An atomizer capable of adjusting atomization amount and a method for adjusting the atomization amount

By incorporating a smoke guide rod, a vapor adapter, and a smoke vent within the atomizer, and combining this with inhalation force and lever operation, the problem of existing atomizers being unable to adjust the atomization volume and rate has been solved. This enables flexible control of the atomization volume and rate, improving user experience and health and safety.

CN114223950BActive Publication Date: 2026-04-24SHENZHEN ZINWI BIO-TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN ZINWI BIO-TECH CO LTD
Filing Date
2021-12-01
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing electronic atomizers cannot control and adjust the amount and rate of vaporization, resulting in excessive vapor production or excessively fast vapor output, which can be harmful to human health.

Method used

An atomizer with adjustable atomization volume was designed. By setting a smoke guide rod, a smoke adapter and a smoke vent inside the atomizer, and using a combination of suction force and lever operation, the smoke concentration and outflow rate can be controlled, so as to achieve flexible adjustment of the atomization volume.

Benefits of technology

It enables flexible adjustment of smoke concentration and flow rate according to user needs, reducing health hazards to the human body and improving safety and comfort during use.

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Abstract

The present application relates to the technical field of electronic atomization device, in particular to an atomizer capable of adjusting atomization amount and a method for adjusting the atomization amount, comprising a power supply rod, an atomizer movably installed at one end of the power supply rod, an atomizing core installed between the power supply rod and the atomizer, the atomizing core being used for atomizing essential oil, a cigarette holder installed at one end of the atomizer for sucking out smoke, a smoke adapter rotatably installed in the atomizer, and a plurality of smoke chambers with different smoke concentrations arranged in the smoke adapter. The present application sets a smoke guide rod in the atomizer, which can slide with sucking, and uses the smoke guide rod to suck out smoke through the cigarette holder. During the sliding process of the smoke guide rod, the maximum sliding height of the smoke guide rod can be controlled by controlling the sucking strength, so as to suck in smoke in the smoke chamber with different smoke concentrations.
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Description

Technical Field

[0001] This invention relates to the field of electronic atomization device technology, specifically to an atomizer with adjustable atomization volume and its adjustment method. Background Technology

[0002] An electronic atomizer is an atomizer powered by a rechargeable lithium polymer battery that produces "vapor" by heating essential oils in a tank for the user to inhale, and has a similar appearance, smoke, taste and feel to cigarettes.

[0003] Currently, there are still a large number of atomizers on the market. Most atomizers have made improvements in terms of essential oil materials and inhalation taste, but there are still certain problems when users use them. First of all, many people use atomizers as a means to quit smoking. Objectively speaking, it cannot be used as a means to quit smoking, but it can control the amount of cigarettes smoked to a certain extent by reducing the frequency and amount of vapor inhaled to control nicotine cravings. However, existing atomizers not only lack the function of controlling the amount of vapor produced, but also cannot control the speed of vapor flow per inhalation. This results in excessive vapor production or excessively fast vapor output when inhaling, which further harms the physical and mental health of the user.

[0004] To address these issues, an atomizer with adjustable atomization volume and its adjustment method are proposed. Summary of the Invention

[0005] Technical problems to be solved

[0006] In view of the above-mentioned shortcomings of the prior art, the present invention provides an atomizer with adjustable atomization volume and its adjustment method, which can effectively solve the problem that electronic atomizers in the prior art cannot control and adjust the atomization volume and atomization rate.

[0007] Technical solution

[0008] To achieve the above objectives, the present invention provides the following technical solution:

[0009] This invention provides an atomizer with adjustable atomization volume, including a power supply rod:

[0010] An atomizer is mounted on one end of the power supply pole;

[0011] An atomizing core is installed between the power supply pole and the atomizer, the atomizing core being used to atomize essential oils;

[0012] A mouthpiece installed at one end of an atomizer for the mouth to draw out the vapor;

[0013] Rotate the smoke adapter installed inside the atomizer; the smoke adapter has several smoke chambers with different smoke concentrations.

[0014] A smoke guide rod is installed inside the atomizer and slides along the length of the atomizer. One end of the smoke guide rod is connected to the mouthpiece, and the smoke guide rod can slide to different heights inside the atomizer depending on the suction force.

[0015] The smoke passage is located on the side wall of the smoke guide rod. The smoke passage can communicate with the smoke chamber at different heights as the smoke guide rod moves. Smoke of different concentrations in the smoke chamber can be sucked out from the mouthpiece by sucking with the mouth.

[0016] Furthermore, the power supply rod is movably connected to the atomizer via an adapter nut.

[0017] Furthermore, the atomizer is hollow inside, and the smoke adapter is rotatably installed in the middle of the lower end of the atomizer. A lever is connected to each side of the rotating shaft of the smoke adapter. One end of the lever extends outward toward the outer end of the atomizer and passes through the end wall of the atomizer to connect with a lever block. Two smoke guide blocks are symmetrically distributed at the upper end of the smoke adapter. Each smoke guide block has three smoke chambers arranged vertically at intervals. Each smoke guide block has a connecting channel that communicates with the atomizing area of ​​the atomizing core to allow smoke to enter the smoke guide block. The connecting channel communicates with each smoke chamber.

[0018] Furthermore, each of the smoke chambers is filled with cellulose acetate cotton that can absorb impurities in the essential oil, and the filling density of the cellulose acetate cotton in the smoke chamber decreases from bottom to top.

[0019] Furthermore, there are six smoke vents installed on the side wall of the smoke guide rod. Three smoke vents are grouped together, and two groups of smoke vents are symmetrically distributed on the outer walls of both sides of the smoke guide rod. The three smoke vents in the same group are equidistant along the circumference of the smoke guide rod and their areas increase sequentially. Each smoke chamber has an opening in the middle of its outer end. The area of ​​the opening is the same as the area of ​​the largest smoke vent.

[0020] Furthermore, a funnel-shaped guide head is installed at the upper end of the smoke guide rod, and a deceleration funnel is provided on the upper part of the inner side of the atomizer to cooperate with the guide head for insertion and to slow down the insertion speed.

[0021] Furthermore, the atomizer is provided with two guide rails for guiding the smoke guide rod to slide. The two guide rails are symmetrically arranged. A hole is provided in the middle of one of the guide rails along the height direction of the guide rail. A rubber block is movably installed in the hole, which can abut against the side end of the smoke guide rod and slow down the sliding speed of the smoke guide rod.

[0022] Furthermore, a clamp is installed on the inner wall of the atomizer, and one end of the rubber block is connected to a bent tube. One end of the bent tube is inserted into the clamp and passes through the side wall of the atomizer. A limiting ring is fitted on the bent tube. The limiting ring is located inside the clamp, and a return spring is provided between the limiting ring and the clamp. One end of the return spring is attached to the end of the limiting ring facing the middle of the atomizer.

[0023] Furthermore, the outer end wall of the atomizer is provided with a slider that can slide along the length of the atomizer and abut against one end of the bend. The end face of the slider facing the atomizer is an arc surface, and the slider is magnetically engaged with the outer wall of the atomizer.

[0024] A method for adjusting the atomization volume of an atomizer, using the aforementioned adjustable atomization volume atomizer, includes the following steps:

[0025] Step 1: When using the atomizer, by varying the suction force, the smoke holes on the guide rod are connected to the openings on the smoke chambers at different heights, so as to draw in smoke of different concentrations.

[0026] Step 2: When it is necessary to change the smoke inhalation rate, rotate the two levers to make the smoke adapter rotate, so that the opening on the smoke chamber connects with the smoke vents of different areas, thereby changing the area of ​​the smoke entry channel.

[0027] Step 3: When it is necessary to change the amount of inhalation per breath, the retraction of the bend can be adjusted by sliding the slider to change the sliding speed of the smoke guide rod.

[0028] Beneficial effects

[0029] The technical solution provided by this invention has the following advantages compared with known public technologies:

[0030] This invention features a sliding guide rod within the atomizer, which slides with inhalation. Smoke is drawn out through the mouthpiece via a smoke-passing hole on the guide rod. During the sliding process, the maximum sliding height of the guide rod can be controlled by adjusting the inhalation force, thereby drawing in smoke from smoke chambers of varying concentrations. By adjusting the contact area between the smoke-passing hole on the guide rod and the opening in the smoke chamber, the area of ​​the smoke outflow channel can be reduced or increased, thus controlling the rate of vapor production. This allows for flexible inhalation of smoke from the atomizer according to the user's needs. Attached Figure Description

[0031] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.

[0032] Figure 1 This is a schematic diagram of the overall structure of the atomizer of the present invention;

[0033] Figure 2 This is an exploded view of the atomizer structure of the present invention;

[0034] Figure 3 This is a partial cross-sectional schematic diagram of the atomizer of the present invention;

[0035] Figure 4 This is an exploded view of the smoke guide rod of the present invention;

[0036] Figure 5 This is a side cross-sectional view of the atomizer of the present invention;

[0037] Figure 6 This is a front cross-sectional view of the atomizer of the present invention;

[0038] Figure 7 For the present invention Figure 6 Schematic diagram of the structure at point A in the middle;

[0039] Figure 8 This is a schematic cross-sectional view of the smoke chamber structure of the present invention.

[0040] The labels in the diagram represent: 1. Power supply rod; 11. Adapter nut; 2. Atomizer; 21. Mouthpiece; 22. Smoke adapter; 221. Smoke chamber; 2211. Opening; 222. Lever; 223. Lever block; 224. Smoke guide block; 2241. Connecting channel; 23. Smoke guide rod; 231. Smoke vent; 232. Guide head; 233. Deceleration funnel; 24. Guide rail; 241. Insertion hole; 242. Rubber stop block; 2421. Bend; 2422. Limiting ring; 25. Clip; 251. Return spring; 26. Slider; 3. Atomizer core. Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0042] The present invention will be further described below with reference to embodiments.

[0043] Example: An atomizer with adjustable atomization volume includes a power supply rod 1. In this example, the power supply rod 1 is cylindrical in shape and is powered by a rechargeable lithium polymer battery.

[0044] The atomizer 2 is installed at one end of the power pole 1, as shown in the reference. Figure 2 In this example, the power supply rod 1 is movably connected to the atomizer 2 via the adapter nut 11, and the contact points with the adapter nut 11 are respectively provided with threads that mate with the adapter nut 11.

[0045] The atomizing core 3 is installed between the power supply rod 1 and the atomizer 2. The atomizing core 3 is used to atomize the essential oil and is powered by the power supply rod 1. The installation process and atomization process are public technologies and will not be described in detail in this example.

[0046] The mouthpiece 21, which is installed at one end of the atomizer 2 to suck out the smoke, is used by pressing the switch to allow the power supply rod 1 to supply power to the atomizing core 3. The atomizing core 3 then heats the essential oil, which flows through the atomizer 2 and is then sucked out from the mouthpiece 21.

[0047] A vapor adapter 22 is rotatably installed inside the atomizer 2. The vapor adapter 22 contains several vapor chambers 221 with different vapor concentrations. The atomizer 2 is hollow. The vapor adapter 22 is rotatably installed at the middle of the lower end of the atomizer 2. A lever 222 is connected to each side of the rotating shaft of the vapor adapter 22. One end of the lever 222 extends outwards from the atomizer 2 and penetrates the end wall of the atomizer 2, connecting to a dial 223. In this example, the dial 223 is pointer-shaped, facilitating observation of the rotation angle during use. The outer end of the atomizer 2 also has corresponding indicators. The display area clearly shows which area of ​​the smoke chamber 221 on the smoke adapter 22 is connected to at this time. There are two smoke guide blocks 224 symmetrically distributed at the upper end of the smoke adapter 22. Each smoke guide block 224 has three smoke chambers 221 arranged vertically and vertically. Each smoke guide block 224 has a connecting channel 2241 that communicates with the atomizing area of ​​the atomizing core 3 to allow smoke to enter into the smoke guide block 224. The connecting channel 2241 communicates with each smoke chamber 221. When smoke is generated, it will be sucked into the smoke chamber 221 by suction. Each smoke chamber 221 is filled with cellulose acetate cotton that can absorb impurities in the essential oil. The filling density of the cellulose acetate cotton in the smoke chamber 221 decreases from bottom to top. In addition to filtering the smoke and reducing its harm to the human body, the filling density of the cellulose acetate cotton in each smoke chamber 221 is different. The higher the filling density, the less smoke is produced, and vice versa. In this example, before adjusting the inhalation volume, the atomizer can produce relatively more smoke when the inhalation force is relatively small.

[0048] A smoke guide rod 23 is installed inside the atomizer 2 and slides along the length of the atomizer 2. One end of the smoke guide rod 23 is connected to the mouthpiece 21, and the smoke guide rod 23 can slide to different heights inside the atomizer 2 depending on the suction force.

[0049] A smoke passage 231 is located on the side wall of the smoke guide rod 23. The smoke passage 231 can communicate with the smoke chamber 221 at different heights as the smoke guide rod 23 moves. Smoke of different concentrations in the smoke chamber 221 can be drawn out from the mouthpiece 21 by sucking through the mouthpiece. (Refer to...) Figure 5There are six smoke vents 231 installed on the side wall of the smoke guide rod 23. Three smoke vents 231 are grouped together, and two groups of smoke vents 231 are symmetrically distributed on the outer walls of both sides of the smoke guide rod 23. The three smoke vents 231 in the same group are equidistant along the circumference of the smoke guide rod 23 and their areas increase in size sequentially. Each smoke chamber 221 has an opening 2211 in the middle of its outer end. The area of ​​the opening 2211 is the same as the area of ​​the largest smoke vent 231. In actual use, multiple rotation angles that allow the smoke adapter 22 to rotate can be set to allow for a different number of smoke vents 231. When the smaller smoke vent 231 and the opening 2211 on the smoke chamber 221 are aligned, the smoke entry channel will be relatively small, and thus the smoke entry speed in a single inhalation will be relatively small.

[0050] Reference Figure 3 The upper end of the smoke guide rod 23 is equipped with a funnel-shaped guide head 232. The upper part of the inner side of the atomizer 2 is provided with a deceleration funnel 233 that cooperates with the guide head 232 for insertion and slows down the insertion speed. In this example, the guide head 232 and the deceleration funnel 233 are set in the same direction. When the guide head 232 slides through the suction, the end inserted into the deceleration funnel 233 will gradually slow down, increasing the strength of inhaling smoke and increasing the difficulty of inhalation, thereby reducing the amount of smoke inhaled.

[0051] Reference Figure 6The atomizer 2 has two guide rails 24 for guiding the sliding of the smoke guide rod 23. The two guide rails 24 are symmetrically arranged. A hole 241 is located in the middle of one of the guide rails along its height. A rubber abutment 242 is movably installed in the hole 241, which can abut against the side of the smoke guide rod 23 and slow down its sliding speed. When the rubber abutment 242 moves towards the side of the smoke guide rod 23 and fits against its side, it increases the friction of the smoke guide rod 23 during sliding, thereby increasing the suction force when the smoke guide rod 23 reaches its maximum height, increasing oral fatigue, and controlling the frequency of inhalation to some extent. A clip 25 is installed on the inner wall of the atomizer 2. One end of the rubber abutment 242 is connected to a bent tube 2421, and one end of the bent tube 2421 is inserted into the clip 25. A limiting ring 2422 is fitted on the curved tube 2421 and passes through the side wall of the atomizer 2. The limiting ring 2422 is located inside the clamp head 25, and a return spring 251 is provided between the limiting ring 2422 and the clamp head 25. One end of the return spring 251 is attached to the end of the limiting ring 2422 facing the middle of the atomizer 2. A slider 26 is provided on the outer end wall of the atomizer 2. It can slide along the length of the atomizer 2 and abut against one end of the curved tube 2421. The end face of the slider 26 facing the atomizer 2 is an arc surface with the curvature decreasing towards the slider 26. When the slider 26 moves towards the slider 26 side, it will gradually move the curved tube 2421 towards the insertion hole 241, so that the rubber block 242 will gradually abut against the side end of the smoke guide rod 23, increasing the friction of the smoke guide rod 23 when sliding.

[0052] The slider 26 is magnetically engaged with the outer wall of the atomizer 2, which allows the slider 26 to be conveniently positioned at different locations on the atomizer 2. In actual use, the rebound force of the rubber block 242 is less than the magnetic attraction between the slider 26 and the outer wall of the atomizer 2.

[0053] A method for adjusting the atomization volume of an atomizer, using the aforementioned adjustable atomization volume atomizer, includes the following steps:

[0054] Step 1: When using the atomizer, by varying the suction force, the smoke passage 231 on the smoke guide rod 23 is connected to the opening 2211 on the smoke chamber 221 at different heights, so as to draw in smoke of different concentrations.

[0055] Step 2: When it is necessary to change the smoke inhalation rate, rotate the two levers 223 to make the smoke adapter 22 rotate, so that the opening 2211 on the smoke chamber 221 communicates with the smoke passage 231 of different areas, thereby changing the area of ​​the smoke entering the channel.

[0056] Step 3: When it is necessary to change the single inhalation volume, the retraction amount of the bend 2421 can be adjusted by sliding the slider 26, thereby changing the sliding speed of the smoke guide rod 23.

[0057] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the embodiments of the present invention.

Claims

1. An atomizer with adjustable atomization volume, characterized in that, Including power supply pole (1): An atomizer (2) is installed at one end of the power supply pole (1); An atomizing core (3) is installed between the power supply pole (1) and the atomizer (2), the atomizing core (3) being used to atomize essential oils; A mouthpiece (21) is installed at one end of the atomizer (2) for the mouth to suck out the smoke; Rotate the smoke adapter (22) installed in the atomizer (2). The smoke adapter (22) is provided with several smoke chambers (221) with different smoke concentrations. Each of the smoke chambers (221) is filled with cellulose acetate cotton that can absorb impurities in the essential oil, and the filling density of the cellulose acetate cotton in the smoke chambers (221) decreases from bottom to top. A smoke guide rod (23) is installed inside the atomizer (2) and slides along the length of the atomizer (2). One end of the smoke guide rod (23) is connected to the mouthpiece (21), and the smoke guide rod (23) can slide to different heights inside the atomizer (2) depending on the suction force. The atomizer (2) is provided with two guide rails (24) for guiding the sliding of the smoke guide rod (23). The two guide rails (24) are symmetrically arranged. A hole (241) is provided in the middle of one of the guide rails (24) along the height direction of the guide rail (24). A rubber abutment (242) is movably provided in the hole (241) to abut against the side of the smoke guide rod (23) and to slow down the sliding speed of the smoke guide rod (23). The smoke passage (231) is located on the side wall of the smoke guide rod (23). The smoke passage (231) can communicate with the smoke chamber (221) at different heights as the smoke guide rod (23) moves. The smoke of different concentrations in the smoke chamber (221) can be sucked out from the mouthpiece (21) by sucking through the mouth.

2. The atomizer with adjustable atomization volume according to claim 1, characterized in that, The power supply rod (1) is movably connected to the atomizer (2) via the adapter nut (11).

3. The atomizer with adjustable atomization volume according to claim 1, characterized in that, The atomizer (2) is hollow inside. The smoke adapter (22) is rotatably installed in the middle of the lower end of the atomizer (2). A lever (222) is connected to each side of the rotating shaft of the smoke adapter (22). One end of the lever (222) extends outward from the atomizer (2) and passes through the end wall of the atomizer (2) to be connected to a lever (223). Two smoke guide blocks (224) are symmetrically distributed at the upper end of the smoke adapter (22). Each smoke guide block (224) has three smoke chambers (221) arranged vertically and vertically. Each smoke guide block (224) has a connecting channel (2241) that communicates with the atomization area of ​​the atomizing core (3) to allow smoke to enter the smoke guide block (224). The connecting channel (2241) communicates with each smoke chamber (221).

4. The atomizer with adjustable atomization volume according to claim 1, characterized in that, There are six smoke vents (231) installed on the side wall of the smoke guide rod (23). Three smoke vents (231) are grouped together. The two groups of smoke vents (231) are symmetrically distributed on the outer walls of both sides of the smoke guide rod (23). The three smoke vents (231) in the same group are equidistant along the circumference of the smoke guide rod (23) and their areas increase sequentially. Each smoke chamber (221) has an opening (2211) in the middle of its outer end. The area of ​​the opening (2211) is the same as the area of ​​the largest smoke vent (231).

5. An atomizer with adjustable atomization volume according to claim 1, characterized in that, The upper end of the smoke guide rod (23) is equipped with a funnel-shaped guide head (232), and the upper part of the atomizer (2) is provided with a deceleration funnel (233) that cooperates with the guide head (232) for insertion and slows down the insertion speed.

6. An atomizer with adjustable atomization volume according to claim 1, characterized in that, A clamp (25) is installed on the inner wall of the atomizer (2). One end of the rubber block (242) is connected to a bent tube (2421). One end of the bent tube (2421) is inserted into the clamp (25) and passes through the side wall of the atomizer (2). A limiting ring (2422) is fitted on the bent tube (2421). The limiting ring (2422) is located inside the clamp (25). A return spring (251) is provided between the limiting ring (2422) and the clamp (25). One end of the return spring (251) is attached to the end of the limiting ring (2422) facing the middle of the atomizer (2).

7. An atomizer with adjustable atomization volume according to claim 6, characterized in that, The outer end wall of the atomizer (2) is provided with a slider (26) that can slide along the length of the atomizer (2) and abut against one end of the bend (2421). The end face of the slider (26) facing the atomizer (2) is an arc surface, and the slider (26) is magnetically engaged with the outer wall of the atomizer (2).

Citation Information

Patent Citations

  • Electronic cigarette holder provided with filtering structure and facilitating smoke concentration adjustment

    CN112890283A

  • Electron cigarette and electron smog spinning disk atomiser thereof

    CN207912058U