second fan accommodating portion along the second direction, the first fan is disposed in the first fan accommodating portion and the second fan is disposed in the second fan accommodating portion; the first fan accommodating portion and the second fan accommodating portion are spaced apart, and / or, both the first fan accommodating portion and the second fan accommodating portion are cylindrical.

[0018] Optionally, the fan bracket is further provided with a first air outlet, the first air outlet being connected to the first fan housing, and the second air outlet being connected to the second fan housing; the guide member is provided with a first air outlet channel and a second air outlet channel; the first air outlet channel is connected to the air inlet channel in the atomizing component and the first air outlet, respectively, and the second air outlet channel is connected to the smoke chamber and the second air outlet, respectively.

[0019] Further optionally, the atomizing aromatherapy device further includes a first air outlet channel, which connects the first fan and the air inlet channel of the atomizing component, the first air outlet channel passing through the guide member and located inside the shaping cover; and / or, it further includes a second air outlet channel, which connects the second fan and the smoke chamber; a guide hood is provided on the side of the guide member near the smoke chamber, and the second air outlet channel is located inside the guide hood.

[0020] Alternatively, the fan bracket is further provided with a partition, which is disposed between the first fan housing and the second fan housing.

[0021] Further, optionally, it also includes:

[0022] A wind deflector is provided on the side of the first fan housing and the second fan housing away from the air guide.

[0023] As can be seen from the above, the above-mentioned technical features of this utility model can have one or more of the following beneficial effects: The atomizing aromatherapy device provided in this embodiment sets the channel component inside the shaping cover, and sets the line connecting the atomizing component or fan component to the main control circuit board inside the channel component. The shaping cover can cover the channel component to prevent the user from observing the line connection, which affects the aesthetics of the aromatherapy device and also affects the viewing of the smoke in the smoke chamber. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments 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.

[0025] Figure 1 This is a schematic diagram of the structure of an atomizing aromatherapy device provided in an embodiment of the present utility model.

[0026] Figure 2 for Figure 1 A cross-sectional schematic diagram of a vaporizer.

[0027] Figure 3 for Figure 1 A partial exploded view of the aromatherapy device.

[0028] Figure 4 for Figure 3 A schematic diagram of the structure of the middle support connector.

[0029] Figure 5 for Figure 1 A schematic diagram of the exploded structure of another part of the atomizing aromatherapy device.

[0030] Figure 6 for Figure 5 A schematic diagram of the structure of the central guide component.

[0031] Figure 7 for Figure 5 A schematic diagram of the structure of a medium-sized wind turbine support.

[0032] Main component numbers:

[0033] 1. Atomizing aromatherapy device; 10. Atomizing component; 11. Atomizing outlet; 20. Electrical control component; 21. Main control circuit board; 22. Lamp panel; 30. Shaping structure; 31. Air guide; 32. Shaping cover; 40. Frame bracket; 41. Bracket body; 411. Receiving groove; 42. Bracket connector; 421. Circuit board mounting part; 43. Cover; 44. Decorative part; 60. Fan assembly; 61. First fan; 62. Second fan ; 63. Windshield; 70. Battery; 80. Fan bracket; 81. First fan housing; 82. Second fan housing; 83. First air outlet; 84. Second air outlet; 85. Partition; 100. Housing; 101. Smoke chamber; 102. Aroma diffuser; 200. Base; 201. Air inlet; 311. First air outlet channel; 312. Wiring channel; 313. Air guide cover; 314. Connecting column; 315. Channel component. Detailed Implementation

[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0035] See Figures 1 to 5 The present invention provides an atomizing aromatherapy device 1, which may specifically include, for example, an atomizing component 10, an electronic control component 20, a shaping structure 30, and a fan component 60.

[0036] Specifically, the atomizing component 10, the shaping structure 30, and the fan component 60 are arranged sequentially along the height direction of the atomizing aromatherapy device 1, for example, arranged sequentially from top to bottom or from bottom to top along the height of the atomizing aromatherapy device 1. The electronic control component 20 is located on one side of the atomizing component 10, the shaping structure 30, or the fan component 60 along the height direction of the atomizing aromatherapy device 1. For example, the electronic control component 20 may be located above or below the shaping structure 30 in the height direction of the atomizing aromatherapy device 1, or above or below the fan component 60 in the height direction of the atomizing aromatherapy device 1. This is not a specific limitation. The electronic control component 20 is located on the outer wall of the atomizing aromatherapy device 1, which would obstruct the smoke chamber 101. The electronic control component 20 is located on one side of the atomizing component 10, the shaping structure 30, or the fan component 60 along the height direction of the atomizing aromatherapy device 1. It is arranged with the atomizing component 10, the shaping structure 30, or the fan component 60 along the height direction of the atomizing aromatherapy device 1 to better observe the smoke flow in the smoke chamber 101. The atomizing component 10 can be, for example, a smoke cartridge. The atomizing channel of the atomizing component 10 is connected to a smoke outlet 11. The atomizing component 10 is used to atomize the aromatherapy liquid into a smoke-like form, with the smoke flowing out from the smoke outlet 11. The electronic control component 20 can include, for example, a main control circuit board 21. The electronic control component 20 is electrically connected to both the atomizing component 10 and the fan component 60. The main control circuit board 21 is used to control the operation of the atomizing component 10 and the fan component 60. The atomizing aromatherapy device 1 also includes a smoke chamber 101. A shaping structure 30 can be used, for example, to shape the smoke chamber 101, with the smoke primarily creating a decorative effect on the shaping structure 30. The fan component 60 can be, for example, a fan, used to blow air onto the atomizing component 10. The smoke chamber 101 is arranged around the atomizing component 10, the electronic control component 20 and the shaping structure 30, and the mist outlet 11 connects the shaping structure 30 and the smoke chamber 101. The atomizing component 10 atomizes the aromatherapy and delivers it to the smoke chamber 101 through the mist outlet 11, so that the user can see the aromatherapy smoke flowing out of the smoke chamber 101, achieving the effect of viewing the smoke.

[0037] The atomizing aromatherapy device 1 provided in this embodiment arranges the atomizing component 10, the shaping structure 30, and the fan component 60 sequentially along the height direction of the atomizing aromatherapy device 1. The electrical control component 20 is located between the atomizing component 10 and the shaping structure 30, which makes the electrical connection lines between the atomizing component 10 and the fan component 60 and the electrical control component 20 shorter and easier to connect. The atomizing component 10 is provided with a smoke chamber 101, which is arranged around the outside of the shaping structure 30, or around the outside of the shaping structure 30 and the atomizing component 10. This allows the atomizing aromatherapy device 1 to achieve landscape aromatherapy while the user's line of sight is relatively centered, resulting in a better visual effect. In addition, the atomizing aromatherapy device 1 has a compact structure and low height, making the atomizing aromatherapy device 1 miniaturized and improving the user experience.

[0038] See also Figure 2 and Figure 3 The atomizing aromatherapy device 1 may also include, for example, a frame support 40 and a base 200, with a molding structure 30 disposed between the frame support 40 and the base 200. The atomizing component 10 and the electronic control component 20 are disposed on the frame support 40, and the fan assembly 60 is disposed on the base 200. The frame support 40 may, for example, be provided with a receiving groove 411 and a circuit board mounting part 421, with the circuit board mounting part 421 located between the receiving groove 411 and the molding structure 30. The atomizing component 10 is disposed within the receiving groove 411, and the electronic control component 20 is disposed on the circuit board mounting part 421. The receiving groove 411 may, for example, be disposed at the top of the frame support 40, and the receiving groove 411 has an opening. The atomizing component 10 may, for example, be installed into the receiving groove 411 through the opening. The atomizing component 10 and the receiving groove 411 are detachable. The bottom of the receiving groove 411 has a through hole corresponding to the mist outlet 11, making it easy to replace the atomizing component 10 and simplifying operation. The electronic control component 20 may include, for example, a main control circuit board 21, which is located inside the frame bracket 40 and specifically on the circuit board mounting part 421 to control the operation of the electrical components in the atomizing aromatherapy device 1; the bottom of the receiving groove 411 may also be provided with an electrical connection spring, and the main control circuit board 21 and the atomizing component 10 are electrically connected through the electrical connection spring. The electronic control component 20 may include, for example, a lamp board 22 and a main control circuit board 21, with a light unit located on the lamp board 22 and the light-emitting surface of the light unit facing the smoke chamber 101 to illuminate the smoke in the smoke chamber 101. The main control circuit board 21 is electrically connected to the lamp board 22. The main control circuit board 21 is located between the atomizing component 10 and the shaping structure 30. The atomizing component 10 and the fan component 60 are respectively electrically connected to the main control circuit board 21. The lamp board 22 is, for example, sleeved outside the main control circuit board 21. The main control circuit board 21 controls the operation of the lamp board 22 and electrical components, such as controlling the operation of the atomizing component 10, the lamp board 22, and the fan component 60. The lamp board 22 can be, for example, mounted on the frame support 40. In some embodiments, the lamp board 22 is electrically connected to the atomizing component 10 and the main control circuit board 21 respectively. Specifically, the atomizing component 10 and the lamp board 22 are mounted on the frame support 40. The circuit of the atomizing component 10 is connected to the lamp board 22, and the circuit of the lamp board 22 is then connected to the main control circuit board 21. The positional relationship between the lamp board 22, the atomizing component 10, and the main control circuit board 21 can be adjusted to facilitate circuit connection, and no single limitation is made. In some embodiments, the electronic control component 20 includes only the main control circuit board 21 and does not include the lamp board 22, depending on actual needs.

[0039] A receiving space is formed between the molded structure 30 and the base 200. This receiving space is used to install electronic components and is separated from the smoke chamber 101. The fan assembly 60 is disposed within this receiving space. The fan assembly 60 is electrically connected to the main control circuit board 21 to control its operation. Since the fan assembly 60 is located below the main control circuit board 21, the wiring connecting the fan assembly 60 and the main control circuit board 21 passes through the molded structure 30 located between them. The wiring is located within a channel 315 inside the molded structure 30, which can shield the channel 315. See also... Figure 2 The atomizing aromatherapy device 1 also includes a housing 100, which surrounds the frame support 40 and the shaping structure 30. The housing 100, the frame support 40, and the shaping structure 30 together form a smoke chamber 101, which surrounds the atomizing component 10, the electronic control component 20, and the shaping structure 30. A fragrance diffuser 102 is located between the housing 100 and the frame support 40, through which the aromatherapy smoke is diffused. In other embodiments, the main control circuit board 21 can be disposed within the accommodating space, for example, below the fan assembly 60. Therefore, the wiring between the atomizing component 10 and the main control circuit board 21 is located within the channel component 315 and passes through the shaping structure 30 located between the atomizing component 10 and the main control circuit board 21. The shaping structure 30 can shield the channel component 315.

[0040] Furthermore, the shaped structure 30 may include, for example, a flow guide 31, which is connected to both the frame support 40 and the base 200, and forms an accommodating space between the flow guide 31 and the base 200, within which the fan assembly 60 is disposed. The dimension of the flow guide 31 gradually decreases along the direction close to the frame support 40, and the dimension may be, for example, the diameter, i.e., the flow guide 31 may be, for example, a tapered structure. The shaping structure 30 may also include, for example, a shaping cover 32. The shaping cover 32 may be a tubular structure protruding from the bottom of the frame support 40, or the bottom of the frame support 40 may be recessed to form the shaping cover 32, so that the shaping cover 32 can cover the top of the guide member 31. The shaping cover 32 and the guide member 31 are arranged close to each other, and the top of the shaping cover 32 and the guide member 31 form a shaping space. Smoke flows out of the mist outlet 11 into the shaping space to prevent the smoke from spreading. The smoke flows out of the shaping space and flows along the outer wall of the guide member 31 to the smoke cavity 101, forming a landscape smoke pattern. The channel member 315 protrudes from the top of the guide member 31 and is located inside the shaping cover 32. The shaping cover 32 covers the top of the guide member 31 and also covers the outside of the channel member 315 to shield the channel member 315. The mist outlet 11 is located inside the shaping cover 32, for example, at the bottom of the frame support 40. The mist outlet 11 is positioned opposite the flow guide 31. Smoke flows out from the mist outlet 11, passing through the channel between the shaping cover 32 and the flow guide 31 to restrict the shape of the smoke and create a smoke landscape. For example, as the smoke exits from the mist outlet 11, part of it exits through the gap between the shaping cover 32 and the flow guide 31, and another part flows from the mist outlet 11 to the arc-shaped recessed groove of the flow guide 31. After the airflow hits the arc-shaped recessed groove, it bounces back onto the shaping cover 32. The shaping cover 32 also guides part of the airflow into the gap between the shaping cover 32 and the flow guide 31, thus making the smoke appear as a waterfall. The specific shapes of the shaping cover 32 and the flow guide 31 can be set according to actual needs to create different shapes.

[0041] Furthermore, the frame support 40 and the flow guide 31 can be arranged at intervals, for example, and a channel 315 is provided between the frame support 40 and the flow guide 31. The line connecting the atomizing component 10 or the fan component 60 to the main control circuit board 21 is located in the channel 315, and the channel 315 is located inside the shaping cover 32. In one embodiment, the main control circuit board 21 is housed within the frame support 40. The atomizing component 10 is electrically connected to the main control circuit board 21 via a metal spring pin. The fan component 60 is connected to the main control circuit board 21 via a wiring connection, which is located within the channel component 315. In another embodiment, the main control circuit board 21 is housed within an accommodating space. The fan component 60 is also housed within the accommodating space and electrically connected to the main control circuit board 21. The atomizing component 10 is connected to the main control circuit board 21 via a wiring connection, which is located within the channel component 315. Since the channel component 315 is located within the shaping cover 32, the shaping cover 32 can shield the channel component 315. The smoke generated by the atomizing component 10 is not only shaped by the shaping cover 32, but the shaping cover 32 also shields the channel component 315, preventing the user from observing the wiring connection and affecting the viewing experience.

[0042] Furthermore, the frame support 40 and the flow guide 31 are connected by a connecting structure, which is at least partially located between the frame support 40 and the flow guide 31. The connecting structure may, for example, include a connecting post 314 located between the frame support 40 and the flow guide 31, or between the shaping cover 32 and the flow guide 31. In one embodiment, the housing 100 may also be disposed only around the outside of the shaping structure 30 for observing only the smoke flowing through the shaping structure 30. The housing 100 may be made of, for example, a transparent material to be transparent or semi-transparent, so that the smoke flow within the smoke chamber 101 can be observed. Multiple connecting structures are provided. In one embodiment, the connecting structure includes, for example, a connecting post 314 and a channel member 315, with the channel member 315 at least partially located within and extending through the connecting post 314, such that the channel member 315 connects the frame support 40 and the flow guide 31. It should be noted that the channel component 315 is located within the connecting column 314 and can be separately connected to the connecting column 314 or integrally formed with the connecting column 314. The connection column 314 enhances the support stability of the frame support 40. In other embodiments, the connection structure may include, for example, the connecting column 314 and the channel component 315, with the connecting column 314 and the channel component 315 being independently disposed, respectively located on the side of the guide component 31 near the frame support 40, and situated within the covering space of the shaping cover 32. When the shaping cover 32 is a tubular structure protruding from the bottom periphery of the frame support 40, the connecting post 314 abuts against the bottom of the frame support 40 to support the frame support 40, and the channel member 315 is connected to the bottom of the frame support 40 and passes through the bottom wall of the frame support 40; when the shaping cover 32 is a groove at the bottom of the frame support 40, the connecting post 314 abuts against the shaping cover 32 to support the frame support 40, and the channel member 315 is connected to the shaping cover 32 and passes through the wall of the shaping cover 32.

[0043] The channel component 315 connects the frame support 40 and the flow guide 31, with wiring located within it to electrically connect the electrical control component 20 and the fan component 60. In this embodiment, the connecting post 314 can be located, for example, at the end of the flow guide 31 near the frame support 40. When the shaping cover 32 is placed on top of the flow guide 31, it can, for example, conceal the connecting post 314 to improve aesthetics. Among them, some connecting posts 314 are solid columnar and are located between the frame support 40 and the flow guide 31, serving as a connection and support; some connecting posts 314 have a channel member 315 inside, the length of the channel member 315 is longer than the connecting post 314, and the connecting post 314 forms a protrusion on the outside of the channel member 315, which is located between the frame support 40 and the flow guide 31, serving to support the frame support 40; the part of the channel member 315 that is longer than the connecting post 314 extends into the frame support 40, and the frame support 40 has a clearance hole for the channel member 315 to extend into, so that the connection between the channel member 315 and the connecting post 314 and the frame support 40 is tighter. The channel member 315 may include a line channel 312, a gas channel, etc.; when the channel member 315 is a gas channel, the extension of the channel member 315 into the frame support 40 can also make the gas channel airtight.

[0044] See also Figure 3 The frame support 40 may include, for example, a support body 41 and a support connector 42, with the support connector 42 connecting the support body 41 and the flow guide 31. A receiving groove 411 may be disposed on the support body 41, and the atomizing component 10 may be disposed within the receiving groove 411. The support body 41 may also include, for example, a lamp plate mounting portion surrounding the receiving groove 411, with a lamp plate 22 disposed on the lamp plate mounting portion. The LEDs on the lamp plate 22 may be, for example, positioned downwards to illuminate the smoke chamber 101, further enhancing the visual effect. To improve safety and aesthetics, the support body 41 may also include a cover 43 and a decorative element 44 covering the lamp plate 22; however, this embodiment is not limited to these provisions. The bracket connector 42 can be fixedly connected to the bracket body 41 and the flow guide 31, for example. The bracket connector 42 is provided with a circuit board mounting part 421. Specifically, the circuit board mounting part 421 can be located between the bracket body 41 and the bracket connector 42. The bottom of the bracket body 41 can be provided with an electrical connection through hole, for example. The main control circuit board 21 and the atomizing component 10 are electrically connected through the electrical connection through hole.

[0045] In one embodiment of this example, see Figure 4The shaping cover 32 can be, for example, disposed on the side of the bracket connector 42 near the guide member 31. Specifically, the shaping cover 32 is an annular protrusion disposed on the bracket connector 42, and the annular protrusion faces the guide member 31. The annular protrusion allows the shaping cover 32 to cover the top of the guide member 31. Further, the guide member 31 can be, for example, a conical structure. By setting the guide member 31 to a conical structure, the shape of the smoke chamber 101 has a conical appearance, allowing the smoke to flow out along the conical guide surface of the guide member 31, further enhancing the visual effect; and by setting the guide member 31 to a conical structure, not only can the smoke also flow down along the surface of the guide member 31, forming a special smoke flow that increases the visual effect, but the interior of the conical structure also forms a partial accommodating space that can accommodate tall electrical components, making reasonable use of the accommodating space and reducing the overall volume of the atomizing aromatherapy device 1.

[0046] See Figure 5 The atomizing aromatherapy device 1 may also include, for example, a battery 70 disposed within an accommodating space, and the battery 70 and the fan assembly 60 arranged in a planar direction along a first direction. By arranging the battery 70 and the fan assembly 60 in a planar direction along the first direction, both the battery 70 and the fan assembly 60 are arranged on the same plane, and the battery 70 and the fan assembly 60 may be arranged, for example, close to the center of the base 200, so that the battery 70 and the fan assembly 60 are located as close as possible inside the conical structure, the height of the accommodating space can be reduced, thereby further reducing the height of the atomizing aromatherapy device 1. Furthermore, the fan assembly 60 may include, for example, a first fan 61 and a second fan 62, the first fan 61 and the second fan 62 arranged in a planar direction along a second direction, the first direction and the second direction being perpendicular. This arrangement makes the structure compact and reduces the size of the base 200.

[0047] Further, see Figure 7 The atomizing aromatherapy device 1 may, for example, also include a fan bracket 80, which is mounted on the base 200. The fan bracket 80 has a first fan housing 81 and a second fan housing 82 arranged along a second direction. The first fan housing 81 and the second fan housing 82 may, for example, be spaced apart, meaning they are not connected to each other. The first fan housing 81 and the second fan housing 82 may both be cylindrical and adapted to the shape of a fan. The first fan 61 is disposed within the first fan housing 81, and the second fan 62 is disposed within the second fan housing 82. By making the first fan housing 81 and the second fan housing 82 cylindrical, the matching degree between the first fan 61 and the second fan 62 can be higher, further reducing the size of the housing space.

[0048] Further, see Figure 5 , Figure 6and Figure 7 The base 200 is provided with an air inlet 201. The guide member 31 is provided with a first air outlet channel 311 and a second air outlet channel on the side near the smoke chamber 101. For example, an air guide hood 313 may also be provided, with the second air outlet channel located inside the air guide hood 313. The guide member 31 may also be provided with a wiring channel 312. The first air outlet channel 311 and the wiring channel 312 may be respectively located in the connecting column 314, or they may be separate pipe components. For example, the first air outlet channel 311 is located in the air duct component; the wiring channel 312 is located in the channel component 315. The fan assembly 60 is electrically connected to the main control circuit board 21 through the wiring channel 312. The bracket connector 42 is provided with a through hole corresponding to the wiring channel 312, so that the fan assembly 60 can be electrically connected to the main control circuit board 21 through the wiring channel 312. The first air outlet channel 311 connects to the air inlet channel inside the atomizing component 10. Specifically, for example, through holes are provided on both the bracket body 41 and the bracket connector 42, so that the first air outlet channel 311 connects to the air inlet channel of the atomizing component 10, and the second air outlet channel connects to the smoke chamber 101.

[0049] The fan bracket 80 is also equipped with a first air outlet 83 and a second air outlet 84. One end of the first air outlet 83 is connected to the first fan housing 81, and the other end is connected to the first air outlet channel 311. One end of the second air outlet 84 is connected to the second fan housing 82, and the other end is connected to the second air outlet channel. When the first fan 61 is working, it can blow air through the first air outlet 83 to the first air outlet channel 311, thereby blowing the air towards the atomizing component 10, so that the atomized aromatherapy smoke enters the smoke chamber 101. When the second fan 62 is working, the second air outlet 84 blows air through the second air outlet channel to the smoke chamber 101, thereby causing the aromatherapy smoke in the smoke chamber 101 to be blown out from the aroma diffuser 102. The arrangement of the first air outlet 83 and the second air outlet 84 can concentrate the airflow and improve the airflow utilization rate.

[0050] In one embodiment of this invention, the second fan 62 has a second air outlet 84, which is disposed on the fan bracket 80. The second air outlet 84 faces a direction perpendicular to the axial direction of the second fan 62. Understandably, the second air outlet 84 is located on the circumferential side of the second fan 62, allowing the air blown by the second fan 62 to exit from the side. Since the second air outlet 84 is connected to the smoke chamber 101 through a second air outlet channel, and the second fan 62 is positioned near the center of the base 200, with the guide member 31 having a conical structure, the second air outlet channel is positioned near the bottom of the guide member 31 (i.e., near its circumferential edge) to ensure that the smoke is blown out from the bottom of the smoke chamber 101 as cleanly as possible. The second air outlet 84 faces a direction perpendicular to the axial direction of the second fan 62, facilitating communication with the second air outlet channel and allowing the air blown by the second fan 62 to be blown out as close as possible to the bottom of the smoke chamber 101.

[0051] In one embodiment of this invention, a partition 85 is provided on the fan bracket 80, positioned between the first fan housing 81 and the second fan housing 82. The partition 85 separates the first fan 61 and the second fan 62, thereby further improving air utilization and preventing airflow turbulence within the first and second fans 61 and 62. A windbreak 63 is also provided between the bottom of the fan bracket 80 and the base 200. The windbreak 63 covers the side of the first fan housing 81 and the second fan housing 82 away from the air guide, for example, covering the side of the fan bracket 80 closest to the base 200, and completely covering the first fan housing 81 and the second fan housing 82. This creates a relatively independent and enclosed space for the first fan housing 81 and the second fan housing 82. The windbreak 63 prevents air leakage and further improves air utilization.

[0052] Furthermore, it is understood that the foregoing embodiments are merely illustrative examples of this utility model. Provided that the technical features do not conflict, the structure is not contradictory, and the inventive purpose of this utility model is not violated, the technical solutions of the various embodiments can be arbitrarily combined and used.

[0053] In the several embodiments provided in this application, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces, or indirect coupling or communication connection between apparatuses or units, and may be electrical, mechanical, or other forms.

[0054] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.

[0055] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not 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.

Claims

1. An atomizing aromatherapy device, characterized by, include: The device comprises a housing, a main control circuit board, an atomizing component, a fan component, and a frame support, a shaping structure, and a base arranged sequentially along the height direction of the atomizing aromatherapy device. The housing is transparent and surrounds the shaping structure to form a smoke chamber. The shaping structure includes a shaping cover and a flow guide. The shaping cover is located at the bottom of the frame support, the flow guide is connected to the base, and the shaping cover covers the top of the flow guide. A receiving space is formed between the flow guide and the base, and the fan assembly is disposed within the receiving space; the atomizing assembly is disposed on the frame support, and the frame support is provided with a mist outlet corresponding to the inside of the shaping cover, and the mist outlet is respectively connected to the atomizing assembly and the smoke chamber; A channel is provided between the frame support and the flow guide, and the line connecting the atomizing component or the fan component to the main control circuit board is located in the channel. The channel is located inside the shaping cover.

2. The atomizing aromatherapy device of claim 1, wherein, The main control circuit board is electrically connected to the atomizing component and the fan component respectively; the main control circuit board is located inside the frame support; or, the main control circuit board is located inside the accommodating space.

3. The nebulizing aromatherapy device of claim 1, wherein, The frame support and the flow guide are spaced apart and connected by a connecting post, with the connecting post at least partially located between the frame support and the flow guide.

4. The nebulizing aromatherapy device of claim 3, wherein, The channel component is at least partially located within the connecting column, and the channel component connects the frame support and the flow guide.

5. The nebulizing aromatherapy device of claim 3, wherein, The connecting post is disposed on the flow guide, and the connecting post forms a protrusion that protrudes from the outside of the channel component; the channel component extends into the interior of the frame support, connecting the frame support and the flow guide; the protrusion is located between the frame support and the flow guide.

6. The nebulizing aromatherapy device of claim 3, wherein, The connecting column is provided with a first air outlet channel, which connects the fan assembly and the air inlet channel in the atomizing assembly.

7. The nebulizing aromatherapy device of any one of claims 3 to 6, wherein, The connecting post is located at the top of the flow guide and inside the shaping cover.

8. The atomizing aromatherapy device according to any one of claims 1 to 6, characterized in that, It also includes a light panel, on which a light unit is provided, the light-emitting surface of the light unit facing the smoke cavity, and / or, the light panel is electrically connected to the atomizing component and the main control circuit board respectively.

9. The atomizing aromatherapy device according to any one of claims 1 to 6, characterized in that, It also includes a fan bracket, which is mounted on the base. The fan assembly includes a second fan, which is mounted on the fan bracket. The second fan has a second air outlet, which is mounted on the fan bracket and is oriented in a direction perpendicular to the axis of the second fan. The second air outlet is connected to the smoke chamber.

10. The nebulizing aromatherapy device of claim 9, wherein, Also includes: A battery is disposed within the accommodating space, and the battery and the fan assembly are arranged in a planar direction along a first direction; The fan assembly further includes a first fan, and the first fan and the second fan are arranged along a second direction in the planar direction, the first direction and the second direction being perpendicular.

11. The nebulizing aromatherapy device of claim 10, wherein, The fan support is provided with a first fan accommodating portion and a second fan accommodating portion along the second direction, the first fan is arranged in the first fan accommodating portion, and the second fan is arranged in the second fan accommodating portion; the first fan accommodating portion and the second fan accommodating portion are arranged separately, and / or the first fan accommodating portion and the second fan accommodating portion are both in a cylindrical shape.

12. The nebulizing aromatherapy device of claim 11, wherein, The fan support is further provided with a first air outlet, the first air outlet is communicated with the first fan accommodating portion, the second air outlet is communicated with the second fan accommodating portion; the flow guide member is provided with a first air outlet channel and a second air outlet channel; the first air outlet channel is respectively communicated with the air inlet channel in the atomization assembly and the first air outlet, and the second air outlet channel is respectively communicated with the smoke cavity and the second air outlet.

13. The nebulizing aromatherapy device of claim 10, wherein, The first air outlet channel is further communicated with the first fan and the air inlet channel of the atomization assembly, the first air outlet channel penetrates through the flow guide member and is located in the shaping cover; and / or the second air outlet channel is further communicated with the second fan and the smoke cavity; the flow guide member is provided with a wind deflector on the side close to the smoke cavity, and the second air outlet channel is arranged in the wind deflector.

14. The nebulizing aromatherapy device of claim 11, wherein, The fan support is further provided with a partition plate arranged between the first fan accommodating portion and the second fan accommodating portion.

15. The nebulizing aromatherapy device of claim 11, wherein, Further comprising: A wind blocking member is arranged on the side of the first fan accommodating portion and the second fan accommodating portion away from the flow guide member.