Perspective eye moistening atomizer
By setting a perspective channel on the eye atomizer, the problem that the equipment cannot see through is solved, the user can see the external environment during the atomization process, and prevent the atomized gas from corroding components, improving the convenience and life of the equipment.
Patent Information
- Application Number
- CN202422140383.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-31
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-31
AI Technical Summary
The existing eye-wetting atomization equipment cannot achieve perspective design, resulting in users not being able to see the external environment during the atomization process, causing anxiety, unable to perform daily operations, and electronic components are easily corroded by the atomized gas, affecting their service life.
A perspective-based emulsifying eye atomizer is designed. By setting up a perspective channel on the main body, which runs through the bottom plate and shell of the atomization chamber and is sealed with it, ensuring that the user can see the external environment while preventing the atomized gas from penetrating into the interior of the equipment to corrode the components.
During the atomization process, users can see the external environment, reduce anxiety, and be able to perform daily operations to ensure that electronic components are not corroded, extend the life of the equipment, and effectively improve the fumigation effect and user experience.
Smart Images

Figure CN223068679U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of eye care, in particular to a perspective eye moistening atomizer. Background Art
[0002] An eye moistening atomizer is a device worn on the eyes of a user, which continuously atomizes the liquid in a water tank through an atomizing device to form water vapor, so as to moisten the user's eyes. Recently, with the addition of traditional Chinese medicine to eye care, the liquid medicine is generally atomized by ultrasonic atomization, and then the atomized medicine mist is sprayed on the user's eyes to moisturize or moisten the eyes with the medicine mist.
[0003] At present, for the devices on the market that atomize the eyes, due to the compact internal structure and small internal space of the products, there is not enough space to make a perspective structure. Moreover, there are many electronic components inside the products, and the sealing problem cannot be solved during the perspective design. After the atomized gas penetrates, it will corrode the electronic components, resulting in equipment failure and shortened service life. Therefore, the existing devices for atomizing the eyes all cover the user's eyes to make them in the dark for atomization fumigation, and the user closes his eyes habitually for fumigation because he cannot see the external environment.
[0004] The existing non-perspective eye atomization devices cause the following problems when the user performs eye fumigation: First, there is a sense of anxiety due to the inability to see the external environment, and the user cannot perform daily life operations in the dark, such as answering calls, drinking water, etc., resulting in inconvenient use; Second, for eye fumigation, the fumigation effect can only be truly exerted when the eyes are open during the atomization process, and closing the eyes for fumigation cannot truly relieve the symptoms of dry eyes; Third, for the case where the user is a young child, when his eyes are naturally closed during the fumigation process, the parents cannot check in time and remind him to open his eyes, thus affecting the fumigation and physiotherapy effects.
[0005] Therefore, it is necessary to provide a perspective eye moistening atomizer to solve the above problems. Summary of the Utility Model
[0006] The purpose of the utility model is to provide a perspective eye moistening atomizer.
[0007] To achieve the above purpose, the technical solution of the utility model is: to provide a perspective eye moistening atomizer, including a main body and an atomization mechanism. The main body has an inner shell and an outer shell arranged oppositely. An atomization chamber is provided on the inner shell. A perspective channel is also provided on the main body. The perspective channel penetrates through the bottom plate of the atomization chamber and the outer shell, and the side wall of the perspective channel is hermetically connected to the bottom plate of the atomization chamber and the outer shell respectively. The atomization mechanism is detachably installed on the main body and is used to provide atomized gas into the atomization chamber.
[0008] Preferably, the perspective channel is surrounded by a cylindrical side wall, and the side wall is integrally formed with the bottom plate of the atomization chamber and / or the housing, or both ends of the side wall are hermetically connected to the bottom plate of the atomization chamber and the housing respectively.
[0009] Preferably, the main body further includes a perspective cover plate, which is hermetically covered at the entrance and / or the exit of the perspective channel.
[0010] Preferably, the perspective cover plate is integrally formed with the bottom plate of the atomization chamber and / or the housing, or the perspective cover plate is hermetically connected to the bottom plate of the atomization chamber and / or the housing.
[0011] Preferably, the atomization mechanism includes a liquid tank and an atomization sheet. The liquid tank is detachably installed on the main body. A liquid outlet hole is formed through the bottom of the liquid tank, and the atomization sheet is installed at the liquid outlet hole. When the liquid tank is installed on the main body, the liquid outlet hole communicates with the atomization chamber, and the atomized gas obtained by atomization through the atomization sheet is introduced into the atomization chamber.
[0012] Preferably, a heating plate is provided on one side wall of the atomization chamber, and the spraying direction of the atomization sheet intersects with the heating plate.
[0013] Preferably, the atomization sheet and the heating plate are provided on opposite side walls or adjacent side walls of the atomization chamber.
[0014] Preferably, the atomization sheet is inclinedly installed at the bottom of the liquid tank.
[0015] Preferably, an inclined atomization channel communicating with the liquid outlet hole is further provided at the bottom of the liquid tank, and the atomization sheet is inclinedly provided at any position of the atomization channel. When the liquid tank is installed on the main body, the atomization channel communicates with the atomization chamber.
[0016] Preferably, a base is detachably connected to the bottom of the liquid tank, and the atomization channel is formed through the base. The atomization sheet is clamped between the base and the bottom of the liquid tank.
[0017] Preferably, a receiving groove corresponding to the atomization sheet is recessed in the base and / or the bottom of the liquid tank. The atomization sheet is received in the receiving groove, and ribs are further provided between the atomization sheet and the base and / or between the atomization sheet and the bottom of the liquid tank.
[0018] Preferably, the perspective eye moistening atomizer further includes an eye massage mechanism, which includes a plurality of massage heads and vibrators installed in each of the massage heads. Each of the massage heads is arranged around the atomization chamber and protrudes from the inner shell.
[0019] Preferably, each of the massage heads includes a connecting part, a vibrating part and a massage part arranged in sequence. The vibrator is accommodated in the massage part, and at least the vibrating part is flexible and can elastically expand and contract or / and deflect relative to the connecting part.
[0020] Preferably, the eye massage mechanism further includes a bottom pad. Each of the massage heads is connected to one side of the bottom pad. The bottom pad is fixed in the main body and makes each of the massage heads protrude from the inner shell.
[0021] Preferably, the eye massage mechanism further includes a fixing plate. Each of the massage heads is connected to the fixing plate, and the fixing plate is fixed in the main body.
[0022] Compared with the prior art, since the perspective eye moistening atomizer of the present invention is provided with a perspective channel on its main body, the perspective channel penetrates through the bottom plate of the atomization chamber and the outer shell of the main body, and the side wall of the perspective channel is hermetically connected to both the bottom plate and the outer shell of the atomization chamber. Therefore, the following technical effects are achieved: First, during the process of using the eye moistening atomizer for eye fumigation by the user, the external environment can be seen through the perspective channel, thereby reducing the sense of anxiety; and daily life operations can still be carried out, for example, answering calls, drinking water, etc., which is very convenient to use; Second, during the process of eye fumigation, since the external environment can be seen, the eyes can always be kept open for fumigation, so as to fully exert the effect of fumigation, reach the expected set humidity, and truly relieve the symptoms of dry eyes; Third, for the situation where young children use the eye moistening atomizer for eye fumigation and physiotherapy, adults can check whether the young children open their eyes at any time through the perspective channel and timely remind the young children to open their eyes for fumigation to ensure the effect of fumigation and physiotherapy; Fourth, the side wall of the perspective channel is hermetically connected to both the bottom plate and the outer shell of the atomization chamber. Therefore, the atomized gas will not penetrate into the main body and corrode the electronic components, ensuring that the eye moistening atomizer has a long service life. Description of the Drawings
[0023] Figure 1 is a schematic structural diagram of the perspective eye moistening atomizer of the present invention.
[0024] Figure 2 is Figure 1 a schematic structural diagram of the removed wearing body.
[0025] Figure 3 is Figure 2 a cross-sectional view of
[0026] Figure 4 is Figure 2 exploded view of
[0027] Figure 5 is Figure 4 further exploded view of the main body in
[0028] Figure 6 is Figure 5 structural schematic diagram of the inner shell in another angle in
[0029] Figure 7 is Figure 4 cross-sectional view of the main body in
[0030] Figure 8 is the cross-sectional view of the main body in another embodiment of the present utility model.
[0031] Figure 9 is the cross-sectional view of the main body in yet another embodiment of the present utility model.
[0032] Figure 10 is Figure 4 exploded view of the liquid tank in
[0033] Figure 11 is Figure 10 structural schematic diagram in another angle
[0034] Figure 12 is Figure 4 cross-sectional view of the liquid tank in
[0035] Figure 13 is Figure 2 schematic diagram of the heating principle of the eye moisturizing atomizer in
[0036] Figure 14 is Figure 5 structural schematic diagram of the two eye massage mechanisms in
[0037] Figure 15 is Figure 14 exploded view of one eye massage mechanism in
[0038] Figure 16 is Figure 14 cross-sectional view of one eye massage mechanism in Detailed implementation manners
[0039] Embodiments of the present utility model will now be described with reference to the accompanying drawings, in which like reference numerals represent like elements. It should be noted that the orientation descriptions involved in the present utility model, such as the upper, lower, left, right, front, rear, etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. This is only for the convenience of describing the technical solutions of the present application or / 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. Therefore, it should not be construed as a limitation to the present application. The first, second, etc. described are only used to distinguish technical features and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence of the indicated technical features.
[0040] First, in combination with Figures 1-5 As shown, in the present utility model, the perspective eye moisturizing atomizer 1 includes a main body 100, an atomizing mechanism 200, and a control circuit board 400. Among them, the main body 100 has an inner shell 110 and an outer shell 120 arranged oppositely. An atomizing chamber 111 in the shape of an opening is provided on the inner shell 110, and the opening of the atomizing chamber 111 is used to cover the eyes of the user. A perspective channel 130 is also provided on the main body 100. The perspective channel 130 penetrates the bottom plate 111a of the atomizing chamber 111 and the outer shell 120, and the side wall 131 of the perspective channel 130 is hermetically connected to both the bottom plate 111a of the atomizing chamber 111 and the outer shell 120. The atomizing mechanism 200 is detachably installed on the main body 100 and is used to provide atomized gas into the atomizing chamber 111. The control circuit board 400 is installed in the main body 100 and is electrically connected to the atomizing mechanism 200. The control circuit board 400 is used to control the atomizing mechanism 200 to generate atomized gas, as will be described in detail later. Therefore, when the atomized gas obtained after being atomized by the atomizing mechanism 200 enters the atomizing chamber 111, the atomized gas is sprayed onto the eyes of the user through the opening of the atomizing chamber 111 for fumigation. During this process, the user can see the external environment through the perspective channel 130. On the one hand, it is convenient for daily life operations, and on the other hand, it can ensure that the fumigation is carried out with the eyes open, not only avoiding the anxiety caused by closing the eyes, but also improving the absorption effect of the fumigation, achieving the effect of truly alleviating the dryness symptoms of the eyeballs and bringing moisturizing and eye moisturizing effects to the eyes.
[0041] Next, in combination with Figures 5-9As shown, in an embodiment of the present utility model, the inner shell 110 and the outer shell 120 are detachably connected. After the two are docked and assembled, they enclose an installation space, and the connection manner between the two is a conventional manner in the art. It is understandable that the main body 100 is not limited to being directly composed of the inner shell 110 and the outer shell 120. For example, in other embodiments, the inner shell 110 and the outer shell 120 can also be connected through other plate members, etc., or the inner shell 110 and the outer shell 120 are integrally formed, etc. As long as the inner shell 110 and the outer shell 120 can be relatively arranged, the specific connection manner between the two is not limited.
[0042] Next, in conjunction with Figures 2-5 As shown, in this embodiment, the atomization chamber 111 is integrally formed on the inner shell 110. Specifically, the middle part of the inner shell 110 is recessed inward to form a long strip-shaped arc-shaped atomization chamber 111, so that the atomization chamber 111 can cover the eyes of the user, and it is more convenient to form the inner shell 110 and the atomization chamber 111. Moreover, the bottom plate 111a of the atomization chamber 111 protrudes towards the outer shell 120, as Figures 7-9 shown. The perspective channel 130 is provided between the outer shell 120 and the inner shell 110, and the perspective channel 130 penetrates through the bottom plate 111a of the atomization chamber 111 and the outer shell 120. In conjunction with Figures 6-9 As shown, the inlet 130a of the perspective channel 130 is opened on the bottom plate 111a of the atomization chamber 111, that is to say, the inlet 130a is a through hole opened on the bottom plate 111a of the atomization chamber 111. The outlet 130b of the perspective channel 130 is opened on the outer shell 120, in other words, the outlet 130b is a through hole opened on the outer shell 120. When the atomization chamber 111 covers the eyes of the user for atomization fumigation, the user's eyes can see the external environment through the perspective channel 130.
[0043] Continuing to combine with Figures 6-9 As shown, in an embodiment of the present utility model, the perspective channel 130 is surrounded by a cylindrical side wall 131 formed integrally. The side wall 131 is hermetically connected to both the bottom plate 111a of the atomization chamber 111 and the outer shell 120. In this way, when the atomized gas enters the atomization chamber 111 to fumigate the eyes of the user, the atomized gas can penetrate outward through the perspective channel 130, but the atomized gas is blocked by the side wall 131 and cannot penetrate into the interior of the main body 100, thereby ensuring that the control circuit board 400 and other electronic components installed inside the main body 100 will not be corroded and ensuring the service life of the eye moistening atomizer 1.
[0044] Continuing to combine with Figures 6-9As shown, in one embodiment, the side wall 131 of the perspective channel 130 can be integrally formed with the bottom plate 111a of the atomization chamber 111 and / or the outer shell 120. That is to say, the side wall 131 in a cylindrical structure is integrally formed on the inner shell 110 and / or the outer shell 120, and the side wall 131 protrudes staggeredly from the bottom plate 111a, thereby reducing the parts that need to be hermetically connected. On the one hand, it simplifies the production and assembly, and on the other hand, it ensures the sealing performance of the connection part between the side wall 131 and the inner shell 110 and / or the outer shell 120. In a specific embodiment, the side wall 131 is integrally formed with the inner shell 110, that is, the side wall 131 in a cylindrical structure is formed on the bottom plate 111a of the atomization chamber 111, and the side wall 131 protrudes towards the outer shell 120, whereby the inside of the cylindrical side wall 131 encloses the perspective channel 130. When the inner shell 110 and the outer shell 120 are correspondingly assembled, the other end of the side wall 131 abuts against the outer shell 120 and is hermetically connected to the outer shell 120, and the specific sealing method between the side wall 131 and the outer shell 120 is not limited.
[0045] Understandably, the side wall 131 in a cylindrical structure can also be independently formed and then hermetically connected between the bottom plate 111a of the atomization chamber 111 and the outer shell 120, that is, both ends of the side wall 131 abut against the bottom plate 111a and the outer shell 120 of the atomization chamber 111 respectively and are hermetically connected to them, which is also feasible.
[0046] Combined again with Figures 6-9 As shown, in the present invention, at least one perspective channel 130 is provided. Specifically, a longer perspective channel 130 can be provided, and the length direction of the perspective channel 130 extends along the length direction of the atomization chamber 111, so that the length of the perspective channel 130 can cover both eyes, and the perspective channel 130 communicates with the bottom plate 111a of the atomization chamber 111 and the outer shell 120, as Figure 9 shown. When the atomization chamber 111 covers both eyes for atomization fumigation, both eyes can directly observe the external environment through the longer perspective channel 130.
[0047] Of course, the setting method of the perspective channel 130 is not limited to the above. Refer to Figures 7-8 As shown, in another embodiment, two spaced-apart perspective channels 130 are provided on the bottom plate 111a of the atomization chamber 111, and the two perspective channels 130 respectively correspond to the positions of both eyes, and the setting methods of the two perspective channels 130 are the same. In this way, when the atomization chamber 111 covers both eyes for atomization fumigation, the two perspective channels 130 face both eyes, so the external environment is observed through the two perspective channels 130. This structural setting reduces the space occupied by the perspective channel 130, enables other components to be installed at the position between the two perspective channels 130, thereby making the structure of the entire main body 100 more compact and facilitating the miniaturization of the device.
[0048] The following is combined with Figures 3-7 As shown, in an implementation manner of the present utility model, the main body 100 further includes a perspective cover plate 140, and the perspective cover plate 140 is sealingly covered at the entrance 130a or / and the exit 130b of the perspective channel 130. In the present utility model, the perspective cover plate 140 is a plate member that enables the user to see the external environment, which can be a transparent cover plate, such as a glass plate, a transparent plastic plate, etc., or a translucent cover plate, such as a plate with a hollow structure or a mesh structure, etc. As long as the user's line of sight can pass through and see the external environment, it is the perspective cover plate 140, and no specific limitation is made to the perspective cover plate 140 here. Moreover, the perspective cover plate 140 can be independently formed and then sealingly connected to the entrance 130a or / and the exit 130b of the perspective channel 130, or the perspective cover plate 140 can be integrally formed when the inner shell 110 or / and the outer shell 120 is formed.
[0049] Combined with Figures 3-7 As shown, in a specific implementation manner, a perspective cover plate 140 is provided at the exit 130b of the perspective channel 130, so as to make the appearance of the outer shell 120 neat and beautiful. Moreover, the perspective cover plate 140 is a hollow plate, and the external environment can be seen through the small holes on the perspective cover plate 140. The perspective cover plate 140 and the outer shell 120 are integrally formed, thereby reducing the assembly steps of the sealing connection of the perspective cover plate 140 and simplifying the production process. Further, a perspective cover plate 140 can also be added at the entrance 130a of the perspective channel 130. At this time, the perspective cover plate 140 is sealingly connected to the bottom plate 111a of the atomization chamber 111, or integrally formed with the bottom plate 111a of the atomization chamber 111. Of course, a perspective cover plate 140 can also be provided only at the entrance 130a of the perspective channel 130.
[0050] The following is combined with 2-5, Figures 10-12 As shown, in an implementation manner of the present utility model, the atomization mechanism 200 includes a liquid tank 210 and an atomization sheet 220. A liquid outlet hole 211 is penetratingly opened at the bottom of the liquid tank 210, and an atomization sheet 220 is installed at the liquid outlet hole 211. The liquid tank 210 is detachably installed on the main body 100 and can communicate with the atomization chamber 111. The atomization sheet 220 atomizes the liquid in the liquid tank 210 to form an atomized gas and sprays the atomized gas into the atomization chamber 111.
[0051] Combined with Figure 4 、 Figure 13As shown, in this embodiment, the atomization chamber 111 is integrally formed on the inner shell 110, and a notch is formed on the top wall of the atomization chamber 111. The notch communicates with the atomization chamber 111 for introducing atomized gas into the atomization chamber 111. The liquid tank 210 is detachably mounted on the inner shell 110, specifically above the top wall of the atomization chamber 111. When the liquid tank 210 is mounted on the inner shell 110, the atomization sheet 220 is located at the bottom of the liquid tank 210, and the liquid outlet hole 211 of the liquid tank 210 communicates with its interior through the notch on the top wall of the atomization chamber 111 (see Figure 13 ).
[0052] Combined with Figures 4-5 , Figure 13 As shown, in one embodiment, a heating plate 150 is further provided on one side wall of the atomization chamber 111, and the spraying direction of the atomization sheet 220 intersects with the heating plate 150. Specifically, the spraying direction of the atomization sheet 220 faces the heating plate 150 and intersects with it, as Figure 13 shown. Thus, the atomized gas ejected by the atomization sheet 220 is directly sprayed on the heating plate 150. When the atomized gas contacts the high-temperature heating plate 150, it is instantly heated and can be instantly heated to a relatively high temperature, thereby improving the effects of hot compress and hot fumigation.
[0053] Continuing to combine Figures 4-5 , Figures 12-13 As shown, the atomization sheet 220 and the heating plate 150 are provided on opposite side walls or adjacent side walls of the atomization chamber 111. In a specific embodiment, the atomization sheet 220 and the heating plate 150 are respectively provided on adjacent side walls of the atomization chamber 111. Specifically, since the notch is provided on the top wall of the atomization chamber 111, after the liquid tank 210 is mounted, the atomization sheet 220 is located above the top wall of the atomization chamber 111. And the heating plate 150 is mounted on the bottom plate 111a of the atomization chamber 111 and faces its opening. In other words, the atomization sheet 220 is provided above the horizontal top wall of the atomization chamber 111, while the heating plate 150 is vertically provided on the bottom plate 111a of the atomization chamber 111 to be adjacent to the top wall. In this specific embodiment, the atomization sheet 220 is inclined and mounted on the bottom of the liquid tank 210, as Figure 12 shown, so that the spraying direction of the atomization sheet 220 is inclined and faces the heating plate 150, as Figure 13 shown. Thus, the spraying direction intersects with the heating plate 150, and the atomized gas ejected by the atomization sheet 220 can be directly sprayed onto the heating plate 150, so that the atomized gas is instantly heated, improving the effects of hot compress and hot fumigation.
[0054] Understandably, the positions of the atomizing sheet 220 and the heating plate 150 are not limited to the above-described embodiments. In other embodiments, the atomizing sheet 220 and the heating plate 150 may also be provided on the opposite side walls of the atomizing chamber 111. In this way, the spraying direction of the atomizing sheet 130 can be directly opposite to the heating plate 150, which also intersects the spraying direction with the heating plate 150 to achieve rapid heating. In the present utility model, as long as the spraying direction of the atomizing sheet 130 is not parallel to the heating plate 150, the angle of intersection between the two can be flexibly set according to the product requirements, and no specific limitation is made here.
[0055] In the present utility model, the heating plate 150 adopts a medium capable of rapidly transferring heat. For example, an aluminum plate, a steel plate, etc. can be used, and no specific limitation is made here. The installation and heating methods of the heating plate 150 are all conventional methods in the art and will not be described in detail.
[0056] The following combination Figures 4-5 As shown, in the present embodiment, the inner shell 110 is further provided with a mounting groove 113 corresponding to the liquid tank 210, and the mounting groove 113 is provided above the top wall of the atomizing chamber 111. The liquid tank 210 is installed in the mounting groove 113 and is detachably connected to the inner shell 110, so that the liquid outlet hole 211 of the liquid tank 210 can communicate with the atomizing chamber 111.
[0057] Refer to Figure 4 As shown, the inner shell 110 is further provided with a connecting protrusion 114, which is specifically provided on the side wall of the mounting groove 113 and protrudes into the mounting groove 113, and the connecting protrusion 114 is also electrically connected to the control circuit board 400. When the liquid tank 210 is installed in the mounting groove 113, the connecting protrusion 114 can be electrically connected to the atomizing sheet 220, thereby realizing the electrical connection between the atomizing sheet 220 and the control circuit board 400.
[0058] The following combination Figures 10-13 As shown, in an embodiment of the present utility model, the liquid tank 210 has a first bottom plate 212 that is inclined, specifically inclined at a certain angle with respect to the horizontal direction. The liquid outlet hole 211 is penetratingly opened on the first bottom plate 212, so that the axis P of the liquid outlet hole 211 is inclined with respect to the horizontal direction, as Figure 12 shown. The atomizing sheet 220 is installed on the first bottom plate 212 and is directly opposite to the liquid outlet hole 211, thereby realizing the inclined installation of the atomizing sheet 220 and making the inclined installation of the atomizing sheet 220 more convenient. By the cooperation of the inclined liquid outlet hole 211 and the inclined atomizing sheet 220, the liquid in the liquid tank 210 flows onto the atomizing sheet 220 through the inclined liquid outlet hole 211, and after being atomized by the inclined atomizing sheet 220, the atomized gas is sprayed obliquely onto the heating plate 150, as Figure 13 shown by the arrow direction in, thereby realizing the rapid heating of the atomized gas.
[0059] See also Figure 11 As shown, in this embodiment, a first receiving groove 213 corresponding to the atomizing sheet 220 is further recessed on the first bottom plate 212, and the first receiving groove 213 is arranged around the liquid outlet 211. The atomizing sheet 220 is accommodated in the first receiving groove 213 to achieve stable installation, ensuring that the inclined atomizing sheet 220 will not shift during operation, thereby ensuring that its spray direction is accurate and ensuring the heating effect of the atomized gas.
[0060] Continue to combine Figures 10-13 As shown, in a preferred embodiment of the present invention, the bottom of the liquid tank 210 is further provided with an inclined atomizing channel 231 connected to the liquid outlet 211, and the atomizing sheet 220 is inclinedly arranged at any position of the atomizing channel 231. Moreover, when the liquid tank 210 is installed in the inner shell 110, the atomizing channel 231 is connected to the atomizing bin 111. Through the guiding effect of the inclined atomizing channel 231, the spray direction of the atomizing sheet 220 is accurate and concentrated toward the heating plate 150, as shown in FIG. Figure 13 The atomized gas directly contacts the high-temperature heating plate 150 and is instantly heated, and the atomized gas can be instantly heated to a higher temperature. The heated atomized gas is sprayed toward the user's eyes through the atomizing chamber 111, which can accelerate the absorption speed of the atomized gas and improve the absorption effect. Moreover, since the user can see the external environment, he can open his eyes for fumigation, thereby improving the effects of hot compress, fumigation, etc., and truly alleviating the symptoms of dry eyeballs.
[0061] Combination Figures 10-13 As shown, in a specific embodiment, the atomizing mechanism 200 further includes a base 230 detachably connected to the bottom of the liquid tank 210. The base 230 is provided with an inclined atomizing channel 231, which is connected to the liquid outlet 211 to form a long inclined channel. When the base 230 is installed, the atomizing sheet 220 is clamped between the base 230 and the first bottom plate 212 of the liquid tank 210 (see FIG. 2 ). Figure 12 ), at this time, the atomizing sheet 220 is located at the inlet end of the atomizing channel 231. This structural setting, on the one hand, makes the installation of the atomizing sheet 220 more convenient, fast and stable, and on the other hand, it is also convenient for the forming of the atomizing channel 231. Of course, it is feasible to install the atomizing sheet 220 at any other position of the atomizing channel 231.
[0062] Continue to combine Figures 10-12As shown, in this specific embodiment, the base 230 includes a second bottom plate 232 and a second connecting plate 235 vertically connected to the second bottom plate 232. The bottom surface of the second bottom plate 232 is horizontally arranged to facilitate fitting and installation with the top wall of the atomization chamber 111. An inclined mounting surface 233 is convexly provided on the inner side surface of the second bottom plate 232, as Figure 10 shown, and the inclination of the mounting surface 233 corresponds to the inclination of the first bottom plate 212. The atomization channel 231 penetrates through the mounting surface 233 and the bottom surface of the second bottom plate 232 to form an inclined shape, as Figure 12 shown. After the base 230 is mounted on the bottom of the liquid tank 210, the mounting surface 233 is parallel to the first bottom plate 212, and the atomization sheet 220 is clamped between the mounting surface 233 and the first bottom plate 212 and is inclined, facilitating the installation and fixation of the atomization sheet 220. At the same time, the liquid outlet hole 211 corresponds to and communicates with the atomization channel 231 to form a relatively long inclined channel, and the axis P of this inclined channel is inclined with respect to the plane where the bottom surface of the second bottom plate 232 is located, as Figure 12 shown, which is beneficial to the flow of the liquid and makes the spraying direction and angle accurate.
[0063] Refer to Figure 10 、 Figure 12 shown, a second accommodation groove 234 corresponding to the first accommodation groove 213 is also concavely provided on the inclined mounting surface 233, and the second accommodation groove 234 is arranged around the atomization channel 231. When the atomization sheet 220 is installed, the atomization sheet 220 is simultaneously accommodated in the corresponding first accommodation groove 213 and second accommodation groove 234 to achieve installation and positioning, and the atomization sheet 220 can be prevented from shifting during the working process.
[0064] Combined with Figures 10-12 shown, convex ribs for sealing cooperation are also provided between the atomization sheet 220 and the first bottom plate 212 or / and between the atomization sheet 220 and the mounting surface 233, thereby realizing the sealed installation of the atomization sheet 220. In a specific embodiment, at least one convex rib 214 is convexly provided on the bottom surface of the first bottom plate 212. As Figures 11-12 shown, the convex rib 214 is arranged around the liquid outlet hole 211 on the bottom surface of the first accommodation groove 213. In this way, when the atomization sheet 220 is accommodated in the first accommodation groove 213 and the second accommodation groove 234, the atomization sheet 220 is squeezed and pressed against the convex rib 214, thereby realizing the sealed installation and preventing liquid leakage during the working process of the atomization sheet 220. Correspondingly, convex ribs can also be provided on the mounting surface 233 alone or simultaneously, so as to realize the sealed installation of the other side of the atomization sheet 220.
[0065] Combined with Figures 10-12As shown, in the present utility model, a first connecting plate 215 is further convexly provided on the side wall of the liquid tank 210, and the first connecting plate 215 extends horizontally. When the bottom of the liquid tank 210 is pressed against the second bottom plate 232 of the base 230, the first connecting plate 215 is snap-fitted with the second connecting plate 235 of the base 230, so that the second connecting plate 235 of the base 230 is spaced apart from the side wall 131 of the liquid tank 210 to form a sealed installation space, as Figure 12 shown. The electrical connection end of the atomization sheet 220 passes through the liquid tank 210 and is located in the aforementioned installation space to protect the electrical connection end. And, a snap-fitting hole 236 is provided on the second connecting plate 235, so that the electrical connection end of the atomization sheet 220 is opposite to the snap-fitting hole 236 or extends into the snap-fitting hole 236.
[0066] Combined with Figure 2 、 Figures 4-5 、 Figure 13 shown, when the liquid tank 210 is installed in the installation groove 113, the snap-fitting hole 236 is snap-fitted with the connecting protrusion 214 provided on the inner shell 110, so that the electrical connection end of the atomization sheet 220 contacts the connecting protrusion 214 to achieve electrical connection, as Figure 13 shown. At this time, the base 230 of the liquid tank 210 fits against the top wall of the atomization chamber 111, and the atomization channel 231 on the base 230 is connected to the atomization chamber 111 through a notch on the top wall, as Figure 13 shown. Therefore, the liquid outlet hole 211 of the liquid tank 210 and the atomization channel 231 are connected and form a relatively long inclined channel, and the axis P of the inclined channel intersects the heating plate 150, so that the spraying direction of the atomization sheet 220 is inclined and faces the heating plate 150, as Figure 13 shown. When the liquid tank 210 is pulled to disassemble it from the main body 100, it can be separated from the connecting protrusion 214, so that the installation and disassembly of the liquid tank 210 can be conveniently realized without affecting the operation of the atomization sheet 220.
[0067] Continuing to combine with Figures 10-12 shown, a top cover 240 is provided on the top of the liquid tank 210. The top cover 240 can be separately formed and then sealedly installed on the top of the liquid tank 210, or can be integrally formed with the liquid tank 210. A groove 242 is recessed on the top cover 240, and a liquid filling port 241 is penetratedly provided in the groove 242. Liquid can be supplemented into the liquid tank 210 through the liquid filling port 241.
[0068] Further, the atomization mechanism 200 further includes a sealing cover 250, which is detachably connected to the liquid filling port 241 for sealing the liquid filling port 241. By removing the sealing cover 250, the user can conveniently supplement or add liquid. Specifically, the sealing cover 250 includes a pressing portion 251 and a column 252 protruding from the pressing portion 251. The shape of the pressing portion 251 corresponds to the above-mentioned groove 242, and at least the column 252 is of an elastic structure. In a specific embodiment, the sealing cover 250 is integrally formed by an elastic material (such as rubber). Therefore, both the pressing portion 251 and the column 252 have elasticity. The column 252 is detachably inserted into the liquid filling port 241, and the pressing portion 251 is separably pressed into the groove 242. Therefore, when the column 252 is pressed into the liquid filling port 241, the column 252 is squeezed by the inner wall of the liquid filling port 241, thereby achieving complete sealing to prevent liquid leakage. And the pressing portion 251 is pressed into the groove 242, and the sealing cover 250 can be conveniently removed by pulling the pressing portion 251.
[0069] More preferably, at least one rib 253 protrudes radially on the column 252. When the column 252 is pressed into the liquid filling port 241, the rib 253 is squeezed between the column 252 and the inner wall of the liquid filling port 241, further improving the sealing effect.
[0070] Combined again with Figures 1-5 As shown, in a preferred embodiment of the present invention, the perspective eye moisturizing atomizer 1 further includes an eye massage mechanism 300. There are two eye massage mechanisms 300, which are installed on the main body 100 and are symmetrically arranged. The eye massage mechanism 300 is electrically connected to the control circuit board 400 and is used to massage both eyes.
[0071] Combined with Figure 2 、 Figures 14-16 As shown, in this embodiment, each eye massage mechanism 300 includes a plurality of massage heads 310 and a plurality of vibrators (not shown in the figure). Each massage head 310 is installed on the main body 100 at intervals and protrudes from the inner shell 110. Each vibrator is respectively installed in each massage head 310, and the vibrator is used to move the massage head 310 linearly back and forth or / and rotate or / and vibrate to achieve massage. Using the two eye massage mechanisms 300 to massage the surroundings of both eyes respectively can, on the one hand, relax the eye muscles and effectively relieve eye fatigue, and on the other hand, accelerate the blood flow in the eyes, thereby promoting the absorption of the atomized gas by the eyes, achieving the expected set humidity, and truly slowing down the symptoms of dry eyes, bringing the effects of moisturizing and eye moistening to the eyes.
[0072] Continuing to combine with Figures 14-16As shown, each eye massage mechanism 300 further includes a bottom pad 320. The bottom pad 320 is generally in a U-shaped structure, and a mounting hole 321 is formed in the middle. The mounting hole 321 is in a long strip arc shape. Each massage head 310 protrudes from one side of the bottom pad 320 and is arranged at intervals around the mounting hole 321. By connecting multiple massage heads 310 through the bottom pad 320, the assembly of multiple massage heads 310 is more convenient.
[0073] More preferably, the bottom pad 320 and each massage head 310 are integrally formed, so that the forming and installation of each massage head 310 are more convenient. Of course, each massage head 310 can also be separately formed and then installed respectively. The number of massage heads 310 is not specifically limited in the present utility model and can be flexibly set according to needs. For example, in this embodiment, five massage heads 310 are provided to correspond to five acupoints around the eyes. By massaging the acupoints, eye fatigue can be better relieved, and the absorption of atomized gas by the eyes can be promoted better.
[0074] Combined with Figure 3 、 Figure 16 As shown, in an embodiment, each massage head 310 includes a connecting portion 311, a vibrating portion 312, and a massaging portion 313 arranged in sequence. The outer diameter of the vibrating portion 312 is smaller than the outer diameters of the connecting portion 311 and the massaging portion 313. The connecting portion 311 is connected to the bottom pad 121 and is used for clamping with the inner shell 110. And at least the vibrating portion 312 has elasticity, so that the vibrating portion 312 can elastically stretch and / or offset relative to the connecting portion 311, so that the massaging portion 313 at the end can realize the slapping and / or massaging function. The massaging portion 313 is in a sealed structure, and the thickness of the massaging portion 313 is greater than the thickness of the vibrating portion 312. The vibrator is preferably installed inside the massaging portion 313, but is not limited thereto.
[0075] In a specific embodiment, the massage head 310 and the bottom pad 320 are integrally formed of an elastic material, such as formed by materials such as rubber, silica gel, polymer (such as polyurethane), etc., but are not limited to the foregoing materials. Therefore, both the bottom pad 320 and each massage head 310 have a certain elasticity. Through the elastic stretching and / or offset of the vibrating portion 312, the slapping and / or massaging function of the massaging portion 313 is realized. At the same time, when the massaging portion 313 squeezes the eyes, the massaging portion 313 has a certain resilience, which helps to relieve the top contact discomfort caused by the squeezing between the massaging portion 313 and the eyes. Through the resilience buffer, a higher comfort level is achieved during the massage process, improving the user experience. And the elastic structure of the bottom pad 320 makes its assembly with the fixing plate 330 and the inner shell 110 more stable.
[0076] In the present utility model, the vibrator is preferably a micro vibration motor, which generates vibration or movement to achieve the functions of patting or / and massaging. Of course, other components that can generate vibration, such as a micro motor, can also be selected as the vibrator.
[0077] Combined again with Figure 5 、 Figures 15-16 As shown, each eye massage mechanism 300 further includes a fixing plate 330. An installation cavity 331 corresponding to the above installation hole 321 is recessed on the fixing plate 330, so that the fixing plate 330 is also generally in a U-shaped structure. Of course, it is not limited to recessing the installation cavity 331 on the fixing plate 330. It is also feasible to directly open a through hole corresponding to the installation hole 321 on the fixing plate 330. And, a through hole 332 is also penetrated on the fixing plate 330, and the through hole 332 corresponds to at least the massage head 310. In this way, after the bottom pad 320 is installed on the fixing plate 330, the inside of each massage head 310 communicates with the respective through holes 332 on the fixing plate 330, and the electrical connection of the vibrator is realized through the through holes 332. Of course, the electrical connection of the vibrator can also be realized by other means. At the same time, the installation hole 321 of the bottom pad 320 corresponds to the installation cavity 331, and the recessed position formed by the installation hole 321 and the installation cavity 331 is used to accommodate the atomization chamber 111, as Figure 5 shown.
[0078] Next, combined with Figures 3-6 As shown, a plurality of through holes 112 corresponding to the massage heads 310 are opened on the inner shell 110. When the eye massage mechanism 300 is installed, the fixing plate 330 is fixed between the outer shell 120 and the inner shell 110, and each massage head 310 passes through each through hole 112 and protrudes from the inner shell 110, and the connecting portion 311 of each massage head 310 is clamped to the inner wall of the through hole 112 to achieve stable installation, as Figure 3 shown. The bottom plate 111a of the atomization chamber 111 on the inner shell 110 is then accommodated in the installation hole 321 and the installation cavity 331.
[0079] Referring again to Figure 1 As shown, in the present utility model, the eye moistening atomizer 1 further includes a wearing body 500, which is connected to both ends of the main body 100 and is used for the user to wear on the head. The wearing body 500 can be an elastic arm, temple, headband, etc., and is not specifically limited in this application. Figure 1 Shown is a headband, so that the eye moistening atomizer 1 can be stably worn on the user's head.
[0080] In summary, due to the perspective eye moisturizing atomizer 1 of the present utility model, a perspective channel 130 is provided on its main body 100. The perspective channel 130 penetrates through the bottom plate 111a of the atomization chamber 111 and the outer shell 120 of the main body 100, and the side wall 131 of the perspective channel 130 is hermetically connected to both the bottom plate 111a of the atomization chamber 111 and the outer shell 120. Therefore, the following technical effects are achieved: First, during the process of using the eye moisturizing atomizer 1 for eye fumigation by the user, the external environment can be seen through the perspective channel 130, thereby reducing the sense of anxiety; and daily life operations can still be carried out, for example, answering calls, drinking water, etc., which is very convenient to use. Second, during the process of eye fumigation, since the external environment can be seen, the eyes can always be kept open for fumigation, so as to fully exert the effect of fumigation, and the expected set humidity can be achieved, truly alleviating the symptoms of dry eyes. Third, for the situation where a young child uses the eye moisturizing atomizer 1 for eye fumigation and physical therapy, an adult can check at any time through the perspective channel 130 whether the young child's eyes are open and timely remind the young child to keep the eyes open for fumigation to ensure the effect of fumigation and physical therapy. Fourth, the side wall 131 of the perspective channel 130 is hermetically connected to both the bottom plate 111a of the atomization chamber 111 and the outer shell 120. Therefore, the atomized gas will not penetrate into the main body 100 and corrode the electronic components, ensuring that the eye moisturizing atomizer 1 has a long service life.
[0081] The above-disclosed are only the preferred embodiments of the present utility model. Of course, the scope of the rights of the present utility model cannot be limited thereby. Therefore, equivalent changes made according to the scope of the patent application of the present utility model still fall within the scope covered by the present utility model.
Claims
1. A perspective eye-moistening atomizer, characterized in that, Comprising: A main body having an inner shell and an outer shell arranged oppositely, an atomization chamber provided on the inner shell, a perspective channel provided on the main body, the perspective channel penetrating through the bottom plate of the atomization chamber and the outer shell, and the side wall of the perspective channel being hermetically connected to both the bottom plate of the atomization chamber and the outer shell; An atomization mechanism detachably mounted on the main body and configured to supply atomized gas into the atomization chamber.
2. The perspective eye-moistening atomizer according to claim 1, characterized in that, The perspective channel is surrounded by a cylindrical side wall, the side wall being integrally formed with the bottom plate of the atomization chamber and / or the outer shell, or the two ends of the side wall being hermetically connected to the bottom plate of the atomization chamber and the outer shell respectively.
3. The perspective eye moistening atomizer according to claim 1, characterized in that, It further includes a perspective cover plate hermetically covering the entrance and / or the exit of the perspective channel.
4. The perspective eye moistening atomizer according to claim 3, wherein The perspective cover plate is integrally formed with the bottom plate of the atomization chamber and / or the outer shell, or the perspective cover plate is hermetically connected to the bottom plate of the atomization chamber and / or the outer shell.
5. The perspective eye moistening atomizer according to any one of claims 1-4, characterized in that, The atomization mechanism includes: A liquid tank detachably mounted on the main body, the bottom of the liquid tank being provided with a liquid outlet hole penetrating therethrough; An atomization sheet mounted at the liquid outlet hole; When the liquid tank is mounted on the main body, the liquid outlet hole is in communication with the atomization chamber, and the atomized gas obtained by atomization through the atomization sheet is introduced into the atomization chamber.
6. The perspective eye-moistening atomizer according to claim 5, characterized in that, A heating plate is provided on one side wall of the atomization chamber, and the spraying direction of the atomization sheet intersects with the heating plate.
7. The perspective eye-moistening atomizer according to claim 6, characterized in that, The atomization sheet and the heating plate are provided on opposite side walls or adjacent side walls of the atomization chamber.
8. The perspective eye-moistening atomizer according to claim 6, wherein The atomization sheet is inclinedly mounted on the bottom of the liquid tank.
9. The perspective eye-moistening atomizer according to claim 6, wherein The bottom of the liquid tank is further provided with an inclined atomization channel communicating with the liquid outlet hole, the atomization sheet being inclinedly provided at any position of the atomization channel, and when the liquid tank is mounted on the main body, the atomization channel is in communication with the atomization chamber.
10. The perspective eye-moistening atomizer according to claim 9, wherein, The bottom of the liquid tank is detachably connected with a base, the atomization channel being penetratingly provided on the base, and the atomization sheet being clamped between the base and the bottom of the liquid tank.
11. The perspective eye moistening atomizer according to claim 10, characterized in that, The base and / or the bottom of the liquid tank is / are recessed with a receiving groove corresponding to the atomization sheet, the atomization sheet being received in the receiving groove, and ribs are further provided between the atomization sheet and the base and / or between the atomization sheet and the bottom of the liquid tank.
12. The perspective eye-moistening atomizer according to any one of claims 1-4, characterized in that, It further includes an eye massage mechanism, the eye massage mechanism including a plurality of massage heads and vibrators mounted in each of the massage heads, each of the massage heads being arranged around the atomization chamber and protruding from the inner shell.
13. The perspective eye-moistening atomizer according to claim 12, wherein Each of the massage heads includes a connecting portion, a vibrating portion and a massaging portion arranged in sequence, the vibrator being received in the massaging portion, and at least the vibrating portion being flexible so as to be elastically telescopic and / or offset relative to the connecting portion.
14. The perspective eye-moistening atomizer according to claim 12, characterized in that, The eye massage mechanism further includes a bottom pad, each of the massage heads being connected to one side of the bottom pad, the bottom pad being fixed in the main body and enabling each of the massage heads to protrude from the inner shell.
15. The perspective eye-moistening atomizer according to claim 12, wherein The eye massage mechanism further includes a fixing plate, each of the massage heads being connected to the fixing plate, the fixing plate being fixed in the main body.