A misting device for a nebulizer that selectively mists

CN224710567UActive Publication Date: 2026-09-04SHENZHEN YUANDOU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522133233.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2026-09-04
Estimated Expiration
2035-10-09

AI Technical Summary

Technical Problem

[0006]本实用新型实施例的目的在于,提供一种可选择性出雾的雾化器排雾装置,以解决现有技术中当展览电子烟时多人品尝电子烟的卫生问题

Benefits of technology

[0015] Compared with existing technologies, the selective vapor emission atomizer de-fogging device provided in this embodiment of the invention has the following advantages: Through the modular design of the display stand, the flexible adaptation of the adaptive seal, the selective air supply method of the pressurized air pump, and the stability of the support plate, independent vapor emission control for multiple e-cigarettes is achieved, and the adaptable seal ensures the airtightness of the working chamber by adapting to different specifications of e-cigarettes. This device is highly adaptable, easy to operate, and can meet the needs of various scenarios such as display and testing.

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Abstract

The application relates to a misting device of an atomizer capable of selectively misting, which comprises a display table provided with multiple working cavities and multiple loading windows, the loading windows are arranged on the upper surface of the display table, one working cavity is communicated with one loading window, one electronic cigarette is inserted in one loading window, the air inlet of the electronic cigarette is arranged in the working cavity, and the air outlet of the electronic cigarette is arranged outside the working cavity; a self-adaptive sealing piece is arranged at the loading window, the self-adaptive sealing piece is provided with a variable cigarette hole, and the cigarette hole is in interference fit with the electronic cigarette; a pressurized air pump is communicated with the working cavity; and a control assembly is connected with the pressurized air pump and used for enabling different working cavities to be in a pressurized state or an atmospheric pressure state. The application realizes independent cigarette discharging control of multiple electronic cigarettes, and the self-adaptive sealing piece is adapted to electronic cigarettes of different specifications to ensure the air tightness of the working cavities.
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Description

Technical Field

[0001] This application relates to the field of atomizer technology, and in particular to an atomizer de-mist device with selective mist output. Background Technology

[0002] With the development of technology, e-cigarettes have provided smokers with more choices. Compared to traditional cigarettes, e-cigarettes are convenient to use and offer a variety of flavors, making them popular among smokers. When promoting or exhibiting e-cigarettes, users are often given the opportunity to sample them.

[0003] To address hygiene issues when multiple people are using the device, two methods are employed. First, the mouthpiece of the e-cigarette is disinfected with alcohol before and after each use. This disinfection method effectively reduces the spread of bacteria. However, the smell of alcohol during inhalation can affect the user experience, and repeated disinfection can also lead to inconvenience in tasting the device.

[0004] The second method is to use disposable mouthpiece covers. When using the device, the mouthpiece cover is installed on the mouthpiece, and the mouthpiece cover is thrown away after use. This physical isolation method eliminates the risk of users directly contacting the mouthpiece and is more hygienic. However, when using e-cigarettes, users still inhale through the mouthpiece, and some bacteria and viruses will still remain on the mouthpiece, which can easily lead to cross-infection.

[0005] Therefore, in order to solve the problems in the prior art, this embodiment provides an atomizer de-fogging device with selective mist output. Utility Model Content

[0006] The purpose of this utility model embodiment is to provide an atomizer de-fogging device with selective mist output, so as to solve the hygiene problem of multiple people tasting e-cigarettes when exhibiting e-cigarettes in the prior art.

[0007] To solve the above problems, the technical solution of this utility model embodiment is as follows: This utility model provides a selective mist-emission atomizer de-mist device, including a display stand with multiple working chambers and multiple loading windows. Each loading window is located on the upper surface of the display stand, and each loading window connects to one of the working chambers. One loading window is used to insert an electronic cigarette, with the electronic cigarette's air inlet located inside the working chamber and its air outlet located outside. An adaptive seal is located at each loading window, and the adaptive seal has a variable smoke-enclosing hole that is interference-fitted with the electronic cigarette. A pressurizing pump is connected to the working chambers. A control component is connected to the pressurizing pump to keep different working chambers under pressurized or normal pressure.

[0008] Furthermore, in a preferred embodiment, the plurality of working cavities and the plurality of loading windows are arranged in a rectangular array.

[0009] Furthermore, in a preferred embodiment, the display stand is divided into multiple pressurization boxes, each pressurization box having a working chamber and a loading window.

[0010] Furthermore, in a preferred embodiment, multiple pressurizing boxes are used in conjunction with a pressurizing air pump. The pressurizing air pump is connected to a main air pipe, a branch air pipe, and a multi-way valve. The main air pipe is connected to the pressurizing air pump. The branch air pipe is connected to a working chamber. The inlet of the multi-way valve is connected to the main air pipe, and the outlet of the multi-way valve is connected to the branch air pipe.

[0011] Furthermore, in a preferred embodiment, the pressurizing air pump is built into the pressurizing box, which is provided with an electrical input section for connecting to an external power source.

[0012] Furthermore, in a preferred embodiment of some embodiments, the adaptive seal is an inflatable airbag.

[0013] Furthermore, in a preferred embodiment, the adaptive seal includes a window portion and an external portion. The window portion is located at the loading window, and the external portion is located on the side of the loading window away from the working cavity. The external portion abuts against the upper surface of the display stand. The window portion has an air inlet that passes through the upper surface of the display stand and is located in the working cavity.

[0014] Furthermore, in a preferred embodiment, the working chamber has a support plate on its inner wall away from the loading window. The support plate is tapered, with its large end facing the loading window. The inner wall of the support plate is used to abut against the electronic cigarette, and the support plate is provided with an air vent.

[0015] Compared with existing technologies, the selective vapor emission atomizer de-fogging device provided in this embodiment of the invention has the following advantages: Through the modular design of the display stand, the flexible adaptation of the adaptive seal, the selective air supply method of the pressurized air pump, and the stability of the support plate, independent vapor emission control for multiple e-cigarettes is achieved, and the adaptable seal ensures the airtightness of the working chamber by adapting to different specifications of e-cigarettes. This device is highly adaptable, easy to operate, and can meet the needs of various scenarios such as display and testing. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0017] Figure 2 This is a schematic diagram showing a partial cross-sectional view of the present invention.

[0018] Figure 3 This is a schematic diagram showing a partial cross-sectional view of the present invention.

[0019] Figure 4 This is a structural schematic diagram of the adaptive sealing element in this utility model.

[0020] Explanation of reference numerals in the attached drawings: 1. Electronic cigarette; 2. Display stand; 21. Pressurization box; 211. Working chamber; 212. Loading window; 213. Power input section; 3. Adaptive seal; 31. Smoke-encasing hole; 32. Window section; 321. Air inlet; 33. External part; 4. Pressurization pump; 5. Control components; 6. Support plate; 61. Air passage. Detailed Implementation

[0021] The term "embodiment" as used herein means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0022] The following is in conjunction with the appendix Figure 1-4 This application will be described in further detail.

[0023] This utility model provides an atomizer de-fogging device that allows for selective fog output.

[0024] Reference Figure 1-3 The atomizer exhaust device includes a display stand 2, an adaptive seal 3, a pressurizing air pump 4, and a control component 5. Specifically, the display stand 2, as a device for holding electronic cigarettes 1, usually needs to display many different types and specifications of electronic cigarettes 1 for participants to experience. Therefore, multiple working chambers 211 and multiple loading windows 212 are set on the display stand 2. The loading windows 212 are located on the upper surface of the display stand 2. One loading window 212 connects to one working chamber 211. One loading window 212 is used to insert one electronic cigarette 1. At the same time, when the electronic cigarette 1 is inserted into the loading window 212, the air inlet is exactly in the corresponding working chamber 211, and the air outlet is located outside the working chamber 211. This allows the gas in the working chamber 211 to drive the electronic cigarette 1 to atomize, and also ensures that the mist is smoothly discharged from the air outlet.

[0025] An adaptive seal 3 is disposed at the loading window 212. The adaptive seal 3 has a variable smoke-encasing hole 31, which is press-fitted with the electronic cigarette 1. Specifically, when the electronic cigarette 1 is inserted, the smoke-encasing hole 31 forms an press-fit with the electronic cigarette 1, thereby sealing the gap between them and preventing air leakage from the working chamber 211. Furthermore, since the smoke-encasing hole 31 is variable, the adaptive seal 3 can also adapt to different specifications of electronic cigarettes 1, thus allowing for greater diversity in the types of electronic cigarettes 1 that can be placed on the display stand 2.

[0026] The pressurized air pump 4 is connected to the working chamber 211. The pressurized air pump 4 is the power source of this device. The gas generated by the pressurized air pump 4 is delivered to the working chamber 211. The air in the working chamber 211 will enter from the air inlet of the electronic cigarette 1 to start the electronic cigarette 1, so that the electronic cigarette 1 can automatically expel smoke.

[0027] The control component 5 is connected to the pressurized air pump 4 and is used to put different working chambers 211 into a pressurized state or a normal pressure state. Specifically, the user can operate the device externally, such as through a remote control or touch screen, and select an electronic cigarette 1 on the corresponding display stand 2. The control component 5 will pressurize the corresponding working chamber 211 and allow the electronic cigarette 1 to automatically expel smoke. At this time, the user can experience the electronic cigarette 1 by smelling it, and there will be no hygiene problem.

[0028] In summary, by setting multiple mounting and disassembly windows and multiple working chambers 211 on the display stand 2 to hold the electronic cigarette 1, and by using the adaptive sealing component 3 to adapt to different specifications of electronic cigarette 1, and by using the control component 5 to allow users to select the corresponding electronic cigarette 1 for automatic smoke extraction according to their own needs, the user can enjoy the electronic cigarette 1 in a more hygienic way.

[0029] Reference Figure 1 Based on the foregoing, the application scenario of this device is an exhibition. Therefore, the electronic cigarettes 1 on the display stand 2 need to be placed and arranged neatly for easy access by users. Based on this, multiple working chambers 211 and corresponding loading windows 212 are distributed in a rectangular array. Depending on the number of electronic cigarettes 1 to be exhibited, the display stand 2 with a corresponding number of loading windows 212 and working chambers 211 can be selectively displayed. At the same time, this distribution makes the overall structure more regular, and both the visual presentation during the exhibition and the step-by-step operation during the test are more efficient and convenient.

[0030] Reference Figure 2-3Based on the aforementioned rectangular array distribution, the display stand 2 can also adopt a modular design, that is, it is divided into multiple independent pressurization boxes 21. Each pressurization box 21 has a working chamber 211, and a loading window 212 is correspondingly opened on its upper surface. The advantage of this design is that the number of pressurization boxes 21 placed depends on the number of electronic cigarettes 1 to be displayed. It can also be independently produced, assembled and maintained. If a pressurization box 21 fails, it is not necessary to replace the entire display stand 2, only the corresponding pressurization box 21 needs to be replaced.

[0031] Furthermore, for the air pressure supply of multiple pressurized boxes 21, a centralized air supply method can be adopted. Specifically, multiple pressurized boxes 21 share a pressurized air pump 4, which is connected to a main air pipe, a distribution air pipe, and a multi-way valve. One end of the main air pipe is connected to the pressurized air pump 4, and the other end is connected to the inlet of the multi-way valve. Each outlet of the multi-way valve is connected to a distribution air pipe. The end of each distribution air pipe away from the multi-way valve is connected to the working chamber 211 of a pressurized box 21. By controlling the opening and closing of each outlet of the multi-way valve through the control component 5, the pressurized air pump 4 can selectively supply air to different working chambers 211, and precisely control the vapor output state of the corresponding electronic cigarette 1.

[0032] In addition to the centralized gas supply method mentioned above, the pressurization box 21 can also adopt an independent gas supply method. Based on the independent gas supply method, considering the ease of installation at the exhibition site, it is preferable to have the pressurization pump 4 built into the pressurization box 21. At the same time, the pressurization box 21 will be provided with a power input section 213, which can be a power socket or a power output point, for connecting an external power source to power the pressurization pump 4.

[0033] Reference Figure 4 Specifically, the adaptive seal 3 mentioned above can be an inflatable airbag structure. The adaptive seal 3 is made of a soft, elastic rubber or plastic material. The airbag made of this material can adaptively wrap around the electronic cigarette 1 according to the shape of the electronic cigarette 1 by the change of the internal pressure of the airbag.

[0034] In the initial state, the diameter of the smoke-encasing hole 31 is larger than the maximum size of a common electronic cigarette 1, making it easy to insert. When the airbag is inflated, the smoke-encasing hole 31 will shrink due to elastic contraction, forming an interference fit with the outer wall of the electronic cigarette 1 to achieve a reliable seal.

[0035] Reference Figure 4 Furthermore, this airbag-type adaptive seal 3 includes a window portion 32 and an external portion 33. The window portion 32 is located at the loading window 212, and the external portion 33 is located on the side of the loading window 212 away from the working chamber 211. The external portion 33 also abuts against the upper surface of the display stand 2, that is, the external portion 33 abuts against the upper surface of the pressure box 21, so as to increase the sealing of the loading window 212.

[0036] Meanwhile, the window 32 is also equipped with an air inlet 321, which passes through the upper surface of the display stand 2 and extends into the working chamber 211. When the working chamber 211 is pressurized, high-pressure gas can enter the air bag through the air inlet 321, driving the smoke-encasing hole 31 to contract. When the working chamber 211 returns to normal pressure, the gas in the air bag can flow back through the air inlet 321, allowing the smoke-encasing hole 31 to return to its initial size, thus achieving adaptive adjustment. In summary, it is possible to simultaneously start the electronic cigarette 1 and allow the adaptive seal 3 to enclose the electronic cigarette 1 by working with the pressurized air pump 4.

[0037] Reference Figure 2 In some cases, the air inlet of an electronic cigarette 1 may be located on the lower surface. In this case, the electronic cigarette 1 cannot contact the lower inner wall of the working chamber 211. If the weight of the electronic cigarette 1 is supported solely by the friction between the sealing cover and the electronic cigarette 1, it may not be suitable for larger electronic cigarettes. Therefore, a support plate 6 is provided on the inner wall of the working chamber 211 away from the loading window 212. The support plate 6 is tapered, with its larger end facing the loading window 212 and its smaller end fixed to the inner wall of the working chamber 211. The inner wall of the support plate 6 can abut against the outer wall of the electronic cigarette 1, providing suspension support for the electronic cigarette 1. At the same time, in order not to affect the flow of gas into the air inlet of the electronic cigarette 1, an air passage 61 is provided on the support plate 6 to ensure that the gas in the working chamber 211 can flow smoothly to the air inlet of the electronic cigarette 1 without affecting the atomization drive.

[0038] In summary, this device achieves independent smoke control for multiple electronic cigarettes 1 through the modular design of the display stand 2, the flexible adaptation of the adaptive seal 3, the selective air supply method of the pressurized air pump 4, and the stability of the support plate 6. Furthermore, the adaptive seal 3 ensures the airtightness of the working chamber 211 by adapting to different specifications of electronic cigarettes 1. This device is highly adaptable, easy to operate, and can meet the needs of various scenarios such as display and testing.

[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A selective mist-emission atomizer demisting device, characterized in that, include: The display stand (2) is provided with multiple working chambers (211) and multiple loading windows (212). The loading windows (212) are located on the upper surface of the display stand (2). One loading window (212) connects to one working chamber (211). One loading window (212) is used to insert an electronic cigarette (1) so that the air inlet of the electronic cigarette (1) is inside the working chamber (211) and the air outlet of the electronic cigarette (1) is outside the working chamber (211). An adaptive seal (3) is provided at the loading window (212), the adaptive seal (3) having a variable smoke-encasing hole (31) that is interference-fitted with the electronic cigarette (1); A pressurized air pump (4) is connected to the working chamber (211); The control component (5) is connected to the pressurized air pump (4) and is used to put the different working chambers (211) into a pressurized state or a normal pressure state.

2. The selective mist-emission atomizer demisting device according to claim 1, characterized in that: The multiple working cavities (211) and the multiple loading windows (212) are all arranged in a rectangular array.

3. The selective mist-emission atomizer demisting device according to claim 2, characterized in that: The display stand (2) is divided into multiple pressurization boxes (21), and each pressurization box (21) is provided with a working chamber (211) and a loading window (212).

4. The selective mist-emission atomizer demisting device according to claim 3, characterized in that: Multiple pressurizing boxes (21) are used in conjunction with a pressurizing air pump (4). The pressurizing air pump (4) is connected to a main air pipe, a branch air pipe and a multi-way valve. The main air pipe is connected to the pressurizing air pump (4). The branch air pipe is connected to a working chamber (211). The inlet of the multi-way valve is connected to the main air pipe and the outlet of the multi-way valve is connected to the branch air pipe.

5. The selective mist-emission atomizer demisting device according to claim 3, characterized in that: The pressurizing air pump (4) is built into the pressurizing box (21), which is provided with a power input section (213) for connecting to an external power source.

6. The selective mist-emission atomizer demisting device according to claim 1, characterized in that: The adaptive seal (3) is an inflatable airbag.

7. The selective mist-emission atomizer demisting device according to claim 6, characterized in that: The adaptive seal (3) includes a window portion (32) and an external portion (33). The window portion (32) is located at the loading window (212), and the external portion (33) is located on the side of the loading window (212) away from the working cavity (211). The external portion (33) abuts against the upper surface of the display stand (2). The window portion (32) has an air inlet (321), which passes through the upper surface of the display stand (2) and is located in the working cavity (211).

8. The selective mist-emission atomizer demisting device according to claim 1, characterized in that: The working chamber (211) has a support plate (6) on its inner wall away from the loading window (212). The support plate (6) is tapered and the large end of the support plate (6) faces the loading window (212). The inner wall of the support plate (6) is used to abut against the electronic cigarette (1). The support plate (6) is provided with an air vent (61).