The electronic cigarette structure allows for simultaneous adjustment of vapor flow by rotating the oil reservoir to control oil inlet and outlet.

CN224611960UActive Publication Date: 2026-08-11GUANGDONG CELLULAR WORKSHOP ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2026-08-11

AI Technical Summary

Benefits of technology

[0011]本实用新型通过调气开关的旋转,带动储油管相对于油杯支架旋转。通过旋转实现进油孔与进油槽的对应或错位;从而实现进油孔的开启或关闭。因此,通过调气开关的旋转,即可实现储油管的开启或关闭;通过简单的旋转实现对于进油通道的控制。同时,进气孔也随着储油管的开启而开启、关闭而关闭;且进气孔的大小可以根据需要调节。开启关闭的过程可以通过档位片和档位的配合使使用者清楚的感知。因此,本实用新型的结构极大地提升了体验感受;且可以避免漏油、干烧等问题的发生。

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Abstract

This utility model relates to an electronic cigarette structure that allows for simultaneous adjustment of the vapor flow while rotating to regulate the oil inlet and outlet of the oil reservoir. It includes an oil cup holder, an atomizer coil holder, a movable holder, and a vapor adjustment switch. The vapor adjustment switch is sequentially connected to the oil reservoir via the movable holder and the atomizer coil holder. The oil cup holder is fitted over the bottom of the oil reservoir and the movable holder, sealing the bottom of the oil cup. The oil inlet is located between the oil cup holder and the oil cup holder. When the vapor adjustment switch rotates the oil reservoir relative to the oil cup holder via the movable holder and the atomizer coil holder, the oil inlet can switch between closed and open states. An air inlet is provided on the bottom shell. The air inlet is an elongated arc shape, larger at one end and smaller at the other. A sealing silicone sealant is correspondingly provided on the vapor adjustment switch. When the vapor adjustment switch rotates and is in the stroke phase of opening the oil inlet, the sealing silicone sealant can adjust the opening size of the air inlet as the vapor adjustment switch rotates. This utility model solves the problem of simultaneously controlling the oil and air channels in electronic cigarettes and can be applied to electronic cigarettes.
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Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette technology, specifically to an electronic cigarette structure that can adjust the gas flow while simultaneously rotating and adjusting the oil inlet and outlet of the oil reservoir. Background Technology

[0002] In an electronic cigarette, e-liquid from the cup enters the reservoir cotton through the inlet port. The reservoir cotton lubricates the atomizer coil, which then atomizes the e-liquid to create vapor for the user to inhale. Opening or closing the inlet port controls the flow of e-liquid into the reservoir cotton. When not in use, closing the inlet port prevents leakage. However, how to easily control the inlet port is a design consideration. Furthermore, adjusting the airflow simultaneously with the inlet port to match the e-liquid volume, ensuring a balanced flavor in the vapor, is also a crucial factor affecting the user experience. Utility Model Content

[0003] The technical problem solved by this utility model is to provide an electronic cigarette structure that can adjust the air intake and exhaust of the oil reservoir tube while rotating to adjust the oil intake and exhaust. This allows for convenient control of the oil intake and exhaust of the oil reservoir tube, and simultaneous adjustment of the air intake volume.

[0004] The technical solution of this utility model to solve the above-mentioned technical problems is:

[0005] The electronic cigarette structure includes an oil cup, an oil storage tube, an oil storage cotton, an atomizing core, and a bottom shell; a mouthpiece is formed on one side of the top of the oil cup, and the bottom is connected to the bottom shell; the oil storage tube is connected below the mouthpiece inside the oil cup, and an oil storage cotton is installed inside the oil storage tube; the oil storage cotton is hollow and an atomizing core is installed therein; an oil inlet is provided at the lower end of the oil storage tube;

[0006] It also includes an oil cup holder, atomizer coil holder, a movable stand, and a vapor control switch;

[0007] The gas control switch is connected to the oil storage tube in sequence through the movable bracket, the atomizer core bracket, and the oil cup bracket; the oil cup bracket is fitted over the bottom of the oil storage tube and the movable bracket and seals the bottom of the oil cup; the oil inlet is located between the oil cup brackets; when the gas control switch drives the oil storage tube to rotate relative to the oil cup bracket through the movable bracket and the atomizer core bracket, the oil inlet can switch between closed and open.

[0008] The bottom shell is provided with an air inlet; the air inlet is an elongated arc shape with one end larger and the other end smaller; a corresponding sealing silicone is provided for the air regulating switch; when the air regulating switch is rotated and is in the stroke process of opening the oil inlet, the sealing silicone can adjust the opening size of the air inlet as the air regulating switch rotates.

[0009] The oil cup support includes a silicone support; the silicone support is fitted around the bottom of the oil storage tube; an oil inlet groove is provided around the periphery of the silicone support; when the oil inlet hole corresponds to the oil inlet groove, the oil inlet hole is in the open state; when the oil inlet hole and the oil inlet groove are misaligned, the oil inlet hole is in the closed state; multiple oil inlets are arranged along the periphery at the bottom of the oil storage tube; multiple oil inlets corresponding to the oil inlets are arranged along the periphery.

[0010] The bottom shell has a gear position on its inner side; the air regulating switch has a gear position plate corresponding to the gear position; the gear position plate and the gear position form three areas: the disengagement travel area at both ends of the gear position, the contact area between the gear position plate and the gear position; the two disengagement travel areas correspond to the opening and closing areas of the oil inlet hole, respectively, and also correspond to the opening and closing areas of the air inlet hole.

[0011] This invention utilizes the rotation of a gas regulating switch to rotate the oil reservoir relative to the oil cup support. This rotation aligns or misaligns the oil inlet hole with the oil inlet groove, thus opening or closing the oil inlet hole. Therefore, simply rotating the gas regulating switch allows for the opening or closing of the oil reservoir pipe, enabling control of the oil inlet channel. Simultaneously, the air inlet hole opens and closes in tandem with the oil reservoir pipe, and its size can be adjusted as needed. The opening and closing process is clearly perceptible to the user through the use of a shift lever and shift positions. Therefore, this invention significantly enhances the user experience and prevents problems such as oil leakage and dry burning. Attached Figure Description

[0012] The present invention will be further described below with reference to the accompanying drawings:

[0013] Figure 1 This is a cross-sectional view of the electronic cigarette of this utility model;

[0014] Figure 2 This is a three-dimensional view of the electronic cigarette component of this utility model in its separated state;

[0015] Figure 3 This is a three-dimensional view of the oil cup holder 5 of this utility model;

[0016] Figure 4 This is a perspective view of the gas regulating switch 9 and part of the bottom shell 8 of this utility model;

[0017] Figure 5 This is a schematic diagram of the oil inlet 21 in the open state of this utility model;

[0018] Figure 6 This is a schematic diagram of the oil inlet 21 in the closed state of this utility model;

[0019] Figure 7 This is a partial sectional view of the bottom shell 8 and the gas regulating switch 9 of this utility model;

[0020] Figure 8This is one of the partial three-dimensional sectional views of the bottom shell 8 and the gas regulating switch 9 of this utility model;

[0021] Figure 9 This is the second partial three-dimensional sectional view of the bottom shell 8 and the gas regulating switch 9 of this utility model;

[0022] Figure 10 This is one of the operation state diagrams of the bottom shell 8 and the gas regulating switch 9 of this utility model;

[0023] Figure 11 This is the second diagram showing the operational status of the bottom shell 8 and the gas regulating switch 9 of this utility model. Detailed Implementation

[0024] The following embodiments are descriptions of specific implementations of the present utility model. These descriptions are intended to facilitate understanding of the technical solutions of this application by those skilled in the art and are not intended to limit the scope of protection of the technical solutions of the present utility model. All equivalent transformations that can be obtained from the description of the embodiments of the present utility model should be within the scope of protection of the present utility model.

[0025] like Figures 1 to 11 As shown, the electronic cigarette structure of this utility model includes an oil cup 1, an oil storage tube 2, an oil storage cotton 3, an atomizing core 4, a bottom shell 8, an oil cup support 5, an atomizing core support 6, a movable support 7, and a gas adjustment switch 9. A mouthpiece 11 is formed on one side of the top of the oil cup 1, and the bottom is connected to the bottom shell 8. The oil storage tube 2 is connected below the mouthpiece 11 inside the oil cup 1, and an oil storage cotton 3 is installed inside the oil storage tube 2. The oil storage cotton 3 is hollow and contains the atomizing core 4. An oil inlet 21 is provided at the lower end of the oil storage tube 2. Multiple oil inlets 21 are arranged along the circumference at the bottom end of the oil storage tube 2.

[0026] The oil cup support 5 includes a support silicone 51; the support silicone 51 is fitted onto the outside of the bottom end of the oil storage pipe 2. The oil inlet hole 21 is located between the support silicone 51; multiple oil inlet grooves 52 are arranged around the support silicone 51 corresponding to the oil inlet hole.

[0027] When the vapor control switch 9 rotates the oil reservoir 2 relative to the oil cup support 5 via the movable bracket 7 and the atomizer core support 6, the oil inlet 21 can switch between closed and open. For example... Figure 5 As shown, when the oil inlet 21 corresponds to the oil inlet groove 52, the oil inlet 21 is in the open state. Figure 6 As shown, when the oil inlet hole 21 is misaligned with the oil inlet groove 52, the oil inlet hole 21 is in the closed state. That is, the opening or closing of the oil inlet channel of the oil storage pipe 2 is controlled by rotating the air regulating switch 9.

[0028] See Figures 7 to 11 As shown, an air inlet 81 is provided on the bottom shell 8, offset from the air regulating switch 9; the air inlet 81 is a long arc shape with one end larger than the other (e.g., Figure 4(As shown); the air regulating switch 9 is equipped with a sealing silicone 91; when the air regulating switch 9 rotates and is in the stroke of opening the oil inlet 21, the sealing silicone 91 can adjust the opening size of the air inlet 81 as the air regulating switch 9 rotates. Therefore, in the process of adjusting the opening of the oil inlet 21, the opening size of the air inlet 81 can be adjusted simultaneously.

[0029] In addition, a gear position 82 is provided on the inner side of the bottom shell 8; a gear position plate 92 is provided on the corresponding gear position of the gas regulating switch 9. The gear position plate 92 and the gear position 82 form three areas: the disengagement travel area at both ends of the gear position, the contact area between the gear position plate 92 and the gear position 82; for example Figure 10 , 11 As shown in the two figures, the shift plates 92 and 82 are in different disengagement states during their travel. The two disengagement travel zones correspond to the opening and closing areas of the oil inlet 21, and simultaneously correspond to the opening and closing areas of the air inlet 81. The switching between the two disengagement travel zones, through the shift plates 92 and 82 going from disengagement to engagement and then back to disengagement, allows the user to clearly perceive the change in state.

[0030] The structure of the remaining parts of the electronic cigarette of this utility model is shown in the figure. The remaining parts are not related to the implementation of the aforementioned scheme; they will not be described in detail here.

Claims

1. An electronic cigarette structure that allows for simultaneous adjustment of vapor flow by rotating and closing an adjustable oil reservoir tube, the electronic cigarette structure comprising an oil cup, an oil reservoir tube, an oil reservoir cotton, an atomizing core, and a bottom shell; a mouthpiece is formed on one side of the top of the oil cup, and the bottom is connected to the bottom shell; the oil reservoir tube is connected below the mouthpiece inside the oil cup, and an oil reservoir cotton is installed inside the oil reservoir tube; the oil reservoir cotton is hollow and contains an atomizing core; an oil inlet is provided at the lower end of the oil reservoir tube; characterized in that: It also includes an oil cup holder, atomizer coil holder, a movable stand, and a vapor control switch; The gas control switch is connected to the oil storage tube in sequence through the movable bracket, the atomizer core bracket, and the oil cup bracket; the oil cup bracket is fitted over the bottom of the oil storage tube and the movable bracket and seals the bottom of the oil cup; the oil inlet is located between the oil cup brackets; when the gas control switch drives the oil storage tube to rotate relative to the oil cup bracket through the movable bracket and the atomizer core bracket, the oil inlet can switch between closed and open. The bottom shell is provided with an air inlet; the air inlet is an elongated arc shape with one end larger and the other end smaller; a corresponding sealing silicone is provided for the air regulating switch; when the air regulating switch is rotated and is in the stroke process of opening the oil inlet, the sealing silicone can adjust the opening size of the air inlet as the air regulating switch rotates.

2. The electronic cigarette structure according to claim 1, which allows for simultaneous adjustment of oil inlet and outlet and gas flow via a rotary adjustable oil reservoir, is characterized in that: The oil cup support includes a silicone support; the silicone support is fitted around the bottom of the oil storage tube; an oil inlet groove is provided around the periphery of the silicone support; when the oil inlet hole corresponds to the oil inlet groove, the oil inlet hole is in the open state; when the oil inlet hole and the oil inlet groove are misaligned, the oil inlet hole is in the closed state; multiple oil inlets are arranged along the periphery at the bottom of the oil storage tube; multiple oil inlets corresponding to the oil inlets are arranged along the periphery.

3. The electronic cigarette structure according to claim 2, which allows for simultaneous adjustment of oil inlet and outlet and gas flow via a rotary adjustable oil reservoir, is characterized in that: The bottom shell has a gear position on its inner side; the air regulating switch has a gear position plate corresponding to the gear position; the gear position plate and the gear position form three areas: the disengagement travel area at both ends of the gear position, the contact area between the gear position plate and the gear position; the two disengagement travel areas correspond to the opening and closing areas of the oil inlet hole, respectively, and also correspond to the opening and closing areas of the air inlet hole.

4. The electronic cigarette structure that allows for simultaneous adjustment of oil inlet and outlet and gas flow via a rotary adjustable oil reservoir as described in claim 2, characterized in that: The bottom shell has a gear position on its inner side; the air regulating switch has a gear position plate corresponding to the gear position; the gear position plate and the gear position form three areas: the disengagement travel area at both ends of the gear position, the contact area between the gear position plate and the gear position; the two disengagement travel areas correspond to the opening and closing areas of the oil inlet hole, respectively, and also correspond to the opening and closing areas of the air inlet hole.