Electronic cigarette capable of mixing various kinds of smoke

By incorporating multiple atomizers, airflow channels, and negative pressure channels into the electronic cigarette, and utilizing an adjustment ring and airflow sensor to control the airflow, the mixing of various vapors can be achieved, solving the problem of existing technologies only offering a single flavor and improving the user experience.

CN224155133UActive Publication Date: 2026-04-24TIANCHANG IND (SHENZHEN) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANCHANG IND (SHENZHEN) CO LTD
Filing Date
2025-04-15
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Current e-cigarettes can only operate one atomizer at a time, and cannot allow multiple atomizers to work simultaneously, resulting in users being unable to experience a mixture of different flavors of vapor.

Method used

Design an electronic cigarette that can mix multiple types of smoke. By setting up multiple atomizers and setting up airflow channels and negative pressure channels in the air circuit assembly to match the number of atomizers, the airflow channels are controlled by an adjustment ring to control the air intake or closure of the airflow channels. Combined with an airflow sensor, users can arbitrarily select the atomizer to work and achieve the mixing of multiple types of smoke.

Benefits of technology

Users can rotate the adjustment ring to activate multiple atomizers, producing a variety of flavored vapors and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electronic cigarette capable of mixing various kinds of smoke. The electronic cigarette comprises a suction nozzle assembly, the device comprises a suction nozzle assembly, an atomizer bin, a gas circuit assembly, an adjusting ring and a circuit assembly, and a plurality of atomizers are arranged in the atomizer bin and communicated with the suction nozzle assembly; the gas path assembly is provided with gas flow channels and negative pressure channels which are consistent with the atomizers in number, the gas flow channels are communicated with the atomizers respectively, and the negative pressure channels are communicated with the gas flow channels respectively; the adjusting ring is rotationally connected with the outer side wall of the gas path assembly, and the adjusting ring is used for controlling gas inflow or closing of the gas flow channels; the circuit assembly comprises an airflow sensor, the airflow sensor is communicated with the negative pressure channels, a user can enable two or more airflow channels to enter air at will by rotating the adjusting ring, so that two or more atomizers can work at will, tobacco tar of different tastes is added to the atomizers, and the user experience is improved. The electronic cigarette can generate smoke with various flavors through one-time smoking of a user, the smoke is mixed, and the experience feeling of the user is improved.
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Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette technology, and in particular to an electronic cigarette that can mix multiple types of smoke. Background Technology

[0002] Electronic cigarettes are electronic products that mimic traditional cigarettes. Currently, in order to meet users' needs to experience different flavors with a single electronic cigarette, multiple atomizers are usually set in the electronic cigarette, and different flavored e-liquids are added to each atomizer. However, each time such an electronic cigarette is used, only one atomizer can work, so users can only experience a single flavor of vapor. Multiple atomizers cannot work at the same time, thus preventing the mixing of different flavors of vapor to bring users a new experience. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide an electronic cigarette that can mix multiple types of smoke.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] An electronic cigarette capable of mixing multiple types of smoke includes: a mouthpiece assembly, an atomizer chamber, an airflow assembly, an adjustment ring, and a circuit assembly. The atomizer chamber contains multiple atomizers, each connected to the mouthpiece assembly. The airflow assembly has airflow channels and negative pressure channels corresponding to the number of atomizers. Each airflow channel is connected to each atomizer, and each negative pressure channel is connected to each airflow channel. The adjustment ring is rotatably connected to the outer wall of the airflow assembly and controls the intake or closure of each airflow channel. The circuit assembly includes airflow sensors, each connected to a negative pressure channel.

[0006] In one embodiment, the suction nozzle assembly includes a first silicone component, a second silicone component, a first support, and a suction nozzle housing, wherein the first silicone component, the second silicone component, and the first support are stacked sequentially from top to bottom inside the suction nozzle housing.

[0007] In one embodiment, the bottom of the mouthpiece assembly is provided with a plurality of first magnetic elements, and the top of the atomizer chamber is provided with a plurality of second magnetic elements, with each of the first magnetic elements being aligned with each of the second magnetic elements.

[0008] In one embodiment, the atomizer chamber has a transparent window, and the surface of the atomizer is provided with a first mark, which is aligned with the transparent window.

[0009] In one embodiment, the air path assembly includes a third silicone element, a fourth silicone element, a fifth silicone element, and a second bracket. The third silicone element is disposed on one side of the second bracket, the fourth silicone element is disposed on the other side of the second bracket, the airflow channel is disposed on the third silicone element, the negative pressure channel is disposed on the fourth silicone element, and the fifth silicone element is disposed at the air inlet of the airflow channel.

[0010] In one embodiment, the regulating ring includes a first air intake, a plurality of second air intakes, and a plurality of third air intakes. The first air intake is used to allow air to enter all airflow channels, each of the second air intakes is used to allow air to enter two of the airflow channels, and the number of each of the third air intakes is the same as the number of the airflow channels, and each of the third air intakes is used to allow air to enter one of the airflow channels.

[0011] In one embodiment, a second identifier is provided on one side of the first air intake, each of the second air intakes, and each of the third air intakes.

[0012] In one embodiment, a base is also included, the circuit assembly is disposed within the base, and a third mark is provided on the surface of the base, wherein when the adjusting ring rotates, the third mark aligns sequentially with each of the second marks.

[0013] In one embodiment, the air passage assembly further includes a positioning member, which is elastically disposed on the outer side wall of the air passage assembly. The inner side wall of the adjusting ring is provided with a plurality of positioning grooves, each positioning groove being disposed opposite to the first air inlet, each of the second air inlets and each of the third air inlets. When the adjusting ring rotates, the positioning member abuts against each of the positioning grooves.

[0014] In one embodiment, the circuit assembly further includes a charging port, a charging circuit, a control board, and a control circuit. The charging port is electrically connected to the charging circuit, and the charging circuit and the control circuit are respectively electrically connected to the control board. The airflow sensor is soldered onto the control circuit.

[0015] Compared with the prior art, the present invention has at least the following advantages:

[0016] This invention relates to an electronic cigarette capable of mixing various types of smoke. It incorporates multiple atomizers and airflow channels, each corresponding to the number of atomizers, connecting each atomizer to its own independent airflow channel. An adjusting ring is rotatably connected to the outer wall of the airflow assembly, controlling the intake and closure of each airflow channel. By rotating the adjusting ring, the user can arbitrarily allow air into one airflow channel and close the remaining channels. The user inhales through the mouthpiece assembly, allowing air to enter the desired airflow channel. The negative pressure channels are connected to each airflow channel. During inhalation, the air in the negative pressure channel connected to the airflow channel is also drawn in, creating negative pressure in the negative pressure channel. This drives the airflow sensor to activate, causing the atomizer connected to the airflow channel to work and produce vapor. In this way, the user can inhale a single flavor of vapor. By rotating the adjustment ring, the user can arbitrarily enable airflow into two or more airflow channels, thereby arbitrarily enabling two or more atomizers to work. Different flavored e-liquids can be added to each atomizer, allowing the user to produce multiple flavors of vapor in a single inhalation and mix these vapors, thus enhancing the user experience. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the embodiments will be briefly described below.

[0018] Figure 1 This is a schematic diagram of the structure of an electronic cigarette capable of mixing multiple types of smoke in one embodiment of the present invention;

[0019] Figure 2 This is another structural schematic diagram of an electronic cigarette capable of mixing multiple types of smoke in one embodiment of the present invention;

[0020] Figure 3 for Figure 1 A schematic diagram of the connection structure between the gas path components and the regulating ring. Detailed Implementation

[0021] To facilitate understanding of this utility model, a more comprehensive description of this utility model will be given below with reference to the accompanying drawings.

[0022] Please see Figures 1 to 3An electronic cigarette 10 capable of mixing multiple types of smoke includes: a mouthpiece assembly 100, an atomizer chamber 200, an airflow assembly 300, an adjustment ring 400, and a circuit assembly 500. The atomizer chamber 200 contains multiple atomizers 210, each atomizer 210 connected to the mouthpiece assembly 100. The airflow assembly 300 has airflow channels 310 and negative pressure channels 320, the number of which is equal to the number of atomizers 210. Each airflow channel 310 is connected to each atomizer 210, and each negative pressure channel 320 is connected to each airflow channel 310. The adjustment ring 400 is rotatably connected to the outer wall of the airflow assembly 300 and is used to control the intake or closure of each airflow channel 310. The circuit assembly 500 includes an airflow sensor 510, which is connected to each negative pressure channel 320.

[0023] It should be noted that by setting multiple atomizers 210 and providing airflow channels 310 in the same number as the atomizers 210, each airflow channel 310 is connected to each atomizer 210, ensuring that each atomizer 210 has its own independently connected airflow channel 310. An adjusting ring 400 is provided on the outer wall of the airflow assembly 300, rotatably connected to the outer wall. The adjusting ring 400 controls the air intake or closure of each airflow channel 310. By rotating the adjusting ring 400, the user can arbitrarily allow air into one airflow channel 310 and close the remaining airflow channels 310. The user then inhales through the mouthpiece assembly 100, allowing air to enter the airflow channel 310. Since each negative pressure channel 320 is connected to each airflow channel 310, during the inhalation process, the air in the negative pressure channel 320 connected to the airflow channel 310 is also drawn in, causing the negative pressure channel 320 to form a negative pressure, which drives the airflow sensor 510 to start, causing the atomizer 210 connected to the airflow channel 310 to work and produce smoke. In this way, the user can inhale a single flavor of smoke. By rotating the adjustment ring 400, the user can arbitrarily make two or more airflow channels 310 intake, thereby arbitrarily making two or more atomizers 210 work. Different flavored e-liquids can be added to each atomizer 210. The user can produce multiple flavors of smoke with one inhalation and mix these smokes to improve the user experience.

[0024] Please refer to it again. Figure 1In one embodiment, the mouthpiece assembly 100 includes a first silicone element 110, a second silicone element 120, a first support 130, and a mouthpiece housing 140. The first silicone element 110, the second silicone element 120, and the first support 130 are stacked sequentially from top to bottom inside the mouthpiece housing 140. The second silicone element 120 is mounted on the first support 130. The second silicone element 120 has ventilation holes corresponding to each atomizer 210. The smoke generated by each atomizer 210 is collected in the first silicone element 110 through the ventilation holes to achieve the purpose of smoke mixing. The first silicone element 110 and the second silicone element 120 can provide good airtightness to prevent smoke from escaping.

[0025] Please refer to it again. Figure 1 In one embodiment, the bottom of the mouthpiece assembly 100 is provided with a plurality of first magnetic elements 150, and the top of the atomizer chamber 200 is provided with a plurality of second magnetic elements 220. Each first magnetic element 150 is aligned with each second magnetic element 220. The mouthpiece assembly and the atomizer chamber 200 are magnetically connected and fixed by the first magnetic elements 150 and the second magnetic elements 220. The magnetic connection and fixing structure can keep the mouthpiece assembly and the atomizer chamber 200 firmly connected and not easy to fall off. At the same time, it is convenient for the user to separate the mouthpiece assembly from the atomizer chamber 200 to add e-liquid to the atomizer 210 or to clean the mouthpiece assembly.

[0026] Please refer to it again. Figure 2 In one embodiment, the atomizer chamber 200 is provided with a transparent window 230, and the surface of the atomizer 210 is provided with a first mark, which is aligned with the transparent window 230, so that the user can see the flavor of the e-liquid being inhaled through the transparent window 230.

[0027] Please refer to it again. Figure 1 In one embodiment, the air path assembly 300 includes a third silicone element 330, a fourth silicone element 340, a fifth silicone element 350, and a second bracket 360. The third silicone element 330 is disposed on one side of the second bracket 360, and the fourth silicone element 340 is disposed on the other side of the second bracket 360. An airflow channel 310 is disposed on the third silicone element 330, a negative pressure channel 320 is disposed on the fourth silicone element 340, and the fifth silicone element 350 is disposed at the air inlet of the airflow channel 310. The second bracket 360 is used to fix the third silicone element 330, the fourth silicone element 340, and the fifth silicone element 350. The third silicone element 330, the fourth silicone element 340, and the fifth silicone element 350 can effectively isolate the intrusion of external moisture, dust, and other harmful substances, protect the precision components inside the electronic cigarette 10 from damage, and extend the service life of the electronic cigarette 10.

[0028] Please refer to it again. Figure 2In one embodiment, the adjusting ring 400 includes a first air inlet 410, a plurality of second air inlets 420, and a plurality of third air inlets 430. The first air inlet 410 is used to allow air to enter all airflow channels 310. The first air inlet 410 has an air inlet corresponding to the number of airflow channels 310. When the user rotates the first air inlet 410 to align with each airflow channel 310, air can enter all airflow channels 310, thereby causing all atomizers 210 to work and form mixed smoke. Each second air inlet 420 is used to allow air to enter two of the airflow channels 310. Each second air inlet 420 has two air inlets. When the user rotates each second air inlet 420 to align with two of the airflow channels 310, air can enter any two of the airflow channels 310, thereby causing any two atomizers 210 to work. Simultaneous mixing of the smoke generated during operation creates a new flavor of smoke, enhancing the user experience. For example, when there are three atomizers 210, there are also three corresponding airflow channels 310, namely a first airflow channel, a second airflow channel, and a third airflow channel. The first second air intake 420 allows air to enter the first airflow channel and the second airflow channel, the second second air intake 420 allows air to enter the first airflow channel and the third airflow channel, and the third second air intake 420 allows air to enter the second airflow channel and the third airflow channel. In this way, the smoke generated by two atomizers 210 working simultaneously can be mixed. The number of each third air intake 430 is the same as the number of airflow channels 310. The third air intake 430 is used to allow air to enter one of the airflow channels 310, allowing the user to experience a single flavor of smoke.

[0029] Please refer to it again. Figure 2 In one embodiment, a second identifier 440 is provided on one side of the first air intake 410, each of the second air intakes 420 and each of the third air intakes 430. The second identifier 440 can facilitate the user to distinguish the first air intake 410, each of the second air intakes 420 and each of the third air intakes 430 when using the adjustment ring 400.

[0030] Please refer to it again. Figure 1 and Figure 2 In one embodiment, the system also includes a base 600, with the circuit assembly 500 disposed within the base 600. A third mark 610 is provided on the surface of the base 600. When the adjustment ring 400 rotates, the third mark 610 aligns sequentially with each of the second marks 440. When the third mark 610 aligns with the second mark 440, the air inlets on the first air inlet 410, each of the second air inlets 420, and each of the third air inlets 430 are precisely aligned with the corresponding airflow channels 310. This avoids the situation where the positions of the first air inlet 410, each of the second air inlets 420, each of the third air inlets 430, and each of the airflow channels 310 are inaccurate during user adjustment, thus preventing air from entering the airflow channels 310.

[0031] Please refer to it again. Figure 3 In one embodiment, the air passage assembly 300 further includes a positioning member 370, which is elastically disposed on the outer side wall of the air passage assembly 300. The inner side wall of the adjusting ring 400 is provided with a plurality of positioning grooves 450, each positioning groove 450 being respectively disposed opposite to the first air inlet 410, each second air inlet 420 and each third air inlet 430. When the adjusting ring 400 rotates, the positioning member 370 abuts against each positioning groove 450 respectively, avoiding accidental human touch during use that could cause the adjusting ring 400 to shift position, thereby making the positions of the first air inlet 410, each second air inlet 420 and each third air inlet 430 and each airflow channel 310 more accurate.

[0032] Please refer to it again. Figure 1 In one embodiment, the circuit assembly 500 further includes a charging port 520, a charging circuit 530, a control board 540, and a control circuit 550. The charging port 520 is electrically connected to the charging circuit 530, and the charging circuit and the control circuit are respectively electrically connected to the control board. The airflow sensor is soldered onto the control circuit 550, making the structure of the electronic cigarette 10 more compact.

[0033] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. An electronic cigarette capable of mixing multiple types of smoke, characterized in that, include: Nozzle assembly; Atomizer chamber, wherein multiple atomizers are provided in the atomizer chamber, and each atomizer is connected to the mouthpiece assembly; An air path assembly is provided, wherein the number of airflow channels and negative pressure channels are the same as the number of atomizers, each airflow channel is connected to each atomizer, and each negative pressure channel is connected to each airflow channel. An adjusting ring, rotatably connected to the outer wall of the air passage assembly, is used to control the intake or closure of each of the airflow channels; and The circuit assembly includes an airflow sensor, which is connected to each of the negative pressure channels.

2. The electronic cigarette capable of mixing multiple types of smoke according to claim 1, characterized in that, The suction nozzle assembly includes a first silicone component, a second silicone component, a first support, and a suction nozzle housing. The first silicone component, the second silicone component, and the first support are stacked sequentially from top to bottom inside the suction nozzle housing.

3. The electronic cigarette capable of mixing multiple types of smoke according to claim 2, characterized in that, The bottom of the mouthpiece assembly is provided with a plurality of first magnetic elements, and the top of the atomizer chamber is provided with a plurality of second magnetic elements, with each first magnetic element being aligned with each second magnetic element.

4. The electronic cigarette capable of mixing multiple types of smoke according to claim 1, characterized in that, The atomizer chamber has a transparent window, and the surface of the atomizer is provided with a first mark, which is aligned with the transparent window.

5. The electronic cigarette capable of mixing multiple types of smoke according to claim 1, characterized in that, The air path assembly includes a third silicone component, a fourth silicone component, a fifth silicone component, and a second bracket. The third silicone component is disposed on one side of the second bracket, the fourth silicone component is disposed on the other side of the second bracket, the airflow channel is disposed on the third silicone component, the negative pressure channel is disposed on the fourth silicone component, and the fifth silicone component is disposed at the air inlet of the airflow channel.

6. The electronic cigarette capable of mixing multiple types of smoke according to claim 5, characterized in that, The regulating ring includes a first air intake, a plurality of second air intakes, and a plurality of third air intakes. The first air intake is used to allow air to enter all airflow channels, each of the second air intakes is used to allow air to enter two of the airflow channels, and the number of each of the third air intakes is the same as the number of the airflow channels, and each of the third air intakes is used to allow air to enter one of the airflow channels.

7. The electronic cigarette capable of mixing multiple types of smoke according to claim 6, characterized in that, A second mark is provided on one side of each of the first air intake, each of the second air intakes, and each of the third air intakes.

8. The electronic cigarette capable of mixing multiple types of smoke according to claim 7, characterized in that, It also includes a base, the circuit assembly is disposed in the base, and the surface of the base is provided with a third mark, which aligns with each of the second marks in sequence when the adjusting ring is rotated.

9. The electronic cigarette capable of mixing multiple types of smoke according to claim 8, characterized in that, The air passage assembly also includes a positioning element, which is elastically disposed on the outer side wall of the air passage assembly. The inner side wall of the adjusting ring is provided with a plurality of positioning grooves, each positioning groove being respectively disposed opposite to the first air inlet, each of the second air inlets and each of the third air inlets. When the adjusting ring rotates, the positioning element abuts against each of the positioning grooves respectively.

10. The electronic cigarette capable of mixing multiple types of smoke according to claim 8, characterized in that, The circuit assembly also includes a charging port, a charging circuit, a control board, and a control circuit. The charging port is electrically connected to the charging circuit, and the charging circuit and the control circuit are respectively electrically connected to the control board. The airflow sensor is soldered onto the control circuit.