Atomizing device with rotating prompt switch taste
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本申请的主要目的是提供一种转动提示切换口味的雾化装置,解决操作不便,无法感知口味切换的技术问题
[0019] This application allows for rotation of the rotating component, causing the retaining part to press inward against the elastic fixing part. The retaining part and the elastic fixing part separate/lock, producing a sound. When the air outlet channel connects to the first air outlet, the retaining part and the elastic fixing part lock together. When the air outlet channel connects to the second air outlet, the retaining part and the elastic fixing part lock together. This allows for connection between the mouthpiece and the first/second atomizer without visual inspection, enabling flavor switching. It also eliminates the need to remove the mouthpiece from the main body, making operation simple and convenient. The locking structure also allows for sound during mouthpiece rotation; simply hearing the sound indicates flavor switching.
Smart Images

Figure CN224611901U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of atomization technology, and in particular to an atomization device that provides a rotating prompt for switching flavors. Background Technology
[0002] The multi-flavor electronic cigarette includes a shell with an opening at the top, through which at least two cartridges are installed. A power assembly is located at the bottom of the shell, comprising a bracket, a battery, and a circuit board. The bracket is equipped with spring pins, one end of which protrudes from the opening, and the other end of which is connected to the circuit board via a wire. The circuit board is connected to the battery via a wire. There are two sets of spring pins, each set on the bracket and protruding from the opening at the top of the shell.
[0003] Each e-cigarette cartridge has an atomization channel that runs through both the upper and lower surfaces of the cartridge. An atomizing core is installed within the atomization channel. E-liquid from the cartridge flows into the atomizing core through the inlet hole in the atomization channel. The atomizing core is connected to electrode posts via wires. The electrode posts are located at the bottom of the cartridge and are exposed on the lower surface. Each cartridge has two electrode posts, each corresponding to one set of cartridge pins. A mouthpiece is located at the opening at the top of the outer shell. The mouthpiece is circular, as is the opening at the top of the outer shell. To use the e-cigarette, the mouthpiece is separated from the outer shell and inserted into one of the atomization channels. The vapor produced by the atomizing core inside the cartridge will then flow out through the mouthpiece. To change the flavor, the mouthpiece must be removed, and the mouthpiece inserted into the other atomization channel. The vapor produced by the atomizing core inside the cartridge will then flow out through the mouthpiece. This method of changing flavors is very inconvenient.
[0004] Therefore, it is necessary to propose an atomizing device to address the aforementioned shortcomings. Utility Model Content
[0005] The main purpose of this application is to provide an atomizing device that provides a rotating prompt for flavor switching, thereby solving the technical problems of inconvenient operation and inability to detect flavor switching.
[0006] To achieve the above objectives, this application proposes a vaporizer with a rotating prompt for switching flavors, comprising:
[0007] A main body with an opening at one end, wherein a first atomizer and a second atomizer are installed in the opening, the first atomizer having a first air outlet and the second atomizer having a second air outlet.
[0008] A suction nozzle is installed in the opening. The suction nozzle includes a retaining shell and a rotating member rotatably installed in the retaining shell. A retaining part is protruding from the inner wall of the retaining shell, and an elastic fixing part is opened inward from the outer wall of the rotating member. The rotating member has an air outlet channel.
[0009] When the rotating component is rotated, the clamping part presses the elastic fixing part inward, and the clamping part and the elastic fixing part separate / lock together and make a sound. When the air outlet channel is connected to the first air outlet, the clamping part and the elastic fixing part lock together. When the air outlet channel is connected to the second air outlet, the clamping part and the elastic fixing part lock together.
[0010] The main body includes a shell, the upper part of which has the opening, the inner wall of the upper part of the shell is provided with a groove, the outer wall of the card is provided with a loading groove 211, the side wall of the loading groove 211 is provided with a protrusion, the protrusion engages with the groove, and the lower surface of the card is provided with an air cavity opening upward.
[0011] The upper surface of the cassette has a downward-facing receiving cavity, and the side wall of the lower part of the receiving cavity is provided with the holding part. The lower surface of the rotating part has an upward-facing docking cavity, which corresponds to the receiving cavity. The outer wall of the lower part of the rotating part has a first annular groove inwardly, and the side wall of the first annular groove has a sliding part protruding outwardly. The elastic fixing part is formed from the side wall of the sliding part inwardly.
[0012] A first annular rib protrudes outward from the upper sidewall of the first annular groove. An inward clearance groove is formed on the sidewall of the first annular rib. The clearance groove extends inward and connects to the docking cavity. The elastic fixing part is located directly below the clearance groove. The first annular rib is installed in the receiving cavity.
[0013] A rotating shaft is provided at the center of the rotating component, and a shaft hole is opened at the center of the receiving cavity. The rotating shaft is rotatably mounted in the shaft hole. The distance between the first annular rib and the center of the rotating shaft is greater than the distance between the first annular groove and the center of the rotating shaft. The first annular rib has a protruding edge that abuts against the side wall of the receiving cavity.
[0014] The upper sidewall of the receiving cavity is recessed outward into a receiving groove, and there is a stepped surface between the outer wall of the rotating member and the first annular rib, the stepped surface abutting against the bottom wall of the receiving groove.
[0015] The upper part of the rotating component extends upward to form an intake section, and the air outlet channel penetrates the intake section in the vertical direction. The lower part of the air outlet channel is connected to the docking cavity. The bottom wall of the receiving cavity is provided with a first transition cavity and a second transition cavity downward. The first transition cavity and the second transition cavity are respectively connected to the first air outlet and the second air outlet, so that the air outlet channel can be connected to the first air outlet through the first transition cavity, or the air outlet channel can be connected to the second air outlet through the second transition cavity.
[0016] A sealing gasket is installed in the docking cavity. An upper sealing boss is provided on the upper surface of the sealing gasket, and a lower sealing boss is provided on the lower surface of the sealing gasket. A sealing groove is formed downward on the upper surface of the upper sealing boss, and the sealing groove extends downward through the lower surface of the lower sealing boss. The lower surface of the sealing gasket abuts against the bottom wall of the receiving cavity. The lower sealing boss is used to seal the first transition cavity or the second transition cavity. The lower part of the air outlet channel is fixed to the sealing groove.
[0017] The lower surface of the sealing gasket has an upward-facing suction groove and a receiving hole. The rotating shaft is inserted into the receiving hole. A fixing screw is provided at the lower part of the rotating shaft. The fixing screw is located in the air cavity and fixes the clamping case and the rotating part. The suction groove is equipped with suction cotton.
[0018] A dividing section is provided inside the opening, which divides the opening into two equal halves. The dividing section is located between the first atomizer and the second atomizer.
[0019] This application allows for rotation of the rotating component, causing the retaining part to press inward against the elastic fixing part. The retaining part and the elastic fixing part separate / lock, producing a sound. When the air outlet channel connects to the first air outlet, the retaining part and the elastic fixing part lock together. When the air outlet channel connects to the second air outlet, the retaining part and the elastic fixing part lock together. This allows for connection between the mouthpiece and the first / second atomizer without visual inspection, enabling flavor switching. It also eliminates the need to remove the mouthpiece from the main body, making operation simple and convenient. The locking structure also allows for sound during mouthpiece rotation; simply hearing the sound indicates flavor switching. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0021] Figure 1 This is a perspective view of the atomizing device in an embodiment of this design;
[0022] Figure 2 This is an exploded perspective view of the atomizing device in an embodiment of this design;
[0023] Figure 3 This is an exploded perspective view of the atomizing device in an embodiment of this design.
[0024] Figure 4This is an exploded perspective view of the nozzle in an embodiment of this design;
[0025] Figure 5 This is an exploded perspective view of the suction nozzle in an embodiment of this design.
[0026] Figure 6 This is a cross-sectional view of the nozzle in an embodiment of this design;
[0027] Figure 7 A cross-sectional view of the suction nozzle from another perspective in an embodiment of this design.
[0028] Figure 8 This is a cross-sectional view of the atomizing device in an embodiment of this design.
[0029] Explanation of icon numbers:
[0030] 1 main body 11 Opening 12 Segmentation 13 spring pin 14 case 141 groove 2 Suction nozzle 21 jam 211 Loading slot 2111 protrusion 212 air cavity 213 Receiving cavity 214 Cardholder 215 Container 216 First transfer chamber 217 Second transfer chamber 218 Shaft Hole 219 Fixing screws 22 Rotating component 221 First annular groove 222 Sliding part 223 Elastic fixing part 224 First ring rib 225 clearance slot 2241 Convex edge 226 Step surface 227 docking cavity 228 pivot 23 Inhalation 231 Air vent 24 sealing gasket 241 Upper sealing boss 242 Lower sealing boss 243 Sealing groove 244 Suction tank 25 absorbent cotton 3 First atomizer 31 First air outlet 32 First atomizing tube 33 First atomizing core 34 First air intake 4 Second atomizer 41 Second air outlet 42 Second atomizing tube 43 Second atomizing core
[0031] The purpose, features, and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0032] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0033] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0034] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0035] the following Figure 1-8 This document primarily describes the specific structure of an atomizing device with a rotating prompt for flavor switching. Please refer to the figure below. An atomizing device with a rotating prompt for flavor switching includes a main body 1 and a mouthpiece 2. The mouthpiece 2 is mounted on the upper part of the main body 1. The main body 1 also includes a support, a battery, and a circuit board. The circuit board is mounted on the support, the battery is connected to the circuit board, and the circuit board is connected to a spring-loaded pin 13. The upper part of the spring-loaded pin 13 exposes the upper surface of the support. The spring-loaded pin 13 is connected to the circuit board via a wire, and the circuit board is connected to the battery via a wire. The main body 1 also includes a sensor, such as a microphone, which can sense the airflow to notify the circuit board whether inhalation has started. The circuit board then notifies the battery whether to output power to the spring-loaded pin 13 and the magnitude of the output power.
[0036] A main body 1 has an opening 11 at one end, through which a first atomizer 3 and a second atomizer 4 are installed. The first atomizer 3 has a first air outlet 31, and the second atomizer 4 has a second air outlet 41. A dividing part 12 is provided inside the opening 11, dividing the opening 11 into two equal halves. The dividing part 12 is located between the first atomizer 3 and the second atomizer 4. The upper part of the main body 1 has the opening 11, and the upper part of the support has the dividing part 12, which divides the opening 11 into two halves. Each atomizer has an identical housing space, and each housing space can be equipped with either a first atomizer 3 or a second atomizer 4. The first atomizer 3 and the second atomizer 4 have the same shape but different flavors. The upper part of the bracket is provided with spring pins 13, and each housing space has two spring pins 13. The first atomizer 3 is provided with a first atomizing tube 32, and the first atomizing tube 32 is equipped with a first atomizing coil 33. The first atomizer 3 is filled with e-liquid, and the e-liquid enters the first atomizing coil 33 through the first oil inlet of the first atomizing tube 32. An electrode pin is provided at the bottom of the first atomizer 3, and the electrode pin passes through... A wire connects to the first atomizing core 33. The bottom of the first atomizer 3 has a first air inlet 34, and the top of the first atomizer 3 has a first air outlet 31. The bottom of the first atomizing tube 32 connects to the first air inlet 34, and the top of the first atomizing tube 32 connects to the first air outlet 31. The second atomizer 4 contains a second atomizing tube 42, and the second atomizing tube 42 houses the second atomizing core 43. The second atomizer 4 is filled with e-liquid, which enters the second atomizing core 43 through the second oil inlet of the second atomizing tube 42. An electrode pin is also located at the bottom of the second atomizer 4. The pin is connected to the second atomizing core 43 via a wire. The bottom of the second atomizer 4 is provided with a second air inlet 44, and the top of the second atomizer 4 is provided with a second air outlet 41. The bottom of the second atomizing tube 42 is connected to the second air inlet 44, and the top of the first atomizing tube 32 is connected to the second air outlet 41. The first atomizer 3 and the second atomizer 4 are independently provided. The dividing part 12 separates the lower parts of the first atomizer 3 and the second atomizer 4, which facilitates the installation of the first atomizer 3 and the second atomizer 4 and prevents the first atomizer 3 and the second atomizer 4 from moving in the horizontal direction.
[0037] A suction nozzle 2 is installed in the opening 11. The suction nozzle 2 includes a retaining shell 21 and a rotating member 22 rotatably installed in the retaining shell 21. A retaining part 214 protrudes from the inner wall of the retaining shell 21. An elastic fixing part 223 is opened inward from the outer wall of the rotating member 22. The rotating member 22 has an air outlet channel 231. The suction nozzle 2 matches the opening 11. The retaining shell 21 is fixed to the opening 11. The rotating member 22 can rotate around the opening 11. When the rotating member 22 rotates, the air outlet channel 231 rotates accordingly. The retaining shell 21 can also fix the upper part of the first atomizer 3 and the second atomizer 4 to prevent the first atomizer 3 and the second atomizer 4 from moving in the vertical direction. The suction nozzle 2 can be made of plastic material or metal material.
[0038] When the rotating member 22 is rotated, the retaining part 214 presses inward against the elastic fixing part 223. The retaining part 214 and the elastic fixing part 223 separate / lock together, producing a sound. When the air outlet channel 231 connects to the first air outlet 31, the retaining part 214 and the elastic fixing part 223 lock together, indicating to the user that the mouthpiece 2 has been rotated to the correct position, and normal inhalation can be performed on the first atomizer 3. When the air outlet channel 231 connects to the second air outlet 41, the retaining part 214 and the elastic fixing part 223 lock together, indicating to the user that the mouthpiece 2 has been rotated to the correct position, and normal inhalation can be performed on the second atomizer 4. The retaining part 214 locks into the elastic fixing part 223. The mouthpiece 2 is separated from the body 1, allowing it to rotate. The mouthpiece 2 is engaged with the elastic fixing part 223 by the holding part 214. At the same time as the engagement, the holding part 214 and the elastic fixing part 223 make a sound, indicating that the mouthpiece 2 has rotated into place. Without the need for visual observation, the mouthpiece 2 is connected to the first atomizer 3 / second atomizer 4, enabling flavor switching. There is no need to remove the mouthpiece from the body 1. The operation is simple and convenient, especially in low-light environments or at night. Users do not need to observe whether the mouthpiece 2 has rotated into place; they only need to hear the sound made after the mouthpiece 2 rotates to switch flavors. Alternatively, it can be rotated with one hand, without the need for both hands to operate simultaneously.
[0039] The main body 1 includes a shell 14, the upper part of which has the opening 11. The inner wall of the upper part of the shell 14 is provided with a groove 141. The outer wall of the retainer 21 has a loading groove 211. The side wall of the loading groove 211 is provided with a protrusion 2111. The protrusion 2111 engages with the groove 141, thereby fixing the shell 14 and the retainer 21 to each other, and fixing the shell 14 and the retainer 21 to each other in the vertical direction and in the horizontal direction. The lower surface of the retainer 21 has an upward-facing air chamber 212. The air chamber 212 is used to install the upper part of the first atomizer 3 and the second atomizer 4. The air chamber 212 and the opening 11 together form a space in which the first atomizer 3 and the second atomizer 4 are installed. When it is necessary to replace the first atomizer 3 or the second atomizer 4, separate the housing 14 and the retainer 21, remove the first atomizer 3 or the second atomizer 4 from the opening 11, and replace it with a new one.
[0040] The upper surface of the retainer 21 has a downward-facing cavity 213. The retaining part 214 is provided on the lower side wall of the cavity 213. The retaining part 214 protrudes from the lower side wall of the cavity 213. The lower surface of the rotating member 22 has an upward-facing mating cavity 227, which corresponds to the cavity 213. The lower outer wall of the rotating member 22 has an inward-facing first annular groove 221. The side wall of the first annular groove 221 has an outward-facing sliding part 222. The elastic fixing part 223 is formed from the side wall of the sliding part 222 inward. Specifically, the sliding part 222 protrudes outward relative to the side wall of the first annular groove 221, and the elastic fixing part 223 is a recessed groove. The shape of the elastic fixing part 223 is similar to that of the groove. When the retaining part 214 enters the elastic fixing part 223 during the rotation of the rotating part 22, a sound will be made, such as a snapping sound, so that the user can know that the rotating part 22 has been rotated into place.
[0041] A first annular rib 224 protrudes outward from the upper sidewall of the first annular groove 221. An inwardly extending clearance groove 225 is formed on the sidewall of the first annular rib 224, connecting the mating cavity 227. The clearance groove 225 increases the elasticity of the sidewall of the first annular groove 221, allowing it to move elastically inward and outward. The elastic fixing part 223 is located directly below the clearance groove 225. The first annular rib 224 is installed in the receiving cavity 213 and rotates within it. The holding part 214 presses the elastic fixing part 223 inward, and the side wall of the first annular groove 221 moves inward. When the holding part 214 enters the elastic fixing part 223, the side wall of the first annular groove 221 moves outward. The holding part 214 and the elastic fixing part 223 come into contact with each other and make a collision sound, indicating that they have been locked in place. Continue to rotate the suction nozzle 2, and the elastic fixing part 223 presses the holding part 214 inward again until the elastic fixing part 223 passes the holding part 214. Then the elastic fixing part 223 continues to move on the side wall of the first annular groove 221 until the next engagement.
[0042] A rotating shaft 228 is provided at the center of the rotating component 22, and a shaft hole 218 is provided at the center of the receiving cavity 213. The rotating shaft 228 is rotatably mounted in the shaft hole 218. The rotating component 22 rotates around the shaft hole 218 with the rotating shaft 228 as the center. The distance between the first annular rib 224 and the center of the rotating shaft 228 is greater than the distance between the first annular groove 221 and the center of the rotating shaft 228. The first annular rib 224 has a protruding edge 2241, which abuts against the side wall of the receiving cavity 213. There can be multiple protruding edges 2241. The contact between the protruding edges 2241 and the side wall of the receiving cavity 213 can reduce the friction during rotation.
[0043] The upper sidewall of the receiving cavity 213 is recessed outward to form a receiving groove 215, which is annular. There is a stepped surface 226 between the outer wall of the rotating member 22 and the first annular rib 224. The stepped surface 226 is horizontally arranged and surrounds the outer wall of the rotating member 22. The stepped surface 226 abuts against the bottom wall of the receiving groove 215, so that the stepped surface 226 can abut against the receiving groove 215 during the downward assembly process, and the assembly can be completed in one step. It can also prevent up and down shaking during rotation. The rotating member 22 rotates with the bottom wall of the receiving groove 215 as the plane, ensuring the stability of rotation.
[0044] The rotating part 22 extends upward to form an inhalation part 23, which is held in the mouth. The air outlet channel 231 extends through the inhalation part 23 in the vertical direction. The lower part of the air outlet channel 231 is connected to the docking cavity 227. The bottom wall of the receiving cavity 213 is provided with a first transition cavity 216 and a second transition cavity 217. The first transition cavity 216 and the second transition cavity 217 are respectively connected to the first air outlet 31 and the second air outlet 41, so that the air outlet channel 231 can be connected to the first air outlet 31 through the first transition cavity 216, or the air outlet channel 231 can be connected to the second air outlet 41 through the second transition cavity 217. The first transition cavity 216 and the second transition cavity 217 have the same shape. The first transition cavity 216 connects the receiving cavity 213 and the air cavity 212, and the second transition cavity 217 connects the receiving cavity 213 and the air cavity 212. The first transition cavity 216 and the second transition cavity 217 are independent of each other and are located on both sides of the shaft hole 218 respectively. The positions of the first transition cavity 216 and the second transition cavity 217 can be interchanged, but the principle is the same.
[0045] A sealing gasket 24 is installed in the docking cavity 227. An upper sealing boss 241 is provided on the upper surface of the sealing gasket 24, and a lower sealing boss 242 is provided on the lower surface of the sealing gasket 24. A sealing groove 243 is formed downward on the upper surface of the upper sealing boss 241. The sealing groove 243 extends downward and penetrates the lower surface of the lower sealing boss 242. The lower surface of the sealing gasket 24 abuts against the bottom wall of the receiving cavity 213. The lower sealing boss 242 is used to seal the first transition cavity 216 or the second transition cavity 217. The lower part of the air outlet channel 231 is fixed to the sealing groove 243. When the mouthpiece 2 rotates, the lower sealing boss 242 abuts against the bottom wall of the receiving cavity 213. When the mouthpiece 2 rotates to its final position, the lower sealing boss 242 enters the first transition cavity 216. The smoke generated by the first atomizer 3 enters the sealing groove 243 through the first transition cavity 216, then enters the lower part of the air outlet channel 231, and flows out from the upper part of the air outlet channel 231, effectively preventing the smoke generated by the first atomizer 3 from flowing out through the gap between the lower sealing boss 242 and the first transition cavity 216. When it is necessary to change the flavor, rotate the mouthpiece 2. The lower sealing boss 242 moves out of the first transition cavity 216 and moves along the bottom wall of the receiving cavity 213, so that the rotation of the mouthpiece 2 has a damping force until the lower sealing boss 242 enters the second transition cavity 217. The smoke generated by the second atomizer 4 enters the sealing groove 243 through the second transition cavity 217, and then enters the lower part of the air outlet channel 231, and flows out from the upper part of the air outlet channel 231, effectively preventing the smoke generated by the second atomizer 4 from flowing out through the gap between the lower sealing boss 242 and the second transition cavity 217.
[0046] The lower surface of the sealing gasket 24 has an upward-facing liquid absorption groove 244 and a receiving hole 245. The rotating shaft 228 is inserted into the receiving hole 245. A fixing screw 219 is provided at the lower part of the rotating shaft 228. The fixing screw 219 is located in the air chamber 212. The fixing screw 219 fixes the retaining shell 21 and the rotating part 22, which can prevent the retaining shell 21 and the rotating part 22 from separating, ensuring that the sealing gasket 24 is assembled in the docking cavity 227, and also ensuring that the lower surface of the sealing gasket 24 is in contact with the bottom wall of the receiving cavity 213. The liquid absorption groove 244 is equipped with liquid absorption cotton 25. When the first atomizer 3 or the second atomizer 4 is used up, the first air outlet 31 or the second air outlet 41 has residual condensate. When the first air outlet 31 or the second air outlet 41 comes into contact with the liquid absorption cotton 25, the liquid absorption cotton 25 can absorb the condensate and prevent the condensate from flowing out.
[0047] The oil circuit of this design is as follows: the e-liquid of the first atomizer 3 enters the first atomizer core 33 through the first oil inlet of the first atomizing tube 32, and is heated into vapor on the first atomizer core 33; the e-liquid of the second atomizer 4 enters the second atomizer core 43 through the second oil inlet of the second atomizing tube 42, and is heated into vapor on the second atomizer core 43.
[0048] The circuit design is as follows: The battery is connected to the spring pin 13 via a circuit board. The spring pin 13 is connected to the electrode pin at the bottom of the first atomizer 3. The electrode pin of the first atomizer 3 is connected to the first atomizing core 33 via a wire. The battery provides power to the first atomizing core 33 and controls the power of the first atomizing core 33. Similarly, another set of spring pins 13 is connected to the electrode pin at the bottom of the second atomizer 4. The electrode pin of the second atomizer 4 is connected to the second atomizing core 43 via a wire. The battery provides power to the second atomizing core 43 and controls the power of the second atomizing core 43.
[0049] The air path of this design is as follows: When one of the atomizers is working, for example, when the first atomizer 3 is working, outside air enters the first atomizing tube 32 through the first air inlet 34, flows out from the first air outlet 31, enters the first transition cavity 216 and enters the sealing groove 243, then enters the lower part of the air outlet channel 231 and flows out from the upper part of the air outlet channel 231; the working principle of the second atomizer 4 is similar and will not be described further.
[0050] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the inventive concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.
Claims
1. A nebulizer with a rotating indicator for switching flavors, characterized in that, include: A main body with an opening at one end, wherein a first atomizer and a second atomizer are installed in the opening, the first atomizer having a first air outlet and the second atomizer having a second air outlet. A suction nozzle is installed in the opening. The suction nozzle includes a retaining shell and a rotating member rotatably installed in the retaining shell. A retaining part is protruding from the inner wall of the retaining shell, and an elastic fixing part is opened inward from the outer wall of the rotating member. The rotating member has an air outlet channel. When the rotating component is rotated, the clamping part presses the elastic fixing part inward, and the clamping part and the elastic fixing part separate / lock together and make a sound. When the air outlet channel is connected to the first air outlet, the clamping part and the elastic fixing part lock together. When the air outlet channel is connected to the second air outlet, the clamping part and the elastic fixing part lock together.
2. The atomizing device for rotating to indicate flavor switching according to claim 1, characterized in that, The main body includes a shell, the upper part of which has the opening, the inner wall of the upper part of the shell is provided with a groove, the outer wall of the card is provided with a loading groove 211, the side wall of the loading groove 211 is provided with a protrusion, the protrusion engages with the groove, and the lower surface of the card is provided with an air cavity opening upward.
3. The atomizing device for rotating prompts to switch flavors according to claim 2, characterized in that, The upper surface of the cassette has a downward-facing receiving cavity, and the side wall of the lower part of the receiving cavity is provided with the holding part. The lower surface of the rotating part has an upward-facing docking cavity, which corresponds to the receiving cavity. The outer wall of the lower part of the rotating part has a first annular groove inwardly, and the side wall of the first annular groove has a sliding part protruding outwardly. The elastic fixing part is formed from the side wall of the sliding part inwardly.
4. The atomizing device for rotating to indicate flavor switching according to claim 3, characterized in that, A first annular rib protrudes outward from the upper sidewall of the first annular groove. An inward clearance groove is formed on the sidewall of the first annular rib. The clearance groove extends inward and connects to the docking cavity. The elastic fixing part is located directly below the clearance groove. The first annular rib is installed in the receiving cavity.
5. The atomizing device for rotating to indicate flavor switching according to claim 4, characterized in that, A rotating shaft is provided at the center of the rotating component, and a shaft hole is opened at the center of the receiving cavity. The rotating shaft is rotatably mounted in the shaft hole. The distance between the first annular rib and the center of the rotating shaft is greater than the distance between the first annular groove and the center of the rotating shaft. The first annular rib has a protruding edge that abuts against the side wall of the receiving cavity.
6. The atomizing device for rotating to indicate flavor switching according to claim 5, characterized in that, The upper sidewall of the receiving cavity is recessed outward into a receiving groove, and there is a stepped surface between the outer wall of the rotating member and the first annular rib, the stepped surface abutting against the bottom wall of the receiving groove.
7. The atomizing device for rotating prompts to switch flavors according to claim 5, characterized in that, The upper part of the rotating component extends upward to form an intake section, and the air outlet channel penetrates the intake section in the vertical direction. The lower part of the air outlet channel is connected to the docking cavity. The bottom wall of the receiving cavity is provided with a first transition cavity and a second transition cavity downward. The first transition cavity and the second transition cavity are respectively connected to the first air outlet and the second air outlet, so that the air outlet channel can be connected to the first air outlet through the first transition cavity, or the air outlet channel can be connected to the second air outlet through the second transition cavity.
8. The atomizing device for rotating to indicate flavor switching according to claim 7, characterized in that, A sealing gasket is installed in the docking cavity. An upper sealing boss is provided on the upper surface of the sealing gasket, and a lower sealing boss is provided on the lower surface of the sealing gasket. A sealing groove is formed downward on the upper surface of the upper sealing boss, and the sealing groove extends downward through the lower surface of the lower sealing boss. The lower surface of the sealing gasket abuts against the bottom wall of the receiving cavity. The lower sealing boss is used to seal the first transition cavity or the second transition cavity. The lower part of the air outlet channel is fixed to the sealing groove.
9. The atomizing device for rotating to indicate flavor switching according to claim 8, characterized in that, The lower surface of the sealing gasket has an upward-facing suction groove and a receiving hole. The rotating shaft is inserted into the receiving hole. A fixing screw is provided at the lower part of the rotating shaft. The fixing screw is located in the air cavity and fixes the clamping case and the rotating part. The suction groove is equipped with suction cotton.
10. The atomizing device for rotating to indicate flavor switching according to claim 1, characterized in that, A dividing section is provided inside the opening, which divides the opening into two equal halves. The dividing section is located between the first atomizer and the second atomizer.