Adjustable atomization eyeshade
By introducing an air storage device and a movable shell structure into the atomizing goggles, the uniform distribution of the mist is controlled, solving the problems of mist irritation and waste in atomizing goggles, and achieving more efficient treatment results and patient comfort.
Patent Information
- Application Number
- CN202422903624.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-11-26
AI Technical Summary
During the use of existing atomized eye masks, the existing technology is insufficient for effective treatment. In the process of using existing atomized eye masks, a large amount of mist enters the eye mask from the same location, causing eye irritation and facial discomfort to patients. At the same time, there is a serious waste of medicine, and the treatment effect is not good.
An adjustable atomizing goggle was designed. Through an air storage device and a movable shell structure, the fog is controlled to enter the goggle evenly, avoiding a large amount of fog entering from the same position. Through holes of different diameters and partitions are set to adjust the amount of fog, so as to achieve uniform distribution of fog and personalized treatment.
It reduces eye irritation and facial discomfort for patients, avoids drug waste, improves treatment effectiveness and patient comfort, and adapts to the personalized treatment needs of different patients.
Smart Images

Figure CN223731610U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of medical equipment technology, specifically relating to an adjustable atomizing eye mask. Background Technology
[0002] The causes of dry eye in contemporary society include: eye trauma or organic damage to the eye, prolonged use of mobile phones, especially in dark environments, high-intensity eye use, prolonged reading or computer use, staying up late, long-term use of eye drops, aging, postpartum dry eye in women, long-term contact lens wear, trachoma or conjunctivitis sequelae, complications of some diseases (sjögren's syndrome, diabetes, etc.), side effects of some surgeries (ophthalmic surgery, laser eye surgery, facial nerve surgery, parotid gland surgery, etc.), drug side effects, other physical stimuli (welders, drivers, prolonged exposure to wind, etc.), and other chemical stimuli (cosmetics, chemical raw materials, etc.). Dry eyes require the use of atomized eye masks for treatment and relief.
[0003] Nebulized eye masks are mainly used for patients with dry eyes. They are used in conjunction with an ultrasonic nebulizer, into which Qingkailing (a traditional Chinese medicine for clearing heat and removing blood stasis) and antiviral drugs, or traditional Chinese medicine for promoting blood circulation and removing blood stasis, are added to treat the symptoms of dry eyes.
[0004] Currently, there are many atomizing eye masks available, most of which modify the wearing method to make them more secure, easier to wear, and more comfortable. For example, patent CN 220327585 U provides an adjustable atomizing eye mask. However, different wearing methods do not necessarily provide effective relief for dry eye syndrome. Existing atomizing eye masks generally use one or two air inlet tubes to directly introduce mist into the eye mask, which then slowly diffuses within the mask. A large amount of mist entering the eye mask from the same location simultaneously not only irritates the patient's eyes and causes discomfort, but also, upon contact with the patient's facial skin, gradually forms droplets that drip down the face, affecting facial dryness and wasting medication. Utility Model Content
[0005] To address the aforementioned problems, this invention proposes an adjustable atomizing eye mask. This atomizing eye mask, through an air storage device and a movable shell, can control the even distribution of mist into the eye mask, preventing excessive mist from entering the eye mask from the same location and causing irritation to the patient's eyes. Simultaneously, the even distribution of mist prevents it from accumulating into liquid, thus avoiding discomfort for the patient and preventing waste of medication. Furthermore, the amount of mist can be adjusted by controlling the movable shell according to the patient's condition.
[0006] The technical solution of this utility model is as follows:
[0007] An adjustable atomizing goggle includes a goggle body, the goggle body including lenses and an air storage device, the air storage device being connected to an atomizing device via a channel, the air storage device being a cavity structure composed of an outer shell and an inner shell, with a partition disposed in the middle of the inner shell; the inner shell including a fixed shell and a movable shell, the movable shell being movably connected to the fixed shell, the movable shell being disposed within the cavity structure, the movable shell being in contact with air outside the cavity structure through the gap between the two fixed shells, the movable shell being provided with a through hole; one side of the movable shell being connected to a control handle via a connecting rod, the control handle being disposed on the side of the air storage device (i.e., the outer shell) near the lenses.
[0008] Preferably, the aperture of the through holes on the movable shell gradually increases from one side to the other. Different apertures are provided in different areas of the movable shell, which helps to control the amount of mist entering. According to the patient's condition, the nature and concentration of the medicine, the movable shell can be reasonably controlled during treatment to control the amount of mist entering, reduce irritation and improve the treatment effect. If the patient experiences discomfort, the amount of mist entering can be further adjusted through the movable shell.
[0009] More preferably, the number of through holes near the connecting rod on the movable housing is zero.
[0010] Preferably, there is a gap between the movable housings on both sides of the partition, and control handles are provided on both sides of the partition. The movable housings on both sides of the partition are connected without contact, and the movable housings can be controlled separately, which is beneficial for the treatment of different eye conditions.
[0011] Preferably, the air storage devices on both sides of the partition are connected to the atomizing device through branch pipes. Valves are installed on the branch pipes, and valves are installed on both branch pipes. By controlling the valves, the air intake of the goggles on different sides can be effectively controlled.
[0012] Preferably, the width of the movable housing is greater than the gap between the two fixed housings.
[0013] Preferably, the fixed housing is provided with a long strip-shaped "T"-shaped groove, and the movable housing is provided with a corresponding "T"-shaped fastener that fits the groove. This is beneficial for stabilizing the movable housing and also for controlling the movement of the movable housing in a certain direction.
[0014] More preferably, the "T"-shaped fasteners are respectively disposed on the lower part of the movable housing near the side.
[0015] More preferably, the "T"-shaped grooves on the two fixed housings are on the same straight line, which is more conducive to the movement of the movable housing in the grooves.
[0016] Preferably, fixing blocks are provided on both sides of the eye mask body, and the fixing blocks are connected to elastic bands to conveniently and stably fix the atomizing eye mask according to head size.
[0017] This utility model provides an adjustable atomizing eye mask. By incorporating an air storage device, the mist first enters the storage device, and then, by controlling the movable shell, the mist enters the eye mask through the evenly distributed holes on the movable shell. This ensures the mist enters the eye mask uniformly through the air storage device, preventing a large amount of mist from entering from the same location, thus avoiding increased eye irritation and reducing patient discomfort. It also prevents large amounts of mist from pooling and forming liquid, avoiding discomfort to the patient's face and preventing waste of medication. Due to the partition, the amount of mist entering each eye can be controlled. The movable shell has holes of different diameters in different areas; by moving the movable shell, the amount of mist entering through the appropriately sized holes can be controlled, further improving patient comfort and treatment, reducing irritation, and enhancing treatment effectiveness.
[0018] This utility model provides an adjustable atomizing eye mask. Through the design of an air storage device and a movable shell, it avoids a large amount of mist entering the eye mask from the same location, reducing irritation to the patient's eyes and preventing the mist from condensing into droplets, thus avoiding impact on the dryness of the patient's face and preventing waste. The size of the through holes in different areas of the movable shell controls the uniformity of the mist and the air intake, which is more conducive to improving the therapeutic effect and reducing irritation. The partition and the movable shells on both sides of the partition are controlled separately, allowing for reasonable control of the mist intake according to the different eye conditions of patients, reducing irritation and improving the therapeutic effect. This atomizing eye mask has significant promotional value and application potential. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of this utility model near the lens side;
[0020] Figure 2 This is a schematic diagram of the structure of this utility model away from the lens (the fixing block, elastic band, and tube are not shown);
[0021] Figure 3 This is a schematic diagram of the fixed shell and the movable shell of this utility model;
[0022] Figure 4 This is a schematic diagram of the connection structure between the fixed shell and the movable shell of this utility model;
[0023] In the diagram, 1 is the goggle body, 2 is the lens, 3 is the air storage device, 3-1 is the outer shell, 3-2 is the inner shell, 3-2-1 is the fixed shell, 3-2-2 is the movable shell, 3-3 is the fixing component, 3-4 is the groove, 4 is the partition, 5 is the control handle, 6 is the elastic band, 7 is the main pipe, 8 is the valve, 9 is the branch pipe, 10 is the fixing block, and 11 is the connecting rod. Detailed Implementation
[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection claimed in this application.
[0025] like Figure 1-3 As shown, this utility model provides an adjustable atomizing goggle, including a goggle body 1. The goggle body 1 includes a lens 2 and an air storage device 3. The air storage device 3 is connected to an atomizing device via a pipe. The atomizing device can be an ultrasonic atomizer. The air storage device 3 is a cavity structure composed of an outer shell 3-1 and an inner shell 3-2. A partition 4 is provided in the middle of the inner shell 3-2. The inner shell 3-2 includes a fixed shell 3-2-1 and a movable shell 3-2-2. The movable shell 3-2-2 is movably connected to the fixed shell 3-2-1. The movable shell 3-2-2 is disposed in the cavity structure and contacts the air outside the cavity structure through the gap between the two fixed shells 3-2-1. A through hole is provided on the movable shell 3-2-2. A control handle 5 is connected to one side of the movable shell 3-2-2 via a connecting rod 11. The control handle 5 is located on the side of the air storage device 3 near the lens 2.
[0026] In another embodiment, the width of the movable housing 3-2-2 is greater than the gap between the two fixed housings 3-2-1. The diameter of the through holes in the movable housing 3-2-2 gradually increases from one side to the other, and the number of through holes near the connecting rod 11 is zero. There are no through holes on the movable housing 3-2-2 in the gap between the two fixed housings 3-2-1, preventing mist from passing through. Through holes are provided on the portion of the movable housing 3-2-2 away from the gap, with the diameter of the through holes gradually increasing. Providing through holes of different diameters in different areas of the movable housing 3-2-2 helps control the amount of mist entering. Depending on the patient's condition, the nature and concentration of the medication, the movable housing 3-2-2 can be rationally controlled during treatment to control the amount of mist entering, reduce irritation, and improve the therapeutic effect. If the patient experiences discomfort, the mist intake can be further adjusted through the movable housing 3-2-2.
[0027] In another embodiment, there is a gap between the movable housings 3-2-2 on both sides of the partition 4 or the movable housings 3-2-2 on both sides of the partition 4 are slidably connected. Control handles 5 are respectively provided on both sides of the partition 4. The movable housings 3-2-2 on both sides of the partition 4 are either non-contact connected or slidably connected. The movable housings 3-2-2 on both sides of the partition 4 need to be controlled separately, which is beneficial for treating different eye conditions. Especially when treating a single eye, the movable housing 3-2-2 on one side of the partition 4 can be directly controlled, so that gas cannot enter the eye mask and come into contact with the eye.
[0028] In another implementation, the gas storage devices 3 on both sides of the partition 4 are connected to the nebulizer via branch pipes 9. Each branch pipe 9 is equipped with a valve 8. By controlling the valve 8, the air intake (fogging) volume of the eye mask on different sides can be effectively controlled. The nebulizer is connected to the main pipe, which is connected to the two branch pipes 9. A main valve is installed on the main pipe. The two branch pipes 9 are connected to both sides of the gas storage device 3. The main valve controls the main switch. The valve 8 on the branch pipe 9 can control the fog flow rate in the branch pipe 9. When only one eye needs treatment, only the valve 8 on the branch pipe 9 on the same side can be opened, and the valve 8 on the branch pipe 9 on the other side can be closed. When one of the branch pipes 9 and its valve 8 malfunctions, only one branch pipe 9 and its valve 8 can be used.
[0029] Another implementation, such as Figure 4 As shown, the fixed housing 3-2-1 is provided with a long strip-shaped "T"-shaped groove 3-4. Multiple grooves 3-4 can be evenly arranged. The movable housing 3-2-2 is provided with "T"-shaped fasteners 3-3 that are adapted to the grooves 3-4. The "T"-shaped fasteners 3-3 are respectively located on the lower side of the movable housing 3-2-2. The "T"-shaped grooves 3-4 on the two fixed housings 3-2-1 are on the same straight line, which is conducive to stabilizing the movable housing 3-2-2 and also conducive to controlling the movement of the movable housing 3-2-2 in a certain direction. Each of the grooves 3-4 on the two fixed housings 3-2-1 on the same straight line is provided with a fastener 3-3. That is, a fastener 3-3 is provided on both sides of the lower side of the movable housing 3-2-2 at the position corresponding to the groove 3-4.
[0030] In another embodiment, fixing blocks 10 are respectively provided on both sides of the eye mask body 1, and the fixing blocks 10 are connected to elastic bands 6, which can conveniently and stably fix the atomizing eye mask according to the head size.
[0031] In another embodiment, one end of the connecting rod 1 is connected to one side of the movable housing 3-2-2, and the other end of the connecting rod 11 passes through one side of the gas storage device (i.e., the outer housing 3-1) and is connected to the control handle 5. A sealing connection, such as a sealing gasket or static seal, is provided between the connecting rod 11 and the outer housing 3-1 to prevent mist from overflowing.
[0032] In practical use, when performing nebulization therapy, first place the medication into the nebulizer, then fix the nebulizer goggles to the patient's head. At this time, the mist cannot enter the goggles through the movable housing 3-2-2. Open the main valve on the nebulizer and the main pipeline, and adjust the opening of the valve 8 on the appropriate branch pipeline 9. First, the mist enters the gas storage device 3 through the main pipeline and branch pipeline 9. After the gas storage device 3 is filled with an appropriate amount of mist, move the control handle 5. The mist first enters the goggles evenly through the smaller aperture of the movable housing 3-2-2 and comes into contact with the eyes. Depending on the patient's tolerance, the control handle 5 can be gradually adjusted to allow the mist to pass through the goggles. The amount of mist entering the eye mask can be further adjusted through the larger through-hole of the movable housing 3-2-2. Since the severity of the disease and the patient's tolerance differ between the two eyes, the amount of mist entering the eye mask on both sides can be reasonably controlled by adjusting the control handles 5 on both sides of the partition 4. If one eye does not require treatment, the control handle 5 can be adjusted directly to stop the mist from entering the eye mask through the movable housing 3-2-2. Alternatively, the valve 8 on the corresponding branch pipe 9 can be closed at the same time, and the mist can be delivered to the gas storage device 3 through the branch pipe 9 on the corresponding side first, and then enter the eye mask through the through-hole on the movable housing 3-2-2 for treatment of a single eye.
[0033] This utility model provides an adjustable atomizing eye mask. By incorporating an air storage device 3, the mist first enters the air storage device 3. Controlling the movable housing 3-2-2, the mist enters the eye mask through the through-holes on the movable housing 3-2-2. These through-holes are evenly distributed, allowing the mist to enter the eye mask uniformly through the air storage device 3. This avoids a large amount of mist entering from the same location, which would increase eye irritation and reduce patient discomfort. It also prevents a large amount of mist from entering from the same location and easily forming liquid, avoiding discomfort to the patient's face and preventing waste of medication. Due to the partition 4, the amount of mist entering the left and right eyes can be controlled. The movable housing 3-2-2 has through-holes of different diameters in different areas. By moving the movable housing 3-2-2, the mist can pass through these different diameter through-holes, controlling the amount of mist entering and improving uniformity. This also benefits patient eye comfort and treatment, reducing irritation and improving treatment effectiveness.
[0034] This utility model provides an adjustable atomizing eye mask. Through the arrangement of the air storage device 3 and the movable shell 3-2-2, it avoids a large amount of mist entering the eye mask from the same location, reducing irritation to the patient's eyes and preventing the mist from accumulating into droplets, thus avoiding impact on the dryness of the patient's face and preventing waste. The size of the through holes in different areas of the movable shell 3-2-2 controls the uniformity of the mist and the air intake, which is more conducive to improving the therapeutic effect and reducing irritation. The partition 4 and the movable shells 3-2-2 on both sides of the partition 4 are controlled separately, allowing for reasonable mist distribution according to the different eye conditions of the patients, reducing irritation and improving the therapeutic effect. This atomizing eye mask has significant promotional value and application potential.
[0035] The above description is merely an embodiment of this application and is not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.
Claims
1. An adjustable nebulizing eye mask comprising an eye mask body (1), characterized in that: The eyeshade body (1) includes a lens (2) and a gas storage device (3) connected to an atomization device through a channel, the gas storage device (3) is a cavity structure composed of an outer shell (3-1) and an inner shell (3-2), a partition (4) is arranged in the middle of the inner shell (3-2); the inner shell (3-2) includes a fixed shell (3-2-1) and a movable shell (3-2-2), the movable shell (3-2-2) is movably connected to the fixed shell (3-2-1), the movable shell (3-2-2) is arranged in the cavity structure, the movable shell (3-2-2) is in contact with air outside the cavity structure through the gap between the two fixed shells (3-2-1), and a through hole is arranged on the movable shell (3-2-2); one side of the movable shell (3-2-2) is connected to a control handle (5) through a connecting rod (11), and the control handle (5) is arranged on the side of the gas storage device (3) close to the lens (2).
2. An adjustable nebulizing eye mask according to claim 1, wherein: The aperture of the through hole gradually increases from one side to the other side of the movable shell (3-2-2).
3. An adjustable nebulizing eye mask according to claim 2, wherein: The number of through holes near the position of the connecting rod (11) of the movable shell (3-2-2) is zero.
4. An adjustable nebulizing eye mask according to claim 1, wherein: There is a gap between the movable shells (3-2-2) on both sides of the partition (4), and control handles (5) are arranged on both sides of the partition (4) respectively.
5. An adjustable nebulizing eye mask according to claim 1 or 4, wherein: The gas storage devices (3) on both sides of the partition (4) are connected to the atomization device through branch pipes (9), and valves (8) are arranged on the branch pipes (9).
6. An adjustable nebulizing eye mask according to claim 1, wherein: The width of the movable shell (3-2-2) is greater than the gap between the two fixed shells (3-2-1).
7. An adjustable nebulizing eye mask according to claim 1, wherein: A long strip-shaped "T" type groove (3-4) is arranged on the fixed shell (3-2-1), and a "T" type fixing piece (3-3) corresponding to the groove (3-4) is arranged on the movable shell (3-2-2).
8. An adjustable nebulizing eye mask according to claim 7, wherein: The "T" type fixing pieces (3-3) are arranged below the movable shell (3-2-2) near the side surface respectively.
9. An adjustable nebulizing eye mask according to claim 7, wherein: The "T" type grooves (3-4) on the two fixed shells (3-2-1) are on the same straight line.
10. An adjustable nebulizing eye mask according to claim 1, wherein: Fixed blocks (10) are arranged on both sides of the eyeshade body (1) respectively, and the fixed blocks (10) are connected to elastic bands (6).