Eye-moistening atomizer and energy-saving sealing device for quickly heating atomized steam of eye-moistening atomizer
By designing a fast heating and energy-saving sealing device for atomized gas, and using innovative design of the sealing cover and atomization mechanism, the existing eye atomizer has been solved, and the rapid heating and centralized injection of fog vapor is achieved, which improves the user experience and the energy-saving effect of the product.
Patent Information
- Application Number
- CN202421828808.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The atomization device of the existing eye-moistening atomizer is slow to heat, which causes users to wait for a long time to feel the temperature of the water mist. The temperature after heating is low, the heat compress effect is poor, the potion utilization rate is low, and the heat energy loss is large, which reduces the energy saving and consumption reduction effect of the product.
Design a fast heating and energy-saving sealing device for atomized gas is designed, including a main body, a sealing cover and an atomization mechanism. The sealing cover realizes the sealing of the atomization chamber and the heating space adjustment through the sealing plug and abutment portion. The atomization mechanism realizes rapid heating and concentrated injection of the mist steam through the inclined atomization sheet and heating plate.
The rapid heating and heating of fog vapor is achieved, shortening the heating time, and users can feel the temperature of fog vapor without waiting, improving the effect of heat compress and drug care, reducing heat energy loss, and improving the energy-saving and consumption-saving performance of the product.
Smart Images

Figure CN223026247U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of eye care devices, in particular to a moistening eye atomizer and an atomized gas rapid heating, energy-saving and sealing device thereof. Background Art
[0002] A moistening eye atomizer is a device worn on a user's eyes, which continuously atomizes the liquid in a water tank through an atomizing device to form water vapor, so as to moisten and hot compress the user's eyes; recently, with the addition of traditional Chinese medicine to eye care, in order to give full play to the medicinal properties of traditional Chinese medicine in a wider range, a device for fumigating traditional Chinese medicine heated to a certain temperature is required to truly relieve the symptoms of dry eyes and bring moisturizing and care effects to the eyes.
[0003] In the existing eye moistening devices, the atomizing devices are all provided with atomizing sheets at the outlet position of the water tank. The liquid is atomized by the atomizing sheets and then supplied to the atomizing tank, and then the water mist is sprayed onto the user's left and right eyeballs through the atomizing tank. For the atomizing device with the functions of hot compress and fumigation, a heating sheet is further arranged outside the atomizing tank, and the heat is gradually transferred to the atomizing tank through the heating sheet to heat the water mist. However, when heating the continuously diffusing water mist, there is a problem of slow heating speed. The user needs to wait for a long time to feel the temperature of the water mist, and the temperature of the water mist after being heated is relatively low, so the hot compress effect is not good, which reduces the user experience; for the case where the water tank is filled with liquid medicine, it also leads to low utilization rate of the liquid medicine and poor treatment effect. Moreover, the slow heating of the water mist also results in large heat energy loss and reduces the energy-saving and consumption-reducing effect of the product.
[0004] Therefore, it is necessary to provide an atomized gas rapid heating, energy-saving and sealing device and a moistening eye atomizer to solve the above problems. Summary of the Utility Model
[0005] One object of the utility model is to provide an atomized gas rapid heating, energy-saving and sealing device.
[0006] Another object of the utility model is to provide a moistening eye atomizer with an atomized gas rapid heating, energy-saving and sealing device.
[0007] To achieve the above object, the technical solution of the present utility model is as follows: A rapid heating and energy-saving sealing device for atomized gas is provided, which includes a main body, a sealing cover, and an atomizing mechanism; wherein, an atomizing chamber is provided on the main body, and a heating plate is provided on one side wall of the atomizing chamber; the sealing cover includes a sealing plug, and an atomizing hole is penetratingly provided on the sealing plug, and the sealing plug is detachably connected to the atomizing chamber. When the sealing plug is inserted into the atomizing chamber, the sealing plug abuts against the side wall of the atomizing chamber to seal the atomizing chamber, and there is a gap between the sealing plug and the bottom of the atomizing chamber; the atomizing mechanism is detachably installed on the main body and is used to provide atomized gas into the atomizing chamber.
[0008] Preferably, the sealing cover further includes an abutting portion, the sealing plug protrudes from one side of the abutting portion, and the height from the end of the sealing plug to the abutting portion is less than the depth of the atomizing chamber, and the outer diameter of the abutting portion is greater than the outer diameter of the opening of the atomizing chamber. When the sealing plug is inserted into the atomizing chamber, the abutting portion abuts against the edge of the opening of the atomizing chamber. Through the arrangement of the abutting portion, when installing the sealing plug during use, directly press until the abutting portion abuts against the edge of the opening of the atomizing chamber, which can ensure that there is a gap between the end of the sealing plug and the bottom of the atomizing chamber, and there is no need to pay special attention to the gap problem, and the use operation is more convenient and fast. In addition, by setting different heights of the sealing plug, the adjustment of the fog and steam heating space can be realized. On the premise of the same heating power of the heating plate, the heating temperature and heating duration can be adjusted.
[0009] Preferably, the sealing plug has an elastic structure, and when the sealing plug is inserted into the atomizing chamber, it is squeezed by the inner wall of the atomizing chamber to achieve sealing. On the one hand, the connection of the sealing plug is more firm, and on the other hand, the sealing of the atomizing chamber is simple.
[0010] Preferably, at least one rib protrudes radially along the outer wall of the sealing plug. When the sealing plug is inserted into the atomizing chamber, the rib is squeezed between the outer wall of the sealing plug and the inner wall of the atomizing chamber, further improving the sealing effect.
[0011] Preferably, the sealing cover further includes a sealing cup protruding from the other side of the abutting portion. The sealing cup surrounds the atomizing hole, and the sealing cup is used for detachably sealing connection with the using part. When the sealing cup is hermetically attached to the using part, it can prevent the fog and steam from diffusing out through the atomizing hole, thereby ensuring that the fog and steam are heated and raised in temperature quickly, and the fog and steam are concentrated and sprayed on the using part, having better moisturizing, hot compress, physical therapy and other effects.
[0012] Preferably, the sealed cup includes an annular sealing surface, which is inclined from the edge of the sealed cup towards its middle and is a curved surface. When the sealed cup is stressed, the sealing surface can be attached to the use part to achieve sealing or detached from the use part.
[0013] 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 penetratingly formed at the bottom of the liquid tank, and an inclined atomization sheet is installed at the liquid outlet hole. When the liquid tank is installed on the main body, the liquid outlet hole is communicated with the atomization chamber, and the spraying direction of the atomization sheet intersects with the heating plate. Through the inclined atomization sheet, the spraying direction of the atomization sheet is inclined and faces the heating plate so as to intersect with the heating plate, enabling the mist to be directly sprayed onto the heating plate concentratedly. The mist directly contacts the high-temperature heating plate and is instantaneously heated, and can be instantaneously heated to a relatively high temperature, enabling the user to feel the temperature of the mist almost without waiting. Thereby, the user experience is greatly improved, and the hot compress effect is also enhanced.
[0014] Preferably, an inclined atomization channel communicated with the liquid outlet hole is further provided at the bottom of the liquid tank, and the atomization sheet is inclinedly arranged at any position of the atomization channel. When the liquid tank is installed on the main body, the atomization channel is communicated with the atomization chamber. By providing the inclined atomization channel to guide the mist ejected by the atomization sheet, the spraying direction of the atomization sheet accurately faces the heating plate and forms an included angle, maximizing the spraying of the atomized mist onto the heating plate for rapid heating, thereby reducing heat energy consumption and also saving the liquid usage.
[0015] Preferably, the atomization mechanism further includes a base detachably connected to the bottom of the liquid tank. The atomization channel is penetratingly formed on the base, and the atomization sheet is clamped between the bottom of the liquid tank and the base. On the one hand, this makes the installation of the atomization sheet more convenient and rapid, and on the other hand, it is convenient for the formation of the atomization channel.
[0016] Preferably, a receiving groove corresponding to the atomization sheet is concavely provided on the bottom of the liquid tank and / or on the base. The atomization sheet is received in the receiving groove, and convex ribs are provided between the atomization sheet and the bottom of the liquid tank and / or between the atomization sheet and the base, thereby realizing the stable installation of the atomization sheet and achieving the sealed installation of the atomization sheet by extruding the convex ribs.
[0017] Preferably, the liquid tank includes an inclined bottom plate, the liquid outlet hole is penetratingly formed on the bottom plate, and the atomization sheet is installed on the bottom plate, thereby realizing the inclined installation of the atomization sheet, making the inclined installation of the atomization sheet convenient, and the inclined liquid outlet hole cooperates with the inclined atomization sheet, enabling the mist to be accurately sprayed onto the heating plate.
[0018] Preferably, a liquid filling port is penetratively formed in the top of the liquid tank, and a sealing cover is detachably connected in the liquid filling port, so that a user can conveniently add and replace the liquid.
[0019] Preferably, the sealing cover includes a pressing portion and a column protruding from the pressing portion. The column is detachably inserted into the liquid filling port, and the pressing portion is separably pressed on the top of the liquid tank. The sealing cover can be conveniently detached by pulling the pressing portion.
[0020] Preferably, at least the column is of an elastic structure. When the column is pressed into the liquid filling port, it is squeezed by the inner wall of the liquid filling port, so that complete sealing can be achieved to prevent liquid leakage.
[0021] Preferably, the column is provided with convex ribs. When the column is pressed into the liquid filling port, the convex ribs are pressed against the inner wall of the liquid filling port to further improve the sealing effect.
[0022] Preferably, the atomization mechanism further includes a liquid filling bottle. The liquid filling bottle is provided with a plug connector corresponding to the liquid filling port. The plug connector is detachably inserted into the liquid filling port to fill the liquid into the liquid tank.
[0023] Preferably, a matching connection protrusion and clamping hole are provided between the liquid tank and the main body. The connection protrusion is separably clamped in the clamping hole to realize electrical connection and separation with the atomization sheet, so that the installation and disassembly of the liquid tank are convenient.
[0024] Correspondingly, the present utility model further provides an eye moistening atomizer, which includes a wearing body and the atomized gas rapid heating energy-saving sealing device as described above. The wearing body is connected to both ends of the main body.
[0025] Compared with the prior art, since the atomized gas rapid heating and energy-saving sealing device of the present utility model is provided with a sealing cover, the sealing cover includes a sealing plug provided with atomizing holes, and the sealing plug is detachably connected to the atomizing chamber to seal and detachably separate the atomizing chamber. Moreover, when the sealing plug is installed in the atomizing chamber, there is a gap between the sealing plug and the bottom of the atomizing chamber. The atomizing chamber is sealed by the sealing plug, and the volume of the atomizing chamber is reduced to form a relatively small fog vapor heating space, so that the fog vapor is concentrated in a relatively small sealed space and heated. The fog vapor is fully close to the heat source, and the heat transfer efficiency between the heat and the fog vapor is improved. Thus, the rapid heating and temperature rise of the fog vapor are realized, and further the heating time of the fog vapor is greatly shortened. Users can almost feel the temperature of the fog vapor without waiting, thereby greatly improving the user experience. In addition, because the heating space is compressed to the smallest space, under the condition of the same unit time, the fog vapor can be instantly heated to a relatively high temperature, and the heated fog vapor is concentrated and sprayed onto the eyes through the atomizing holes, achieving a feeling similar to applying a hot towel to the eyes, thereby improving the moisturizing and hot compress effects, especially for special required materials, such as the hot fumigation and drug care effects where traditional Chinese medicine water needs to be heated to a certain temperature to exert its medicinal properties. Furthermore, by increasing the heating speed of the fog vapor and making the heated fog vapor concentrated and sprayed onto the eyes, the heat energy loss is small, and long-term hot compress and fumigation can be carried out, greatly improving the energy-saving and consumption-reducing effects of the product.
[0026] Correspondingly, the eye moistening atomizer with the atomized gas rapid heating and energy-saving sealing device of the present utility model also has the above technical effects. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is a schematic structural diagram of the eye moistening atomizer of the present utility model.
[0028] Figure 2 is a schematic structural diagram of the atomized gas rapid heating and energy-saving sealing device of the present utility model.
[0029] Figure 3 is Figure 2 a sectional view.
[0030] Figure 4 is Figure 2 an exploded view.
[0031] Figure 5 is Figure 4 an enlarged structural schematic diagram of the sealing cover in
[0032] Figure 6 is Figure 5 a structural schematic diagram from another angle in
[0033] Figure 7 is Figure 5 a structural schematic diagram from yet another angle in
[0034] Figure 8 is Figure 4 the exploded view of the atomizing mechanism in
[0035] Figure 9 is Figure 8 the structural schematic diagram of another angle in
[0036] Figure 10 is Figure 4 the sectional view of the atomizing mechanism in
[0037] Figure 11 is Figure 2 the schematic diagram of the heating principle of the rapid temperature rise, energy-saving and sealing device for atomized gas in
[0038] Figure 12 is the schematic diagram of the state when the atomizing mechanism in the present utility model installs the liquid adding bottle.
[0039] Figure 13 is Figure 12 the schematic diagram of the completed installation state.
[0040] Figure 14 is Figure 1 the structural schematic diagram of installing the liquid adding bottle on the eye moistening atomizer in Specific embodiments
[0041] Now, embodiments of the present utility model will be described with reference to the accompanying drawings, and like reference numerals in the drawings represent like elements. It should be noted that the orientation descriptions involved in the present utility model, such as up, down, left, right, front, back, etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for facilitating the description of 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, and thus cannot be understood as a limitation to the present application. The first, second, etc. described are only used to distinguish technical features, and cannot be understood 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.
[0042] Combined with Figures 1 - 14 shown, the rapid temperature rise, energy-saving and sealing device 100 for atomized gas provided by the present utility model is mainly applicable to the eye moistening atomizer 1, and is used to atomize or / and heat the liquid and then spray it onto the user's eyes to achieve effects such as eye moisturizing and nursing. Of course, it is not limited to being used on the eye moistening atomizer 1, and can also be used on other products that require atomization or / and heating.
[0043] Next, first combined with Figures 2 - 10As shown, in an embodiment of the present utility model, the atomized gas rapid heating energy-saving sealing device 100 includes a main body 110, a sealing cover 120, and an atomizing mechanism 130. Among them, an atomizing chamber 111 in an open shape is provided on the main body 110, and a heating plate 112 is provided on one side wall of the atomizing chamber 111. The heating plate 112 is used to heat the atomized gas in the atomizing chamber 111. The atomizing mechanism 130 is detachably installed on the main body 110 and is used to supply atomized gas into the atomizing chamber 111. The sealing cover 120 includes a sealing plug 121, and the sealing plug 121 is detachably connected to the inside of the atomizing chamber 111. And an atomizing hole 1211 is penetrated through the sealing plug 121. The atomizing hole 1211 is used to cover the user's use part, for example, the user's eyes, etc. When the sealing plug 121 is inserted into the atomizing chamber 111, the sealing plug 121 abuts against the side wall of the atomizing chamber 111 to seal the opening of the atomizing chamber 111, and at the same time, there is a gap between the sealing plug 121 and the bottom of the atomizing chamber 111. This gap is the fog gas heating space, as Figure 3 shown. After the atomized gas introduced into the atomizing chamber 111 is heated, it is sprayed onto the user's use part (such as the eyes) through the atomizing hole 1211 on the sealing plug 121 to achieve effects such as moisturizing, hot compress, and physical therapy. In this application, the opening of the atomizing chamber 111 is sealed by the sealing plug 121, and at the same time, the volume of the atomizing chamber 111 is reduced to reduce the fog gas heating space, so that the fog gas is concentrated in a smaller and sealed heating space and heated, and at the same time, the fog gas is fully close to the heat source, so that the heat transfer speed between the heat and the fog gas is fast, realizing the rapid heating and temperature rise of the fog gas, thereby greatly shortening the heating time of the fog gas, and can be instantly heated to a higher temperature. The user can hardly feel the temperature of the fog gas without waiting. Thus, the user experience is greatly improved, and the effects of hot compress, fumigation, drug care, etc. are improved, and the heat energy is also greatly saved, achieving the purpose of energy conservation and consumption reduction.
[0044] The following combination Figures 3 - 7 As shown, in an embodiment, the sealing cover 120 further includes an abutting portion 122, and the sealing plug 121 protrudes from one side of the abutting portion 122. Specifically, the abutting portion 122 can be formed by protruding along the edge of the sealing plug 121, or the sealing plug 121 can protrude from one side of the sheet-shaped abutting portion 122, which is not specifically limited here. And the height of the sealing plug 121 is less than the depth of the atomizing chamber 111. Specifically, the height from the end of the sealing plug 121 to the abutting portion 122 is less than the depth of the atomizing chamber 111. In this way, when installing the sealing plug 121 during use, only need to press the sealing plug 121 into the atomizing chamber 111 until the abutting portion 122 abuts against the opening edge of the atomizing chamber 111. At this time, the sealing plug 121 squeezes the inner wall of the atomizing chamber 111 to achieve sealing, and at the same time ensures that there is a gap between the end of the sealing plug 121 and the bottom of the atomizing chamber 111, as Figure 3As shown, there is no need to pay special attention to the installation gap problem, making the operation more convenient and fast. As for the specific height of the sealing plug 121, it is not specifically limited and can be flexibly set according to the needs of different products. Through the design of different heights of the sealing plug 121, the adjustment of the fog and steam heating space can be realized. On the premise that the heating power of the heating plate 112 is the same, the change of the heating space can achieve the effect of adjusting the heating temperature and heating duration.
[0045] Continue to combine Figures 5 - 7 As shown, in this embodiment, the shapes of the abutting portion 122 and the sealing plug 121 correspond to the shape of the atomization chamber 111. Specifically, the atomization chamber 111 and the sealing plug 121 are both in a long strip arc shape to be able to cover the user's eyes. The outer diameter of the sealing plug 121 corresponds to or is slightly larger than the inner diameter of the atomization chamber 111, while the outer diameter of the abutting portion 122 is larger than the outer diameter of the opening of the atomization chamber 111, and the abutting portion 122 has a certain thickness. Further, a card slot can be opened on the abutting portion 122, and the card slot is opened in at least a part of the area along the radial direction of the abutting portion 122. In this way, after the sealing plug 121 is pressed into the atomization chamber 111, the abutting portion 122 abuts against the opening edge of the atomization chamber 111, and the aforementioned card slot can also be engaged with the side wall of the atomization chamber 111, as Figure 3 shown, to achieve a more effective seal.
[0046] Continue to combine Figures 3 - 7 As shown, in a preferred embodiment, the sealing plug 121 has an elastic structure. And, at least one rib 1314 (see Figure 7 ) protrudes radially along the outer wall of the sealing plug 121. When the sealing plug 121 is pressed into the atomization chamber 111, it is squeezed by the inner wall of the atomization chamber 111 due to its elasticity, so as to be closely attached to the side wall of the atomization chamber 111 to achieve a seal. The installation of the sealing plug 121 is firm and has a good sealing effect on the atomization chamber 111. At the same time, the rib 1314 is squeezed between the outer wall of the sealing plug 121 and the inner wall of the atomization chamber 111 (see Figure 3 ), further improving the sealing effect. Thus, it effectively prevents the fog and steam from diffusing outwards. The fog and steam are concentrated in a smaller sealed space and heated, greatly improving the heat exchange efficiency, thereby realizing the rapid heating of the fog and steam and greatly saving thermal energy.
[0047] Furthermore, at least one partition piece 1213 is also provided in the atomization hole 1211, for example, a plurality of partition pieces 1213 are arranged at intervals, and a certain flow splitting effect is realized by using the partition pieces 1213. Of course, not setting the partition pieces 1213 does not affect the use.
[0048] Next, combine with Figures 4 - 7As shown, in a preferred embodiment of the present utility model, the sealing cover 120 further includes a sealing cup 123 protruding from the other side of the abutting portion 122. The sealing cup 123 is disposed around the atomization hole 1211 and is used for detachably sealingly connecting with the using part. In a specific embodiment, two atomization holes 1211 are provided on the sealing plug 121 to cover the eyes of the user. Correspondingly, two sealing cups 123 are symmetrically arranged. Each sealing cup 123 is in an arc structure in the transverse direction, so as to be easily attached to and sealed with the two-eye part, preventing the mist from diffusing outwards. The mist can only be quickly heated in the sealed heating space, ensuring that the mist is heated and warmed up quickly, and then sprayed onto the eyes through the atomization holes 1211, so that the mist is concentratedly sprayed onto the eyes, having better moisturizing, hot compress, physiotherapy and other effects. It can be understood that when used on other products, only one or more sealing cups 123 can be provided, and the sealing cups 123 are sealingly attached to the using part to prevent the mist from diffusing outwards through the atomization holes 1211.
[0049] Combined with Figures 5 - 7 As shown, an annular sealing surface 1231 is provided at the end of the sealing cup 123 away from the abutting portion 122. The sealing surface 1231 is inclined from the edge of the sealing cup 123 towards the middle thereof and is a curved surface, as Figure 7 shown, so as to be able to fit onto the eyes to achieve sealing. Moreover, the sealing cup 123 is of an elastic structure. Therefore, when the sealing cup 123 is stressed, the sealing surface 1231 can be made to fit onto the eyes to achieve a better sealing effect, and the sealing cup 123 can be pulled away from the eyes.
[0050] In the present utility model, a recessed portion 124 is further provided at the lower end of the front surface of the sealing cover 120. The recessed portion 124 is disposed between the two sealing cups 123. During use, the recessed portion 124 fits onto the nose of the user, thereby improving the use comfort. In addition, the sealing cover 120 can be integrally formed by a flexible material, such as rubber, silicone, polymer (such as polyurethane), etc., but is not limited to the foregoing materials, so that the entire sealing cover 120 has elasticity.
[0051] Next, combined with Figures 2 - 4 、 Figures 8 - 10 As shown, in a preferred embodiment of the present utility model, the atomization mechanism 130 includes a liquid tank 131 and an atomization sheet 132. As Figure 3 、 Figure 10 shown, a liquid outlet hole 1311 is penetratively formed at the bottom of the liquid tank 131, and an inclined atomization sheet 132 is installed at the liquid outlet hole 1311. The liquid tank 131 is detachably installed on the main body 110 and can communicate with the atomization chamber 111, and atomized gas is provided into the atomization chamber 111 through the atomization sheet 132.
[0052] Combined withFigures 2 - 4 , Figure 11 As shown in Figure 11 , another side wall of the atomization chamber 111 is further provided with a mist inlet 111a, and the mist inlet 111a communicates with the atomization chamber 111 for introducing the atomized mist into the atomization chamber 111. The liquid tank 131 is detachably mounted on the main body 110 and is located above the mist inlet 111a. When the liquid tank 131 is mounted on the main body 110, the atomization sheet 132 is located between the bottom of the liquid tank 131 and the side wall of the atomization chamber 111, and the liquid outlet hole 1311 of the liquid tank 131 is communicated with the mist inlet 111a (see Figure 3 ), and the spraying direction of the atomization sheet 132 intersects with the heating plate 112. Specifically, the spraying direction of the atomization sheet 132 faces the heating plate 112 and intersects with it, as Figure 11 shown. Thus, the mist ejected by the atomization sheet 132 is directly sprayed on the heating plate 112, and when the mist contacts the high-temperature heating plate 112, it is instantaneously heated and can be instantaneously heated to a relatively high temperature.
[0053] Next, in combination with Figures 3 - 4 , Figure 11 shown, in a specific embodiment, the mist inlet 111a and the heating plate 112 are respectively provided on adjacent side walls of the atomization chamber 111. Specifically, the mist inlet 111a is opened on the top wall 111b of the atomization chamber 111 and communicates with the atomization chamber 111. The heating plate 112 is mounted on the side wall of the atomization chamber 111 facing its opening. In other words, the mist inlet 111a is provided on the horizontal top wall 111b of the atomization chamber 111, while the heating plate 112 is vertically provided on the side wall of the atomization chamber 111 so as to be adjacent to the top wall 111b. The heating plate 112 is made of a medium capable of quickly 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 112 are conventional methods in the art and will not be described in detail. In this embodiment, the main body 110 is further provided with a mounting groove 113 corresponding to the liquid tank 131, and the mounting groove 113 is provided above the top wall 111b of the atomization chamber 111. The liquid tank 131 is mounted in the mounting groove 113 and is detachably connected to the main body 110, so that the liquid outlet hole 1311 of the liquid tank 131 can be communicated with the mist inlet 111a. And, the atomization sheet 132 is inclined so that its spraying direction is inclined and faces the heating plate 112, so that the spraying direction intersects with the heating plate 112, and the mist ejected by the atomization sheet 132 can be directly sprayed onto the heating plate 112 after passing through the mist inlet 111a, thereby instantaneously heating the mist.
[0054] Understandably, the positions of the fog inlet 111a and the heating plate 112 are not limited to the above-described embodiments. In other embodiments, the fog inlet 111a and the heating plate 112 may also be provided on opposite side walls. In this way, the spraying direction of the atomization sheet 132 can be directly facing the heating plate 112, which also makes the spraying direction intersect with the heating plate 112 to achieve rapid heating. In the present invention, as long as the spraying direction of the atomization sheet 132 is not parallel to the heating plate 112, the angle of intersection between the two can be flexibly set according to the product requirements and will not be specifically limited herein.
[0055] Combined with Figures 3 - 4 , Figures 8 - 10 As shown, in a specific embodiment, a connecting protrusion 114 is provided on the main body 110. The connecting protrusion 114 is specifically provided on the side wall of the installation groove 113 and protrudes into the installation groove 113 (see Figure 4 ). When the liquid tank 131 is installed in the installation groove 113, the connecting protrusion 114 can be electrically connected to the atomization sheet 132, which will be described in detail later.
[0056] Next, combined with Figures 8 - 11 As shown, in an embodiment of the present invention, the liquid tank 131 has a first bottom plate 1312 that is inclined, specifically inclined at a certain angle with respect to the horizontal direction. The liquid outlet hole 1311 is penetrated and opened on the first bottom plate 1312, so that the axis P of the liquid outlet hole 1311 is inclined with respect to the horizontal direction, as Figure 10 shown. The atomization sheet 132 is installed on the first bottom plate 1312 and faces the liquid outlet hole 1311, thereby realizing the inclined installation of the atomization sheet 132 and making the inclined installation of the atomization sheet 132 more convenient. By the cooperation of the inclined liquid outlet hole 1311 and the inclined atomization sheet 132, the liquid in the liquid tank 131 flows to the atomization sheet 132 through the inclined liquid outlet hole 1311, and then is atomized by the inclined atomization sheet 132 and the mist is sprayed obliquely towards the heating plate 112, as Figure 11 shown by the arrow direction in, thereby realizing the rapid heating of the mist.
[0057] Referring to Figure 9 shown, in this embodiment, a first accommodation groove 1313 corresponding to the atomization sheet 132 is further recessed on the first bottom plate 1312. The first accommodation groove 1313 is arranged around the liquid outlet hole 1311. The atomization sheet 132 is accommodated in the first accommodation groove 1313 to achieve stable installation, ensuring that the inclined atomization sheet 132 will not shift during operation, and further ensuring that its spraying direction is accurate to guarantee the heating effect of the mist.
[0058] Continuing to combine with Figures 8 - 11As shown, in a preferred embodiment of the present utility model, the bottom of the liquid tank 131 is further provided with an inclined atomization channel 1331 communicating with the liquid outlet hole 1311, and the atomization sheet 132 is disposed obliquely at any position of the atomization channel 1331. And when the liquid tank 131 is installed on the main body 110, the atomization channel 1331 communicates with the fog inlet 111a. Through the guiding action of the inclined atomization channel 1331, the spraying direction of the atomization sheet 132 is accurate and concentratedly sprayed toward the heating plate 112, as Figure 11 shown by the arrow direction in. The fog directly contacts the high-temperature heating plate 112 and is instantaneously heated. Then, with the sealing effect of the sealing plug 121 and the compression of the heating space, the fog can be instantaneously heated to a relatively high temperature. And the instantaneously heated fog can only be sprayed toward the user's eyes through the atomization holes 1211. The user can hardly feel the temperature of the fog after waiting, improving the user experience and the effects of hot compress, nursing, etc.
[0059] In a specific embodiment, the atomization mechanism 130 further includes a base 133 detachably connected to the bottom of the liquid tank 131. The base 133 is provided with an inclined atomization channel 1331 penetrating therethrough, and the atomization channel 1331 communicates with the liquid outlet hole 1311 to form a relatively long inclined channel. When the base 133 is installed, the atomization sheet 132 is clamped between the base 133 and the first bottom plate 1312 of the liquid tank 131, as shown in Figure 10 . At this time, the atomization sheet 132 is located at the inlet end of the atomization channel 1331. Such a structural arrangement makes the installation of the atomization sheet 132 more convenient, rapid, and stable on the one hand, and also facilitates the formation of the atomization channel 1331 on the other hand. Of course, it is feasible to install the atomization sheet 132 at any other position of the atomization channel 1331.
[0060] Continuing to combine with Figures 8 - 11 shown, in this specific embodiment, the base 133 includes a second bottom plate 1332 and a second connecting plate 1335 vertically connected to the second bottom plate 1332. The bottom surface of the second bottom plate 1332 is horizontally arranged to facilitate the mating installation with the top wall 111b of the atomization chamber 111. The inner side surface of the second bottom plate 1332 is convexly provided with an inclined installation surface 1333, as shown in Figure 8 , and the inclination of the installation surface 1333 corresponds to the inclination of the first bottom plate 1312. The atomization channel 1331 penetrates through the installation surface 1333 and the bottom surface of the second bottom plate 1332 to form an inclined shape, as shown in Figure 10As shown. After the base 133 is installed at the bottom of the liquid tank 131, the mounting surface 1333 is parallel to the first bottom plate 1312, and the atomizing sheet 132 is clamped between the mounting surface 1333 and the first bottom plate 1312 and is inclined, which is convenient for the installation and fixation of the atomizing sheet 132. At the same time, the liquid outlet hole 1311 communicates with the atomizing channel 1331 correspondingly 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 1332 is located, as Figure 10 shown, which is beneficial to the flow of the liquid and makes the spray direction and angle accurate.
[0061] See Figure 8 and Figure 10 shown. A second accommodating groove 1334 corresponding to the first accommodating groove 1313 is further recessed on the inclined mounting surface 1333, and the second accommodating groove 1334 is arranged around the atomizing channel 1331. When the atomizing sheet 132 is installed, the atomizing sheet 132 is simultaneously accommodated in the corresponding first accommodating groove 1313 and second accommodating groove 1334 to achieve installation and positioning, and the atomizing sheet 132 can be prevented from shifting during operation.
[0062] Continuing to combine with Figures 8 - 10 shown, a convex rib 1314 with a sealing fit is further provided between the atomizing sheet 132 and the first bottom plate 1312 or / and between the atomizing sheet 132 and the mounting surface 1333, thereby realizing the sealed installation of the atomizing sheet 132. In a specific embodiment, at least one convex rib 1314 is convexly provided on the bottom surface of the first bottom plate 1312. As Figures 12 - 13 shown, the convex rib 1314 is arranged around the liquid outlet hole 1311 on the bottom surface of the first accommodating groove 1313. In this way, when the atomizing sheet 132 is accommodated in the first accommodating groove 1313 and the second accommodating groove 1334, the atomizing sheet 132 is extruded and pressed against the convex rib 1314, thereby realizing the sealed installation and preventing liquid leakage during the operation of the atomizing sheet 132. Correspondingly, the convex rib 1314 can also be provided on the mounting surface 1333 alone or simultaneously, so as to realize the sealed installation of the other side of the atomizing sheet 132.
[0063] Combining again with Figures 8 - 10 shown, in the present utility model, when the bottom of the liquid tank 131 is pressed against the second bottom plate 1332 of the base 133, a mounting space is formed between the second connecting plate 1335 of the base 133 and the side wall of the liquid tank 131, as Figure 10 shown. And, a clamping hole 1336 is opened on the second connecting plate 1335, the electrical connection end of the atomizing sheet 132 passes through the liquid tank 131 and is located in the aforementioned mounting space, and the electrical connection end of the atomizing sheet 132 is opposite to or extends into the clamping hole 1336. Combining with Figures 3 - 4As shown, when the liquid tank 131 is placed on the top wall 111b of the atomization chamber 111 and pushed inward, the engaging hole 1336 can be engaged with the connecting protrusion 114, so that the electrical connection end of the atomization sheet 132 contacts the connecting protrusion 114 to achieve electrical connection, as Figure 3 , Figure 10 shown. Moreover, when the liquid tank 131 is pulled to detach it from the main body 110, it can be disengaged from the connecting protrusion 114, so that the installation and disassembly of the liquid tank 131 can be conveniently achieved without affecting the operation of the atomization sheet 132.
[0064] More specifically, a first connecting plate 1315 is further protruded on the side wall of the liquid tank 131. The first connecting plate 1315 protrudes horizontally. When the liquid tank 131 is press-fitted on the base 133, the first connecting plate 1315 is clamped with the second connecting plate 1335 of the base 133, as Figure 10 shown, so as to form a sealed installation space to protect the electrical connection end.
[0065] Next, referring to Figure 8 shown, in the present utility model, a liquid filling port 1341 is also penetratedly opened at the top of the liquid tank 131. Specifically, a top cover 134 is provided at the top of the liquid tank 131. The top cover 134 can be separately formed and then sealedly installed on the top of the liquid tank 131, or can be integrally formed with the liquid tank 131. And, a liquid filling port 1341 is penetratedly opened on the top cover 134. Further, a groove 1342 is recessed on the top cover 134, and the liquid filling port 1341 is opened in the groove 1342.
[0066] Combined with Figures 8 - 10 shown, the atomization mechanism 130 further includes a sealing cover 135. The sealing cover 135 is detachably connected to the liquid filling port 1341 for sealing the liquid filling port 1341. By removing the sealing cover 135, the user can conveniently supplement or add liquid. Specifically, the sealing cover 135 includes a pressing portion 1351 and a column 1352 protruding from the pressing portion 1351. The shape of the pressing portion 1351 corresponds to the above-mentioned groove 1342, and at least the column 1352 is of an elastic structure. In a specific embodiment, the sealing cover 135 is integrally formed by an elastic material (such as rubber). Therefore, both the pressing portion 1351 and the column 1352 have elasticity. The column 1352 is detachably inserted into the liquid filling port 1341, and the pressing portion 1351 is separably pressed on the groove 1342. Therefore, when the column 1352 is pressed into the liquid filling port 1341, the column 1352 is squeezed by the inner wall of the liquid filling port 1341, thereby achieving complete sealing to prevent liquid leakage. And the pressing portion 1351 is pressed on the groove 1342, and the sealing cover 135 can be conveniently removed by pulling the pressing portion 1351.
[0067] Refer to Figures 12 - 13 As shown, more preferably, at least one rib 1353 protrudes radially on the column 1352. When the column 1352 is pressed into the liquid filling port 1341, the rib 1353 abuts against the inner wall of the liquid filling port 1341, further improving the sealing effect.
[0068] Next, refer to Figures 12 - 13 As shown, in a preferred embodiment of the present invention, the atomization mechanism 130 further includes a liquid filling bottle 136. The liquid filling bottle 136 is provided with a plug connector 1361 corresponding to the liquid filling port 1341. The plug connector 1361 is detachably inserted into the liquid filling port 1341 to fill the liquid tank 131 with liquid, so as to increase the diversity and convenience of use. For example, medicine or supplementary liquid can be added to the liquid tank 131. Moreover, by replacing the liquid filling bottle 136, different liquids (such as different medicines) can be added, making it more convenient to use, thereby improving the user experience.
[0069] Again, referring to Figure 1 and Figure 14 As shown, the present invention also provides an eye moisturizing atomizer 1, which includes a wearing body 200 and the atomized gas rapid heating energy-saving sealing device 100 as described above. Wherein, the wearing body 200 is connected to both ends of the main body 110 and is used for the user to wear on the head. The wearing body 200 can be an elastic arm, temple, headband, etc., which is not specifically limited in this application. Figure 1 and Figure 14 Shown is a headband, so that the eye moisturizing atomizer 1 can be stably worn on the user's head.
[0070] Again, referring to Figures 1 - 14 As shown, when the eye moisturizing atomizer 1 of the present invention is in use, first install the sealing cover 120 into the atomization chamber 111. That is, directly press the sealing plug 121 of the sealing cover 120 into the atomization chamber 111 until the abutting portion 122 abuts against the opening edge of the atomization chamber 111. At this time, the sealing plug 121 squeezes the inner wall of the atomization chamber 111 to seal the atomization chamber 111. At the same time, there is a small gap between the end of the sealing plug 121 and the bottom of the atomization chamber 111, and this gap forms a sealed and small-volume heating space, as Figure 3 shown.
[0071] Then, install the atomization mechanism 130. That is, install the liquid tank 131 containing the liquid on the main body 110. Specifically, place the liquid tank 131 on the top wall 111b of the atomization chamber 111 and push it into the installation groove 113. When the liquid tank 131 is installed in place, the engaging hole 1336 on it engages with the connecting protrusion 114 to achieve the electrical connection between the connecting protrusion 114 and the atomization sheet 132. And, the base 133 of the liquid tank 131 fits against the top wall 111b of the atomization chamber 111, and the atomization channel 1331 on the base 133 is communicated with the mist inlet 111a, as Figure 3 , Figure 11 shown. Therefore, the liquid outlet hole 1311, the atomization channel 1331, and the mist inlet 111a of the liquid tank 131 are sequentially communicated to form a relatively long inclined channel. The axis P of this inclined channel intersects the heating plate 112 so that the spraying direction of the atomization sheet 132 is inclined and faces the heating plate 112, as Figure 3 , Figures 10 - 11 shown.
[0072] Optionally, a liquid adding bottle 136 can also be installed above the liquid tank 131. As Figures 12 - 13 shown, first remove the sealing cover 135, and then insert the plug connector 1361 of the liquid adding bottle 136 into the liquid adding port 1341 to add liquid to the liquid tank 131. For example, add liquid medicine, etc. to the liquid tank 131.
[0073] Combined with Figure 1 , Figure 14 shown, then wear the wearing body 200 on the user's head so that the sealing cup 123 of the sealing cover 120 fits against the eyes to achieve sealing around the eyes. At this time, the front end of the sealing cover 120 seals the user's eyes, and the rear end seals the atomization chamber 111. The mist in the atomization chamber 111 can only be sprayed towards the eyes through the atomization holes 1211 and cannot leak outwards.
[0074] When the atomization and heating functions are turned on, the heating element heats the heating plate 112 to a relatively high temperature. At the same time, the atomization sheet 132 works to atomize the liquid and spray it out through the atomization channel 1331. Under the guiding action of the inclined atomization sheet 132 and the inclined atomization channel 1331, the spraying direction of the atomization sheet 132 is inclined and faces the heating plate 112, as Figure 11As shown in the direction of the middle arrow. The sprayed mist is sprayed obliquely onto the heating plate 112, and the mist contacts the high-temperature heating plate 112 and is instantly heated. At the same time, under the sealing and space compression of the sealing cover 120, the mist is close to the heat source, and the mist is heated in a sealed and small-volume heating space, which can speed up the transfer speed between the mist and the heat, thereby accelerating the heating and temperature rise of the mist, thereby greatly shortening the heating time of the mist, and the user can feel the temperature of the mist without waiting, thereby greatly improving the user experience, and the heat energy loss is small, which greatly improves the energy saving and consumption reduction effect of the product. In addition, the method of directly heating the mist in a small sealed space can instantly heat the mist to a higher temperature, generally instantly heated to 40°C-50°C, so that the user can clearly feel the effect of hot compress and fumigation. Furthermore, the heated mist is concentratedly sprayed on the eyes through the atomization hole 1211, and under the sealing effect of the sealing cup 123, the mist will not leak out, thereby improving the moisturizing and care effects of the liquid or / and the drug.
[0075] In summary, the atomizing gas rapid heating and energy-saving sealing device 100 of the utility model is additionally provided with a sealing cover 120, which includes a sealing plug 121, and an atomizing hole 1211 is penetrated through the sealing plug 121. The sealing plug 121 is detachably connected to the atomizing bin 111, and when the sealing plug 121 is installed in the atomizing bin 111, the sealing plug 121 abuts against the side wall of the atomizing bin 111 to seal the atomizing bin 111, and there is a gap between the sealing plug 121 and the bottom of the atomizing bin 111. The atomizing chamber 111 is sealed by the sealing plug 121, and the volume of the atomizing chamber 111 is reduced to form a smaller mist heating space, so that the mist is concentrated in a smaller sealed space to be heated, the mist is sufficiently close to the heat source, and the heat transfer efficiency between the mist is improved, thereby achieving rapid heating and temperature rise of the mist, thereby greatly shortening the heating time of the mist, and the user can feel the temperature of the mist without waiting, thereby greatly improving the user experience; in addition, because the heating space is compressed to the minimum space, under the same unit time conditions, the mist can be instantly heated to a higher temperature, and the heated mist is concentratedly sprayed on the eyes through the atomizing hole 1211, achieving a feeling similar to that of applying a hot towel to the eyes, thereby improving the moisturizing and hot compress effects, especially for special materials, such as Chinese medicine water, which needs to be heated to a certain temperature to exert the medicinal properties of hot fumigation, drug care and other effects; furthermore, the mist heating speed is increased and the heated mist is concentratedly sprayed on the eyes, so that the heat energy loss is small, and hot compress fumigation can be performed for a long time, greatly improving the energy saving and consumption reduction effect of the product.
[0076] Correspondingly, the eye moisturizing atomizer 1 having the atomized gas rapid heating energy-saving sealing device 100 of the present invention also has the above-mentioned technical effects.
[0077] The atomization, heating and other principles involved in the present utility model are all conventional methods well known to those of ordinary skill in the art, and will not be described in detail herein.
[0078] The above-disclosed are only the preferred embodiments of the present utility model. Of course, the scope of 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 rapidly heated energy-saving sealing device for atomized gas, characterized in that: include: A main body, wherein an atomizing bin is provided on the main body, and a heating plate is provided on one side wall of the atomizing bin; A sealing cover, comprising a sealing plug, the sealing plug having an atomization hole extending therethrough, the sealing plug being detachably connected to the atomization bin, and when the sealing plug is inserted into the atomization bin, the sealing plug abuts against a side wall of the atomization bin to seal the atomization bin, and a gap is provided between the sealing plug and the bottom of the atomization bin; The atomizing mechanism is detachably mounted on the main body and is used to provide atomizing gas into the atomizing bin.
2. The atomized gas rapid heating energy-saving sealing device according to claim 1, characterized in that: The sealing cover also includes an abutment portion, the sealing plug is protruding on one side of the abutment portion, and the outer diameter of the abutment portion is larger than the outer diameter of the opening of the atomization bin. When the sealing plug is installed in the atomization bin, the abutment portion abuts against the opening edge of the atomization bin.
3. The atomized gas rapid heating energy-saving sealing device according to claim 2, characterized in that: The height from the end of the sealing plug to the abutting portion is smaller than the depth of the atomization bin.
4. The atomized gas rapid heating energy-saving sealing device according to claim 1, characterized in that: The sealing plug is of elastic structure, and when the sealing plug is installed in the atomization bin, it is squeezed by the inner wall of the atomization bin to achieve sealing.
5. The atomized gas rapid heating energy-saving sealing device according to claim 1, characterized in that: At least one convex rib is protruded on the outer wall of the sealing plug along its radial direction. When the sealing plug is installed in the atomization bin, the convex rib is squeezed between the outer wall of the sealing plug and the inner wall of the atomization bin.
6. The atomized gas rapid heating energy-saving sealing device according to claim 2, characterized in that: The sealing cover further comprises a sealing cup protruding from the other side of the abutting portion, the sealing cup is arranged around the atomizing hole, and the sealing cup is used for being detachably sealed and connected to the use part.
7. The atomized gas rapid heating energy-saving sealing device according to claim 6, characterized in that: The sealing cup comprises an annular sealing surface which is inclined from the edge of the sealing cup to the middle thereof and is a curved surface. When the sealing cup is subjected to force, the sealing surface can be attached to the use part to achieve sealing or be separated from the use part.
8. The atomized gas rapid heating energy-saving sealing device according to any one of claims 1 to 7, characterized in that: The atomization mechanism comprises: A liquid box is detachably mounted on the main body, and a liquid outlet hole is formed through the bottom of the liquid box; An atomizing sheet, the atomizing sheet being installed at the liquid outlet in an inclined manner; When the liquid box is installed on the main body, the liquid outlet is communicated with the atomization chamber, and the spray direction of the atomization sheet intersects with the heating plate.
9. The atomized gas rapid heating energy-saving sealing device according to claim 8, characterized in that: The bottom of the liquid box is also provided with an inclined atomization channel which is connected with the liquid outlet hole. The atomization sheet is inclinedly arranged at any position of the atomization channel. When the liquid box is installed on the main body, the atomization channel is connected with the atomization bin.
10. The atomized gas rapid heating energy-saving sealing device according to claim 9, characterized in that: The atomizing mechanism further comprises a base detachably connected to the bottom of the liquid box, the atomizing channel is penetrated through the base, and the atomizing sheet is clamped between the bottom of the liquid box and the base.
11. The atomized gas rapid heating energy-saving sealing device according to claim 10, characterized in that: A receiving groove corresponding to the atomizing sheet is formed on the bottom of the liquid box or / and the base, the atomizing sheet is received in the receiving groove, and a convex rib is formed between the atomizing sheet and the bottom of the liquid box or / and the base.
12. The atomized gas rapid heating energy-saving sealing device according to claim 8, characterized in that: The liquid box comprises a bottom plate which is arranged in an inclined manner, the liquid outlet hole is opened through the bottom plate, and the atomizing sheet is installed on the bottom plate.
13. The atomized gas rapid heating energy-saving sealing device according to claim 8, characterized in that: A liquid filling port is provided through the top of the liquid box, and a sealing cover is detachably connected to the liquid filling port.
14. The atomized gas rapid heating energy-saving sealing device according to claim 13, characterized in that: The atomizing mechanism further comprises a liquid adding bottle, the liquid adding bottle is provided with a plug connector corresponding to the liquid adding port, and the plug connector is detachably plugged into the liquid adding port to add liquid into the liquid box.
15. An eye-moistening atomizer, comprising a wearing body, characterized in that: Also includes: The atomized gas rapid heating and energy-saving sealing device according to any one of claims 1 to 14, wherein the wearing body is connected to both ends of the main body.