Head-mounted automatic eye moistening atomizer
By designing the jet holes of the electric atomizer in the eye moisturizing atomizer to face backward and combining them with a surrounding structure, the problem of the mist not being able to directly act on the eyes is solved, achieving efficient atomization and a good user experience, making it suitable for a wide range of people.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN SHUSEN IND CO LTD
- Filing Date
- 2025-04-21
- Publication Date
- 2026-05-08
AI Technical Summary
The design of the spray nozzles on the atomizing plate of existing eye moisturizing nebulizers results in low mist utilization efficiency, and the mist cannot directly act on the eyes, leading to a poor user experience.
The electric atomizer is designed with the nozzles facing rearward, combined with a surrounding structure to ensure that the mist acts directly on the eyes, and the atomization chamber is omitted to improve the mist coverage and utilization efficiency.
It improves atomization efficiency and user experience, is suitable for a wider range of people, and also has a massage function, making it more versatile.
Smart Images

Figure CN224206974U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of eye care devices, and more particularly to an eye moisturizing atomizer that automatically atomizes mist and sprays it directly onto the eyes when worn. Background Technology
[0002] An eye moisturizing atomizer is a device that uses an atomizing device to refine liquid into a mist, which moisturizes and steams the user's eyes, thereby alleviating the symptoms of dry eyes and providing moisturizing and care effects to the eyes.
[0003] However, in existing eye moisturizing nebulizers, the nozzles of the atomizing plate inside the atomizing chamber are either arranged vertically downwards or horizontally to the left or right. This means that the atomized particles (or mist) need to fill the entire atomizing chamber before they can act on the user's eyes. In addition, some are open-type atomizing chambers without a clearly filled chamber, so the atomized mist immediately disperses, and only a small portion of the mist reaches the eyes. All of these have the drawbacks of significant waste, low efficiency in the use of atomized mist, and poor user experience.
[0004] Therefore, there is a need for a head-mounted automatic eye moisturizing atomizer that can improve atomization efficiency, allow the mist to directly reach the area around the eyes so that people can quickly feel the mist and have a good experience. Utility Model Content
[0005] The purpose of this invention is to provide a head-mounted automatic eye moisturizing atomizer that is highly efficient and provides a good user experience.
[0006] To achieve the above objectives, the present invention provides a head-mounted automatic eye-moistening nebulizer, comprising a nebulizer body. The nebulizer body has a liquid storage container, an electric nebulizer for converting the liquid supplied by the storage container into mist particles, a rear surface facing the user, and a front surface facing away from the user. The spray nozzle of the electric nebulizer is arranged rearward so that the mist particles are directly sprayed onto the user's eyes.
[0007] Compared to existing technologies, the electric atomizer's nozzles are arranged rearwards so that the mist particles are directly sprayed onto the user's eyes. Therefore, the mist particles sprayed from the nozzles of the electric atomizer directly act on the user's eyes, eliminating the need for the atomization chamber to be filled with mist before moisturizing the eyes, as is the case with existing eye moisturizing atomizers. This results in higher efficiency and a better user experience. Furthermore, because the mist particles sprayed from the nozzles act directly on the user's eyes, the atomization chamber in existing eye moisturizing atomizers can be omitted.
[0008] Preferably, the atomizer body also has a surrounding structure for facing the user's eye socket, the rear end face of the surrounding structure is offset rearward relative to the spray hole, and the spray hole is also arranged opposite to the space enclosed by the surrounding structure.
[0009] Preferably, the injection hole is inclined opposite to the space enclosed by the surrounding structure in the direction from front to back of the atomizer body.
[0010] Preferably, the surrounding structure is arranged opposite each other on the left and right with the liquid storage container as the center; the electric atomizers are respectively mounted on the left and right sides of the liquid storage container, and the spray holes of the electric atomizers on the same side are inclined opposite to the space enclosed by the surrounding structure.
[0011] Preferably, the electric atomizer on the left and the electric atomizer on the right are arranged symmetrically, and the angle between the center line of the spray hole and the plane of symmetry is between 40 degrees and 50 degrees.
[0012] Preferably, the surrounding structure is arranged with its ends open, and the open portion of the surrounding structure on the left side is arranged opposite to the open portion of the surrounding structure on the right side.
[0013] Preferably, the surrounding structure is a protrusion that protrudes rearward from the rear side surface.
[0014] Preferably, the surrounding structure comprises a plurality of protruding units that are spaced apart from each other and arranged in a surrounding manner.
[0015] Preferably, the raised unit is a massage head.
[0016] Preferably, both the front and rear surfaces are arc-shaped curved surfaces that bulge forward in the middle.
[0017] Preferably, the electric atomizer is an atomizing plate.
[0018] Preferably, the nebulizer body also has an insert cavity and a clearance cavity extending rearward through the rear surface. The clearance cavity extends to the left and right of the nebulizer body to a position surrounded by the surrounding structure. The insert cavity communicates with the clearance cavity from above. The liquid storage container is fitted into the insert cavity. The rear side of the liquid storage container is flush with the rear surface. The electric nebulizer is located in the clearance cavity. Attached Figure Description
[0019] Figure 1 This is a three-dimensional view of the head-mounted automatic eye moisturizing atomizer of this utility model.
[0020] Figure 2 yes Figure 1The diagram shown is a plan view of the head-mounted automatic eye moisturizing nebulizer viewed in the direction indicated by the arrow next to it.
[0021] Figure 3 yes Figure 2 The diagram shown is a plan view of the head-mounted automatic eye moisturizing nebulizer viewed in the opposite direction of arrow B.
[0022] Figure 4 yes Figure 1 The image shown is a stereoscopic view of the head-mounted automatic eye moisturizing nebulizer from another angle.
[0023] Figure 5 yes Figure 1 The diagram shown is an exploded 3D view of the head-mounted automatic eye moisturizing nebulizer.
[0024] Figure 6 This is a perspective view of the liquid storage container and electric nebulizer assembled together in the head-mounted automatic eye moisturizing nebulizer of this utility model.
[0025] Figure 7 yes Figure 6 A floor plan viewed in the direction indicated by arrow C.
[0026] Figure 8 It is along Figure 7 Internal view of the section cut along the DD line. Detailed Implementation
[0027] To explain the technical content and structural features of this utility model in detail, the following description is provided in conjunction with the embodiments and accompanying drawings.
[0028] Please see Figure 1 As an example, the head-mounted automatic eye-moistening atomizer 100 of this invention is worn on the head during use to moisturize the user's eyes (visible area) during operation. Figure 3 (As shown in the dashed box) Apply eye cream.
[0029] Combined Figure 2 and Figure 3 The present invention relates to a head-mounted automatic eye moisturizing nebulizer 100, comprising a nebulizer body 10, wherein the nebulizer body 10 has a liquid storage container 20, an electric nebulizer 30 for converting the liquid provided by the liquid storage container 20 into mist particles, a rear surface 40 facing the user, and a front surface 50 facing away from the user; optionally, in Figure 2 In this example, both the front surface 50 and the rear surface 40 are arc-shaped curved surfaces that bulge forward in the middle, ensuring that the head-mounted automatic eye moisturizing atomizer 100 fits the user's head more closely when worn. Obviously, depending on actual needs, the front surface 50 and the rear surface 40 can also be other shapes known in the art, therefore, they are not considered... Figure 2 The above is the limit.
[0030] At the same time, the spray nozzle 31 of the electric atomizer 30 is designed to spray mist particles directly into the user's eyes (visible). Figure 3 The rearward arrangement of the nozzles (as shown in the dashed box) ensures that the mist particles sprayed by the nozzles 31 directly act on the user's eyes, eliminating the need for the atomizing chamber to fill with mist before eye moisturizing, unlike existing eye moisturizing nebulizers. This results in higher efficiency and a better user experience. Alternatively, the nozzles can be positioned at... Figure 8 In this example, the electric atomizer 30 is an atomizing plate, which on the one hand can convert the liquid provided by the liquid storage container 20 into micron-sized mist particles, and on the other hand reduces the space occupied by the liquid storage container 20. Obviously, depending on actual needs, the electric atomizer 30 can also be other atomizers well known in the art, so it is not specified that... Figure 8 As shown, this is a limited description. Specifically, at... Figures 1 to 5 As an example, the atomizer body 10 also has a surrounding structure 60 for facing the user's eye socket. The rear end face 61 of the surrounding structure 60 is offset backward relative to the spray hole 31. The spray hole 31 of the electric atomizer 30 is also arranged opposite to the space 62 enclosed by the surrounding structure 60. Therefore, by means of the ring structure 60, the mist directly acting on the user's eyes can be effectively prevented from escaping, thereby extending the mist utilization efficiency and further improving the user's eye moisturizing effect. In addition, by means of the rear end face 61 of the surrounding structure 60 being offset backward relative to the spray hole 31, when the user's eye socket is in contact with the rear end face 61 of the surrounding structure 60, the user's eyes are kept at a certain distance from the spray hole 31, thereby making the coverage area of the mist sprayed by the spray hole 31 larger. Therefore, the head-mounted automatic eye moisturizing atomizer 100 of this utility model can be compatible with a wider range of people. Therefore, the head-mounted automatic eye moisturizing atomizer 100 of this utility model has better versatility. Furthermore, it should be noted that the aforementioned inner surface 40 facing the user and the rear surface 50 facing away from the user are provided that the head-mounted automatic eye moisturizing atomizer 100 of this utility model is correctly worn on the head. More specifically, as follows:
[0031] like Figure 1 , Figure 3 and Figure 4 As shown, as an example, the spray nozzle 31 of the electric atomizer 30 is located in the direction from front to back of the atomizer body 10 (see Figure 1). Figure 2 The space 62 enclosed by the surrounding structure 60 (indicated by the middle arrow B) is obliquely opposite to it (i.e., arranged diagonally), as shown in the diagram. Figure 1 , Figure 3 and Figure 4As shown, this design allows the mist sprayed from the nozzle 31 of the electric atomizer 30 to cover a wider area, thus enabling the head-mounted automatic eye moisturizing atomizer 100 of this invention to be compatible with a larger range of people; combined with the design of "maintaining a certain distance between the rear end face 61 of the surrounding structure 60 and the nozzle 31", the head-mounted automatic eye moisturizing atomizer 100 of this invention can cover up to 90% or more of the population. Furthermore, regarding... Figures 1 to 4 In this example, the surrounding structure 60 is arranged opposite each other on the left and right sides with the liquid storage container 20 as the center. Electric atomizers 30 are respectively mounted on the left and right sides of the liquid storage container 20. The spray nozzle 31 of the electric atomizer 30 on the left side is obliquely opposite to the space 62 enclosed by the surrounding structure 60 on the same side (i.e., obliquely arranged). The spray nozzle 31 of the electric atomizer 30 on the right side is also obliquely opposite to the space 62 enclosed by the surrounding structure 60 on the same side. See [the diagram for details]. Figure 3 As shown, the head-mounted automatic eye-moistening atomizer 100 of this utility model can simultaneously moisturize both eyes of the user, thus achieving higher efficiency and a better user experience. Furthermore, in Figure 1 , Figure 3 , Figure 4 and Figure 5 In this example, the surrounding structure 60 is arranged with its ends open. The open portion 63 of the left surrounding structure 60 is opposite to the open portion 63 of the right surrounding structure 60. This arrangement better avoids the user's nose bridge when the head-mounted automatic eye moisturizing atomizer 100 is correctly worn on the head, thereby ensuring a tighter fit between the rear end face 61 of the surrounding structure 60 and the user. Obviously, depending on actual needs, the surrounding structure 60 can also be made with its ends closed. When it is made with its ends closed, care must be taken to ensure that the surrounding structure 60 avoids the user's nose bridge. Therefore, it is not considered suitable for this configuration. Figure 1 , Figure 3 , Figure 4 and Figure 5 The above is for reference only. Specifically, in conjunction with... Figure 3 and Figures 6 to 8 As an example, the electric atomizer 30 on the left and the electric atomizer 30 on the right are arranged symmetrically. The angle α between the center line 311 of the spray hole 31 and the plane of symmetry P ranges from 35 degrees to 50 degrees. For example, the angle α is 35 degrees, 36 degrees, 37 degrees, 38 degrees, 39 degrees, 40 degrees, 41 degrees, 42 degrees, 43 degrees, 44 degrees, 45 degrees, 46 degrees, 47 degrees, 48 degrees, 49 degrees or 50 degrees. The preferred angle α is 44 degrees, 45 degrees or 46 degrees to ensure that the mist sprayed by the spray hole 31 of the electric atomizer 30 can cover the largest area.
[0032] like Figures 1 to 5As shown, as an example, the surrounding structure 60 is a protruding structure that extends rearward beyond the rear surface 40. This prevents the atomizer body 10 from being thickened at the position between the front surface 50 and the rear surface 40 to accommodate the rearward offset of the rear end face 61 of the surrounding structure 60 relative to the spray hole 31 of the electric atomizer 30. Therefore, the head-mounted automatic eye-moisturizing atomizer 100 of this invention is lighter and more portable. Specifically, further... Figures 1 to 5 In the example, the surrounding structure 60 on the same side includes seven spaced-apart raised units 60a arranged in a circular pattern. These raised units 60a can be selected as massage heads, so that the head-mounted automatic eye-moisturizing atomizer 100 of this invention also provides a massage function for the user's eyes. It should be noted that, although... Figure 1 and Figures 3 to 5 The diagram shows that the number of protruding units 60a in the surrounding structure 60 on the same side is seven. Obviously, depending on actual needs, it could also be four, five, six, eight, or more. This is adjusted according to actual requirements, therefore... Figure 1 and Figures 3 to 5 The above is a limited description; in addition, the raised unit 60a can be used for other functions besides being a friction head.
[0033] like Figure 1 , Figure 3 , Figure 4 and Figure 5 As shown, as an example, the atomizer body 10 also has an insert cavity 70 extending rearward through the rear surface 40 and a clearance cavity 80. The clearance cavity 80 also extends in the left and right directions of the atomizer body 10 to a position surrounded by the surrounding structure 60, as shown in the diagram. Figure 3 As shown, this ensures that the space 62 enclosed by the surrounding structure 60 overlaps with the clearance cavity 80 in the front-to-back direction. The mounting cavity 70 communicates with the clearance cavity 80 from above. The liquid storage container 20 is fitted into the mounting cavity 70, and the rear side 21 of the liquid storage container 20 is flush with the rear surface 40 to prevent unevenness between the rear side 21 of the liquid storage container 20 and the rear surface 40 from affecting the user experience of the head-mounted automatic eye moisturizing nebulizer 100 of this utility model; in addition, the electric nebulizer 30 is located in the clearance cavity 80, as shown in the figure. Figure 1 and Figure 4 As shown.
[0034] Compared to existing technologies, the spray nozzle 31 of the electric atomizer 30 is designed to directly spray mist particles into the user's eyes (visible). Figure 3As shown in the dashed box, the rearward arrangement of the nozzles on the electric atomizer 30 allows the mist particles (or vapor) sprayed by the nozzles 31 to act directly on the user's eyes, eliminating the need for the atomizing chamber to be filled with vapor before eye moisturizing, unlike existing eye moisturizing atomizers. This results in higher efficiency and a better user experience. Furthermore, because the mist particles sprayed by the nozzles 31 of the electric atomizer 30 act directly on the user's eyes, the atomizing chamber in existing eye moisturizing atomizers can be omitted.
[0035] It should be noted that arrow A in the attached diagram points from left to right on the nebulizer body 10, and arrow B points from front to back on the nebulizer body 10. Furthermore, the mist ejected from the nozzle 31 of the electric nebulizer 30, like the beam of a flashlight, gradually increases in diameter as it travels towards the user's eyes, ensuring complete coverage. Additionally, although the attached diagram shows the liquid reservoir 10 and the nebulizer body 10 as independent structures assembled together, it is clear that, depending on practical needs, the liquid reservoir 10 can also be formed as part of the nebulizer body 10, eliminating the assembly process.
[0036] The above-disclosed examples are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any equivalent variations made in accordance with the claims of the present utility model shall fall within the scope of the present utility model.
Claims
1. A head-mounted automatic eye-moistening nebulizer, comprising a nebulizer body, characterized in that, The atomizer body has a liquid storage container, an electric atomizer for converting the liquid provided by the liquid storage container into mist particles, a rear surface facing the user and a front surface facing away from the user, and the spray holes of the electric atomizer are arranged rearward so that the mist particles are sprayed directly onto the user's eyes.
2. The head-mounted automatic eye-moistening nebulizer according to claim 1, characterized in that, The atomizer body also has a surrounding structure for facing the user's eye socket. The rear end face of the surrounding structure is offset rearward relative to the spray hole, and the spray hole is also arranged opposite to the space enclosed by the surrounding structure.
3. The head-mounted automatic eye-moistening atomizer according to claim 2, characterized in that, The injection hole is inclined and opposite to the space enclosed by the surrounding structure in the direction from front to back of the atomizer body.
4. The head-mounted automatic eye-moistening nebulizer according to claim 3, characterized in that, The surrounding structure is arranged opposite each other on the left and right with the liquid storage container as the center; the electric atomizers are respectively mounted on the left and right sides of the liquid storage container, and the spray holes of the electric atomizers on the same side are inclined opposite to the space enclosed by the surrounding structure.
5. The head-mounted automatic eye-moistening atomizer according to claim 4, characterized in that, The electric atomizer on the left and the electric atomizer on the right are arranged symmetrically, and the angle between the center line of the spray hole and the plane of symmetry is between 35 degrees and 50 degrees.
6. The head-mounted automatic eye-moistening nebulizer according to claim 4, characterized in that, The surrounding structure is arranged with its ends open, and the open portion of the surrounding structure on the left side is arranged opposite to the open portion of the surrounding structure on the right side.
7. The head-mounted automatic eye-moistening nebulizer according to claim 2, characterized in that, The surrounding structure is a protruding structure that protrudes backward from the rear side surface.
8. The head-mounted automatic eye-moistening nebulizer according to claim 7, characterized in that, The surrounding structure includes multiple raised units that are spaced apart from each other and arranged in a circular pattern; the raised units are massage heads.
9. The head-mounted automatic eye-moistening nebulizer according to claim 1, characterized in that, Both the front and rear surfaces are arc-shaped curved surfaces that bulge forward in the middle; the electric atomizer is an atomizing plate.
10. The head-mounted automatic eye-moistening nebulizer according to claim 2, characterized in that, The atomizer body also has an insert cavity and a clearance cavity extending backward through the rear side surface. The clearance cavity extends to the left and right directions of the atomizer body to a position surrounded by the surrounding structure. The insert cavity communicates with the clearance cavity from above. The liquid storage container is fitted into the insert cavity. The rear side of the liquid storage container is flush with the rear side surface. The electric atomizer is located in the clearance cavity.