Atomization device
By designing a shaping structure at the mist outlet of the atomization device, the smoke diffuses obliquely, solving the problem of fog condensation and improving safety and ornamentality.
Patent Information
- Application Number
- CN202421447914.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-06-21
AI Technical Summary
The existing vehicle-mounted atomizer is vertically straight, causing the mist to spray directly into the front-end glass to condense, which poses safety hazards and lacks fun.
Atomization device is designed, and the mist outlet is equipped with a shaping structure, so that the smoke is shaped into different shapes when it flows through the mist outlet, and diffuses outward from the mist outlet, including the shell and the atomization module, and the smoke is sprayed obliquely with the guide wall and the shaping structure.
Effectively avoid fog condensation on the front glass, eliminate safety hazards, and increase the ornamentality of the smoke landscape.
Smart Images

Figure CN223171173U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of daily necessities, and particularly relates to an atomizing device. Background Art
[0002] With the improvement of living standards and the pursuit of a quality life, people will place atomizers with aromatherapy functions in the space environment, especially in limited spaces, to improve the air quality in the space environment and cover up or weaken the surrounding air odors. For example, they are more and more widely used in environments such as living rooms, offices, and cabs. The existing in-vehicle atomizers have a relatively traditional fog outlet mode. The fog outlet is generally set at the top of the atomizer, and the fog outlet has a straight wall structure. Therefore, the fog will spray vertically upward in a straight line from the fog outlet. Applying a vertically fogging product to the car console will cause the fog to condense on the front windshield, posing a safety hazard. Moreover, this traditional fog outlet mode lacks novelty and is difficult to add interest to the space environment.
[0003] Based on this, it is necessary to improve the structure of the existing atomizer to solve the above problems. Summary of the Invention
[0004] In view of this, this application provides an atomizing device that can effectively solve the above problems.
[0005] This application provides an atomizing device. The atomizing device is provided with a fog outlet, and the fog outlet is provided with a shaping structure. The shaping structure is used for shaping the shape of the smoke flowing through the fog outlet and enabling the smoke after shape shaping to diffuse outward after being discharged from the fog outlet. The atomizing device includes a housing and an atomization module. The housing is provided with an installation port, and a placement position is provided in the housing corresponding to the installation port. The atomization module is installed in the placement position through the installation port. The side wall of the housing corresponding to the installation port and the side wall of the atomization module corresponding to the installation port form the side wall of the fog outlet.
[0006] In one embodiment, the atomizing device includes a housing and an atomization module. The housing is provided with an installation port, and a placement position is provided in the housing corresponding to the installation port. The atomization module is installed in the placement position through the installation port.
[0007] In one embodiment, the shaping structure is arranged on the side wall of the fog outlet.
[0008] In one embodiment, the top of the atomization module protrudes out of the installation port, and at least one side wall of the atomization module protruding out of the installation port and close to the installation port forms the fog outlet with the top wall of the housing.
[0009] In one embodiment, a first guiding wall is provided at the top of the housing, and the first guiding wall encloses to form the installation opening. A second guiding wall is provided at the top of the atomization module, and the mist outlet is formed between the first guiding wall and the second guiding wall.
[0010] In one embodiment, the first guiding wall or the second guiding wall is inclined, or both the first guiding wall and the second guiding wall are inclined. The atomization device has a central axis in the vertical direction, and both the first guiding wall and the second guiding wall are inclined downward from the outside of the atomization device towards the central axis direction.
[0011] In one embodiment, the shaping structure includes an arc portion, and the arc portion is provided on the first guiding wall.
[0012] In one embodiment, the shaping structure includes a protruding portion, the protruding portion is provided on the first guiding wall, and the protruding portion is connected to the second guiding wall.
[0013] In one embodiment, the atomization module includes an atomization main body disposed at the placement position and a lifting portion connected to the top end of the atomization main body. The side wall of the lifting portion forms the second guiding wall. The lifting portion is at least partially located outside the installation opening, and the size of the end of the lifting portion away from the atomization main body is larger than the size of the end of the lifting portion close to the atomization main body.
[0014] In one embodiment, the area of the installation opening is larger than the cross-section of the atomization main body and smaller than the cross-section of the top of the lifting portion.
[0015] In one embodiment, the atomization module is detachably installed at the placement position.
[0016] In summary, the present application provides an atomization device. The atomization device is provided with a mist outlet, and a shaping structure is provided at the mist outlet. The shaping structure is used to shape the shape of the smoke flowing through the mist outlet, and the smoke after shape shaping is discharged from the mist outlet and diffuses outward. Through the shaping design of the structure of the mist outlet, the present application enables the smoke to be shaped into different smoke landscapes by the shaping structure when flowing through the shaping structure, and then is ejected from the mist outlet for people to watch. Moreover, the smoke diffuses outward after being discharged from the mist outlet, which can effectively solve the problems such as the vertical upward mist discharge of the existing atomization device causing the mist to directly spray on the front windshield and condense, affecting the driving sight, etc., and eliminate potential safety hazards. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional schematic diagram of the atomization device of the present application.
[0018] Figure 2 is Figure 1 a cross-sectional view of the atomization device in
[0019] Figure 3 is Figure 1 an exploded view of the atomizing device in
[0020] Figure 4 is Figure 3 an exploded view of a partial structure of the atomizing device in
[0021] Figure 5 is Figure 1 a three-dimensional view of the atomizing module in
[0022] Figure 6 is Figure 5 an exploded view of the atomizing module in Detailed implementation manners
[0023] Before describing the embodiments in detail, it should be understood that the present application is not limited to the detailed structures or element arrangements described hereinafter or in the accompanying drawings of the present application. The present application can be implemented in other ways. Moreover, it should be understood that the words and terms used herein are only for descriptive purposes and should not be construed restrictively. The words such as "including", "comprising", "having" and the like used herein are intended to include the matters listed hereinafter, their equivalents and other additional matters. In particular, when describing "a certain element", the present application does not limit the number of the element to one, and multiple elements can also be included.
[0024] Please also refer to Figures 1 to 6 As shown, the present application provides an atomizing device 10, which can be used in environments such as at home, in the office, and during driving. In this embodiment, the atomizing device 10 is cylindrical as a whole. In other embodiments, the atomizing device 10 can also be designed in other shapes. The atomizing device 10 is provided with a mist outlet 12, and the mist outlet 12 is provided with a shaping structure. The shaping structure is used to shape the smoke flowing through the mist outlet 12 and make the smoke after shape shaping diffuse outward after being discharged from the mist outlet 12. The atomizing device 10 includes a housing 14 and an atomizing module 16. The housing 14 is provided with an installation opening 15, and a placement position 18 is provided in the housing 14 corresponding to the installation opening 15. The atomizing module 16 is installed in the placement position 18 through the installation opening 15. The side walls of the housing 14 corresponding to the installation opening 15 and the side walls of the atomizing module 16 corresponding to the installation opening 15 form the side walls of the mist outlet 12. By shaping the structure of the mist outlet 12 in the present application, the smoke can be shaped into different-shaped smoke landscapes by the shaping structure when flowing through the shaping structure, and then ejected from the mist outlet 12 for people to watch. Moreover, the smoke will diffuse outward after being discharged from the mist outlet 12, which can effectively solve the problems that the existing atomizing device ejects mist vertically upward, resulting in the mist directly spraying on the front windshield and condensing, affecting the driving vision, etc., and eliminate potential safety hazards.
[0025] In this embodiment, the atomizing device 10 is arranged in the vertical direction. The atomizing device 10 has a central axis S in the vertical direction. The mist outlet 12 is arranged at the top of the atomizing device 10, and the smoke diffuses outward in the circumferential direction after being ejected from the mist outlet 12. Optionally, the shaping structure can be arranged on the side wall of the mist outlet 12 or suspended in the mist outlet 12. In this application, taking the shaping structure arranged on the side wall of the mist outlet 12 as an example, the shape of the mist outlet 12 is the shape of the plastic structure.
[0026] In the illustrated embodiment, the atomizing device 10 includes a housing 14 and an atomizing module 16. An installation opening 15 is provided at the center of the top of the housing 14, and an installation position 18 is provided in the housing 14 corresponding to the installation opening 15. The atomizing module 16 is installed in the installation position 18 through the installation opening 15. The installation position 18 is, for example, a groove structure. The side walls of the mist outlet 12 are respectively formed by the housing 14 and the atomizing module 16. Specifically, the atomizing module 16 is detachably arranged in the installation position 18, and there is an assembly gap between the installation opening 15 and the atomizing module 16, so that the side walls of the housing 14 and the atomizing module 16 close to the installation opening 15 form the side walls of the mist outlet 12. Specifically, the top of the atomizing module 16 protrudes out of the installation opening 15, and the top of the atomizing module 16 is spaced from the top of the housing 14 to form the mist outlet 12. A first guiding wall 20 is provided at the top of the housing 14. The inner end of the first guiding wall 20 surrounds and forms the installation opening 15. A second guiding wall 22 is provided at the top of the atomizing module 16. The mist outlet 12 is formed between the first guiding wall 20 and the second guiding wall 22. The first guiding wall 20 and / or the second guiding wall 22 are inclined. In this embodiment, both the first guiding wall 20 and the second guiding wall 22 are inclined. Both the first guiding wall 20 and the second guiding wall 22 are inclined downward from the outermost side of the atomizing device in the direction of the central axis of the atomizing device. Specifically, the first guiding wall 20 is inclined obliquely upward in the direction from the central axis S horizontally outward, and the second guiding wall 22 is inclined obliquely upward in the direction from the central axis S horizontally outward. From another perspective, the first guiding wall 20 extends inward and downward to form an annular structure, and the second guiding wall 22 is an annular structure arranged opposite to the first guiding wall 20. The first guiding wall 20 and the second guiding wall 22 are spaced apart, and the mist outlet 12 is formed between the first guiding wall 20 and the second guiding wall 22, so that the smoke is ejected obliquely upward from the mist outlet 12 and diffuses outward in the circumferential direction. Further, at least a part of the projection of the second guiding wall 22 in the vertical direction is located on the first guiding wall 20 to ensure that the smoke diffuses out of the outside world only after passing through the shaping structure. It should be noted that the "inner" and "outer" mentioned above are defined with reference to the central axis S. The direction of a certain component close to the central axis S is inner, and the direction away from the central axis S is outer. The "vertical direction" refers to the direction parallel to the central axis S, and the "horizontal direction" refers to the direction perpendicular to the central axis S.
[0027] In this application, the shaping structure includes an arc portion, which is arranged on the first guiding wall 20. For example, the arc portion is arranged on the wall surface of the first guiding wall 20 on the side of the mist outlet 12. Specifically, the arc portion includes a number of arc-shaped recesses 24 arranged at intervals along the circumferential direction of the first guiding wall 20. The arrangement of the arc-shaped recesses 24 enables the smoke to have an arc shape instantaneously when flowing out of the mist outlet 12, which has better ornamental value. Both the first guiding wall 20 and the second guiding wall 22 are inclined and their inclination directions are substantially the same, so that the mist outlet direction of the mist outlet 12 is inclined outwards. It should be understood that in other embodiments, the shaping structure may also have other shape designs, such as spiral shape, wavy shape, etc., and this application does not limit this.
[0028] In other embodiments, the shaping structure includes protruding portions (not shown in the figure), which are arranged on the first guiding wall 20 and connected to the second guiding wall 22. There are multiple protruding portions, which are arranged along the circumferential direction of the first guiding wall 20. The protruding portions and the second guiding wall 22 form a plurality of diversion channels, so that the smoke flowing out of the mist outlet 12 forms multiple strands of smoke.
[0029] More specifically, the atomization module 16 includes an atomization main body 26 arranged on the placement position 18 and a lifting portion 28 connected to the top end of the atomization main body 26. The side wall of the lifting portion 28 forms the second guiding wall 22, and at least part of the lifting portion 28 is located outside the placement position 18 and the installation opening 15, so that the user can take out the atomization module 16 by lifting the lifting portion 28 for replacement or maintenance. Preferably, the size of the end of the lifting portion 28 far from the atomization main body 26 is larger than the size of the end of the lifting portion 28 close to the atomization main body 26. For example, the lifting portion 28 has an inverted conical structure, so that the lifting portion 28 can form a hand-holding position for the convenience of the user to pick up and place. The area of the installation opening 15 is larger than the size of the cross-section of the atomization main body 26, and the atomization module 16 can move within the installation opening 15. The top of the lifting portion 28, that is, the top wall area of the atomization module 16 is larger than the area of the installation opening 15, so that at least part of the projection of the second guiding wall 22 in the vertical direction is located on the first guiding wall 20.
[0030] In other embodiments, the second guiding wall 22 includes a part of the wall body of the atomization main body 26 close to the lifting portion 28. When a part of the atomization main body 26 extends out of the installation opening 15, the second guiding wall 22 includes the side wall of the lifting portion 28 and the side wall of the atomization main body 26 extending out of the installation opening 15. The second guiding wall 22 is an inclined side wall plus a vertical side wall, which together with the first guiding wall 20 form the mist outlet 12.
[0031] In the illustrated embodiment, the atomization module 16 is generally cylindrical in structure and includes a face cover 30, a housing 32, a liquid storage member 34, an atomization control module 36, and a bottom cover 38. Among them, an installation portion 40 is provided on one side of the housing 32 near the top opening. The installation portion 40 and the housing 32 are, for example, integrally formed structures. The face cover 30 is covered on the top opening of the housing 32 and is fixedly connected to the installation portion 40, for example, by screws, so as to facilitate disassembly and assembly. The liquid storage member 34 is provided on the bottom side of the installation portion 40. The liquid storage member 34 is, for example, made of cotton material for storing aromatherapy essential oil. The atomization control module 34 is provided on the bottom side of the liquid storage member 34 and is used to atomize the liquid stored in the liquid storage member 34. At the same time, the atomization control module 34 can also control the amount of mist output and the mist output rate of the smoke, etc. The bottom cover 38 is covered on the bottom opening of the housing 32. Preferably, the atomization module 16 further includes a sealing member 42. The sealing member 42 is, for example, made of silicone material. The sealing member 42 is located between the liquid storage member 34 and the atomization control module 36. The sealing member 42 can play a sealing role to prevent the liquid in the liquid storage member 34 from leaking to the atomization control module 36. The atomization control module 36 is clamped between the sealing member 42 and the bottom cover 38.
[0032] Further, the atomization module 16 is provided with a flue 44 communicating with the mist outlet 12, and the liquid storage member 34 is located on the path of the flue 44. Specifically, the flue 44 penetrates through the housing 32, the liquid storage member 34, the atomization control module 36, and the bottom cover 38 to communicate with the outside. Among them, the installation portion 40 is provided with a communication port 46 that laterally penetrates and communicates with the outside of the housing 32. A through hole 48 is provided through the central portion of the liquid storage member 34. The sealing member 42 extends downward to form an extension tube 50. The extension tube 50 passes through the atomization control module 36 and the bottom cover 38 and communicates with the outside. An extension channel 52 is formed inside the extension tube 50. Such a design can enhance the sealing effect of the sealing member 42. The communication port 46, the through hole 48, and the extension channel 52 together constitute the flue 44. Among them, one end of the housing 32 near the face cover 30 is inclined to be provided with an inclined wall 54. The face cover 30 and the inclined wall 54 together form the above-mentioned lifting portion 28. The portion of the atomization module 16 below the lifting portion 28 forms the above-mentioned atomization main body 26. The flue 44 has a flue inlet 44a and a flue outlet 44b. Among them, the flue inlet 44a is the port of the extension channel 52 far from the through hole 48, and the flue outlet 44b is the port of the communication port 46 far from the through hole 48, and the flue outlet 44b is located inside the outer shell 14. For example, the flue outlet 44b is provided on the housing 32.
[0033] In the illustrated embodiment, the atomizing device 10 includes a base 56 and a bracket 58, wherein the bracket 58 is installed in the housing 14, and the housing 14 includes an upper shell portion 14a and a lower shell portion 14b that are connected to each other in an upper and lower manner. The upper shell portion 14a and the lower shell portion 14b are detachably connected, for example, by means of a threaded connection or a snap connection, to facilitate disassembly and maintenance. The base 56 is connected to the bottom end opening of the housing 14, for example, by means of a snap connection or a threaded connection, to facilitate disassembly and maintenance. The placement position 18 is provided on the bracket 58. Specifically, the bracket 58 includes a bracket body 60 and a wall tube 62 extending upward from the middle of the bracket body 60, and the placement position 18 is formed inside the wall tube 62. From another perspective, the bracket 58 divides the space inside the housing 14 into a smoke chamber 19 and a mounting chamber 21, wherein the placement position 18 is located in the mounting chamber 21, the smoke chamber 19 is arranged around the periphery of the placement position 18 and is connected to the mist outlet 12, and the mounting chamber 21 is located on the side of the bracket 58 away from the smoke chamber 19.
[0034] Furthermore, the atomizing device 10 includes an airflow generating device, which includes a first airflow generating device 64, a second airflow generating device 66, a power supply element 68, and a circuit board 70. The first airflow generating device 64 and the second airflow generating device 66 are both mounted in the mounting cavity 21. The second airflow generating device 66 is used to deliver the smoke generated by the atomizing module 16 into the smoke chamber 19, and the first airflow generating device 64 is used to deliver the smoke in the smoke chamber 19 to the mist outlet 12 for discharge. Specifically, the bracket 58 is provided with an avoidance port 82 and a connecting port 84. The first airflow generating device 64 is connected to the smoke chamber 19 through the avoidance port 82, and the flue outlet 44b is connected to the smoke chamber 19. The second airflow generating device 66 is connected to the flue inlet 44a through the connecting port 84.
[0035] The first airflow generating device 64, the second airflow generating device 66, the power supply element 68, and the atomization control module 36 are each electrically connected to a circuit board 70. The power supply element 68 is, for example, a battery, and is used to provide power to the entire atomization device 10. The first airflow generating device 64 is, for example, a fan. An air duct 72 is formed between the first airflow generating device 64 and the mist outlet 12. The air duct 72 is located within the smoke chamber 19, and the flue outlet 44b is connected to the air duct 72. After the smoke generated by the atomization module 16 flows out of the flue outlet 44b, the wind generated by the first airflow generating device 64 blows the smoke through the air duct 72 and out of the mist outlet 12. The second airflow generating device 66 is, for example, an air pump. The second airflow generating device 66 is connected to the flue inlet 44a. The airflow generated by the second airflow generating device 66 enters the flue 44 through the flue inlet 44a to carry the smoke in the flue 44 to the flue outlet 44b and then into the air duct 72. The airflow generated by the air pump has a slow flow rate and is easy to control. It has a small volume and strong pressure, which is conducive to pushing away the liquid film and droplets at the flue outlet 44b.
[0036] In the illustrated embodiment, a first mounting position 74, a second mounting position 76, and a third mounting position 78 are provided on a side of the bracket body 60 facing away from the placement position 18. The first mounting position 74, the second mounting position 76, and the third mounting position 78 are all located within the mounting cavity 21. The first air flow generating device 64 is mounted at the first mounting position 74, the second air flow generating device 66 is mounted at the second mounting position 76, and the power supply element 68 is mounted at the third mounting position 78. Preferably, support plates are respectively provided on the bottom wall of the base 56 corresponding to the first mounting position 74, the second mounting position 76, and the third mounting position 78. The support plates respectively support the bottoms of the first air flow generating device 64, the second air flow generating device 66, and the power supply element 68, making the installation more stable.
[0037] The bracket 58 is fixedly connected to the housing 14. For example, the bracket body 60 and the housing 14 are detachably fixed by means such as screwing, so as to facilitate disassembly and maintenance. Among them, the bracket body 60 is located at the connection of the upper housing portion 14a and the lower housing portion 14b. Preferably, a sealing ring 80 is provided between the bracket body 60 and the housing 14 to increase the airtightness inside the housing 14. The bracket body 60 is provided with an avoidance port 82 corresponding to the air outlet of the first air flow generating device 64, so that the wind generated by the first air flow generating device 64 can enter the air duct 72 through the avoidance port 82. The bracket body 60 is provided with a connection port 84 corresponding to the flue inlet 44a. The air flow outlet of the second air flow generating device 66 is communicated with the connection port 84, that is, the connection port 84 communicates the flue inlet 44a and the second air flow generating device 66, so that the air flow generated by the second air flow generating device 66 can enter the flue 44 through the connection port 84 and the flue inlet 44a. The circuit board 70 is disposed within the second mounting position 76 and is clamped and fixed between the bracket body 60 and the second air flow generating device 66.
[0038] Preferably, the atomization module 16 is detachably mounted on the placement position 18 to facilitate disassembly, assembly and maintenance of the atomization module 16. In this embodiment, the atomization module 16 is detachably mounted on the placement position 18 by magnetic attraction. Specifically, the atomization module 16 is provided with a first magnetic attraction positioning member 86, and the placement position 18 is provided with a second magnetic attraction positioning member 88. The first magnetic attraction positioning member 86 and the second magnetic attraction positioning member 88 are magnetically attracted and positioned in cooperation, so that the atomization module 16 is detachably mounted on the placement position 18 by magnetic attraction and also has an automatic positioning function, which brings convenience to the user. In this embodiment, two first magnetic attraction positioning members 86 and two second magnetic attraction positioning members 88 are respectively provided, and both are magnets. For example, one of the two first magnetic attraction positioning members 86 is an N pole and the other is an S pole, and one of the two second magnetic attraction positioning members 88 is an N pole and the other is an S pole. During installation, the principle of like poles repelling and opposite poles attracting of magnets is used for magnetic attraction fixation and positioning. The two first magnetic attraction positioning members 86 are arranged on the bottom cover 38. For example, two first fixing grooves are provided on the inner wall of the bottom cover 38, and the two first magnetic attraction positioning members 86 are respectively fixed in the two first fixing grooves; the two second magnetic attraction positioning members 88 are arranged on the bracket main body 60. For example, two second fixing grooves are provided at the bottom of the bracket main body 60, and the two second magnetic attraction positioning members 88 are respectively fixed in the two second fixing grooves.
[0039] In the illustrated embodiment, after the atomization module 16 is mounted to the placement position 18, it is automatically electrically connected to the circuit board 70. Specifically, a first conducting post 90 is provided at the bottom of the atomization control module 36, and a first conducting terminal 92 is formed at the end of the first conducting post 90. The first conducting post 90 passes through the bottom cover 38 and the first conducting terminal 92 is exposed outside the bottom cover 38; a second conducting post 94 is provided at the top of the circuit board 70 on one side of the placement position 18 where the bracket main body 60 is located, and a second conducting terminal 96 is formed at the end of the second conducting post 94. The second conducting post 94 passes through the bracket main body 60 and is exposed outside the placement position 18. When the atomization module 16 is mounted to the placement position 18 and magnetically positioned, the first conducting terminal 92 is electrically connected to the second conducting terminal 96, thereby realizing the electrical connection between the atomization control module 36 and the circuit board 70.
[0040] In the illustrated embodiment, the bracket 58 is provided with an outer cover 98 on the outer wall of the atomizing module 16, that is, the outer cover 98 is provided on the outside of the wall tube 62, and the top of the outer cover 98 is provided against the inclined wall 54. A smoke track 100 is provided between the outer cover 98 and the outer shell 14. The inner side of the smoke track 100 abuts the outer cover 98, and the outer side of the smoke track 100 abuts the inner wall of the outer shell 14. The smoke track 100 has a track inlet 100a and a track outlet 100b. The outer cover 98 is provided with a first connecting channel 102 connecting the flue outlet 44b and the track inlet 100a, and a second connecting channel 104 connecting the air duct 72 and the first airflow generating device 64. The second connecting channel 104 is provided corresponding to the avoidance opening 82, that is, the second connecting channel 104 is connected to the air outlet of the first airflow generating device 64 through the avoidance opening 82, and the track outlet 100b is connected to the air duct 72. Preferably, the first connecting channel 102 is located above the second connecting channel 104. The upper shell portion 14a can be designed to be made of a transparent material so that the user can observe the smoke scene inside from the outside.
[0041] More specifically, the smoke track 100 includes a smoke flow channel 106 located between the track inlet 100a and the track outlet 100b, and the track inlet 100a is located above the track outlet 100b. In this embodiment, the smoke track 100 is spiral, and the upper surface of the smoke track 100 is recessed to form the smoke flow channel 106, that is, the smoke flow channel 106 is located on the side of the smoke track 100 facing the mist outlet 12, and the smoke flow channel 106 is connected to the smoke chamber 19. The part of the air duct 72 corresponding to the smoke track 100 is located on the side of the smoke track 100 away from the mist outlet 12, so that this part of the air duct 72 is also spiral, and the outlet of the second connecting channel 104 is located below the bottom smoke track 100. It should be understood that in other embodiments, the smoke track 100 can also be designed into other shapes, and this application is not limited to this; in this embodiment, the smoke flow channel 106 is an open structure, that is, the smoke flow channel 106 is located outside the smoke track 100. In other embodiments, the smoke flow channel 106 can also be set inside the smoke track 100, and the smoke track 100 can be designed to be a transparent material for viewing.
[0042] Preferably, the atomizing device 10 further includes a lighting element 108 which is electrically connected to the circuit board 70. The lighting element 108 is, for example, a light strip or a lamp bead, etc. The lighting element 108 is arranged corresponding to the smoke track 100, so that while the smoke flows, it can cooperate with the lighting effect to increase the ornamental value of the product. In this embodiment, a groove 109 for arranging the lighting element 108 is provided on the outer wall of the wall cylinder 62, and the outer cover 98 is made of a light-transmitting material. The lighting element 108 also extends in a spiral shape along the spiral track of the smoke track 100, so that the light emitted by the lighting element 108 can irradiate the smoke flow channel 106 to form a light and smoke effect. With such a design, when the atomizing device 10 works, a smoke landscape will be generated: a part of the smoke flows spirally forward along the smoke flow channel 106, and at the same time, another part of the smoke flows spirally backward along the air duct 72, increasing the aesthetic feeling of the product.
[0043] In the illustrated embodiment, a button 110 and a charging interface 112 which are electrically connected to the circuit board 70 are provided on the side wall of the outer shell 14. The charging interface 112 is used to connect an external power supply to charge the power supply element 68. The button 110 can be used to control the start and stop of the atomizing device 10, the lighting adjustment, and the adjustment of the spray amount, spray rate, etc. An air inlet 114 communicating with the first air flow generating device 64 is provided on the outer periphery of the bottom of the base 56, so that external air can enter the first air flow generating device 64 through the air inlet 114 to provide air supply for it. A gasket 116 is also provided at the bottom of the base 56, which can play roles such as stable support and anti-slip.
[0044] In summary, the present application provides an atomizing device. The atomizing device is provided with a mist outlet, and the mist outlet is provided with a shaping structure. The shaping structure is used to shape the smoke flowing through the mist outlet, and make the smoke after shape shaping diffuse outward after being discharged from the mist outlet. Through the shaping design of the structure of the mist outlet in the present application, the smoke can be shaped into different smoke landscapes by the shaping structure when flowing through the shaping structure, and then sprayed out from the mist outlet for people to watch. Moreover, the smoke will diffuse outward after being discharged from the mist outlet, which can effectively solve problems such as the existing atomizing device spraying mist vertically upward and the mist directly spraying on the front windshield and condensing, affecting the driving sight, etc., and eliminate potential safety hazards.
[0045] The concepts described herein can be implemented in other forms without departing from their spirit and characteristics. The specific embodiments disclosed should be considered illustrative rather than restrictive. Therefore, the scope of the present application is defined by the appended claims, rather than by these previous descriptions. Any changes within the literal meaning and equivalent scope of the claims shall fall within the scope of these claims.
Claims
1. An atomization device, characterized in that, The atomizing device is provided with a mist outlet, and the mist outlet is provided with a shaping structure. The shaping structure is used to shape the smoke flowing through the mist outlet and make the smoke after shape shaping diffuse outward after being discharged from the mist outlet. The atomizing device includes a housing and an atomizing module. The housing is provided with an installation opening, and a placement position corresponding to the installation opening is provided inside the housing. The atomizing module is installed in the placement position through the installation opening, and the side walls of the housing corresponding to the installation opening and the side walls of the atomizing module corresponding to the installation opening form the side walls of the mist outlet.
2. The atomization device according to claim 1, characterized in that, The shaping structure is arranged on the side wall of the mist outlet.
3. The atomization device according to claim 2, characterized in that, The top of the atomizing module protrudes out of the installation opening, and at least one side wall of the atomizing module protruding out of the installation opening and close to the installation opening forms the mist outlet with the top wall of the housing.
4. The atomization device according to claim 3, characterized in that, The top of the housing is provided with a first guiding wall, and the first guiding wall surrounds to form the installation opening. The top of the atomizing module is provided with a second guiding wall, and the mist outlet is formed between the first guiding wall and the second guiding wall.
5. The atomization device according to claim 4, characterized in that, The first guiding wall or the second guiding wall is inclined, or both the first guiding wall and the second guiding wall are inclined. The atomizing device has a vertical central axis, and both the first guiding wall and the second guiding wall are inclined downward from the outside of the atomizing device towards the central axis direction.
6. The atomization device according to claim 4, characterized in that The shaping structure includes an arc portion, and the arc portion is arranged on the first guiding wall.
7. The atomization device according to claim 4, wherein, The shaping structure includes a protruding portion, and the protruding portion is arranged on the first guiding wall. The protruding portion is connected to the second guiding wall.
8. The atomization device according to claim 4, wherein, The atomizing module includes an atomizing main body arranged in the placement position and a lifting portion connected to the top end of the atomizing main body. The side wall of the lifting portion forms the second guiding wall. The lifting portion is at least partially located outside the installation opening, and the size of the end of the lifting portion far from the atomizing main body is larger than the size of the end of the lifting portion close to the atomizing main body.
9. The atomization device according to claim 8, characterized in that, The area of the installation opening is larger than the cross-section of the atomizing main body and smaller than the cross-section of the top of the lifting portion.
10. The atomization device according to claim 2, characterized in that, The atomizing module is detachably installed in the placement position.