Integrated atomizer

By fixing the host directly to the second end of the mask and fixing the atomization component to the host, the problem of dispersed layout and low integration of the existing atomizer components is solved, and a more compact atomizer design and higher integration are achieved.

CN223009577UActive Publication Date: 2025-06-24ANDON HEALTH CO LTD
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Patent Information

Application Number
CN202421817141.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-06-24
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The main components of the existing atomizer are scattered, have low integration and large volume, making it difficult to be worn as a whole on the user's face.

Method used

An integrated atomizer is designed, where the host is directly fixed to the second end of the mask, and the atomization component is fixed to the host, so that the host is closer to the mask and has a high degree of integration; the host is larger in size, which can increase the freedom of the connection form with the mask and the atomization component.

Benefits of technology

A high degree of integration is achieved, making the atomizer more compact and easy to wear, while improving the freedom of connection to the mask and atomizing components, simplifying the assembly process.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223009577U_ABST
    Figure CN223009577U_ABST
Patent Text Reader

Abstract

The utility model provides an integrated atomizer which comprises a mask, a main machine and an atomizing assembly. The mask comprises a first end and a second end which face opposite directions, the first end is used for being in contact with the face of a user, and the second end and an entity between the second end and the first end define a cavity used for containing medicine mist; the host comprises a device for providing electric power and / or control signals; the atomization assembly comprises a medicine cup and an atomization piece assembly arranged at the bottom of the medicine cup. The main machine is fixed to the second end of the mask, and the atomization assembly is fixed to the main machine. According to the atomizer, the main machine is directly fixed to the second end of the mask, and the atomization assembly is directly fixed to the main machine, so that the main machine with the large size and mass is closer to the mask, and the integration level is high.
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Description

Technical Field

[0001] The present disclosure belongs to the technical field of atomizers, and particularly relates to an integrated atomizer. Background Art

[0002] Inhalation therapy is an important and effective treatment method for respiratory diseases. An atomizer is used to atomize the liquid medicine into tiny particles, and the medicine enters the respiratory tract and lungs through inhalation, so as to achieve the purpose of painless, rapid and effective treatment. Existing atomizers (hereinafter referred to as atomizers) are divided into split atomizers and integral atomizers. The mask of the split atomizer is separated from the main unit, and the main unit provides the atomized medicine to the mask through a pipeline. The integral atomizer is mostly handheld, mainly including a handheld atomization main unit, a medicine cup and a mask which are rigidly connected. The user needs to hold the main unit to keep the mask on the face.

[0003] One disadvantage of the above atomizers is that the layout of the main components is scattered, the overall integration degree is low, the volume is large, and it is difficult to be made into a form that can be worn on the user's face as a whole. Summary of the Invention

[0004] The present disclosure aims to provide an integrated atomizer so that the user can wear the atomizer on the face for inhalation therapy.

[0005] In a first aspect, an integrated atomizer is provided, which includes a mask, a main unit and an atomization component; the mask includes a first end and a second end facing opposite directions, the first end is used to contact the user's face, and the second end and the entity between the second end and the first end define a chamber for accommodating the atomized medicine; the main unit includes devices for providing power and / or control signals; the atomization component includes a medicine cup and an atomization sheet component arranged at the bottom of the medicine cup; wherein, the main unit is fixed to the second end of the mask, and the atomization component is fixed to the main unit.

[0006] In a possible implementation manner, the main unit further includes a frame for installing devices for providing power and / or control signals; wherein, the main unit is connected to the second end of the mask through the frame.

[0007] Combined with the above possible implementation manner, in another possible implementation manner, the frame includes a front shell and a rear shell, the rear shell is connected to the mask, the front shell is buckled to the rear shell, and the devices for providing power and / or control signals are fixed between the front shell and the rear shell.

[0008] Combined with the above possible implementation manner, in another possible implementation manner, the frame has a first end face facing the mask and a second end face facing away from the mask, and the second end of the mask is connected to the first end face of the frame.

[0009] Combined with the above possible implementation manner, in another possible implementation manner, the atomization component is connected to the main unit through the medicine cup.

[0010] Combined with the above possible implementation manners, in another possible implementation manner, the atomization assembly is detachably disposed on the main body.

[0011] Combined with the above possible implementation manners, in another possible implementation manner, a recessed portion is provided on the outer surface of the main body, and the atomization assembly is embedded in the recessed portion.

[0012] Combined with the above possible implementation manners, in another possible implementation manner, the width of the frame is greater than the height.

[0013] Combined with the above possible implementation manners, in another possible implementation manner, the frame fits against the second end of the face mask in the width direction.

[0014] Combined with the above possible implementation manners, in another possible implementation manner, the connection between the face mask and the main body is detachable.

[0015] Combined with the above possible implementation manners, in another possible implementation manner, a first through hole is provided at the second end of the face mask; the main body is provided with a second through hole extending in the thickness direction; one side of the atomization sheet assembly communicates with the medicine cup, and the other side of the atomization sheet assembly is the mist outlet; wherein, the mist outlet, the first through hole and the second through hole are in communication.

[0016] According to the integrated atomizer provided by the present disclosure, the main body is directly fixed to the second end of the face mask, and the atomization assembly is directly fixed to the main body, so that the main body with a larger volume and mass is closer to the face mask, and the integration degree is high; and the main body has a larger volume and can have a larger surface, increasing the freedom degree of the connection form between it and the face mask and / or the atomization assembly. The components in the main body can also be more freely arranged. The material of the face mask is generally soft rubber, and it is not convenient and stable to directly install other components on the face mask, while the main body is a structure with a certain strength. Fixing other components to the main body and then fixing the main body to the face mask makes the assembly simpler and more stable. Description of the Drawings

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the drawings required to be used in the embodiments of the present disclosure will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present disclosure. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 Schematic diagram of an integrated atomizer provided according to an embodiment of the present disclosure.

[0019] Figure 2 is Figure 1 an exploded view of the integrated atomizer shown in

[0020] Figure 3 View of the interior of the mask of the integrated atomizer shown in Figure 1 .

[0021] Figure 4 Is Figure 1 The axonometric view of the mask of the integrated atomizer shown in

[0022] Figure 5 Is Figure 4 The top view of the mask shown in

[0023] Figure 6 Is Figure 1 The exploded view of the main body in the integrated atomizer shown in

[0024] Figure 7 Is Figure 6 The structural schematic diagram of another view of the main body after omitting the front shell in

[0025] Figure 8 Is Figure 1 The axonometric view of the side of the mist outlet of the atomization component in the integrated atomizer shown in

[0026] Figure 9 Is Figure 6 The structural schematic diagram of another direction of the front shell in

[0027] Figure 10 Is the cross-sectional view of the integrated atomizer after omitting the atomization component.

[0028] Explanation of reference numerals:

[0029] 100 - Main body.

[0030] 110 - Frame, 110a - Rear shell, 110b - Front shell, 111 - First flank, 112 - Second flank, 113a - First end face, 113b - Second end face, 114 - Accommodating space, 115 - Enclosing plate, 116 - Depressed part, 117 - Second through hole, 118 - Magnet, 119 - Contact; W - Window.

[0031] 120 - Electrical component, 121 - Battery, 122 - Control device.

[0032] 200 - Mask, 210 - First end, 220 - Second end, 221 - First side part, 222 - Second side part, 223 - Middle part, 224 - First through hole, 225 - First mounting hole, 226 - Second mounting hole; 230 - Chamber; 240 - Inner plate.

[0033] 300 - Atomization component, 323 - Mist outlet.

[0034] 400 - Lacing.

[0035] 10 - First positioning post, 20 - Second positioning post. Detailed implementation mode

[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present disclosure clearer, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present disclosure. Apparently, the described embodiments are some, but not all, of the embodiments of the present disclosure. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present disclosure without making creative efforts fall within the scope of protection of the present disclosure.

[0037] The features and exemplary embodiments of various aspects of the present disclosure will be described in detail below. In the following detailed description, many specific details are set forth in order to provide a comprehensive understanding of the present disclosure. However, it will be apparent to those of ordinary skill in the art that the present disclosure may be practiced without some of these specific details. The description of the embodiments is only provided to better understand the present disclosure by showing examples of the present disclosure. The present disclosure is in no way limited to any specific structure and configuration set forth below, but covers any modifications, substitutions, and improvements of parts, components, and connection methods without departing from the spirit of the present disclosure. Well-known structures and technologies are not shown in the drawings and the following description to avoid unnecessarily obscuring the present disclosure.

[0038] In addition, the described features, structures, or characteristics may be combined in any suitable manner in one or more embodiments. In the following description, many specific details are provided to give a full understanding of the embodiments of the present disclosure.

[0039] The integrated atomizer provided by the present disclosure includes a face mask, a main body, and an atomization component. The face mask includes a first end and a second end facing opposite directions. The first end is for contacting the user's face, and the second end and the entity between the second end and the first end define a chamber for accommodating the medicinal mist; the main body includes devices for providing power and / or control signals; the atomization component includes a medicine cup and an atomization sheet assembly disposed at the bottom of the medicine cup; wherein, the main body is fixed to the second end of the face mask, and the atomization component is fixed to the main body. The main body and the face mask may be detachably fixedly connected or non-detachably fixedly connected. The main body of the atomizer provided by the present disclosure is directly fixed to the face mask, and the atomization component is directly fixed to the main body, so that the main body with a larger volume and mass is closer to the face mask, and the integration degree is high; and the main body has a larger volume and is suitable for being made into a shape with a larger surface, which can increase the freedom of the connection form between it and the face mask and / or the atomization component.

[0040] Refer to Figures 1 to 7 。 Figure 1 It is a schematic diagram of an integrated atomizer provided according to an embodiment of the present disclosure.Figure 2 An Figure 1 exploded view of the integrated atomizer shown in Figure 3 An Figure 1 internal view of the mask 200 of the integrated atomizer shown in Figure 4 An Figure 1 isometric view of the mask 200 of the integrated atomizer shown in Figure 5 An Figure 4 top view of the mask 200 shown in Figure 6 An Figure 1 exploded view of the main body 100 in the integrated atomizer shown in Figure 7 An Figure 6 structural schematic diagram of another perspective of the main body 100 with the front shell 110b omitted in

[0041] Specifically, the integrated atomizer includes a main body 100, a mask 200, an atomization assembly 300, and a lacing 400. The main body 100, the mask 200, and the atomization assembly 300 are integrated into one body, and both ends of the lacing 400 are connected to the above-mentioned body and can hold the body on the user's face. In some embodiments, the atomization assembly 300 includes a medicine cup and an atomization sheet assembly. The medicine cup is used to hold the liquid medicine, and the atomization sheet assembly is used to receive and atomize the liquid medicine flowing out of the medicine cup, so that the atomized liquid medicine diffuses into the inner cavity 230 of the mask 200. The main body 100 includes a frame 110 and necessary electrical components 120 accommodated therein. In this embodiment, the frame 110 is in the form of a shell formed by enclosing a thin sheet structure. The inside of the shell is a chamber where components can be installed. The shell has a relatively large width and a relatively small thickness. The two outer surfaces in the thickness direction of the shell are a first end face 113a facing the mask 200 and a second end face 113b facing away from the mask 200. In this application, the "width direction" refers to the left and right direction of the user with reference to the perspective of the user wearing the atomizer. Similarly, the up and down direction of the user is the height direction, and the front and back direction of the user is the thickness direction.

[0042] Figure 1The orientation of the integrated atomizer shown is the same as the orientation when the atomizer is worn on the user's face. From a top-down perspective, the frame 110 is generally V-shaped as a whole, and it includes a first wing 111 and a second wing 112 that are connected to each other at an obtuse angle (such as 115 degrees). Both the first wing 111 and the second wing 112 are in the shape of flat rectangular boxes. The open side of the V-shaped structure of the frame 110 is used to connect with the face mask 200. The frame 110 includes a V-shaped front shell 110b and a V-shaped rear shell 110a. Specifically, the edges of the front shell 110b and the rear shell 110a are each surrounded by a flange that protrudes in the normal direction of the main plane of the shell. The front shell 110b and the rear shell 110a are connected and fastened through the flanges to form the V-shaped frame 110 as a whole. Among them, the rear shell 110a is closer to the user's face than the front shell 110b (from the user's perspective, the front shell 110b is in front of the rear shell 110a). One side of the inner surface of the rear shell 110a (the side facing the front shell 110b) is connected to the front shell 110b, and the outer surface side (the side facing the face mask 200) forms the first end face 113a of the frame 110 for connecting with the face mask 200.

[0043] A flat accommodation space 114 is formed inside the frame 110. By "flat" here, it means that from the user's perspective direction, the dimension of the accommodation space 114 in the front-rear direction is smaller than the dimensions in the up-down direction and the left-right direction. This setting makes the center of gravity of the frame 110 close to the user's face.

[0044] Specifically, the space of the accommodation space 114 on the side of the first wing 111 is semi-open, and it is provided with a recess 116. More specifically, in the part of the rear shell 110a corresponding to the first wing 111, a rounded rectangular enclosing plate 115 is arranged inside; while in the part of the front shell 110b corresponding to the first wing 111, a window W is arranged; the window W and the enclosing plate 115 together form the recess 116 on the first wing 111. A second through hole 117 and a magnet 118 are arranged at the bottom of the recess 116. Contacts 119 are arranged on the side wall of the recess 116. The space of the accommodation space 114 on the side of the second wing 112 is a closed space.

[0045] The electrical component 120 is installed inside the second wing 112 of the frame 110. The electrical component 120 includes a battery 121 and a control device 122, and the two are arranged in the width direction of the second wing 112.

[0046] The atomization component 300 is detachably mounted on the main body 100. Specifically, the atomization component 300 is mounted within the recessed portion 116 of the frame 110. The atomization component 300 has a flat shape. When mounted within the recessed portion 116, it is parallel to the first side wing 111. Most of the structure of the atomization component 300 is located within the accommodation space 114 of the frame 110 (within the semi-open recessed portion 116), and a small part of the structure protrudes from the outer surface of the front shell 110b. The mist outlet 323 of the atomization component 300 communicates with the second through hole 117 at the bottom of the recessed portion 116.

[0047] Reference Figure 8 , Figure 8 is Figure 1 an isometric view of the side of the mist outlet of the atomization component in the integrated atomizer shown in. The atomization component 300 is also provided with contacts (not shown in the figure). When the atomization component 300 is mounted to the frame 110, the contacts of the atomization component 300 will be electrically connected to the contacts 119 provided in the recessed portion 116, thereby conducting control signals and / or electricity. The atomization component 300 is also provided with a ferromagnetic structure for forming a magnetic connection with the magnet 118 at the bottom of the recessed portion 116, so that the atomization component 300 is held in the recessed portion 116 and is convenient to be taken out from the recessed portion 116.

[0048] The mask 200 is used to cover the user's mouth and nose, and the chamber 230 inside it can keep the atomized liquid medicine mist around the user's mouth and nose. As Figures 3 to 5 shown, the first end 210 of the mask 200 is used to contact the user's face, and the second end 220 is used to connect to the main body 100. The second end 220 is a mounting end face, and this end face has a relatively large width (the width is greater than the height), so it has a relatively large surface area for the main body to adhere to. The second end 220 is provided with a rigid end plate to facilitate connection to the frame 110. Specifically, the outer side surface of the second end 220 includes a first side portion 221, a second side portion 222, and a middle portion 223. The first side portion 221 and the second side portion 222 are distributed on both sides of the middle portion 223, forming a convex curved surface relative to the user's face. In this embodiment, the first side portion 221 and the second side portion 222 form a V-shaped curved surface. The middle portion 223 can be regarded as the junction of the first side portion 221 and the second side portion 222. The middle portion 223 protrudes more forward relative to the first side portion 221 and the second side portion 222. In other words, the first side portion 221 and the second side portion 222 are closer to the user's face. The outer surface of the second end 220 of the mask 200 extends to both sides in its width direction, so it has a relatively large surface area, which is convenient for attaching other structures / parts. The first side portion 221 is also provided with a first through hole 224, which is used to cooperate with the mist outlet 323 of the atomization component 300, so that the mist generated by the atomization component 300 can reach the inner cavity 230 of the mask 200.

[0049] The second end 220 of the face mask 200 has a shape adapted to the first end face 113a of the frame 110. When the face mask 200 is connected to the frame 110, the frame fits against the second end 220 of the face mask 200 in the entire width direction. When the face mask 200 is connected to the main unit 100, the frame 110, the atomization assembly 300 and the electrical assembly 120 inside it are respectively arranged in contact with the first side portion 221 and the second side portion 222 of the face mask 200 (only separated by the wall plate of the rear case 110a in the middle). In this way, both the electrical assembly 120 and the atomization assembly 300 can be close to the face mask 200, and most of the structure of the frame 110 is also close to the face mask 200, so that the centers of gravity of the main unit 100 and the atomization assembly 300 can be closer to the face mask 200. The closer the centers of gravity of the main unit 100 and the atomization assembly 300 are to the face mask 200, the smaller the downward moment generated by the gravity they receive, and the smaller the force required to hold the atomizer against the user's face.

[0050] In some alternative embodiments, the frame 110 may not be provided. The atomization assembly 300 and the electrical assembly 120 can be directly connected to the second end 220 of the face mask 200. In some other alternative embodiments, the atomization assembly 300 and the electrical assembly 120 can be directly connected to the second end 220 of the face mask 200. The frame 110 only includes the front case 110b, and the front case 110b is used to cover the atomization assembly 300 and the electrical assembly 120.

[0051] In some alternative embodiments, the surface of the atomization assembly 300 is flush with the outer surface of the frame 110. In some other alternative embodiments, the atomization assembly 300 can be fully installed inside the frame 110 in a detachable or non-detachable manner (the front case 110b of the frame 110 does not need to be provided with a window W), and only the liquid filling port needs to be kept in communication with the outside.

[0052] In some alternative implementations, the surface of the second end can also be other convex curved surfaces, such as a curved surface that is entirely arc-shaped, that is, the first side portion 221 and the second side portion 222 themselves have a certain curvature and the transitional connection between the two is smoother, rather than forming a corner-shaped middle portion 223.

[0053] In some alternative embodiments, the angle between the first side portion 221 and the second side portion 222 of the second end 220 in the face mask 200 can also be greater than or less than 115 degrees, such as 110 degrees, 120 degrees, 130 degrees or 150 degrees, as long as it is between 90 degrees and 150 degrees.

[0054] In addition, the inventors also noticed the following problem: The atomizing component in the atomizer needs to be connected to the medicine cup to receive the liquid medicine and also needs to deliver the medicine mist to the inside of the face mask. Therefore, the atomizing component usually has to be provided with at least two interfaces, one interface connected to the medicine cup and the other interface connected to the face mask. If we want to further improve the integration of the atomizer, we usually consider reusing the existing interfaces. For example, the interface for the atomizing component to output the medicine mist is not only a fluid passage but also made into a physical interface to serve as a mechanical connection. For example, this interface is usually set as a tubular structure. The inside of the tube is used to output the medicine mist, and the outer circumferential surface of the tube is used to connect to the face mask. In this way, both the delivery of the medicine mist and the physical connection integration between the atomizing component and the face mask are achieved. The drawback of this connection method is that the tubular structure usually has a small diameter and / or length, and the connection position / area between it and the face mask is limited. Usually, for stability, this connection is set as a non-detachable fixed connection. Since the face mask is non-detachable, when cleaning the face mask, attention needs to be paid to preventing the cleaning liquid from spreading to areas outside the face mask because there are components such as circuit boards, electrical connection contacts, batteries, or power interfaces that need to be waterproof in other areas.

[0055] The present disclosure also provides an integrated atomizer with a detachable face mask, in which the main body and the face mask are detachably connected. Devices for providing power and / or control signals are provided inside the main body. The face mask includes a first end and a second end facing opposite directions. The first end is used to contact the user's face, and the second end is used to connect to the main body. The face mask is detachably arranged on the main body through the second end. The face mask and the main body are connected to each other through a physical structure, and the atomizing component is fixed to the main body. Only a connection is required between the mist outlet of the atomizing component and the face mask without a physical connection. Without the limitation of the physical connection between the face mask and the atomizing component through the mist outlet, there can be a more flexible connection method between the face mask and the main body. Therefore, a larger connection area or more connection structures can be set to facilitate the implementation of a detachable connection structure. Thus, the face mask can be firmly connected to other structures and can also be easily removed for thorough cleaning or replacement. The atomizing component can also be set in a detachable form, and the connection form between the atomizing component and the main body is also more flexible.

[0056] Further referring to Figure 9 and Figure 10 。 Figure 9 For Figure 6 the structural schematic diagram of the front shell in another direction in Figure 10A cross-sectional view of the integrated atomizer after omitting the atomization component 300, wherein the host 100 and the mask 200 are in the position relationship when they are just separated, and the cross-section passes through the center lines of the first positioning post 10 and the second positioning post 20. The mask 200 and the host 100 are detachably connected by a plurality of concave-convex fitting structures, and the plurality of concave-convex fitting structures at least include a first concave-convex fitting structure and a second concave-convex fitting structure, and the fitting directions of the first concave-convex fitting structure and the second concave-convex fitting structure are not parallel. When the fitting directions of the first concave-convex fitting structure and the second concave-convex fitting structure are not parallel, the cooperation between the concave structure and the convex structure does not have to be a tight fit to achieve a stable connection between the mask and the host. Because when the mask and the host are separated, during the process of the convex structure being pulled out from the concave structure, the scanning envelope surface of the outer contour of the convex structure will interfere with the inner surface of the concave structure, which is equivalent to the inner surface of the concave structure forming a limit for the convex structure. In this way, not only a stable connection between the mask and the host is achieved, but also there is no need for very precise dimensional fit and / or geometric tolerance between the concave-convex fitting structures, which is beneficial to improving the error tolerance rate and reducing the processing cost.

[0057] Specifically, the second end 220 of the mask 200 is provided with a first structure and a second structure for connecting to the frame 110. The first structure is a first mounting hole 225, and the second structure is a second mounting hole 226. The overall shape of the outer surface of the second end 220 is a V-shaped bent surface, which extends in the width direction as a whole, and specifically includes a first side portion 221 and a second side portion 222 distributed on both sides in the width direction. The first mounting hole 225 is provided in the first side portion 222, and the second mounting hole 226 is provided in the second side portion 222. The first side portion 221 and the second side portion 222 are each substantially planar, so their normal directions are also non-parallel. The axes of the first mounting hole 225 and the second mounting hole 226 are both along the normal direction.

[0058] In the frame 110, the surface of the first end face 113a is provided with a third structure and a fourth structure. The third structure is a first positioning post 10, and the fourth structure is a second positioning post 20. The first positioning post 10 and the second positioning post 20 are respectively distributed on the parts of the first end face 113a corresponding to the first wing 111 and the second wing 112. The first wing 111 and the second wing 112 are neither coplanar nor parallel, but have a certain included angle, so the first positioning post 10 and the second positioning post 20 also have a non-parallel positional relationship. The first mounting hole 225 is provided in the first side portion 221 of the second end 220, and the second mounting hole 226 is provided in the second side portion 222 of the second end 220.

[0059] When the frame 110 is connected to the second end 220, the first positioning post 10 is inserted into the first mounting hole 225 of the face mask 200 to form a first concave-convex fitting structure; the second positioning post 20 is inserted into the second mounting hole 226 of the face mask 200 to form a second concave-convex fitting structure. Moreover, the first mounting hole 225 and the second mounting hole 226 are through holes, and the tops of the first positioning post 10 and the second positioning post 20 will extend into the interior of the face mask 200. In this way, when it is necessary to separate the main body 100 and the face mask 200, the user can push the tops of the first positioning post 10 and the second positioning post 20 successively from the interior of the face mask 200 to separate the fitting structure. The second end 220 is a rigid end plate, and compared with the soft first end 210, it is easier to set a connection structure that needs to bear a certain acting force. Specifically, the face mask 200 is a double-layer structure. The side of the second end 220 located inside the face mask 200 is a rigid inner plate 240, and the outside is a soft rubber of the same material as the first end 210. In this way, the second end 220 as a whole has a certain rigidity and is suitable as an attachment basis for other structures. The soft layer can be integrally formed with other parts of the face mask.

[0060] In addition, when the main body 100 and the face mask 200 are separated, they move away from each other roughly in the front-back direction with respect to the user, and the direction in which they move away from each other is not parallel to the axial direction of the first positioning post 10 / second positioning post 20. In this way, interference will be formed between the circumferential surface of the positioning post in the fitting structure and the side wall of the mounting hole, and this interference will prevent their unexpected separation because a sufficiently large force or a suitable separation operation is required to separate them. In this embodiment, the second end 220 of the face mask 200 as a whole has a relatively large width. Even though the second end 220 is a rigid plate structure, it will have a certain elasticity. Therefore, when the user tries to separate them with force, the second end 220 will undergo a certain amount of opening deformation so that the first positioning post 10 and the second positioning post 20 can be disengaged from the mounting holes. In addition, the first positioning post 10 and the second positioning post 20 are distributed on two side wings in the width direction of the frame 110, and the distance between them is relatively large. When only the first positioning post 10 is pressed first, the whole main body 100 will rotate relative to the face mask 200 with the second positioning post 20 as the base point, and the first positioning post 10 can be easily disengaged from the first mounting hole 225; after the first positioning post 10 is separated from the first mounting hole 225, then press the second positioning post 20 to make it disengage from the second mounting hole 226. Through the above-mentioned suitable separation operation, the force required for the separation process is relatively small.

[0061] In addition, the lacing 400 is installed at both ends of the rack 110 in the main unit 100, and the mask 200 is not directly connected to the lacing 400. When replacing the mask 200, there is no need to replace the lacing 400. In this way, when it is necessary to discard the mask 200 and replace it with a new one, fewer structures need to be discarded. Additionally, the lacing 400 can directly bind the main unit 100. When the lacing 400 is installed on the mask 200, since the mask 200 is relatively soft and the mass of the main unit 100 is relatively large, the mask 200 may tend to sag.

[0062] Moreover, the entire atomization assembly 300 can be conveniently removed from the main unit 100, making the operations of adding liquid medicine and cleaning the medicine cup more convenient. If the atomization assembly 300 is damaged, only the new atomization assembly 300 needs to be replaced, and there is no need to scrap the entire atomizer.

[0063] In some alternative embodiments, a convex structure, such as a positioning post, can also be provided on the second end of the mask 200; correspondingly, a concave structure, such as a mounting hole, is provided on the main unit 100. In some other alternative embodiments, more concave-convex fitting structures can be further provided, such as three or four. Among the multiple concave-convex fitting structures, at least two of the concave-convex fitting structures should have non-parallel fitting directions.

[0064] In some alternative embodiments, the outer surface of the second end 220 can also be arc-shaped (when viewed from above), and the surface of the main unit 100 that engages with the second end 220 also has a matching shape. Multiple mounting holes are provided on the outer surface of the second end 220. In the width direction, any two parts of the second end 220 are not parallel, so the depression directions of any two mounting holes provided at any two parts in the width direction are not parallel. Correspondingly, multiple positioning posts are provided on the surface of the main unit 100 that engages with the second end 220, and the multiple positioning posts protrude (radially), and the positioning posts are in a non-parallel relationship.

[0065] As described above, the above are only the specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of various equivalent modifications or replacements, and these modifications or replacements should all be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. An integrated atomizer, characterized in that: include A mask, comprising a first end and a second end facing opposite directions, wherein the first end is used to contact the user's face, and the second end and a body between the second end and the first end define a chamber for containing a medicine mist; A host, the host comprising a device for providing power and / or control signals; as well as An atomization assembly, comprising a medicine cup and an atomization sheet assembly disposed at the bottom of the medicine cup; Wherein, the host is fixed to the second end of the mask, and the atomization component is fixed to the host.

2. The integrated atomizer according to claim 1, characterized in that: The host also includes a frame, which is used to install the device for providing power and / or control signals; wherein the host is connected to the second end of the mask through the frame.

3. The integrated atomizer according to claim 2, characterized in that: The frame includes a front shell and a rear shell, the rear shell is connected to the mask, the front shell is buckled with the rear shell, and the device for providing power and / or control signals is fixed between the front shell and the rear shell.

4. The integrated atomizer according to claim 2, characterized in that: The frame has a first end surface facing the mask and a second end surface facing away from the mask, and the second end of the mask is connected to the first end surface of the frame.

5. The integrated atomizer according to claim 1, characterized in that: The atomization assembly is connected to the main unit via the medicine cup.

6. The integrated atomizer according to any one of claims 1 to 5, characterized in that: The atomizing assembly is detachably arranged on the main unit.

7. The integrated atomizer according to claim 6, characterized in that: A recessed portion is arranged on the outer surface of the main unit, and the atomizing assembly is embedded in the recessed portion.

8. The integrated atomizer according to claim 2, characterized in that: The width of the frame is greater than its height.

9. The integrated atomizer according to claim 2, characterized in that: The frame fits the second end of the mask in the width direction.

10. The integrated atomizer according to claim 1, characterized in that: The mask and the host are detachably connected.

11. The integrated atomizer according to claim 1, characterized in that: The second end of the mask is provided with a first through hole; the main unit is provided with a second through hole extending in the thickness direction; one side of the atomizer sheet assembly is connected to the medicine cup, and the other side of the atomizer sheet assembly is a mist outlet; wherein the mist outlet, the first through hole and the second through hole are connected.

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