Eye moistening atomizer

By adopting a combination structure of mounting groove and first bracket in the eye moisturizing atomizer, the problem of obstructed mist flow is solved, achieving efficient injection of atomized gas and improved eye moisturizing effect, while reducing production costs.

CN224235635UActive Publication Date: 2026-05-15DONGGUAN SHUSEN IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN SHUSEN IND CO LTD
Filing Date
2025-01-20
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing water tank installation method of eye moisturizing atomizers obstructs the flow of mist, resulting in poor eye moisturizing and hydrating effects. In addition, there are many components, leading to high production costs.

Method used

The system adopts a combination structure of mounting groove and first bracket. The bottom of the mounting groove is completely open, and the width of the first bracket is smaller than the inner diameter of the mounting groove, forming a large area of ​​mist channel. The water tank is stably installed by the bracket and the groove, reducing the number of atomizers.

Benefits of technology

It increases the total amount and efficiency of atomized gas, reduces production costs, enhances eye-moisturizing and hydrating effects, and improves user comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

A water tank installation structure of the eye moistening atomizer comprises an installation groove and a first support, the installation groove is formed in a main body, the bottom of the installation groove is completely through, the first support is arranged on the inner wall of the installation groove in a protruding mode, and the width of the first support is smaller than the inner diameter of the installation groove in the protruding direction of the first support. The space between the edge of the first support and the inner wall of the mounting groove is hollowed out in a large area to form a mist channel. Firstly, a first support is arranged to support a water tank, so that the water tank can be stably mounted in a mounting groove; and secondly, the first bracket has a smaller width, so that a large-area clearance is formed at the bottom of the mounting groove, a mist channel with a larger cross-sectional area is formed, atomized gas cannot be blocked when being downwards sprayed into the mist bin, the total amount and efficiency of the atomized gas entering the mist bin are further improved, and the eye moistening and moisturizing effects can be effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of eye care device technology, and in particular to an eye moisturizing atomizer. Background Technology

[0002] An eye moisturizing nebulizer is a device that continuously atomizes liquid to form 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] In existing eye-moisturizing nebulizers, the water tank is typically installed in the middle of the mist chamber. For example, the water tank 2 disclosed in Chinese Invention Patent CN116672159A divides the mist chamber into left and right parts, with atomizers 4 installed on both sides to provide mist to the respective mist chambers. This existing water tank installation method obstructs the flow of mist within the mist chamber, reducing the eye-moisturizing and hydrating effects. Furthermore, the use of at least two atomizers results in a larger number of components and higher production costs.

[0004] Another existing method of water tank installation involves mounting the water tank above the mist chamber. To ensure the stability of the water tank installation, it is typically supported on the top wall of the mist chamber. Through-holes or channels are made in the top wall of the mist chamber to allow the atomized vapor formed from the liquid in the water tank to enter the mist chamber through these through-holes or channels. However, this structural design, with its narrow through-holes or channels, obstructs the movement of the atomized vapor, resulting in a reduction in the total amount and efficiency of atomized vapor entering the mist chamber, thus decreasing the eye-moisturizing and hydrating effects.

[0005] Therefore, it is necessary to provide an eye-moisturizing atomizer that can improve the installation stability of the water tank, prevent the mist from being blocked from entering the mist chamber, and reduce production costs, in order to solve the above-mentioned technical problems. Utility Model Content

[0006] The purpose of this invention is to provide an eye-moisturizing atomizer that can improve the stability of water tank installation, prevent fogging from being blocked from entering the fog chamber, and reduce production costs.

[0007] To achieve the above objectives, the technical solution of this utility model is as follows: An eye-moisturizing atomizer is provided, comprising a main body, a water tank, and a water tank mounting structure; wherein, the water tank mounting structure includes a mounting groove and a first bracket, the mounting groove being formed in the main body, and the bottom of the mounting groove being completely through; the first bracket protruding from the inner wall of the mounting groove, and in the protruding direction of the first bracket, the width of the first bracket is smaller than the inner diameter of the mounting groove, and the space between the edge of the first bracket and the inner wall of the mounting groove forms a mist channel.

[0008] Preferably, in the protruding direction of the first bracket, the width of the first bracket is at least less than half the inner diameter of the mounting groove. Therefore, the space occupied by the first bracket at the bottom of the mounting groove is less than half its inner diameter, thereby allowing a large area of ​​the bottom of the mounting groove to be hollowed out, forming a mist channel with a larger cross-sectional area. This allows the atomized gas to be sprayed more smoothly into the mist chamber below through the mist channel, improving both the total amount and efficiency of the atomized gas entering the mist chamber.

[0009] Preferably, the width of the first bracket extends along the longitudinal or depth direction of the mounting groove, and the width of the first bracket is less than one-third of the inner diameter of the mounting groove in the longitudinal or depth direction. Therefore, the space occupied by the first bracket in the longitudinal or depth direction of the mounting groove is less than one-third of its inner diameter, effectively hollowing out more than two-thirds of the bottom of the mounting groove. This maximizes the cross-sectional area of ​​the mist channel while ensuring stable support of the water tank by the first bracket, thereby allowing the atomized gas to be sprayed more effectively into the mist chamber.

[0010] Preferably, the water tank mounting structure further includes at least one second bracket, which protrudes from the inner wall of the mounting groove and is spaced apart from the first bracket. In the protruding direction of the second bracket, the width of the second bracket is at least one-third of the inner diameter of the mounting groove. Firstly, the spaced-apart second and first brackets jointly support the bottom of the water tank, making the installation of the water tank more stable. Secondly, the second bracket occupies less than one-third of the bottom space of the mounting groove in its protruding direction, thus allowing a large area of ​​the bottom of the mounting groove to be hollowed out, forming a mist channel with a large cross-sectional area.

[0011] Preferably, the water tank mounting structure includes two second supports, which protrude from both sides of the first support and extend towards each other. The edges of the two second supports and the edge of the first support form the mist channel. The first support and two second supports form a triangular support for the bottom of the water tank, ensuring its stable placement within the mounting groove. A large area is also created at the bottom of the mounting groove, forming a mist channel with a large cross-sectional area. This allows the atomized gas to flow more smoothly into the mist chamber below, increasing the total amount and efficiency of atomized gas entering the mist chamber.

[0012] Preferably, the two second brackets are arranged symmetrically, and the end face of each second bracket is arc-shaped, thereby further reducing the area of ​​the second bracket and further eliminating the gap at the bottom of the mounting groove.

[0013] Preferably, the mounting groove is formed by a rear end wall and two side walls located on both sides of the rear end wall, thereby making the bottom of the mounting groove completely open. The first bracket protrudes from the rear end wall, and the second bracket protrudes from the side walls.

[0014] Preferably, the back of the water tank has a protruding mounting protrusion, and the inner wall of the mounting groove has a corresponding engaging groove. The mounting protrusion is detachably engaged in the engaging groove, and the water tank is detachably supported on the first bracket. The engaging groove's engagement with the mounting protrusion and the first bracket's support of a portion of the water tank's bottom ensure the stability of the water tank installation and maximize the cross-sectional area of ​​the mist channel, thereby maximizing the total amount and efficiency of atomized gas entering the mist chamber.

[0015] Preferably, the water tank has a first mounting surface with an arc-shaped structure between its back and side surfaces, and a second mounting surface that mates with the first mounting surface is provided between the rear end wall and the side wall of the mounting groove. When the water tank is installed in the mounting groove, the first mounting surface abuts against the second mounting surface. The abutment of the arc-shaped surfaces and the support of the first bracket on a portion of the bottom of the water tank make the installation of the water tank more stable and maximize the cross-sectional area of ​​the mist channel, thereby maximizing the total amount and efficiency of atomized gas entering the mist chamber.

[0016] Preferably, the bottom of the water tank is provided with a mist outlet, and an atomizing plate is provided at the mist outlet. When the water tank is installed in the mounting groove and supported on the first bracket, the mist outlet is connected to the mist channel, so that the atomized gas sprayed by the atomizing plate can be sprayed more smoothly into the mist chamber below through the mist channel, thereby increasing the total amount and efficiency of atomized gas entering the mist chamber.

[0017] Preferably, the main body has a mist chamber located below the mounting groove and communicating vertically with the bottom of the mounting groove. The sidewalls of the mist chamber are perpendicular to the bottom wall and have an open structure, thus forming a vertical embankment structure. This effectively blocks the mist when the atomized vapor flows outward, allowing the atomized vapor to flow towards the eyes, preventing leakage, and enabling more atomized vapor to act on the area around the eyes, forming a mist cluster around the eyes. The atomized vapor can moisturize the eyes for a longer period of time, thereby achieving a more effective eye moisturizing and hydrating effect.

[0018] Compared with existing technologies, the eye-moisturizing atomizer of this invention features a fully open mounting groove at the bottom, with a first support protruding from the inner wall of the groove. The width of the first support is significantly smaller than the inner diameter of the mounting groove in its protruding direction, creating a clear gap between the edge of the first support and the inner wall of the groove, thus forming a mist channel. Firstly, the mounting groove's engagement with the water tank and the first support's support ensure stable installation within the groove. Secondly, the narrow width of the first support allows for a large-area hollowing out of the bottom of the mounting groove, creating a mist channel with a large cross-sectional area. This ensures unobstructed downward spraying of the atomized vapor into the mist chamber, increasing both the total amount and efficiency of the atomized vapor entering the chamber, effectively enhancing eye-moisturizing and hydrating effects. Furthermore, the water tank is positioned above the mist chamber and sprays atomized vapor downwards, requiring only one atomizing plate, reducing the number of atomizers compared to existing technologies and thus significantly lowering production costs. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the eye-moisturizing atomizer in one embodiment of this utility model.

[0020] Figure 2 yes Figure 1 The exploded diagram.

[0021] Figure 3 yes Figure 2 A structural diagram of the water tank from another angle.

[0022] Figure 4 yes Figure 2 An enlarged schematic diagram of the main body in the image.

[0023] Figure 5 yes Figure 4 A schematic diagram of the main body after the massage head has been removed.

[0024] Figure 6 yes Figure 5 A structural diagram from another angle.

[0025] Figure 7 yes Figure 5 Top view.

[0026] Figure 8 yes Figure 1 A sectional view.

[0027] Figure 9 yes Figure 1 Another partial sectional view.

[0028] Figure 10 This is a schematic diagram of the main body in another embodiment of the present invention.

[0029] Figure 11 yes Figure 10 A schematic diagram of the structure after the massage head has been removed. Detailed Implementation

[0030] Embodiments of the present invention will now be described with reference to the accompanying drawings, in which similar element reference numerals represent similar elements. It should be noted that the directional descriptions involved in the present invention, such as up, down, left, right, front, and back, indicating directions or positional relationships, are based on the directions or positional relationships shown in the drawings and are only for the convenience of describing the technical solutions of this application or / and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. The terms "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 number of indicated technical features, or implicitly indicating the sequential relationship of the indicated technical features.

[0031] First combine Figures 1-11 As shown, in one embodiment of this utility model, the provided eye-moisturizing atomizing device 1 includes a main body 100, a water tank 200, and a water tank mounting structure 300. The main body 100 has an elongated mist chamber 110 for covering the user's eyes. The water tank 200 is detachably mounted to the main body 100 via the water tank mounting structure 300 and is used to supply atomized gas into the mist chamber 110.

[0032] Combination Figures 8-9 As shown, in this embodiment, a mist outlet 250 is provided through the bottom of the water tank 200, and an atomizing plate 260 is provided inside the mist outlet 250. The atomizing plate 260 is used to continuously atomize the liquid in the water tank 200 to form atomized gas. The installation method and working principle of the atomizing plate 260 are conventional in the art and will not be described in detail.

[0033] Combination Figure 2 , Figure 4-7 , Figure 10-11 As shown, in this embodiment, the water tank mounting structure 300 includes a mounting groove 310 and a first bracket 320. The mounting groove 310 is formed in the main body 100 and corresponds to the shape of the water tank 200. Furthermore, the mounting groove 310 is located above the mist chamber 110, and the bottom of the mounting groove 310 is vertically connected to the mist chamber 110, as shown. Figure 6As shown. In other words, no obstruction structure is provided between the bottom of the mounting groove 310 and the top of the mist chamber 110, thus allowing complete communication between the two. The first bracket 320 protrudes from the inner wall of the mounting groove 310, and in the protruding direction of the first bracket 320, the width of the first bracket 320 is much smaller than the inner diameter of the mounting groove 310, thereby creating a large area of ​​hollowing out between the edge of the first bracket 320 and the inner wall of the mounting groove 310 to form a mist channel 340 connecting the mounting groove 310 and the mist chamber 110, as shown. Figure 4-6 , Figure 10-11 As shown.

[0034] Combination Figure 8-9 As shown, the water tank 200 is detachably installed in the mounting groove 310, and simultaneously, the water tank 200 is detachably supported on the first bracket 320. When the water tank 200 is installed in the mounting groove 310, a portion of its bottom is supported on the first bracket 320, and the mist outlet 250 at its bottom is connected to the mist channel 340. Figure 9 As shown, the atomized vapor ejected by the atomizing plate 260 is directly sprayed into the mist chamber 110 through the mist outlet 250 and the mist channel 340. The water tank mounting structure 300 in this application utilizes the engagement of the mounting groove 310 and the support of the first bracket 320 to stably install the water tank 200. Simultaneously, a large open area is created at the bottom of the mounting groove 310, thus giving the mist channel 340 connecting to the mist chamber 110 a larger cross-sectional area. The atomized vapor is unobstructed when sprayed downwards into the mist chamber 110 through the mist channel 340, increasing both the total amount and efficiency of the atomized vapor entering the mist chamber 110, thereby improving the eye-moisturizing and hydrating effects.

[0035] The following is combined Figures 2-6 As shown, in this embodiment, both the mist chamber 110 and the mounting groove 310 are formed by an inwardly recessed section on one side of the main body 100, and both have an open structure. The mounting groove 310 is located above the mist chamber 110, with its top penetrating the top of the main body 100 and its bottom penetrating the side wall 112 of the mist chamber 110, thus creating a vertically penetrating structure between the mounting groove 310 and the mist chamber 110. The first bracket 320 protrudes from the bottom of the mounting groove 310, and the protruding direction of the first bracket 320 is perpendicular to the height direction of the main body 100, as shown below. Figure 5 As shown. After the water tank 200 is installed in the mounting groove 310, a portion of its bottom rests on the first bracket 320.

[0036] The following is combined Figure 2-6 , Figure 10-11As shown, in one embodiment of this utility model, the mounting groove 310 is formed by a rear end wall 311 and two side walls 312 located on both sides of the rear end wall 311. The bottom ends of the two side walls 312 extend to the side walls 112 of the mist chamber 110. Specifically, the side walls 312 of the mounting groove 310 are arranged vertically and perpendicular to the side walls 112 of the mist chamber 110. The side walls 112 of the mist chamber 110 are hollowed out at the position between the two side walls 312 of the mounting groove 310, so that the bottom of the mounting groove 310 and the mist chamber 110 are completely connected. Figure 6 As shown. In this embodiment, the first bracket 320 protrudes from the rear end wall 311 and is located at the bottom of the mounting groove 310. Combined with... Figure 8 As shown, after the water tank 200 is installed, it is engaged with the outside of the water tank 200 by the rear end wall 311 and the two side walls 312 of the mounting groove 310. At the same time, the bottom part of the water tank 200 is supported by the first bracket 320, thereby achieving stable installation of the water tank 200 and ensuring that the mist channel 340 has a large cross-sectional area.

[0037] The following is combined Figure 2-7 , Figure 10-11 As shown, in this embodiment, the first bracket 320 has an elongated structure. Its length extends laterally along the mounting groove 310, that is, it extends laterally along the main body 100. Its width extends longitudinally or in the depth direction of the mounting groove 310, that is, it protrudes longitudinally along the main body 100. Furthermore, the width of the first bracket 320 is smaller than the inner diameter of the mounting groove 310 in the longitudinal or depth direction; that is, the width of the first bracket 320 is smaller than the width of the sidewall 312 of the mounting groove 310. Figure 7 As shown. This results in the area between the edge of the first bracket 320 and the opening of the mounting groove 310 being hollowed out. The space enclosed by the edge of the first bracket 320 and the two side walls 312 forms the mist channel 340, as shown. Figure 10-11 As shown. Because the first bracket 320 has a relatively small width, when the first bracket 320 supports the water tank 200, the bottom space occupied by it in the mounting groove 310 is small. This allows for a large-area hollowing out of the bottom of the mounting groove 310, resulting in a mist channel 340 with a larger cross-sectional area. Combined with... Figure 8-9 As shown, when the atomized gas is sprayed into the mist chamber 110 through the mist channel 340, the total amount and efficiency of the atomized gas entering the mist chamber 110 are increased, thereby improving the eye-moisturizing and hydrating effects.

[0038] Continue to combine Figure 2-7 , Figure 10-11As shown, in a preferred embodiment of this utility model, the width of the first bracket 320 is less than half the inner diameter of the mounting groove 310 in the longitudinal or depth direction. Therefore, the space occupied by the first bracket 320 in the longitudinal or depth direction of the mounting groove 310 is less than half its inner diameter, thereby hollowing out more than half of the bottom area of ​​the mounting groove 310, giving the mist channel 340 a larger cross-sectional area.

[0039] See Figure 7 As shown, in one specific embodiment, the width of the first bracket 320 is less than one-third of the inner diameter of the mounting groove 310 in the longitudinal or depth direction. Therefore, the space occupied by the first bracket 320 in the longitudinal or depth direction of the mounting groove 310 is less than one-third of its inner diameter, so that more than two-thirds of the space at the bottom of the mounting groove 310 is hollowed out. While ensuring that the first bracket 320 stably supports the water tank 200, the cross-sectional area of ​​the mist channel 340 is maximized, thereby allowing the atomized gas to be sprayed into the mist chamber 110 more effectively.

[0040] The following is combined Figure 2-6 , Figure 10-11 As shown, in another embodiment of this utility model, the back surface 210 and the two sides 220 of the water tank 200 are connected by a first mounting surface 230 with an arc-shaped structure. That is, two first mounting surfaces 230 with arc-shaped structures are formed at the rear end of the water tank 200. Figure 3 As shown. Correspondingly, a second mounting surface 313 is provided between the rear end wall 311 and the two side walls 312 of the mounting groove 310, which mates with the first mounting surface 230. That is, the rear end wall 311 and the two side walls 312 are connected through the second mounting surface 313. Figure 1 As shown, when the water tank 200 is installed in the mounting groove 310, its back surface 210 abuts against the rear end wall 311 of the mounting groove 310, its two sides 220 abut against the two side walls 312 of the mounting groove 310 respectively, and its second mounting surface 313 abuts against the first mounting surface 230 of the mounting groove 310. The water tank 200 is secured in place by the cooperation of the flat and curved surfaces, making the water tank 200 stably secured in the mounting groove 310. In addition, the first bracket 320 supports the bottom of the water tank 200, ensuring that the water tank 200 is securely installed in the mounting groove 310.

[0041] Continue to combine Figure 2-6 , Figure 10-11 As shown, in another embodiment of this utility model, the back surface 210 of the water tank 200 is further provided with a mounting protrusion 240, which is generally rectangular or square in shape, such as... Figure 3As shown, but not limited to. Correspondingly, the rear end wall 311 of the mounting groove 310 is recessed with a locking groove 314 corresponding to the mounting protrusion 240. In this embodiment, the bottom surface of the locking groove 314 is on the same plane as the first bracket 320. Of course, it is also feasible to make the position of the locking groove 314 higher than the first bracket 320. The mounting protrusion 240 is detachably installed in the locking groove 314. Specifically, by pushing the water tank 200 inward from the opening position of the mounting groove 310, the mounting protrusion 240 of the water tank 200 can be locked into the locking groove 314, and the outer wall of the water tank 200 abuts against the inner wall of the mounting groove 310, and the bottom of the water tank 200 is supported on the first bracket 320. Through the support of the first bracket 320 for the water tank 200 and the locking of the locking groove 314 for the mounting protrusion 240, the installation of the water tank 200 is more stable.

[0042] Continue to combine Figure 2-6 , Figure 10-11 As shown, in a preferred embodiment of this utility model, the rear end wall 311 of the mounting groove 310 is recessed with the engaging groove 314, and a second mounting surface 313 with an arc-shaped structure is provided between the rear end wall 311 and the two side walls 312. After the water tank 200 is installed, the engaging groove 314 engages with the mounting protrusion 240, the second mounting surface 313 abuts against the first mounting surface 230, and the first bracket 320 supports the bottom of the water tank 200, making the water tank 200 more stably installed in the mounting groove 310. At the same time, the cross-sectional area of ​​the mist channel 340 is maximized, thereby making the atomized gas more effectively sprayed into the mist chamber 110.

[0043] The following is combined Figure 2 , Figure 4-7 As shown, in another preferred embodiment of this utility model, the water tank mounting structure 300 further includes at least one second bracket 330. The second bracket 330 protrudes from the inner wall of the mounting groove 310 and is spaced apart from the first bracket 320. The second bracket 330 and the first bracket 320 are preferably located on the same plane, but this is not a limitation. The spaced-apart second bracket 330 and first bracket 320 jointly support the bottom of the water tank 200, making the installation of the water tank 200 more stable. In this embodiment, in the protruding direction of the second bracket 330, the width of the second bracket 330 is also much smaller than the inner diameter of the mounting groove 310, thereby hollowing out the space between the edge of the second bracket 330, the edge of the first bracket 320, and the inner wall of the mounting groove 310 to form the mist channel 340.

[0044] Continue to combine Figure 2 , Figure 4-7As shown, in one specific embodiment, the water tank mounting structure 300 includes two second supports 330, which protrude from the side walls 312 of the mounting groove 310, respectively, and extend towards each other. Furthermore, the maximum distance from the edge of each second support 330 to the side wall 312 it connects to is less than one-third of the transverse inner diameter of the mounting groove 310. More preferably, it is less than one-sixth of the transverse inner diameter of the mounting groove 310, so that the space occupied by the second support 330 in the transverse direction of the mounting groove 310 is less than one-sixth of its inner diameter, thereby creating a large area of ​​hollowed-out space between the two second supports 330, forming a mist channel 340 with a larger cross-sectional area, such as... Figure 7 As shown. In this embodiment, a first bracket 320 and two second brackets 330 form a triangular support for the bottom of the water tank 200, so that the water tank 200 is securely placed in the mounting groove 310. A large area of ​​clearance is formed at the bottom of the mounting groove 310, that is, a mist channel 340 with a large cross-sectional area is formed, so that the atomized gas is sprayed more smoothly into the mist chamber 110, thereby improving the total amount and efficiency of the atomized gas entering the mist chamber 110.

[0045] Continue reading Figure 2 , Figure 4-7 As shown, in this embodiment, two second supports 330 are symmetrically arranged, and each second support 330 extends inward and connects to the first support 320. The end face of the second support 330 away from the side wall 312 has an arc-shaped structure, as shown in the figure. Figure 4-5 , Figure 7 As shown, this further reduces the area of ​​the second bracket 330, further reduces the clearance at the bottom of the mounting groove 310, and thus increases the cross-sectional area of ​​the mist channel 340. Of course, the end face of the second bracket 330 away from the side wall 312 is not limited to an arc-shaped structure.

[0046] Continue to combine Figure 2 , Figure 4-7 As shown, in this embodiment, at least one of the above-mentioned engaging groove 314 and second mounting surface 313 can be further designed into the mounting groove 310. In a more preferred embodiment, the rear end wall 311 of the mounting groove 310 is recessed with an engaging groove 314, and an arc-shaped second mounting surface 313 is provided between the rear end wall 311 and the two side walls 312. Simultaneously, the bottom of the mounting groove 310 is provided with a first bracket 320 and two second brackets 330. This ensures that the water tank 200 can be more securely installed in the mounting groove 310, and a large area is hollowed out at the bottom of the mounting groove 310 to obtain a mist channel 340 with a large cross-sectional area. Figure 8-9As shown, when the atomized gas is sprayed into the mist chamber 110 through the mist channel 340, the total amount and efficiency of the atomized gas entering the mist chamber 110 are increased, thereby improving the eye-moisturizing and hydrating effects.

[0047] Continue to combine Figures 1-11 As shown, in this invention, the water tank 200 is mounted above the mist chamber 110, forming a mist channel 340 with a large cross-sectional area between them. Therefore, only one atomizing plate 260 is needed to efficiently atomize the liquid into atomized gas and spray the maximum amount of atomized gas into the mist chamber 110, increasing the total amount and efficiency of atomized gas injected into the mist chamber 110. Moreover, compared to the prior art where the atomizing mechanism has at least two atomizers, this application reduces the number of components, thereby reducing production costs. At the same time, since the water tank 200 is mounted above the mist chamber 110, it does not obstruct the mist chamber 110, leaving the interior of the mist chamber 110 completely unobstructed. The atomized gas can flow naturally within the mist chamber 110, making the mist sprayed towards the eyes lighter and softer, increasing user comfort, and improving the eye-moisturizing and hydrating effects.

[0048] The following is combined Figure 1-2 , Figure 4-6 , Figure 8-11 As shown, in one embodiment of this utility model, the sidewall 112 of the mist chamber 110 is arranged perpendicularly to the bottom wall 111, thereby forming a vertical embankment structure on the sidewall 112. This structure effectively blocks the outward flow of the atomized vapor, allowing it to flow towards the eyes and preventing leakage. This allows more atomized vapor to act on the area around the eyes, forming a mist cluster around them. The atomized vapor can moisturize the eyes for a longer period of time, thus achieving a more effective eye-moisturizing and hydrating effect.

[0049] Combined again Figures 1-11 As shown, when using the eye moisturizing atomizer 1 of this utility model, the water tank 200 is first installed in the mounting groove 310. Specifically, the water tank 200 is pushed from the opening of the mounting groove 310 toward its rear end wall 311 until the back side 210 of the water tank 200 abuts against the rear end wall 311 of the mounting groove 310, as shown. Figure 1 As shown, at this time, the mounting protrusion 240 at the rear end of the water tank 200 is engaged in the engagement groove 314, as... Figure 8-9 As shown, the first mounting surface 230 at its rear end abuts against the second mounting surface 313 of the mounting groove 310. Furthermore, the bottom edge of the water tank 200 is supported on the first bracket 320 and the second bracket 330, forming a triangular support for the bottom of the water tank 200 through one first bracket 320 and two second brackets 330. This ensures that the water tank 200 is securely mounted within the mounting groove 310, while the bottom of the mounting groove 310 has a mist channel 340 with a large cross-sectional area.

[0050] Combination Figure 8-9 As shown, after the atomization function is activated, the atomizing plate 260 atomizes the liquid in the water tank 200 to obtain atomized gas, which is then sprayed into the atomized gas chamber 110 through the atomized gas channel 340. Because the cross-sectional area of ​​the atomized gas channel 340 is maximized, the atomized gas is sprayed into the atomized gas chamber 110 more smoothly, increasing the total amount and efficiency of the atomized gas entering the chamber 110. Furthermore, the atomized gas can flow naturally within the atomized gas chamber 110, resulting in a lighter and gentler mist sprayed towards the eyes, increasing user comfort. During the natural flow of the atomized gas within the atomized gas chamber 110, the side wall 112, perpendicular to the bottom wall 111, effectively blocks the atomized gas, directing it towards the eyes and preventing leakage. This allows more atomized gas to act on the eyes, forming a mist cluster around them, enabling the atomized gas to moisturize the eyes for a longer and more effective time, thus improving the eye-moisturizing and hydrating effects.

[0051] In summary, the eye-moisturizing atomizer 1 of this utility model has a fully open bottom mounting groove 310, and a first support 320 protrudes from the inner wall of the mounting groove 310. In the protruding direction of the first support 320, the width of the first support 320 is much smaller than the inner diameter of the mounting groove 310, so that the edge of the first support 320 and the inner wall of the mounting groove 310 are hollowed out in a large area to form a mist channel 340 connecting the mounting groove 310 and the mist chamber 110. First, the water tank 200 is stably installed in the mounting groove 310 by the engagement of the mounting groove 310 and the support of the first bracket 320. Second, the first bracket 320 has a small width, thus creating a large open area at the bottom of the mounting groove 310, forming a mist channel 340 with a large cross-sectional area. This allows the atomized gas to be sprayed downwards into the mist chamber 110 without obstruction, thereby increasing the total amount and efficiency of the atomized gas entering the mist chamber 110, effectively improving the eye-moisturizing and hydrating effects. Third, the water tank 200 is located above the mist chamber 110 and sprays atomized gas downwards. Only one atomizing plate 260 is needed, which reduces the number of atomizers compared to existing technologies, achieving the goal of reducing the number of components and thus significantly reducing production costs.

[0052] The structures of the other parts of the eye moisturizing atomizer 1 involved in this utility model are all conventional structures well known to those skilled in the art, and will not be described in detail here.

[0053] The above-disclosed embodiments 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 scope of the present utility model application shall still fall within the scope of the present utility model.

Claims

1. An eye-moisturizing atomizing device, comprising a main body and a water tank, characterized in that, It also includes a water tank mounting structure, which comprises: A mounting slot is formed in the main body, and the bottom of the mounting slot is completely open; A first bracket protrudes from the inner wall of the mounting groove. In the protruding direction of the first bracket, the width of the first bracket is smaller than the inner diameter of the mounting groove. The space between the edge of the first bracket and the inner wall of the mounting groove forms a mist channel.

2. The eye-moisturizing atomizer as described in claim 1, characterized in that, In the protruding direction of the first bracket, the width of the first bracket is at least less than half the inner diameter of the mounting groove.

3. The eye-moisturizing atomizer as described in claim 1, characterized in that, The water tank mounting structure further includes at least one second bracket, which protrudes from the inner wall of the mounting groove and is spaced apart from the first bracket. In the protruding direction of the second bracket, the width of the second bracket is at least one-third of the inner diameter of the mounting groove.

4. The eye-moisturizing atomizer as described in claim 3, characterized in that, The water tank installation structure includes two second brackets, which are respectively protruding from both sides of the first bracket and protruding towards each other. The edges of the two second brackets and the edge of the first bracket form the mist channel.

5. The eye-moisturizing atomizer as described in claim 4, characterized in that, The two second supports are arranged symmetrically, and the end face of each second support is arc-shaped.

6. The eye-moisturizing atomizer as described in claim 3, characterized in that, The mounting groove is formed by a rear end wall and two side walls located on both sides of the rear end wall. The first bracket protrudes from the rear end wall, and the second bracket protrudes from the side walls.

7. The eye-moistening atomizer as described in any one of claims 1-6, characterized in that, The back of the water tank is provided with a mounting protrusion, and the inner wall of the mounting groove is provided with a corresponding engaging groove. The mounting protrusion is detachably engaged in the engaging groove, and the water tank is detachably supported on the first bracket.

8. The eye-moisturizing atomizer as described in any one of claims 1-6, characterized in that, The water tank has a first mounting surface with an arc-shaped structure between its back and side. The mounting groove has a second mounting surface that mates with the first mounting surface between its rear end wall and side wall. When the water tank is installed in the mounting groove, the first mounting surface abuts against the second mounting surface.

9. The eye-moisturizing atomizer as described in any one of claims 1-6, characterized in that, The bottom of the water tank has a through-hole for misting, and an atomizing plate is provided at the misting hole. When the water tank is installed in the mounting groove and supported on the first bracket, the misting hole is connected to the mist channel.

10. The eye-moistening atomizer according to any one of claims 1-6, characterized in that, The main body has a mist chamber, which is located below the mounting groove and is vertically connected to the bottom of the mounting groove. The side walls and bottom walls of the mist chamber are perpendicular to each other and have an open structure.