Aromatherapy assembly and air conditioner
By designing a rotatable aromatherapy inner shell and a drive mechanism to control airflow, the problem of poor sealing in aromatherapy devices was solved, enabling the switching between fragrance diffusion and sealing of the aromatherapy components, thus improving the efficiency of aromatherapy use.
Patent Information
- Application Number
- CN202311104823.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-30
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2043-08-30
AI Technical Summary
Existing aromatherapy devices suffer from poor sealing, causing the incense sticks to continuously release and be wasted.
An aromatherapy component has been designed, including an outer shell and an inner shell. The inner shell is used to hold the aroma stick. A driving device drives the inner shell to rotate, so that it enters a fragrance dispersing state or a ventilation state. The airflow is controlled by the air holes to realize the switching between fragrance dispersing and sealing of the aromatherapy component.
It effectively prevents the fragrance from continuously emitting when not in use, improves sealing, reduces fragrance consumption, and enhances the efficiency of the aromatherapy components.
Smart Images

Figure CN119573139B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the air conditioning fragrance technical field, specifically, it relates to a kind of aromatherapy assembly and air conditioner. BACKGROUND
[0002] With the continuous improvement of people's life quality, air quality has become the focus of people's attention.In addition, with the continuous improvement of people's living standards, air conditioner is more and more common and more and more use occasions, for example, indoor, in-car, cabin, etc., so the aromatherapy device that can freshen the air is more and more valued by people.
[0003] However, in the actual construction process, there are such problems: the existing aromatherapy device has poor sealing of aromatherapy, which leads to continuous use of fragrance block, waste of fragrance block. SUMMARY
[0004] Therefore, the present application provides a kind of aromatherapy assembly and air conditioner, solve the problem that the existing aromatherapy device has poor sealing of aromatherapy, which leads to continuous use of fragrance block, waste of fragrance block.
[0005] To solve the above problems, the present application provides an aromatherapy assembly, which comprises: an aromatherapy shell and an aromatherapy inner shell; the aromatherapy inner shell is arranged inside the aromatherapy shell, and the aromatherapy inner shell is used to accommodate the fragrance block; a driving device; the driving device is used to drive the aromatherapy inner shell to rotate; the aromatherapy inner shell has a protruding part; the aromatherapy shell comprises an air passage, and the air passage is provided with a first air hole; when the protruding part rotates to the air passage, the gas flows through the protruding part; the aromatherapy assembly is in a fragrance dispersing state; when the protruding part is away from the air passage, the aromatherapy assembly is in an air passage state.
[0006] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the aromatherapy shell is used to accommodate the aromatherapy inner shell, the aromatherapy inner shell is used to accommodate the fragrance block, the driving device is arranged to drive the aromatherapy inner shell to rotate to make the aromatherapy assembly enter the fragrance dispersing state or the air passage state, the airflow enters the air passage through the first air hole, and then leaves the aromatherapy shell through the first air hole; when the protruding part rotates to the air passage, the airflow can pass through the aromatherapy inner shell, the fragrance block emits fragrance, the aromatherapy assembly realizes the fragrance dispersing state, when the protruding part is away from the air passage, the gas does not pass through the inside of the aromatherapy inner shell, but directly flows out of the aromatherapy shell through the first air hole; at this time, the airflow does not pass through the fragrance block, so that the sealing property of the fragrance block is enhanced, and the aromatherapy assembly is in the air passage state, thereby preventing the fragrance block from being continuously used when it is not needed, and wasting the fragrance block.
[0007] Further, the protruding part comprises: a second air hole; the second air hole is arranged on both sides of the protruding part; when the protruding part rotates to make the second air hole correspond to the first air hole, the aromatherapy assembly is in a fragrance dispersing state.
[0008] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the second air hole is used for enabling gas to flow into the aromatherapy inner shell, and the second air hole is arranged on the protruding portion, so that the gas can be directly emitted to the incense block through the second air hole, the protruding portion can make the incense block emit fragrance more quickly when the air passage portion is ventilated, the second air hole is arranged on both sides of the protruding portion, so that the airflow can blow out of the protruding portion along one direction, the fragrance emission is more direct, the situation that the gas cannot be emitted in the protruding portion is prevented, and the second air hole is arranged corresponding to the first air hole, so that the airflow can more conveniently enter the protruding portion, and the incense block can emit fragrance more quickly.
[0009] Further, the aromatherapy inner shell comprises: a closed portion; the closed portion is connected to one side of the protruding portion away from the second air hole, the protruding portion protrudes away from the aromatherapy inner shell relative to the closed portion, and the closed portion is turned to the air passage portion, so that the air passage portion can be normally ventilated.
[0010] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: when the closed portion is turned to the air passage portion, the air passage portion can be normally ventilated, the airflow enters the aromatherapy outer shell through the first air hole and directly flows out of the aromatherapy outer shell through the first air hole, and the closed portion blocks the incense block from the air passage portion when the incense block is not used, and does not hinder the daily ventilation use of the air passage portion.
[0011] Further, the aromatherapy inner shell comprises: a first airflow channel; the first airflow channel is arranged around the incense block, and the first airflow channel is communicated with the second air hole.
[0012] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the first airflow channel is arranged around the incense block, so that the incense block can be completely emitted when the airflow enters the aromatherapy inner shell, the contact area between the incense block and the gas is increased, and the fragrance can be emitted more quickly.
[0013] Further, the part of the first airflow channel close to the closed portion is a second airflow channel, the second airflow channel is opened in the incense emitting state, and the incense block abuts against the closed portion in the ventilation state, and the second airflow channel is closed.
[0014] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: in the incense emitting state, the incense block moves to the protruding portion due to gravity, so that the second airflow channel is opened, the contact area between the incense block and the gas is increased, and the fragrance can be emitted more quickly; in the ventilation state, the incense block abuts against the closed portion, so that the second airflow channel is closed, the first airflow channel cannot form an airflow loop, the airflow flow of the incense block is reduced, the sealing property of the incense block is improved, and the consumption of the fragrance is reduced.
[0015] Further, the incense block comprises: a third airflow channel; the third airflow channel is communicated with the first airflow channel, and the third airflow channel is arranged corresponding to the second air hole.
[0016] Compared with the prior art, the technical effects reached by adopting the technical scheme are as follows: the third airflow channel enables airflow to flow through the inside of the incense block, increases the contact area of the incense block and the gas, increases the effect of the fragrance, and improves the emission speed of the fragrance; the third airflow channel can form an airflow loop with the first airflow channel, so that the gas can enter and exit the inner shell of the incense more smoothly.
[0017] Further, the incense block further comprises: a fourth airflow channel; one end of the fourth airflow channel close to the inside of the incense block is communicated with the third airflow channel, and the other end of the fourth airflow channel away from the inside of the incense block is communicated with the second airflow channel.
[0018] Compared with the prior art, the technical effects reached by adopting the technical scheme are as follows: the fourth airflow channel enables airflow to flow through the inside of the incense block and flow to the second airflow channel; the fourth airflow channel and the second airflow channel are communicated, which increases the smoothness of the gas flowing through the incense block, increases the contact area of the incense block and the gas, increases the effect of the fragrance, and improves the emission speed of the fragrance.
[0019] Further, the driving device comprises: a first output angle and a second output angle; when the driving device outputs the first output angle, the incense assembly is in a ventilation state; and when the driving device outputs the second output angle, the incense assembly is in a fragrance emission state.
[0020] Compared with the prior art, the technical effects reached by adopting the technical scheme are as follows: the first output angle enables the protruding part to rotate to the side of the inner shell of the incense away from the ventilation part, so that the incense assembly enters the ventilation state, the airflow can not flow through the incense block, and the normal air outlet of the incense assembly is realized; and the second output angle enables the protruding part to rotate to the ventilation part, so that the airflow enters the second air hole through the first air hole, then flows through the incense block, and then flows out of the incense shell from the second air hole to the first air hole, thereby realizing the effect of emitting fragrance.
[0021] Further, the incense assembly further comprises: an incense cover; the driving device is arranged on one side of the incense shell, and the incense cover is arranged on the side of the incense shell away from the driving device.
[0022] Compared with the prior art, the technical effects reached by adopting the technical scheme are as follows: the incense cover is used for placing the incense inner shell and the incense block to slide out of the incense shell, thereby ensuring the stability of the assembly of the incense assembly, preventing the incense block from contacting with the external airflow, further preventing the consumption of the incense block when it is not needed to be used, preventing the incense from interfering with the driving device, and cooperating with the driving device to jointly close both sides of the incense shell.
[0023] The application also provides an air conditioner, which comprises the incense assembly according to any one of the above embodiments, and further comprises: an air outlet; and the incense assembly is arranged at the air outlet.
[0024] Compared with the prior art, the technical effects achieved by adopting this technical solution are as follows: the aromatherapy component is located at the air outlet, which facilitates the airflow through the fragrance block to achieve the airflow effect, increases the flow rate through the fragrance block, and more directly realizes the fragrance diffusion effect of the aromatherapy component. The air conditioner of the present invention includes the aromatherapy component as in any embodiment of the present invention, and therefore has all the beneficial effects of the aromatherapy component as in any embodiment of the present invention, which will not be repeated here.
[0025] By adopting the technical solution of the present invention, the following technical effects can be achieved:
[0026] (1) The outer shell of the aromatherapy diffuser is used to accommodate the inner shell of the aromatherapy diffuser, and the inner shell of the aromatherapy diffuser is used to accommodate the incense block. The driving device can drive the inner shell of the aromatherapy diffuser to rotate so that the aromatherapy component can enter the fragrance diffusion state or the ventilation state. The airflow enters the ventilation section through the first air hole and then leaves the outer shell of the aromatherapy diffuser through the first air hole. When the protrusion rotates to the ventilation section, the airflow can pass through the inner shell of the aromatherapy diffuser, so that the incense block can diffuse its fragrance and realize the fragrance diffusion state of the aromatherapy component. When the protrusion moves away from the ventilation section, the gas does not pass through the inside of the inner shell of the aromatherapy diffuser and flows directly out of the outer shell of the aromatherapy diffuser through the first air hole. At this time, no airflow passes through the incense block, which enhances the sealing of the incense block and the aromatherapy component is in the ventilation state. This prevents the incense block from continuously emitting fragrance when it is not needed, thus avoiding the waste of incense block.
[0027] (2) When the sealed part is switched to the ventilated part, the ventilated part can ventilate normally. The airflow enters the aroma diffuser shell through the first air hole and flows out of the aroma diffuser shell directly through the first air hole. The sealed part blocks the aroma block from the ventilated part when it is not in use, and does not hinder the daily ventilation of the ventilated part.
[0028] (3) When the fragrance is in the diffused state, the incense block moves toward the protrusion due to gravity, which opens the second airflow channel, increases the contact area between the incense block and the gas, and allows the fragrance to diffuse more quickly. When the fragrance is in the ventilated state, the incense block is against the closed part, which closes the second airflow channel, prevents the first airflow channel from forming an airflow loop, reduces the flow of air at the incense block, thereby improving the sealing of the incense block and reducing the consumption of fragrance. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of an aromatherapy component provided in some embodiments of the present invention.
[0030] Figure 2 for Figure 1 A schematic diagram of an explosion of a fragrance component.
[0031] Figure 3 for Figure 1 A cross-sectional view of the aromatherapy component at point AA when the first output angle is in the middle.
[0032] Figure 4 for Figure 1A cross-sectional view of the aromatherapy component at point AA when the second output angle is in the middle.
[0033] Explanation of reference numerals in the attached figures:
[0034] 100-Aromatherapy component; 110-Aromatherapy outer shell; 111-Ventilation part; 112-First vent; 120-Aromatherapy inner shell; 121-Protrusion; 122-Sealing part; 123-Second vent; 124-First airflow channel; 125-Second airflow channel; 130-Aroma block; 131-Third airflow channel; 132-Fourth airflow channel; 140-Drive device; 150-Aromatherapy cover. Detailed Implementation
[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0036] [First Embodiment]
[0037] See Figures 1-4 This is a fragrance component 100 provided in the first embodiment of the present invention. The fragrance component 100 includes: a fragrance outer shell 110 and a fragrance inner shell 120; the fragrance inner shell 120 is disposed inside the fragrance outer shell 110 and is used to accommodate fragrance blocks 130; a driving device 140; the driving device 140 is used to drive the fragrance inner shell 120 to rotate; the fragrance inner shell 120 has a protrusion 121; the fragrance outer shell 110 includes a ventilation part 111, the ventilation part 111 is provided with a first air hole 112, the first air hole 112 is used to allow gas to flow, when the protrusion 121 rotates to the ventilation part 111, the gas flows through the protrusion 121, and the fragrance component 100 is in a fragrance-dispersing state, when the protrusion 121 moves away from the ventilation part 111, the fragrance component 100 is in a ventilation state.
[0038] In the embodiment, the aroma shell 110 is used to contain the aroma inner shell 120, the aroma inner shell 120 is used to contain the incense block 130, the driving device 140 is arranged to drive the aroma inner shell 120 to rotate to make the aroma assembly 100 enter the aroma diffusion state or the ventilation state, the airflow enters the ventilation part 111 through the first air hole 112, and then exits the aroma shell 110 through the first air hole 112. When the protruding part 121 rotates to the ventilation part 111, the airflow can pass through the aroma inner shell 120, so that the incense block 130 diffuses the fragrance, realizes the aroma diffusion state of the aroma assembly 100, and when the protruding part 121 is away from the ventilation part 111, the gas does not pass through the inside of the aroma inner shell 120, but directly flows out of the aroma shell 110 through the first air hole 112. At this time, the incense block 130 does not have airflow passing through, so that the sealing property of the incense block 130 is enhanced, and the aroma assembly 100 is in the ventilation state, thereby preventing the problem that the incense block 130 continuously diffuses the use when it is not needed to use.
[0039] Further, the first air hole 112 is arranged on the two sides of the aroma shell 110, one side of which is arranged close to the air outlet of the air conditioner, so that the airflow can be more smoothly conducted. The air outlet of the air conditioner enters the aroma shell 110 through the first air hole 112, passes through the ventilation part 111, and then exits the aroma shell 110 through the first air hole 112 on the opposite side.
[0040] Preferably, the first air hole 112 is arranged in multiple, which ensures the smoothness of the incoming air and improves the amount of incoming air, thereby improving the aroma diffusion effect in the aroma diffusion state. Herein, no limitation is made.
[0041] In a specific embodiment, the protruding part 121 comprises a second air hole 123. The second air hole 123 is arranged on the two sides of the protruding part 121. When the protruding part 121 rotates to make the second air hole 123 correspond to the first air hole 112, the aroma assembly 100 is in the aroma diffusion state.
[0042] It should be noted that the second air hole 123 is used to make the gas flow into the aroma inner shell 120, and the second air hole 123 is arranged on the protruding part 121, so that the gas can directly diffuse the incense block 130 through the second air hole 123. When the protruding part 121 is in the ventilation part 111, the incense block 130 can diffuse the fragrance more quickly. The second air hole 123 is arranged on the two sides of the protruding part 121, so that the airflow can blow out of the protruding part 121 in one direction, so that the fragrance diffusion is more direct, and the situation that the gas circulates in the protruding part 121 and cannot be diffused is prevented. The second air hole 123 is arranged to correspond to the first air hole 112, so that the airflow can more conveniently enter the protruding part 121, and the incense block 130 can diffuse the fragrance more quickly.
[0043] In a specific embodiment, the incense inner shell 120 comprises: a closed part 122; the closed part 122 is connected to the protruding part 121 away from one side of the second air hole 123, the protruding part 121 protrudes away from the incense inner shell 120 relative to the closed part 122, and when the closed part 122 is turned to the air passage part 111, the air passage part 111 can normally ventilate.
[0044] It should be noted that when the closed part 122 is turned to the air passage part 111, the air passage part 111 can normally ventilate, the airflow enters the incense outer shell 110 through the first air hole 112, and directly flows out of the incense outer shell 110 through the first air hole 112, the closed part 122 blocks the incense block 130 from the air passage part 111 when not in use, and does not hinder the daily ventilation use of the air passage part 111.
[0045] In a specific embodiment, the incense inner shell 120 comprises: a first airflow channel 124; the first airflow channel 124 is arranged around the incense block 130, and the first airflow channel 124 is communicated with the second air hole 123.
[0046] It should be noted that the first airflow channel 124 is arranged around the incense block 130, so that the airflow can fully diffuse the incense block 130 when entering the incense inner shell 120, increase the contact area between the incense block 130 and the gas, and make the fragrance can be faster.
[0047] In a specific embodiment, the part of the first airflow channel 124 close to the closed part 122 is a second airflow channel 125, in the incense diffusion state, the second airflow channel 125 is opened, in the ventilation state, the incense block 130 abuts against the closed part 122, and the second airflow channel 125 is closed.
[0048] It should be noted that in the incense diffusion state, the incense block 130 moves to the protruding part 121 due to gravity, so that the second airflow channel 125 is opened, the contact area between the incense block 130 and the gas is increased, and the fragrance can be faster, in the ventilation state, the incense block 130 abuts against the closed part 122, so that the second airflow channel 125 is closed, the first airflow channel 124 cannot form an airflow loop, the airflow flow at the incense block 130 is reduced, and the sealing property of the incense block 130 is improved, and the consumption of the fragrance is reduced.
[0049] In a specific embodiment, the incense block 130 comprises: a third airflow channel 131; the third airflow channel 131 is communicated with the first airflow channel 124, and the third airflow channel 131 is arranged corresponding to the second air hole 123.
[0050] It should be noted that the third airflow channel 131 enables airflow to flow through the inside of the incense block 130, increases the contact area between the incense block 130 and the gas, increases the effect of the fragrance, and increases the emission speed of the fragrance. The third airflow channel 131 can form an airflow loop with the first airflow channel 124, so that the gas can enter and exit the inner shell 120 more smoothly.
[0051] In a specific embodiment, the incense block 130 further comprises: a fourth airflow channel 132; the fourth airflow channel 132 is connected to the third airflow channel 131 at one end close to the inside of the incense block 130, and is connected to the second airflow channel 125 at the other end away from the inside of the incense block 130.
[0052] It should be noted that the fourth airflow channel 132 enables airflow to flow through the inside of the incense block 130 and flow to the second airflow channel 125. The fourth airflow channel 132 and the second airflow channel 125 are connected, increasing the smoothness of the gas flowing through the incense block 130, increasing the contact area between the incense block 130 and the gas, increasing the effect of the fragrance, and increasing the emission speed of the fragrance.
[0053] In a specific embodiment, the driving device 140 comprises: a first output angle and a second output angle; when the driving device 140 outputs the first output angle, the aromatherapy assembly 100 is in a ventilation state, and when the driving device 140 outputs the second output angle, the aromatherapy assembly 100 is in a fragrance emission state.
[0054] It should be noted that the first output angle enables the protruding part 121 to rotate to the side of the inner shell 110 away from the ventilation part 111, the aromatherapy assembly 100 enters the ventilation state, enabling the airflow to not flow through the incense block 130, achieving normal air outlet of the aromatherapy assembly 100, and the second output angle enables the protruding part 121 to rotate to the ventilation part 111. The airflow enters the second air hole 123 through the first air hole 112, then flows through the incense block 130, and then flows out of the inner shell 110 from the second air hole 123 to the first air hole 112, achieving the effect of emitting fragrance.
[0055] Preferably, the first output angle is 0°, and the second output angle is 180°. When the first output angle is 0°, the protruding part 121 is ensured not to be exposed in the ventilation part 111, improving the sealing effect of the incense block 130 when not emitting fragrance. When the second output angle is 180°, the protruding part 121 is ensured to be arranged in the ventilation part 111, improving the fragrance emission efficiency of the incense block 130 when emitting fragrance. Here, no limitation is made.
[0056] In a specific embodiment, the aromatherapy assembly 100 further comprises: an aromatherapy cover 150; the driving device 140 is arranged on one side of the inner shell 110, and the aromatherapy cover 150 is arranged on the side of the inner shell 110 away from the driving device 140.
[0057] It should be noted that the aromatherapy cover 150 is used to place the aromatherapy inner shell 120 and the incense block 130 to slide out of the aromatherapy shell 110, ensure the stability of the assembly of the aromatherapy assembly 100, and prevent the incense block 130 from contacting with the external airflow, further prevent the consumption of the incense block 130 when not in use, and the position of the aromatherapy is set to prevent interference with the driving device 140, and the driving device 140 is cooperated to jointly close the two sides of the aromatherapy shell 110.
[0058]
Second embodiment
[0059] The second embodiment of the present application provides an air conditioner, which comprises the aromatherapy assembly 100 according to any one of the above embodiments, and the air conditioner further comprises: an air outlet; and the aromatherapy assembly 100 is arranged at the air outlet.
[0060] In the embodiment, the aromatherapy assembly 100 is arranged at the air outlet, so that the air outlet is convenient and the air flows through the incense block 130 to achieve the air outlet effect, the flow rate through the incense block 130 is improved, and the fragrance diffusion effect of the aromatherapy assembly 100 is more directly achieved. The air conditioner of the embodiment of the present application comprises the aromatherapy assembly 100 according to any one of the embodiments of the present application, and thus has all the beneficial effects of the aromatherapy assembly 100 according to any one of the embodiments of the present application, which will not be described here.
[0061] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A fragrance assembly (100), characterized in that, The aromatherapy assembly (100) comprises: An aromatherapy outer shell (110) and an aromatherapy inner shell (120); the aromatherapy inner shell (120) is arranged inside the aromatherapy outer shell (110), and the aromatherapy inner shell (120) is used for accommodating an aromatherapy block (130); A driving device (140); the driving device (140) is used for driving the aromatherapy inner shell (120) to rotate; The aromatherapy inner shell (120) has a protruding part (121); the aromatherapy outer shell (110) comprises a ventilation part (111) provided with a first air hole (112) for air flow, when the protruding part (121) rotates to the ventilation part (111), air flow flows into the protruding part (121), and the aromatherapy assembly (100) is in a scenting state, when the protruding part (121) is away from the ventilation part (111), the aromatherapy assembly (100) is in a ventilation state; The protruding part (121) comprises: A second air hole (123); The second air hole (123) is arranged on both sides of the protruding part (121); The aromatherapy inner shell (120) comprises: A closed part (122); The closed part (122) is connected to one side of the protruding part (121) away from the second air hole (123); The aromatherapy inner shell (120) comprises: A first air flow channel (124); The first air flow channel (124) is arranged around the aromatherapy block (130), and the first air flow channel (124) is communicated with the second air hole (123); The part of the first air flow channel (124) close to the closed part (122) is a second air flow channel (125), in the scenting state, the second air flow channel (125) is opened, in the ventilation state, the aromatherapy block (130) abuts against the closed part (122), and the second air flow channel (125) is closed; The aromatherapy assembly (100) further comprises: An aromatherapy cover (150); The driving device (140) is arranged on one side of the aromatherapy outer shell (110), and the aromatherapy cover (150) is arranged on the side of the aromatherapy outer shell (110) away from the driving device (140).
2. The aromatherapy assembly (100) of claim 1, wherein, When the protruding part (121) rotates to make the second air hole (123) correspond to the first air hole (112), the aromatherapy assembly (100) is in the scenting state.
3. The aromatherapy assembly (100) of claim 2, wherein, The protruding part (121) protrudes away from the aromatherapy inner shell (120) relative to the closed part (122), and when the closed part (122) rotates to the ventilation part (111), the ventilation part (111) can normally ventilate.
4. The aromatherapy assembly (100) of claim 1, wherein, The aromatherapy block (130) comprises: A third air flow channel (131); The third air flow channel (131) is communicated with the first air flow channel (124), and the third air flow channel (131) is arranged corresponding to the second air hole (123).
5. The aromatherapy assembly (100) of claim 4, wherein, The aromatherapy block (130) further comprises: A fourth air flow channel (132); The fourth airflow passage (132) is communicated with the third airflow passage (131) at one end close to the inside of the fragrance block (130), and is communicated with the second airflow passage (125) at one end away from the inside of the fragrance block (130).
6. The aromatherapy assembly (100) of claim 1, wherein, The driving device (140) comprises: a first output angle and a second output angle; When the driving device (140) outputs the first output angle, the aromatherapy assembly (100) is in a ventilation state, and when the driving device (140) outputs the second output angle, the aromatherapy assembly (100) is in a fragrance diffusion state.
7. An air conditioner characterized by comprising: The air conditioner comprises the aromatherapy assembly (100) according to any one of claims 1-6, and further comprises an air outlet; the aromatherapy assembly (100) is arranged at the air outlet.
Citation Information
Patent Citations
Multifunctional aromatherapy machine
CN218096271U
Air conditioning unit
CN218864341U
Aromatherapy assembly and air conditioner
CN220892396U