Atomization aromatherapy machine
By designing different axis settings for the smoke inlet and exhaust outlet in the atomizing aroma diffuser, aligning the light source, and bending the light guide strip, combined with improvements to the airflow guide and atomizer, the problems of large space occupation and insufficient visual effect of the atomizing aroma diffuser have been solved, achieving a three-dimensional smoke effect and efficient smoke output.
Patent Information
- Application Number
- CN202423317756.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing aroma diffusers take up a lot of space and lack visual appeal, with poor coordination between light and smoke.
The blower and atomizer have their smoke outlets and exhaust ports located on different vertical axes. The light source is aligned with the smoke outlet. The light guide is bent to the bottom of the smoke outlet. The flow guide is configured as a mounting groove, a baffle protrusion, and a flow guide cavity. The atomizer has through holes, and the receiving component forms a funnel-shaped structure.
It achieves a three-dimensional effect of smoke and light curtain, reduces space occupation, improves smoke output efficiency and space utilization, simplifies the internal structure, and facilitates the viewing and replacement of aromatherapy liquid levels.
Smart Images

Figure CN223787898U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of atomizing aromatherapy equipment, and in particular to an atomizing aromatherapy machine. Background Technology
[0002] Aroma diffusers are common fragrance dispersing devices. They work by atomizing essential oils into aromatherapy smoke, which is then expelled by airflow.
[0003] Current aroma diffusers, including those that create flowing smoke internally and then project it outwards through a visible outer shell, result in an excessively large overall product radius, taking up considerable space. Furthermore, due to the transparent material of their outer shells, many aroma diffusers incorporate internal lighting to enhance the visual effect; however, the lack of coordination between the light and the smoke results in an inadequate visual impact. Summary of the Invention
[0004] This utility model provides a misting aroma diffuser, which aims to solve the problems of existing misting aroma diffusers having large placement space and insufficient visual effect.
[0005] According to an embodiment of this application, a diffuser is provided, including a blower and an atomizing part. The blower has an opening at its bottom, and the atomizing part is inserted into and seals the bottom of the blower from the opening. The blower has a smoke outlet at one end away from the atomizing part, and the atomizing part has a smoke exhaust port. The smoke exhaust port releases smoke into the blower and exhausts it outward from the smoke outlet. A light-emitting element is provided inside the blower, and one end of the light-emitting element facing the smoke outlet is positioned directly opposite the smoke outlet. The smoke exhaust port and the smoke outlet are located on different vertical axes.
[0006] Preferably, the light-emitting element includes an LED bead and a light guide strip. The LED bead is connected to one end of the light guide strip, and the other end of the light guide strip is bent and extends to the bottom of the smoke outlet. One end of the light guide strip in the light-emitting direction is consistent with the smoke-emitting direction of the smoke outlet.
[0007] Preferably, the shape of one end of the light guide strip in the light-emitting direction is smaller than or equal to the shape of the smoke outlet.
[0008] Preferably, the blower section further includes a fan, and the smoke outlet and the fan are respectively located on both sides of the top of the smoke outlet.
[0009] Preferably, the blower section further includes a guide member, one end of which is connected to the fan and the other end of which is connected to the smoke outlet; the guide member includes a mounting groove, a baffle protrusion, and a guide cavity connected in sequence, the guide cavity being in communication with the smoke outlet; the fan is positioned in the mounting groove, the baffle protrusion is located at the lower edge of the guide cavity near the mounting groove, and the baffle protrusion extends toward the atomizing section; the smoke outlet is aligned with the guide cavity area.
[0010] Preferably, the light guide strip passes through the flow guide cavity and bends towards the smoke outlet; the flow guide cavity pre-tightens the light guide strip.
[0011] Preferably, the blower section is further provided with a control board on the side away from the atomizing section, and the surface of the control board away from the atomizing section is provided with a control area, and the LED bead is positioned on the surface of the control board near the atomizing section.
[0012] Preferably, it further includes a housing, which covers the outer periphery of the atomizing part and the blower part; the atomizing part includes a receiving member, a mounting member, and an atomizer, the atomizer is disposed in the mounting member, and the receiving member is inserted into and seals the bottom of the blower part; the receiving member has the exhaust port opened at the position corresponding to the atomizer.
[0013] Preferably, the atomizer has a sheet-like structure and a through hole is provided on the atomizer; the through hole is located within the area of the exhaust port.
[0014] Preferably, the atomizer includes an outer ring and an inner ring, and the through hole is formed in the inner ring area; the thickness of the inner ring is less than the thickness of the outer ring.
[0015] Preferably, the smoke exhaust port is centrally located on the receiving member; the receiving member gradually slopes smoothly from the outer periphery towards the smoke exhaust port and towards the mounting member.
[0016] Preferably, the mounting component has a connection port on the side away from the receiving component, and the connection port is connected to the aromatherapy bottle; the outer peripheral side of the mounting component abuts against the top surface of the aromatherapy bottle at the end near the aromatherapy bottle; a cotton swab is connected to the side of the atomizer away from the receiving component, and the cotton swab is inserted into the aromatherapy bottle.
[0017] Preferably, the outer casing has a first air inlet on the side corresponding to the connection port, and the mounting component has a second air inlet, with the first air inlet, the second air inlet, and the blower section connected in sequence.
[0018] Compared with the prior art, the atomizing aroma diffuser provided by this utility model has the following beneficial effects:
[0019] 1. By aligning the light-emitting element with the smoke outlet, the smoke emitted from the outlet is directly illuminated by the light-emitting element. This direct illumination allows more light sources to converge and illuminate the emitted smoke, forming a smoke curtain and enhancing the three-dimensional effect of the smoke. Furthermore, since the illumination from the light-emitting element, combined with the smoke emission, creates a three-dimensional smoke curtain effect on the exterior of the diffuser, there is no need for excessive internal airflow ducts, resulting in a smaller footprint for this atomizing aroma diffuser. Additionally, the exhaust and smoke outlets are located on different vertical axes, ensuring that the light-emitting element does not obstruct the smoke exhaust direction directly above the exhaust outlet, thus guaranteeing efficient smoke emission.
[0020] 2. By setting up a light guide strip to cooperate with the light emission of the LED beads, the light guide strip can be designed to be bent, so that the tail of the light-emitting component, that is, one end of the LED bead, can be directly positioned on the control board. This allows the control board to position components on both sides, reducing the flying wire connection problem caused by separate LED beads, reducing the internal circuitry of the product, and allowing more space inside the blower section to accommodate the battery, thus improving the product's space utilization.
[0021] 3. The shape of one end of the light guide strip in the light-emitting direction is smaller than or equal to the shape of the smoke outlet, so that the light emitted by the light guide strip can be effectively focused in the smoke outlet area, thereby improving the irradiation efficiency.
[0022] 4. By setting the guide components, the mounting groove, the partition protrusion, and the guide cavity in sequence, the fan is positioned in the mounting groove, and the smoke outlet and the fan are respectively set on both sides of the top of the smoke exhaust port. This makes the line connecting the mounting groove, the smoke exhaust port, and the smoke outlet in the air inlet direction form a triangular structure. The airflow driven by the fan first passes through the smoke exhaust port, so the smoke released in the smoke exhaust port area is carried by the airflow and then continues to move to the smoke outlet direction, improving the smoke exhaust efficiency.
[0023] 5. By setting a baffle protrusion extending towards the atomizing section, when the fan is started, the airflow entering the guide component first flows downward along the baffle protrusion towards the atomizing section 2. After being rebounded by force on the surface of the atomizing section, it flows towards the direction of the guide cavity. Since the direction of the smoke outlet is in the same direction as the direction of the smoke rebound, the setting of the baffle protrusion can effectively improve the smoke output efficiency by forming a V-shaped smoke flow in the guide component.
[0024] 6. By opening a through hole in the atomizer, the liquid can be refluxed and pressure can be released, thus simplifying the structure.
[0025] 7. By setting an outer ring and an inner ring on the atomizer, with the inner ring being thinner than the outer ring, the backflowing liquid gathers in the inner ring area to facilitate its entry into the through hole.
[0026] 8. By setting the receiving part to gradually and smoothly slope from the outer periphery towards the exhaust port towards the mounting part, the receiving part as a whole forms a funnel-shaped structure, and the exhaust port is located at the center of the funnel-shaped structure. When the atomized gas cools and forms liquid backflow, it can flow back to the exhaust port based on the funnel structure.
[0027] 9. By setting the outer periphery of the end of the mounting part to abut against the top surface of the aroma diffuser bottle, the aroma diffuser bottle is exposed outside the whole aroma diffuser, which makes it convenient for users to check the aroma liquid level and replace the aroma diffuser bottle in time. The atomizing part and the blower part form a whole component. Attached Figure Description
[0028] 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 some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0029] Figure 1 This is a schematic diagram of the structure of the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0030] Figure 2 This is an exploded structural diagram of the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0031] Figure 3 This is a cross-sectional structural diagram of the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0032] Figure 4 This is an exploded structural diagram of the blower section in the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0033] Figure 5 This is a cross-sectional structural diagram of the guide component in the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0034] Figure 6 This is a schematic diagram of the structure of the guide component in the atomizing aroma diffuser provided in the first embodiment of the present invention, viewed from the direction of the atomizing part.
[0035] Figure 7 This is a schematic diagram of the light guide strip in the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0036] Figure 8 This is an exploded structural diagram of the atomizing part in the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0037] Figure 9 This is a schematic diagram of the atomizer in the atomizing aroma diffuser provided in the first embodiment of this utility model.
[0038] Label Explanation:
[0039] 1. Blower section; 11. Top cover; 12. Control panel; 121. Control area; 13. Light-emitting element; 131. Lamp bead; 132. Light guide strip; 14. Fan; 15. Air guide; 151. Mounting groove; 152. Partition protrusion; 153. Air guide cavity;
[0040] 2. Atomizing section; 21. Receiving part; 22. Mounting part; 221. Connecting port; 222. Second air inlet; 23. Atomizer; 231. Through hole; 232. Outer ring; 233. Inner ring;
[0041] 3. Outer casing; 31. First air intake;
[0042] 100. Aromatherapy bottle; 101. Smoke outlet; 102. Smoke vent; 103. Cotton swabs; 200. Control panel. Detailed Implementation
[0043] 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, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0044] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.
[0045] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.
[0046] Please combine Figure 1 , Figure 2 , Figure 3 and Figure 4 The first embodiment of this utility model discloses a vaporizer, including a blower 1, a vaporizer 2, and a housing 3. The blower 1 has an opening at its bottom, and the vaporizer 2 is inserted into and seals the bottom of the blower 1 through the opening. The vaporizer 2 is used to generate aromatherapy smoke and output it into the blower 1. The blower 1 is used to generate airflow to drive the aromatherapy smoke outward and simultaneously emit light to illuminate the smoke in the same direction.
[0047] The outer shell 3 covers the outer periphery of the blower 1 and the atomizing part 2, and the outer shell 3 has an opening at the end of the atomizing part 2 away from the blower 1. The sidewall of the outer shell 3 extends to the atomizing part 2. The end of the atomizing part 2 away from the blower 1 is connected to the aromatherapy bottle 100, and the mouth of the aromatherapy bottle 100 is inserted into the atomizing part 2. The body of the aromatherapy bottle 100 is exposed outside the outer shell 3. The atomizing part 2 abuts against the top surface of the body of the aromatherapy bottle 100 at the outer periphery of the end near the aromatherapy bottle 100.
[0048] The blower section 1 has a smoke outlet 101 at the end away from the atomizing section 2, and the atomizing section 2 has a smoke exhaust port 102. The atomizing section 2 is used to connect to the aromatherapy bottle 100 and atomize the aromatherapy liquid to form smoke. The smoke exhaust port 102 releases smoke into the blower section 1 and discharges it outward from the smoke outlet 101.
[0049] The blower section 1 is equipped with a light-emitting element 13. One end of the light-emitting element 13 is positioned directly opposite the smoke outlet 101. The smoke discharged from the smoke outlet 101 is illuminated by the light-emitting element 13 in the same direction. Finally, the light emitted by the light-emitting element 13 is emitted outward synchronously with the smoke, illuminating the smoke discharged outward and creating a three-dimensional effect of a light column.
[0050] Specifically, the blower section 1 further includes an upper cover 11, a control plate 12, a fan 14, and a guide member 15. The upper cover 11 covers the top of the outer casing 3, and the smoke outlet 101 is opened on the upper cover 11. The upper cover 11, the control plate 12, and the guide member 15 are arranged sequentially and sealed together. The upper cover 11 covers the end of the guide member 15 away from the atomizing section 2, and the smoke outlet 101 communicates with the guide member 15. The control plate 12 is arranged adjacent to the upper cover 11. The surface of the control plate 12 away from the atomizing section 2 is provided with a control area 121. The surface of the control plate 12 near the atomizing section 2 is connected to the light-emitting element 13. The light-emitting element 13 passes through the guide member 15 and is positioned on the guide member 15. The fan 14 is located on the side of the guide member 15. The fan 14 drives the gas flow in the area between the guide member 15 and the atomizing part 2 and discharges it outward from the smoke outlet 101.
[0051] It is understood that the control area 121 on the control panel 12 is configured as a control switch, which can be used to connect the control panel 200 (e.g., Figure 1 As shown in the figure, the control panel 200 can be set as a touch panel or a physical button panel. Since the structure technology of connecting the PCB board to the control interface is a common technology, it will not be described in detail here.
[0052] Please combine Figure 3 , Figure 4 and Figure 5 The light-emitting element 13 includes an LED bead 131 and a light guide strip 132. One end of the LED bead 131 is connected to one end of the light guide strip 132, and the other end of the light guide strip 132 is bent and extends to the bottom of the smoke outlet 101. One end of the light guide strip 132 in the light-emitting direction is aligned with the smoke-emitting direction of the smoke outlet 101. Figure 3 As shown, the bent light guide strip 132 has an overall J-shaped structure (such as...). Figure 7 (As shown in the diagram). The control area 121 and the lamp bead 131 are respectively disposed on the two sides of the control board 12, and the lamp bead 131 is disposed on the side closer to the atomizing part 2, and the lamp bead 131 emits light in the direction of the atomizing part 2.
[0053] It is understood that the LED bead 131 is positioned on the control board 12, and the light guide strip 132 receives the light emitted by the LED bead 131 at one end and emits light outward from the other end. The bent and extended light guide strip 132 can be located directly below the smoke outlet 101, so that the light emitted by the light guide strip 132 can be aligned with the smoke outlet 101 in the same direction. In this way, the light can be emitted outward in the same direction and at the same angle as the smoke, forming a three-dimensional smoke light curtain effect on the outside of the smoke outlet 101.
[0054] It is understood that, in order to enable the light emitted by the light guide strip 132 to efficiently illuminate the outwardly discharged smoke, the shape of the end of the light guide strip 132 in the light-emitting direction is smaller than or equal to the shape of the smoke outlet 101. For example, in this embodiment, the smoke outlet 101 is a strip-shaped arc structure, then the shape of the end of the light guide strip 132 aligned with the smoke outlet 101 is at least a strip-shaped arc structure of the same size, or it can be a smaller, shorter strip-shaped arc structure (such as...). Figure 7 As shown in the diagram, this allows the light emitted by the light guide strip 132 to be effectively focused on the smoke outlet 101 area, improving irradiation efficiency. Of course, in other embodiments, the user can also choose that the shape of the end of the light guide strip 132 aligned with the smoke outlet 101 is larger than the shape of the smoke outlet 101, as long as at least a portion of the light emitted from that end of the light guide strip 132 is directly facing the smoke outlet 101 and irradiating outwards.
[0055] Please combine Figure 2 and Figure 4 The exhaust port 102 and the smoke outlet 101 are located on different vertical axes, that is, the exhaust port 102 and the smoke outlet 101 are coaxially arranged. When the exhaust port 102 exhausts smoke into the blower section 1, the smoke needs to be deflected in the horizontal direction before it can be discharged from the smoke outlet 101. Figure 3 As shown, the fan 14 is connected to the atomizing part 2. The smoke outlet 101 and the fan 14 are respectively located on both sides of the top of the smoke exhaust port 102. When the fan 14 is started, the airflow first flows through the smoke exhaust port 102, which carries the smoke and continuously moves it toward the smoke outlet 101 on the other side, and finally discharges it outward.
[0056] Please continue to combine Figure 3 , Figure 4 , Figure 5 and Figure 6 The guide member 15 is connected to the fan 14 at one end and to the smoke outlet 101 at the other end. The bottom of the guide member 15 is open and inserted into and fixed to the atomizing part 2. Specifically, the guide member 15 includes a mounting groove 151, a baffle protrusion 152 and a guide cavity 153 connected in sequence. The fan 14 is positioned in the mounting groove 151 and communicates with the baffle protrusion 152. The baffle protrusion 152 is located at the lower edge of the guide cavity 153 near the mounting groove 151 and extends towards the atomizing part 2. The guide cavity 153 communicates with the smoke outlet 101.
[0057] It can be understood that the baffle protrusion 152 is an arched extension structure of the entire surface of the guide member 15 towards the atomizing part 2, and one end of the baffle protrusion 152 is connected to the mounting groove 151, and the other end is connected to the guide cavity 153. Since the baffle protrusion 152 is located at the lower edge of the guide cavity 153 near the mounting groove 151 and arches towards the atomizing part 2, when the fan 14 is started, the airflow entering the guide member 15 first flows downwards along the baffle protrusion 152 towards the atomizing part 2, and after being rebounded by force on the surface of the atomizing part 2, flows towards the guide cavity 153. Since the direction of the smoke outlet 101 is in the same direction as the direction of the smoke rebound, the setting of the baffle protrusion 152 allows the V-shaped smoke flow formed in the guide member 15 to effectively improve the smoke output efficiency. For details, please refer to [reference needed]. Figure 3 The direction b of the gas flow corresponds to the wind direction at the position of the guide 15.
[0058] Understandable, such as Figure 3 As shown, the exhaust port 102 is positioned in alignment with the guide cavity 153 area, so that the exhaust smoke can directly enter the guide cavity 153 and be carried by the airflow.
[0059] Understandable, such as Figure 3 As shown, the outer periphery of the guide member 15 is provided with a connecting structure, such as a flange, for inserting and positioning the atomizing part 2 below. Then, a space for gas flow is formed between the fan 14, the partition protrusion 152, the guide cavity 153 and the atomizing part 2. When the fan 14 is started, it drives the gas flow between the fan 14 and the smoke outlet 101.
[0060] Understandable, such as Figure 3 As shown, the light guide strip 132 passes through the flow guide cavity 153 and then bends towards the smoke outlet 101. A fixing groove is provided on the flow guide cavity 153 to position and pre-tighten the light guide strip 132 in this area, so that the light guide strip 132 is fixed from above the blower section 1 and is separately set from the atomizing section 2 during installation.
[0061] Please combine Figure 2 , Figure 3 and Figure 8 The atomizing section 2 includes a receiving member 21, a mounting member 22, and an atomizer 23. The atomizer 23 is disposed within the mounting member 22. The receiving member 21 is inserted into and seals the bottom of the blower section 1, specifically, the receiving member 21 is inserted into and positioned in the bottom opening area of the guide member 15. The receiving member 21 has a smoke exhaust port 102, which is positioned corresponding to the atomizer 23. The smoke generated by the atomizer 23 is discharged from the smoke exhaust port 102 towards the guide member 15.
[0062] It is understood that in this embodiment, the receiving member 21 is inserted and fixed to the outer periphery of the guide member 15 (e.g., Figure 3 As shown), and seal with glue. For example, the receiving part 21 is provided with a plug groove at the flange position on the outer periphery of the guide part 15 to achieve sealing of the outer periphery of the guide part 15, so that the connection area between the receiving part 21 and the guide part 15 is sealed to prevent smoke leakage.
[0063] Please combine Figure 8 and Figure 9 The atomizer 23 has a sheet-like structure and a through hole 231 is provided on the atomizer 23. The through hole 231 is located within the area of the exhaust port 102.
[0064] It can be understood that the atomizer 23 is an ultrasonic atomizing plate with a through hole 231, which can be used to form a pressure relief hole and a return hole. For example, when the smoke cools down and becomes liquid and flows back to the atomizer 23, it can flow downward based on the setting of the through hole 231.
[0065] The atomizer 23 includes an outer ring 232 and an inner ring 233. The through hole 231 is opened in the inner ring 233 region. The thickness of the inner ring 233 is less than the thickness of the outer ring 232, so that the backflowing liquid gathers in the inner ring 233 region to enter the through hole 231.
[0066] Please see Figure 8 The exhaust port 102 is centrally located on the receiving member 21, and the atomizer 23 is also centrally located on the receiving member 21. The receiving member 21 gradually slopes smoothly from the outer periphery toward the exhaust port 102 toward the mounting member 22, forming a funnel-shaped structure. The exhaust port 102 is located at the center of the funnel-shaped structure. When the atomized gas cools and forms liquid reflux, it can reflux to the exhaust port 102 based on the funnel structure.
[0067] The mounting component 22 has a connection port 221 on the side away from the receiving component 21, and the connection port 221 is connected to the aromatherapy bottle 100. The atomizer 23 has a cotton swab 103 connected to the side away from the receiving component 21, and the cotton swab 103 is inserted into the aromatherapy bottle 100. Figure 3 As shown, the outer periphery of the mounting member 22 abuts against the top surface of the body of the aromatherapy bottle 100 at one end near the aromatherapy bottle 100, thus forming a space a between the mounting member 22 and the aromatherapy bottle 100.
[0068] The outer casing 3 has a first air inlet 31 on the side corresponding to the connection port 221, and the mounting component 22 has a second air inlet 222. The first air inlet 31, the second air inlet 222 and the blower 1 are connected in sequence.
[0069] like Figure 3 As shown, when the fan 14 is started, external gas first enters the space a between the outer casing 3 and the aromatherapy bottle 100 from the first air inlet 31, then flows upward through the second air inlet 222 to enter the blower section 1. Specifically, it enters the side of the fan 14 away from the guide member 15 and is drawn in by the fan 14. Continuing to blow, it flows along the guide member 15 and finally exits from the smoke outlet 101. The gas flow driven by the fan 14 is as follows: Figure 3 As shown in direction b. When the atomizer 23 generates smoke, it outputs the smoke into the guide member 15 in direction c. The smoke in direction c is then carried by the airflow in direction b and discharged synchronously towards the smoke outlet 101.
[0070] It is understandable that, in order to improve air intake efficiency, the second air intake 222 is located on the side close to the fan 14.
[0071] Compared with the prior art, the atomizing aroma diffuser provided by this utility model has the following beneficial effects:
[0072] 1. By aligning the light-emitting element with the smoke outlet, the smoke emitted from the outlet is directly illuminated by the light-emitting element. This direct illumination allows more light sources to converge and illuminate the emitted smoke, forming a smoke curtain and enhancing the three-dimensional effect of the smoke. Furthermore, since the illumination from the light-emitting element, combined with the smoke emission, creates a three-dimensional smoke curtain effect on the exterior of the diffuser, there is no need for excessive internal airflow ducts, resulting in a smaller footprint for this atomizing aroma diffuser. Additionally, the exhaust and smoke outlets are located on different vertical axes, ensuring that the light-emitting element does not obstruct the smoke exhaust direction directly above the exhaust outlet, thus guaranteeing efficient smoke emission.
[0073] 2. By setting up a light guide strip to cooperate with the light emission of the LED beads, the light guide strip can be designed to be bent, so that the tail of the light-emitting component, that is, one end of the LED bead, can be directly positioned on the control board. This allows the control board to position components on both sides, reducing the flying wire connection problem caused by separate LED beads, reducing the internal circuitry of the product, and allowing more space inside the blower section to accommodate the battery, thus improving the product's space utilization.
[0074] 3. The shape of one end of the light guide strip in the light-emitting direction is smaller than or equal to the shape of the smoke outlet, so that the light emitted by the light guide strip can be effectively focused in the smoke outlet area, thereby improving the irradiation efficiency.
[0075] 4. By setting the guide components, the mounting groove, the partition protrusion, and the guide cavity in sequence, the fan is positioned in the mounting groove, and the smoke outlet and the fan are respectively set on both sides of the top of the smoke exhaust port. This makes the line connecting the mounting groove, the smoke exhaust port, and the smoke outlet in the air inlet direction form a triangular structure. The airflow driven by the fan first passes through the smoke exhaust port, so the smoke released in the smoke exhaust port area is carried by the airflow and then continues to move to the smoke outlet direction, improving the smoke exhaust efficiency.
[0076] 5. By setting a baffle protrusion extending towards the atomizing section, when the fan is started, the airflow entering the guide component first flows downward along the baffle protrusion towards the atomizing section 2. After being rebounded by force on the surface of the atomizing section, it flows towards the direction of the guide cavity. Since the direction of the smoke outlet is in the same direction as the direction of the smoke rebound, the setting of the baffle protrusion can effectively improve the smoke output efficiency by forming a V-shaped smoke flow in the guide component.
[0077] 6. By opening a through hole in the atomizer, the liquid can be refluxed and pressure can be released, thus simplifying the structure.
[0078] 7. By setting an outer ring and an inner ring on the atomizer, with the inner ring being thinner than the outer ring, the backflowing liquid gathers in the inner ring area to facilitate its entry into the through hole.
[0079] 8. By setting the receiving part to gradually and smoothly slope from the outer periphery towards the exhaust port towards the mounting part, the receiving part as a whole forms a funnel-shaped structure, and the exhaust port is located at the center of the funnel-shaped structure. When the atomized gas cools and forms liquid backflow, it can flow back to the exhaust port based on the funnel structure.
[0080] 9. By setting the outer periphery of the end of the mounting part to abut against the top surface of the aroma diffuser bottle, the aroma diffuser bottle is exposed outside the whole aroma diffuser, which makes it convenient for users to check the aroma liquid level and replace the aroma diffuser bottle in time. The atomizing part and the blower part form a whole component.
[0081] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. An atomizing aromatherapy machine characterized by: It includes a blower section and an atomizing section, wherein the blower section has an opening at the bottom, and the atomizing section is inserted into and seals the bottom of the blower section from the opening direction; The blower section has a smoke outlet at the end away from the atomizing section, and the atomizing section has a smoke exhaust port. The smoke exhaust port releases smoke into the blower section and discharges it outward from the smoke outlet. The blower section is equipped with a light-emitting element, and one end of the light-emitting element is positioned directly opposite the smoke outlet. The exhaust port and the outlet port are located on different vertical axes.
2. The nebulizing aromatherapy machine of claim 1, wherein: The light-emitting element includes an LED bead and a light guide strip. The LED bead is connected to one end of the light guide strip, and the other end of the light guide strip is bent and extends to the bottom of the smoke outlet. One end of the light guide strip in the light-emitting direction is consistent with the smoke-emitting direction of the smoke outlet.
3. The nebulizing aromatherapy machine of claim 2, wherein: The shape of one end of the light guide strip in the light-emitting direction is smaller than or equal to the shape of the smoke outlet.
4. The nebulizing aromatherapy machine of claim 2, wherein: The blower section also includes a fan, and the smoke outlet and the fan are respectively located on both sides of the top of the smoke outlet.
5. The nebulizing aromatherapy machine of claim 4, wherein: The blower section also includes a guide member, one end of which is connected to the blower and the other end of which is connected to the smoke outlet; The flow guide includes a mounting groove, a baffle protrusion, and a flow guide cavity connected in sequence, and the flow guide cavity is connected to the smoke outlet; The fan is positioned in the mounting groove, the baffle protrusion is located on the lower edge of the flow guide cavity near the mounting groove, and the baffle protrusion extends toward the atomizing part; The exhaust port is positioned aligned with the flow guide cavity area.
6. The nebulizing aromatherapy machine of claim 5, wherein: The light guide strip passes through the flow guide cavity and bends towards the smoke outlet; The flow guide cavity pre-tightens the light guide strip.
7. The nebulizing aromatherapy machine of claim 3, wherein: The blower section is also provided with a control board on the side away from the atomizing section. The surface of the control board away from the atomizing section is provided with a control area, and the LED bead is positioned on the surface of the control board close to the atomizing section.
8. The nebulizing aromatherapy machine according to any one of claims 1-7, wherein: It also includes a housing, which covers the outer periphery of the atomizing part and the blower part; The atomizing part includes a receiving component, a mounting component, and an atomizer. The atomizer is disposed inside the mounting component, and the receiving component is inserted into and seals the bottom of the blower part. The receiving component has the exhaust port at the position corresponding to the atomizer.
9. The nebulizing aromatherapy machine of claim 8, wherein: The atomizer has a sheet-like structure and through holes are provided on the atomizer; The through hole is located within the area of the smoke exhaust port.
10. The nebulizing aromatherapy machine of claim 9, wherein: The atomizer includes an outer ring and an inner ring, and the through hole is formed in the inner ring area; The thickness of the inner ring is less than the thickness of the outer ring.
11. The nebulizing aromatherapy machine of claim 9, wherein: The smoke exhaust port is centrally located on the receiving component; The receiving component gradually and smoothly slopes from the outer periphery towards the smoke outlet and then towards the mounting component.
12. The nebulizing aromatherapy machine of claim 8, wherein: The mounting component has a connection port on the side away from the receiving component, and the connection port is connected to the aromatherapy bottle; The outer peripheral side of the mounting component abuts against the top surface of the aromatherapy bottle at one end near the aromatherapy bottle; A cotton swab is connected to the side of the atomizer away from the receiving part, and the cotton swab is placed inside the aromatherapy bottle.
13. The nebulizing aromatherapy machine of claim 12, wherein: The outer casing has a first air inlet on the side corresponding to the connection port, and the mounting component has a second air inlet. The first air inlet, the second air inlet, and the blower are connected in sequence.