Electronic atomization device for nasal breath

By designing a nasal electronic atomization device including a shell, nasal part, bracket and ventilator, the existing nasal electronic atomizer has solved the problem of complex structure and poor usage experience, and a simpler structure and better usage experience are achieved.

CN223040921UActive Publication Date: 2025-07-01SHENZHEN ZHIYUAN ZHICHUANG TECH CO LTD
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Patent Information

Application Number
CN202421581991.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-07-01
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

The existing electronic atomizer has a complex structure and poor user experience. Compared with the electronic atomizer, the nozzle part is changed to the breathing part, resulting in an unreasonable design.

Method used

An electronic atomization device for nasal breathing is designed, including a shell, a nasal breathing part, a bracket and a ventilator. One end of the nasal breathing part is equipped with an arcuate surface and a depression. A vent hole and a communication duct are provided in the bracket. The ventilator connects the bracket and a nasal breathing part to form a connecting ventilator, simplifying the structure and improving the user experience.

Benefits of technology

By simplifying the structure and optimizing the design, the usage experience of the nasal electronic atomization device has been significantly improved, the structure is simpler, and the assembly is more convenient, and there is no need to set up a separate airway structure.

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Abstract

The utility model relates to an electronic atomization device for nasal breath. The electronic atomization device for the nasal rest is provided with the shell, the nasal rest part, the support and the breather pipe. One end of the nasal part is provided with an arc-shaped surface, the other end of the nasal part is provided with a concave part, the arc-shaped surface is provided with a mounting hole which extends to the concave part, and one end of the nasal part provided with the concave part is arranged in the shell; the support is arranged in the shell and provided with a vent hole, a part of the support covers the concave part to form a communicating air channel, and the vent hole is communicated with the communicating air channel; one end of the breather pipe is connected with the support, the other end of the breather pipe is arranged in the mounting hole, and the breather pipe is provided with a communicating hole communicated with the communicating air channel. Therefore, the electronic atomization device can be better used for the nasal rest through the arc-shaped surface of the nasal rest part, the use experience is enhanced, the communicated airway is formed through the nasal rest part and the support, an airway structure does not need to be independently arranged, and the electronic atomization device for the nasal rest is simpler in structure and more convenient to assemble.
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Description

Technical Field

[0001] This application relates to the field of electronic atomization technology, and particularly to a nasal breath electronic atomization device. Background Art

[0002] Nasal inhalation electronic atomizers enable users to inhale through their nostrils, providing a brand-new atomization experience.

[0003] However, current nasal inhalation electronic atomizers generally achieve the nasal inhalation function through a dual-airway and dual-atomizing core structure, and compared with mouth inhalation electronic atomizers, only the mouthpiece part is changed to the nasal breath part, resulting in a complex structure and poor user experience of current nasal inhalation electronic atomizers. Utility Model Content

[0004] This application provides a nasal breath electronic atomization device, which can solve the problems of complex structure and poor user experience.

[0005] To solve the above technical problems, this application provides a nasal breath electronic atomization device, including: a housing, a nasal breath part, a bracket, and an air pipe.

[0006] One end of the nasal breath part is provided with an arc surface, and the other end is provided with a recessed part. The arc surface is provided with an installation hole, and the installation hole extends to the recessed part. The end of the nasal breath part with the recessed part is arranged inside the housing;

[0007] The bracket is arranged inside the housing. The bracket is provided with a ventilation hole, and part of the bracket covers the recessed part to form a communicating airway, and the ventilation hole communicates with the communicating airway;

[0008] One end of the air pipe is connected to the bracket, and the other end is placed inside the installation hole. The air pipe is provided with a communication hole, and the communication hole communicates with the communicating airway.

[0009] In a possible implementation manner of this application, there are two air pipes, and the two air pipes are arranged at intervals, and there are two nasal breath parts.

[0010] In a possible implementation manner of this application, the arc surface is adapted to the human nostrils.

[0011] In a possible implementation manner of this application, the housing has a receiving cavity, the receiving cavity has a notch, the end of the nasal breath part with the recessed part is arranged inside the receiving cavity, and the nasal breath part is provided with a card slot, and the edge of the notch is placed inside the card slot.

[0012] In a possible implementation manner of this application, the nasal breath electronic atomization device further includes an oil absorption cotton, and the oil absorption cotton is located inside the recessed part and sleeved on the air pipe.

[0013] In a possible implementation manner of the present application, the oil-absorbing cotton is in a semi-circular arc structure, the ventilation pipe is provided with two communication holes, and the oil-absorbing cotton covers one of the communication holes.

[0014] In a possible implementation manner of the present application, the nasal breath electronic atomization device further includes a microphone, the bracket is provided with a microphone activation hole, the microphone activation hole communicates with the communication airway, the microphone is arranged at one end of the bracket away from the ventilation pipe, and the microphone activation hole is arranged opposite to one side of the microphone.

[0015] In a possible implementation manner of the present application, the nasal breath part is made of silica gel material.

[0016] In a possible implementation manner of the present application, the bracket and the ventilation pipe are integrally formed.

[0017] In a possible implementation manner of the present application, the nasal breath electronic atomization device further includes an atomization channel, an air inlet hole is provided at one end of the housing away from the nasal breath part, one end of the atomization channel communicates with the air inlet hole, and the other end communicates with the ventilation hole.

[0018] The nasal breath electronic atomization device of the present application is provided with a housing, a nasal breath part, a bracket, and a ventilation pipe. One end of the nasal breath part is provided with an arc surface, and the other end is provided with a recess. The arc surface is provided with a mounting hole, and the mounting hole extends to the recess. One end of the nasal breath part provided with the recess is arranged inside the housing; the bracket is arranged inside the housing, the bracket is provided with a ventilation hole, and part of the bracket covers the recess to form a communication airway, and the ventilation hole communicates with the communication airway; one end of the ventilation pipe is connected to the bracket, and the other end is placed inside the mounting hole. The ventilation pipe is provided with a communication hole, and the communication hole communicates with the communication airway. In this way, the arc surface of the nasal breath part can be better used for nasal breathing, enhancing the use experience, and a communication airway is formed through the nasal breath part and the bracket, so that there is no need to separately set an airway structure, making the structure of the nasal breath electronic atomization device simpler and more convenient to assemble. Description of the Drawings

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0020] Figure 1 It is a schematic perspective view of an embodiment of the nasal breath electronic atomization device provided by the present application;

[0021] Figure 2 For Figure 1Schematic cross-sectional structure diagram of a nasal breath electronic atomization device;

[0022] Figure 3 Exploded structure diagram of the nasal breath electronic atomization device provided by the present application.

[0023] In the attached drawings, the list of components represented by each reference numeral is as follows:

[0024] Housing 10, accommodation cavity 11, notch 12, nasal breath part 20, arc surface 21, depression part 22, mounting hole 23, communication airway 24, card slot 25, bracket 30, ventilation hole 31, microphone head activation hole 32, ventilation pipe 40, communication hole 41, oil absorption cotton 50, microphone head 60, atomization channel 70. Detailed implementation manners

[0025] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the attached drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the protection scope of the present application.

[0026] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the attached drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present application. In addition, the terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the described features. In the description of the present application, "a plurality" means two or more, unless otherwise specifically defined.

[0027] In this application, the term "exemplary" is used to mean "serving as an example, illustration, or instance". Any embodiment described as "exemplary" in this application is not necessarily to be construed as more preferred or advantageous than other embodiments. The following description is provided to enable any person skilled in the art to make and use this application. In the following description, details are set forth for purposes of explanation. It should be understood that those of ordinary skill in the art can recognize that this application can be implemented without these specific details. In other instances, well-known structures and processes are not elaborated in detail to avoid obscuring the description of this application with unnecessary details. Therefore, this application is not intended to be limited to the embodiments shown, but is to be accorded the widest scope consistent with the principles and features disclosed herein.

[0028] Please refer to Figures 1 to 3 , in one embodiment, this application provides a nasal breath electronic atomization device, including: a housing 10, a nasal breath part 20, a bracket 30, and an air pipe 40.

[0029] One end of the nasal breath part 20 is provided with an arc surface 21, and the other end is provided with a recess 22. The arc surface 21 is provided with a mounting hole 23, and the mounting hole 23 extends to the recess 22. The end of the nasal breath part 20 with the recess 22 is arranged inside the housing 10;

[0030] The bracket 30 is arranged inside the housing 10. The bracket 30 is provided with a ventilation hole 31. Part of the bracket 30 covers the recess 22 to form a communication airway 24, and the ventilation hole 31 communicates with the communication airway 24;

[0031] One end of the air pipe 40 is connected to the bracket 30, and the other end is placed inside the mounting hole 23. The air pipe 40 is provided with a communication hole 41, and the communication hole 41 communicates with the communication airway 24.

[0032] The nasal breath part 20 can be made of silica gel material. Further, the arc surface 21 is adapted to the human nostrils. This makes the nasal breath electronic atomization device more convenient to use and provides a better user experience.

[0033] The bracket 30 can be made of plastic material. The aerosol atomized by the nasal breath electronic atomization device can be discharged through the air pipe 40. The bracket 30 and the air pipe 40 can be integrally formed, so that the structure of the nasal breath electronic atomization device is simpler and the assembly is more convenient.

[0034] Thus, the arc surface 21 of the nasal breath part 20 can be better used for nasal breathing, enhancing the user experience. And a communication airway 24 is formed by the nasal breath part 20 and the bracket 30, eliminating the need for a separate airway structure, making the structure of the nasal breath electronic atomization device simpler and the assembly more convenient.

[0035] Please refer to Figure 2, in one embodiment, there are two ventilation tubes 40, and the two ventilation tubes 40 are arranged at intervals, and there are two nasal breathing parts 20. When in use, the two nasal breathing parts 20 can be brought close to or inserted into the two nostrils, and suction is performed through the nostrils, thereby enhancing the user experience.

[0036] Please refer to Figure 2 , in one embodiment, the housing 10 has a receiving cavity 11, the receiving cavity 11 has a notch 12, one end of the nasal breathing part 20 provided with a recess 22 is arranged in the receiving cavity 11, the nasal breathing part 20 is provided with a card slot 25, and the edge of the notch 12 is placed in the card slot 25. This can facilitate the quick assembly of the nasal breathing part 20 and the housing 10, and since the nasal breathing part 20 can be made of silica gel material, the nasal breathing part 20 can seal and connect to the edge of the notch 12 of the housing 10 to prevent air leakage and oil leakage inside the housing 10.

[0037] Please refer to Figure 2 , in one embodiment, the nasal breathing electronic atomization device further includes an oil absorption cotton 50, and the oil absorption cotton 50 is located in the recess 22 and sleeved on the ventilation tube 40. The oil absorption cotton 50 can be made of cotton material. Further, the oil absorption cotton 50 can be made of integral cotton material. The oil absorption cotton 50 can absorb the condensate formed in the ventilation tube 40 to prevent the condensate from overflowing, thereby making the use of the nasal breathing electronic atomization device more convenient.

[0038] Please refer to Figure 2 , in one embodiment, the oil absorption cotton 50 has a semi-circular structure, the ventilation tube 40 is provided with two communication holes 41, and the oil absorption cotton 50 covers one of the communication holes 41. By setting the oil absorption cotton 50 to a semi-circular structure to form a notch, it is convenient for the oil absorption cotton 50 to be directly sleeved on the ventilation tube 40, and the oil absorption cotton 50 covers one of the communication holes 41, and the notch of the oil absorption cotton 50 communicates with the other communication hole 41, so that the communication airway 24 can communicate with the ventilation tube 40 through the communication hole 41.

[0039] Please refer to Figure 2 , in one embodiment, the nasal breathing electronic atomization device further includes a microphone 60, the bracket 30 is provided with a microphone 60 activation hole 32, the microphone 60 activation hole 32 communicates with the communication airway 24, the microphone 60 is arranged at one end of the bracket 30 away from the ventilation tube 40, and the microphone 60 activation hole 32 is arranged opposite to one side of the microphone 60. The microphone 60 can be an airflow sensor. When the nasal breathing electronic atomization device is used by suction through the nose, the microphone 60 senses the air pressure change in the microphone 60 activation hole 32 and sends an activation signal, thereby controlling the heating element in the nasal breathing electronic atomization device to turn on, heating the aerosol product, such as e-liquid, to form an aerosol, so that people can inhale through the nasal breathing part 20.

[0040] Please refer to Figure 2, in one embodiment, the nasal breath electronic atomization device further includes an atomization channel 70. An air inlet hole (not shown) is provided at one end of the housing 10 away from the nasal breath part 20. One end of the atomization channel 70 communicates with the air inlet hole, and the other end communicates with the ventilation hole 31. The heating element is disposed in the atomization channel 70. When the nasal breath electronic atomization device is used by sucking through the nose, external air enters the atomization channel 70 through the air inlet hole, mixes with the aerosol product heated by the heating element to form an aerosol, and then passes through the ventilation hole 31, the communication airway 24, and the ventilation pipe 40, so as to be sucked through the nose by a person.

[0041] In specific implementation, each of the above units or structures can be implemented as an independent entity, or can be combined arbitrarily to be implemented as the same or several entities. For the specific implementation of each of the above units or structures, reference can be made to the foregoing method embodiments, which will not be elaborated herein.

[0042] The nasal breath electronic atomization device provided by the embodiments of the present application has been introduced in detail above. Specific examples are used herein to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those skilled in the art, according to the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.

Claims

1. A nasal breath electronic atomization device, characterized in that: include: case; A nose portion, one end of which is provided with an arc surface, and the other end of which is provided with a recessed portion, the arc surface is provided with a mounting hole, the mounting hole extends to the recessed portion, and the end of the nose portion provided with the recessed portion is arranged in the shell; A bracket is disposed in the shell, the bracket is provided with a vent hole, a part of the bracket covers the recessed portion to form a communicating airway, and the vent hole is connected to the communicating airway; A ventilation pipe has one end connected to the bracket and the other end placed in the mounting hole. The ventilation pipe is provided with a connecting hole, and the connecting hole is connected to the connecting airway.

2. The nasal breath electronic atomization device according to claim 1, characterized in that: There are two ventilation tubes, which are arranged at intervals, and there are two nasal breathing parts.

3. The nasal breath electronic atomization device according to claim 2, characterized in that: The arc surface is adapted to the nostrils of a person.

4. The nasal breath electronic atomization device according to claim 1, characterized in that: The shell has a accommodating cavity, the accommodating cavity has a notch, the end of the nose portion provided with a recessed portion is arranged in the accommodating cavity, the nose portion is provided with a slot, and the edge of the notch is placed in the slot.

5. The nasal breath electronic atomization device according to any one of claims 1 to 4, characterized in that: The nasal electronic atomization device also includes oil-absorbing cotton, which is located in the recessed portion and sleeved on the ventilation tube.

6. The nasal breath electronic atomization device according to claim 5, characterized in that: The oil-absorbing cotton is of a semi-arc structure, the ventilation pipe is provided with two communicating holes, and the oil-absorbing cotton covers one of the communicating holes.

7. The nasal breath electronic atomization device according to claim 1, characterized in that: The nasal electronic atomization device also includes a microphone, the bracket is provided with a microphone start hole, the microphone start hole is connected to the connecting airway, the microphone is arranged at one end of the bracket away from the ventilation tube, and the microphone start hole is arranged opposite to one side of the microphone.

8. The nasal breath electronic atomization device according to claim 1, characterized in that: The nasal breathing part is made of silicone material.

9. The nasal breath electronic atomization device according to claim 1, characterized in that: The bracket and the ventilation pipe are integrally formed.

10. The nasal breath electronic atomization device according to claim 1, characterized in that: The nasal electronic atomization device also includes an atomization channel. An air inlet hole is provided at one end of the shell away from the nasal part. One end of the atomization channel is connected to the air inlet hole, and the other end is connected to the vent hole.