A multifunctional eye atomization therapy device
By integrating non-contact massage, hot compress, and contact massage functions into an eye atomization therapy device, the atomization intensity and hot compress intensity can be dynamically adjusted, solving the problem of mismatch between atomization intensity and the physiological state of the eyes in existing technologies, thereby improving drug penetration efficiency and the precision of treatment effects.
Patent Information
- Application Number
- CN202511140705.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-15
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2045-08-15
AI Technical Summary
Existing ocular nebulizers cannot adapt the nebulization intensity to the dynamic physiological state of the eye in real time, resulting in limited drug penetration efficiency and waste of medication, and failing to achieve precise dosage and efficacy matching.
Design a multifunctional eye atomization therapy device that integrates non-contact massage, hot compress and contact massage functions. The operation of each module is coordinated by the power supply control mechanism. The mechanical structure is used to open or close the eyelids to dynamically adjust the intensity of hot compress and atomization, so as to achieve dynamic matching between massage action and hot compress intensity.
It improves drug penetration efficiency, reduces drug waste, enhances the precision and efficiency of treatment, adapts to the tolerance of different users, and avoids the risk of energy waste or local overheating.
Smart Images

Figure CN120617725B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of ocular treatment technology, and in particular to a multifunctional ocular atomizing therapy device. Background Technology
[0002] With the widespread use of electronic devices and increased eye strain, the incidence of eye diseases such as dry eye, eye fatigue, and allergic conjunctivitis has risen significantly. Traditional drug treatments, such as eye drops, suffer from uneven drug distribution, low bioavailability, and poor patient compliance, making it difficult to achieve precise and sustained therapeutic effects. Eye therapy devices, as non-invasive physical therapy equipment, can improve the ocular surface microenvironment, promote drug absorption, and relieve eye discomfort through methods such as nebulized drug delivery, warm compresses, and mechanical stimulation. They are gradually becoming an important tool for clinical adjunctive treatment and home healthcare.
[0003] Most commercially available eye therapy devices combine nebulized drug delivery with basic physical therapy. Their core structure includes a nebulizer module, a constant temperature control unit, an eye mask-style wearing structure, and a power supply system. Some products also integrate vibration massage functionality. During use, the patient wears the eye mask over their eyes. The nebulized medication or saline solution is aerosolized and applied to the ocular surface. Simultaneously, heat therapy or mechanical vibration can help relieve symptoms.
[0004] While existing eye therapy devices have attempted to integrate multiple functions such as nebulization and massage, they still have significant shortcomings in multimodal synergistic treatment. This is mainly reflected in the fact that the nebulization intensity cannot be matched with the dynamic physiological state of the eye in real time during the treatment process of existing eye nebulization therapy devices. As a result, the distribution of nebulized particles and the efficiency of drug penetration are limited by the static control mode, making it difficult to achieve a precise match between dosage and efficacy within the treatment window. This also results in waste of medication and fluctuations in efficacy. Summary of the Invention
[0005] In order to overcome the technical defects of existing eye atomizing therapy devices, such as the inability to adapt the atomization intensity to the dynamic physiological state of the eye in real time, the limited drug penetration efficiency caused by static control mode, and the waste of drug solution, this application provides a multifunctional eye atomizing therapy device.
[0006] This application provides a multifunctional eye atomization therapy device, which adopts the following technical solution:
[0007] A multifunctional eye atomizing therapy device includes a main body of the device, one end of which is provided with a treatment area adapted to the human eye area. The main body of the device is provided with a non-contact eye massage mechanism, an eye hot compress mechanism, a gear adjustment mechanism and a contact eye massage mechanism.
[0008] The non-contact eye massage mechanism is used to vibrate and stimulate the human eye area when it enters the treatment area. The eye heat therapy mechanism is used to apply heat therapy to the eye area during the vibration stimulation process. The intensity adjustment mechanism can adjust the intensity of the vibration stimulation of the non-contact eye massage mechanism. The contact eye massage mechanism is used to perform contact massage on the human eye area and dynamically adjusts the intensity of the heat therapy of the eye heat therapy mechanism when the skin of the human eye area expands and contracts.
[0009] The main body of the therapeutic device is also equipped with a power supply control mechanism, which is electrically connected to the non-contact eye massage mechanism, the eye hot compress mechanism, the gear adjustment mechanism and the contact eye massage mechanism respectively.
[0010] The contact-type eye massage mechanism includes a massage ball, a connecting rod, a rotating shaft, a driving component, and an atomizing valve assembly. The driving component is configured with dual output ends and is located inside the treatment device body. Each output end of the driving component is provided with a set of atomizing valve assemblies. Each output end of the driving component is provided with two connecting rods and two massage balls. The two massage balls are respectively installed at the ends of the corresponding connecting rods.
[0011] The two rotating shafts are coaxially fixed to the two output ends of the driving component. Each rotating shaft is provided with two external threads with opposite directions. The two connecting rods on the same output end of the driving component are respectively sleeved and installed on the rotating shafts on both sides of the corresponding atomizing valve opening assembly and are adapted to the two external threads with opposite directions.
[0012] The eye hot compress mechanism includes an atomizing component, which includes an atomizing water tank and atomizing tubes. Two atomizing tubes are provided, and the two atomizing tubes are respectively fixedly connected to both ends of the atomizing water tank and communicate with the inner cavity. The ends of the two atomizing tubes are set corresponding to the two eye areas of the human body.
[0013] The atomizing valve assembly includes a first fixed plate, valve plates, a rotating gear plate, a first rotating shaft, a second rotating shaft, a second fixed plate, a connecting rod, a fixed rod, and a rack. The atomizing tube is segmented. The first fixed plate is fixed to the outlet end of the atomizing tube near the atomizing water tank. Multiple valve plates are provided, and each valve plate can be assembled into a complete valve plate. Multiple first rotating shafts are provided corresponding to each valve plate. Each first rotating shaft is arranged circumferentially along the first fixed plate. One end of each valve plate is rotatably mounted on the corresponding first rotating shaft.
[0014] The second rotating shaft is provided with multiple valve plates corresponding to each valve plate, and is provided in the middle of each valve plate. The second fixed disk is provided on the side of each valve plate away from the first fixed disk. The rotating gear disk is rotatably mounted on the second fixed disk. The connecting rod is provided with multiple sets corresponding to each valve plate, and one end of each connecting rod is rotatably mounted on the corresponding second rotating shaft, and the other end is rotatably mounted on the rotating gear disk.
[0015] Two sets of fixed rods are provided corresponding to the two connecting rods. One end of each fixed rod is fixedly connected to the corresponding connecting rod. Two sets of racks are provided corresponding to the fixed rods. The racks are fixed to the side wall of the corresponding fixed rod and mesh with the two opposing tooth surfaces of the rotating gear.
[0016] By adopting the above technical solution, the main body of the therapeutic device integrates non-contact massage, hot compress, contact massage, and intensity adjustment functions, and coordinates the operation of each module through a power supply control mechanism. The contact massage mechanism uses a mechanical structure to open or close the eyelids. When the eyelids are open, the intensity of the hot compress is increased, and when the eyelids are closed, the intensity of the hot compress is decreased, thereby achieving dynamic matching between massage movements and hot compress intensity, avoiding energy waste or the risk of local overheating. At the same time, the graded intensity control improves operational flexibility and adapts to different user tolerance levels.
[0017] Optionally, the contactless eye massage mechanism includes a pulse generator and a silicone electrode. The pulse generator is disposed inside the main body of the treatment device and electrically connected to the power supply control mechanism. The silicone electrode is disposed on the outer wall of the main body of the treatment device where the treatment area is located and electrically connected to the pulse generator.
[0018] By adopting the above technical solution, the pulse generator outputs high-frequency electromagnetic pulses, which are transmitted to the periorbital tissue via silicone electrodes. The electromagnetic induction principle is used to induce subcutaneous ion migration and cell membrane oscillation, thereby performing non-contact massage around the eyes.
[0019] Optionally, the eye heat therapy mechanism further includes a heating wire and a heating film. The heating wire is embedded inside the main body of the therapy device where the treatment area is located, is electrically connected to the power supply control mechanism, and is used to heat the contact surface between the human eye area and the main body of the therapy device at a constant temperature. The heating film is located inside the main body of the therapy device where the treatment area is located, and is located near the atomization outlet end of the atomization component. The atomization component has two outlet ends corresponding to the two eyes of the human body. The contact eye massage mechanism can adjust the atomization intensity of the two outlet ends in different eye massage states.
[0020] By adopting the above technical solution, the heating wire can heat the contact surface at a constant temperature, the heating film can preheat the temperature of the atomized gas, the contact massage mechanism can adjust the intensity of the atomization outlet according to the eyelid stretching state, the constant temperature heating can prevent the atomized liquid from condensing and irritating, and the dynamic atomization adjustment can match the changes in the eyelid gland openings to enhance the drug penetration efficiency.
[0021] Optionally, the atomizing component further includes an atomizing bracket, the atomizing water tank is fixedly installed on the atomizing bracket, the atomizing bracket is magnetically connected to the inner wall of the main body of the therapeutic device, and the contact-type eye massage mechanism can synchronously adjust the amount of atomized liquid sprayed from the two atomizing tubes.
[0022] By adopting the above technical solution, the atomizing water tank can be quickly assembled and disassembled through the magnetic bracket, the two atomizing tubes are symmetrically distributed, and the contact massage mechanism synchronously controls the opening of the two atomizing tubes, so that the atomization intensity can be dynamically adjusted according to the different degrees of contact massage.
[0023] Optionally, two massage balls are provided corresponding to the two connecting rods and are fixed to the ends of the corresponding connecting rods away from the rotating shaft. The therapeutic device is provided with a limiting structure for limiting the rotation of each connecting rod. The ends of the two connecting rods away from the corresponding massage balls are connected to the atomizing valve assembly. The opening of the atomizing tube increases when the two connecting rods move away from each other and decreases when the two connecting rods move closer to each other.
[0024] By adopting the above technical solution, the dual output ends of the drive unit drive the two rotating shafts to rotate, which in turn causes the two connecting rods to move closer to or further away from each other, thereby causing the two massage balls to move closer to or further away from each other. When the two massage balls move further away from each other, they will cause the eyelids to open, thereby opening the pores at the eyelids. At this time, the atomizing valve assembly increases the opening of the atomizing tube, thereby improving the atomization degree, thus realizing the dynamic adjustment of the atomization degree.
[0025] Optionally, the limiting structure includes a mounting cover fixed to the atomizing bracket, and the two ends of the mounting cover are provided with limiting grooves extending along the length direction of the rotating shaft corresponding to the ends of the connecting rod. The two ends of the connecting rod are respectively slidably engaged and pass through the corresponding limiting grooves.
[0026] By adopting the above technical solution, the mounting cover can protect the structure inside, and the limiting groove can limit the corresponding connecting rod, so that the connecting rod can move along the length direction of the rotating shaft, realizing the two massage balls moving closer or further apart.
[0027] Optionally, a first telescopic cylinder and a second telescopic cylinder are provided between the connecting rod and the massage ball. The first telescopic cylinder is slidably inserted into the end of the connecting rod, and the second telescopic cylinder is slidably inserted into the end of the first telescopic cylinder. The massage ball is fixedly connected to the end of the second telescopic cylinder away from the first telescopic cylinder. Elastic elements are provided between the connecting rod and the first telescopic cylinder, and between the first telescopic cylinder and the second telescopic cylinder. Each elastic element provides a force that moves away from each other.
[0028] By adopting the above technical solution, the first telescopic cylinder, the second telescopic cylinder, and the elastic element can stabilize the contact pressure of the massage ball within a safe and comfortable range, thereby improving the comfort of treatment.
[0029] Optionally, a snap-fit ball is coaxially sleeved on the outside of the first telescopic cylinder, and the snap-fit ball is slidably snapped into the limiting groove.
[0030] By adopting the above technical solution, the locking ball and the limiting groove form a point-contact sliding pair, reducing motion resistance and improving mechanical efficiency. Precision fit eliminates the risk of wear after long-term use, ensuring the connecting rod slides smoothly without jamming and ensuring displacement stability.
[0031] Optionally, the gear adjustment mechanism includes a power on / off button, an atomization switch button, a non-contact massage intensity increase button, a non-contact massage intensity decrease button, and a contact massage switch. The power supply control mechanism is electrically connected to the power on / off button, the atomization switch button, the non-contact massage intensity increase button, the non-contact massage intensity decrease button, and the contact massage switch, respectively.
[0032] By adopting the above technical solution, the gear adjustment mechanism controls the pulse intensity, heat therapy power, and atomization parameters via button input. Independent adjustment of multiple parameters adapts to treatment needs across all scenarios, meeting personalized treatment plans from postoperative recovery to acute symptoms.
[0033] In summary, this application includes at least one of the following beneficial technical effects:
[0034] The main body of the therapeutic device integrates non-contact massage, hot compress, contact massage and intensity adjustment functions. The power supply control mechanism coordinates the operation of each module. The contact massage mechanism uses a mechanical structure to open or close the eyelids. When the eyelids are open, the intensity of the hot compress is increased, and when the eyelids are closed, the intensity of the hot compress is decreased. This achieves dynamic matching between massage movements and hot compress intensity, avoiding energy waste or the risk of local overheating. At the same time, the intensity level control improves the flexibility of operation and adapts to the tolerance of different users.
[0035] This application achieves synergy and coordination between three major functions: hot compress, medicated spray, and eyelid massage. When the patient wears the treatment device, the hot compress continuously softens the eyelids and dilates the glandular openings. Simultaneously, the eyelids are stretched, further enlarging the glandular openings. At the same time, the medicated spray is increased to allow the medication to enter the glandular openings more smoothly. When the eyelids retract, this process massages the glandular openings, allowing the medication inside to be physically pressed into the deeper layers of the glands for more complete and thorough absorption. Simultaneously, the spray volume is automatically reduced to conserve medication during massage. This solution, through precise mechanical phase control and intelligent coordination of drug release, overcomes the shortcomings of "shallow drug penetration with static hot compresses" and "inability to target drug delivery with simple massage," achieving higher drug utilization, improved therapeutic efficacy on the glands, and shorter treatment time, thus comprehensively enhancing the therapeutic effect. Attached Figure Description
[0036] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0037] Figure 1 This is a schematic diagram of the overall structure of the multifunctional eye atomizing therapy device in the embodiments of this application;
[0038] Figure 2 The diagram shows the internal structure of the multifunctional eye atomizing therapy device.
[0039] Figure 3 yes Figure 2 A schematic diagram of the structure of the mid-eye heat therapy device;
[0040] Figure 4 yes Figure 3 Schematic diagram of the internal structure of the mid-eye heat therapy device;
[0041] Figure 5 yes Figure 4 A schematic diagram of a medium-contact eye massage mechanism;
[0042] Figure 6 yes Figure 5 Schematic diagram of the structure of the atomizing valve opening assembly;
[0043] Figure 7 yes Figure 6 Exploded view of the atomizing valve opening assembly.
[0044] Figure reference numerals: 1. Main body of the therapeutic device; 11. Silicone electrode; 12. Lithium battery power supply; 13. Circuit control board; 14. Sponge layer; 2. Atomizing component; 21. Atomizing water tank; 22. Atomizing support; 23. Atomizing tube; 3. Gear adjustment mechanism; 31. Power on / off button; 32. Atomizing switch button; 33. Non-contact massage intensity increase; 34. Non-contact massage intensity decrease; 35. Contact massage switch; 4. Contact eye massage mechanism; 41. Massage ball; 42. Connecting rod; 421. External thread; 43. Rotating shaft; 44. Driving component; 45. Atomizing valve assembly; 451. First fixed plate; 452. Valve plate; 453. Rotating gear plate; 454. First rotating shaft; 455. Second rotating shaft; 456. Second fixed plate; 457. Connecting rod; 458. Fixed rod; 459. Rack; 5. Mounting cover; 51. Limiting groove; 6. First telescopic cylinder; 61. Snap-fit ball; 7. Second telescopic cylinder. Detailed Implementation
[0045] The following is in conjunction with the appendix Figure 1-7 This application will be described in further detail below.
[0046] This application discloses a multifunctional eye atomization therapy device.
[0047] A multifunctional eye atomizing therapy device, a multifunctional eye atomizing therapy device, refer to Figure 1 and Figure 2 The device includes a treatment device body 1, a headband, a main unit, and a charging cable. The headband is connected to the treatment device body 1, making it convenient for users to wear the treatment device body 1 on their heads. When not in use, the treatment device body 1 can be placed in the main unit. The treatment device body 1 is equipped with a charging port, and the charging cable can be charged through the charging port.
[0048] Reference Figure 1 and Figure 2 The main body 1 of the treatment device is provided with a treatment area adapted to the human eye area. The main body 1 of the treatment device is provided with a non-contact eye massage mechanism 4, an eye hot compress mechanism, a gear adjustment mechanism 3 and a contact eye massage mechanism 4. The treatment area is filled with a sponge layer 14.
[0049] The non-contact eye massage mechanism 4 is used to vibrate and stimulate the human eye area that enters the treatment area. The eye heat therapy mechanism is used to provide heat therapy to the eye area during the vibration stimulation process. The intensity adjustment mechanism 3 can adjust the intensity of the vibration stimulation of the non-contact eye massage mechanism 4. The contact eye massage mechanism 4 is used to perform contact massage on the human eye area and dynamically adjusts the intensity of the heat therapy of the eye heat therapy mechanism as the skin of the human eye area unfolds and contracts.
[0050] The main body 1 of the therapeutic device is also equipped with a power supply control mechanism, which is electrically connected to the non-contact eye massage mechanism 4, the eye hot compress mechanism, the gear adjustment mechanism 3, and the contact eye massage mechanism 4.
[0051] The main body of the therapeutic device 1 integrates non-contact massage, hot compress, contact massage, and intensity adjustment functions, with the operation of each module coordinated by a power supply control mechanism. The contact massage mechanism uses a mechanical structure to open or close the eyelids. When the eyelids are open, the intensity of the hot compress is increased, and when the eyelids are closed, the intensity of the hot compress is decreased, thereby achieving dynamic matching between massage movements and hot compress intensity, avoiding energy waste or the risk of local overheating. At the same time, the graded intensity control improves operational flexibility and adapts to different user tolerance levels.
[0052] Reference Figure 1 and Figure 2 The power supply control mechanism includes a lithium battery power supply 12 and a circuit control board 13. The lithium battery power supply 12 is electrically connected to the circuit control board 13. The circuit control board 13 integrates multiple integrated units, which can control the various mechanisms described below.
[0053] Reference Figure 2 and Figure 3 The non-contact eye massage mechanism 4 includes a pulse generator and a silicone electrode 11. The pulse generator is located inside the main body 1 of the treatment device and is electrically connected to the power supply control mechanism. The silicone electrode 11 is located on the outer wall of the main body 1 of the treatment device where the treatment area is located and is electrically connected to the pulse generator.
[0054] The pulse generator outputs high-frequency electromagnetic pulses, which are transmitted to the periorbital tissue via the silicone electrode 11. The electromagnetic induction principle is used to induce subcutaneous ion migration and cell membrane oscillation, thereby providing non-contact massage to the periorbital area.
[0055] The eye heat therapy device includes a heating wire, a heating film, and an atomizing component 2. The heating wire is embedded inside the main body 1 of the therapy device where the treatment area is located and is electrically connected to the power supply control mechanism. It is used to heat the contact surface between the human eye area and the main body 1 of the therapy device at a constant temperature. The heating film is located inside the main body 1 of the therapy device where the treatment area is located and is located near the atomizing outlet end of the atomizing component 2. The atomizing component 2 has two outlet ends corresponding to the two eyes of the human body. The contact eye massage mechanism 4 can adjust the atomization intensity of the two outlet ends in different eye massage states.
[0056] The heating wire can maintain a constant temperature for the contact surface, while the heating film can preheat the temperature of the atomized gas. The contact massage mechanism adjusts the intensity of the atomization outlet according to the eyelid stretching state. Constant temperature heating prevents condensation and irritation of the atomized liquid, and dynamic atomization adjustment matches the changes in eyelid gland openings to enhance drug penetration efficiency.
[0057] Reference Figure 2 , Figure 3 and Figure 4 The atomizing component 2 includes an atomizing water tank 21, an atomizing bracket 22, and an atomizing tube 23. The atomizing water tank 21 is fixedly installed on the atomizing bracket 22. The atomizing bracket 22 is magnetically connected to the inner wall of the main body 1 of the therapeutic device. There are two atomizing tubes 23. The two atomizing tubes 23 are fixedly connected to both ends of the atomizing water tank 21 and communicate with the inner cavity. The ends of the two atomizing tubes 23 are set to correspond to the two eye areas of the human body. The contact eye massage mechanism 4 can synchronously adjust the amount of atomized liquid sprayed from the two atomizing tubes 23.
[0058] The atomizing water tank 21 can be quickly assembled and disassembled via a magnetic bracket. The two atomizing tubes 23 are symmetrically distributed. The contact massage mechanism synchronously controls the opening of the two atomizing tubes 23, so that the atomization intensity can be dynamically adjusted according to the different degrees of contact massage.
[0059] Reference Figure 3 , Figure 4 and Figure 5 The contact eye massage mechanism 4 includes a massage ball 41, a connecting rod 42, a rotating shaft 43, a drive component 44, and an atomizing valve assembly 45. The drive component 44 is a geared motor and is configured with dual output ends, located inside the treatment device body.
[0060] The drive unit 44 is configured with dual output ends and is located inside the body of the therapeutic device. Each output end of the drive unit 44 is provided with a set of atomizing valve assembly 45. Each output end of the drive unit 44 is provided with two connecting rods 42 and two massage balls 41. The two massage balls 41 are respectively installed at the ends of the corresponding connecting rods 42.
[0061] The two rotating shafts 43 are coaxially fixed to the two output ends of the driving member 44. Each rotating shaft 43 is provided with two external threads 421 with opposite directions of rotation. The two connecting rods 42 on the same output end of the driving member 44 are respectively sleeved and installed on the rotating shafts 43 on both sides of the corresponding atomizing valve assembly 45 and are threadedly adapted to the two external threads 421 with opposite directions of rotation.
[0062] The massage ball 41 is made of medical-grade liquid silicone. There are two massage balls 41 corresponding to the two connecting rods 42, and they are fixed to the ends of the corresponding connecting rods 42 away from the rotating shaft 43. The therapeutic device is equipped with a limiting structure for limiting the rotation of each connecting rod 42. The ends of the two connecting rods 42 away from the corresponding massage ball 41 are connected to the atomizing valve assembly 45. The opening of the atomizing tube 23 increases when the two connecting rods 42 move away from each other and decreases when the two connecting rods 42 move closer to each other.
[0063] The dual output ends of the drive unit 44 drive the two rotating shafts 43 to rotate, which in turn causes the two connecting rods 42 to move closer to or further away from each other, thereby causing the two massage balls 41 to move closer to or further away from each other. When the two massage balls 41 move further away from each other, they will cause the eyelids to open, thereby opening the pores at the eyelids. At this time, the atomizing valve assembly 45 increases the opening of the atomizing tube 23, thereby improving the atomization degree, thus realizing the dynamic adjustment of the atomization degree.
[0064] Reference Figure 3 The limiting structure includes a mounting cover 5 fixed on the atomizing bracket 22. The two ends of the mounting cover 5 are provided with limiting grooves 51 extending along the length direction of the rotating shaft 43, corresponding to the ends of the connecting rod 42. The two ends of the connecting rod 42 are respectively slidably engaged and pass through the corresponding limiting grooves 51.
[0065] The mounting cover 5 can protect the structure inside, and the limiting groove 51 can limit the corresponding connecting rod 42, so that the connecting rod 42 can move along the length direction of the rotating shaft 43, thereby allowing the two massage balls 41 to move closer or further apart.
[0066] Reference Figure 5 , Figure 6 and Figure 7 The atomizing valve assembly 45 includes a first fixed plate 451, valve plates 452, a rotating gear plate 453, a first rotating shaft 454, a second rotating shaft 455, a second fixed plate 456, a connecting rod 457, a fixed rod 458, and a rack 459. The atomizing tube 23 is segmented. The first fixed plate 451 is fixed to the outlet end of the atomizing tube 23 near the atomizing water tank 21. Multiple valve plates 452 are provided, and each valve plate 452 can be assembled into a complete valve plate. Multiple first rotating shafts 454 are provided corresponding to each valve plate 452. Each first rotating shaft 454 is arranged circumferentially along the first fixed plate 451. One end of each valve plate 452 is rotatably mounted on the corresponding first rotating shaft 454.
[0067] Multiple second rotating shafts 455 are provided for each valve plate 452 and are respectively located in the middle of each valve plate 452. A second fixed disk 456 is provided on the side of each valve plate 452 away from the first fixed disk 451. A rotating gear disk 453 is rotatably mounted on the second fixed disk 456. Multiple sets of connecting rods 457 are provided for each valve plate 452, and one end of each connecting rod 457 is rotatably mounted on the corresponding second rotating shaft 455, and the other end is rotatably mounted on the rotating gear disk 453.
[0068] Two sets of fixed rods 458 are provided corresponding to the two connecting rods 42. One end of the two fixed rods 458 is fixedly connected to the corresponding connecting rod 42. Two sets of racks 459 are provided corresponding to the fixed rods 458. The two racks 459 are fixed to the side wall of the corresponding fixed rods 458 and mesh with the two opposing tooth surfaces of the rotating gear disk 453.
[0069] When the two connecting rods 42 move away from each other, the corresponding fixed rod 458 drives the rack 459 to move, the two racks 459 drive the rotating gear 453 to rotate, the rotating gear 453 drives each connecting rod 457 to rotate, and each connecting rod 457 drives each valve plate 452 to rotate, thereby increasing the opening of the atomizing tube 23. Conversely, it can decrease the opening of the atomizing tube 23.
[0070] Reference Figure 4 and Figure 5 A first telescopic cylinder 6 and a second telescopic cylinder 7 are provided between the connecting rod 42 and the massage ball 41. The first telescopic cylinder 6 is slidably inserted into the end of the connecting rod 42, and the second telescopic cylinder 7 is slidably inserted into the end of the first telescopic cylinder 6. The massage ball 41 is fixedly connected to the end of the second telescopic cylinder 7 away from the first telescopic cylinder 6. Elastic elements are provided between the connecting rod 42 and the first telescopic cylinder 6, and between the first telescopic cylinder 6 and the second telescopic cylinder 7. Each elastic element provides a force that moves away from each other. In this embodiment, the elastic element is a spring.
[0071] The first telescopic cylinder 6, the second telescopic cylinder 7, and the elastic element can stabilize the contact pressure of the massage ball 41 within a safe and comfortable range, thereby improving the comfort of treatment.
[0072] Reference Figure 5 The first telescopic cylinder 6 is coaxially sleeved with a locking ball 61, which slides and engages within the limiting groove 51. The locking ball 61 and the limiting groove 51 form a point contact sliding pair, reducing motion resistance and improving mechanical efficiency. This precise fit eliminates the risk of wear after long-term use, ensures that the connecting rod 42 slides without jamming, and ensures the stability of displacement.
[0073] Reference Figure 1 The intensity adjustment mechanism 3 includes a power on / off button 31, an atomization switch button 32, a non-contact massage intensity increase button 33, a non-contact massage intensity decrease button 34, and a contact massage switch 35. The power supply control mechanism is electrically connected to the power on / off button 31, the atomization switch button 32, the non-contact massage intensity increase button 33, the non-contact massage intensity decrease button 34, and the contact massage switch 35. The power on / off button 31 also functions as the non-contact massage mode button, and the atomization switch button 32 functions as the heating adjustment button. Pressing and holding the power on / off button 31 for 3 seconds turns on the device, which is now in standby mode. A short press of the power on / off button 31 activates the non-contact massage function, with voice feedback indicating "Massage Mode 1." The non-contact massage intensity level is currently set to level 1. Pressing the power on / off button 31 again switches the non-contact massage mode from "Massage Mode 1" to "Massage Mode 2." Short presses of the non-contact massage intensity increase button 33 and the non-contact massage intensity decrease button 34 adjust the non-contact massage intensity.
[0074] A short press of the atomizing switch button 32 activates the device's heat therapy function, which is currently at level 1. A short press of the atomizing switch button 32 again activates the heat therapy function at level 2. A short press of the atomizing switch button 32 again deactivates the heat therapy function. You can select the heat therapy level according to your own heat tolerance.
[0075] Press and hold the atomization switch button for 323 seconds to turn on the atomization function. The default atomization time is 15 minutes. After 15 minutes, the device will automatically turn off. Press and hold the button again to turn off the atomization function. Press and hold the power button for 313 seconds to turn off the device.
[0076] The implementation principle of a multifunctional eye atomizing therapy device according to an embodiment of this application is as follows: The main body 1 of the therapy device integrates non-contact massage, hot compress, contact massage, and intensity adjustment functions. A power supply control mechanism coordinates the operation of each module. The contact massage mechanism uses a mechanical structure to open or close the eyelids. When the eyelids are open, the intensity of the hot compress is increased; when the eyelids are closed, the intensity of the hot compress is decreased. This achieves dynamic adaptation between massage movements and hot compress intensity, avoiding energy waste or the risk of local overheating. Simultaneously, the graded intensity control improves operational flexibility and adapts to different user tolerance levels.
[0077] The above are all optional embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A multifunctional eye atomization therapy device, characterized in that: The treatment device includes a main body (1), one end of which is provided with a treatment area adapted to the human eye area. The main body (1) is provided with a non-contact eye massage mechanism, an eye hot compress mechanism, a gear adjustment mechanism (3) and a contact eye massage mechanism (4). The non-contact eye massage mechanism is used to vibrate and stimulate the human eye area that enters the treatment area. The eye hot compress mechanism is used to apply hot compress treatment to the eye area during the vibration stimulation process. The gear adjustment mechanism (3) can adjust the intensity of the vibration stimulation of the non-contact eye massage mechanism. The contact eye massage mechanism (4) is used to perform contact massage on the human eye area and dynamically adjust the intensity of the hot compress of the eye hot compress mechanism when the skin of the human eye area expands and contracts. The main body (1) of the therapeutic instrument is also equipped with a power supply control mechanism, which is electrically connected to the non-contact eye massage mechanism, the eye hot compress mechanism, the gear adjustment mechanism (3) and the contact eye massage mechanism (4). The contact eye massage mechanism (4) includes a massage ball (41), a connecting rod (42), a rotating shaft (43), a driving component (44), and an atomizing valve assembly (45). The driving component (44) is configured with dual output ends and is located inside the main body of the therapeutic instrument. Each output end of the driving component (44) is provided with a set of atomizing valve assemblies (45). Each output end of the driving component (44) is provided with two connecting rods (42) and two massage balls (41). The two massage balls (41) are respectively installed at the ends of the corresponding connecting rods (42). The two rotating shafts (43) are coaxially fixed to the two output ends of the driving member (44). Each rotating shaft (43) is provided with two external threads (421) with opposite directions. The two connecting rods (42) on the same output end of the driving member (44) are respectively sleeved and installed on the rotating shafts (43) on both sides of the corresponding atomizing valve assembly (45) and are threadedly adapted to the two external threads (421) with opposite directions. The eye hot compress mechanism includes an atomizing component (2), which includes an atomizing water tank (21) and an atomizing tube (23). There are two atomizing tubes (23), which are fixedly connected to both ends of the atomizing water tank (21) and communicate with the inner cavity. The ends of the two atomizing tubes (23) are set to correspond to the two eye areas of the human body. The atomizing valve assembly (45) includes a first fixed plate (451), valve plates (452), a rotating gear plate (453), a first rotating shaft (454), a second rotating shaft (455), a second fixed plate (456), a connecting rod (457), a fixed rod (458), and a rack (459). The atomizing tube (23) is segmented. The first fixed plate (451) is fixed to the outlet end of the atomizing tube (23) near the atomizing water tank (21). Multiple valve plates (452) are provided, and each valve plate (452) can be assembled into a complete valve plate. Multiple first rotating shafts (454) are provided corresponding to each valve plate (452). Each first rotating shaft (454) is arranged circumferentially along the first fixed plate (451). One end of each valve plate (452) is rotatably mounted on the corresponding first rotating shaft (454). The second rotating shaft (455) is provided with multiple valve plates (452) and is provided in the middle of the valve plates (452). The second fixed disk (456) is provided on the side of each valve plate (452) away from the first fixed disk (451). The rotating gear disk (453) is rotatably mounted on the second fixed disk (456). The connecting rod (457) is provided with multiple sets for each valve plate (452). One end of each connecting rod (457) is rotatably mounted on the corresponding second rotating shaft (455), and the other end is rotatably mounted on the rotating gear disk (453). Two sets of fixed rods (458) are provided corresponding to the two connecting rods (42). One end of each fixed rod (458) is fixedly connected to the corresponding connecting rod (42). Two sets of racks (459) are provided corresponding to the fixed rods (458). The two racks (459) are fixed to the side wall of the corresponding fixed rod (458) and mesh with the two opposing tooth surfaces of the rotating gear disk (453).
2. The multifunctional eye atomizing therapy device according to claim 1, characterized in that: The non-contact eye massage mechanism includes a pulse generator and a silicone electrode (11). The pulse generator is located inside the main body (1) of the treatment device and is electrically connected to the power supply control mechanism. The silicone electrode (11) is located on the outer wall of the main body (1) of the treatment area and is electrically connected to the pulse generator.
3. The multifunctional eye atomizing therapy device according to claim 1, characterized in that: The eye hot compress mechanism also includes a heating wire and a heating film. The heating wire is embedded inside the treatment device body (1) where the treatment area is located, and is electrically connected to the power supply control mechanism. It is used to heat the contact surface between the human eye area and the treatment device body (1) at a constant temperature. The heating film is set inside the treatment device body (1) where the treatment area is located, and is located near the atomization outlet end of the atomization component (2). The atomization component (2) has two outlet ends corresponding to the two eyes of the human body. The contact eye massage mechanism (4) can adjust the atomization intensity of the two outlet ends in different eye massage states.
4. A multifunctional eye atomizing therapy device according to claim 3, characterized in that: The atomizing component (2) also includes an atomizing bracket (22), the atomizing water tank (21) is fixedly installed on the atomizing bracket (22), the atomizing bracket (22) is magnetically connected to the inner wall of the main body (1) of the therapeutic instrument, and the contact eye massage mechanism (4) can synchronously adjust the amount of atomized liquid sprayed from the two atomizing tubes (23).
5. A multifunctional eye atomizing therapy device according to claim 4, characterized in that: Two massage balls (41) are provided corresponding to the two connecting rods (42), and are fixed to the ends of the corresponding connecting rods (42) away from the rotating shaft (43). The therapeutic instrument is provided with a limiting structure for limiting the rotation of each connecting rod (42). The ends of the two connecting rods (42) away from the corresponding massage balls (41) are connected to the atomizing valve assembly (45). The opening of the atomizing tube (23) increases when the two connecting rods (42) move away from each other and decreases when the two connecting rods (42) move closer to each other.
6. A multifunctional eye atomizing therapy device according to claim 5, characterized in that: The limiting structure includes a mounting cover (5) fixed on the atomizing bracket (22). The two ends of the mounting cover (5) are provided with limiting grooves (51) extending along the length direction of the rotating shaft (43) corresponding to the ends of the connecting rod (42). The two ends of the connecting rod (42) are respectively slidably engaged and pass through the corresponding limiting grooves (51).
7. A multifunctional eye atomizing therapy device according to claim 6, characterized in that: A first telescopic cylinder (6) and a second telescopic cylinder (7) are provided between the connecting rod (42) and the massage ball (41). The first telescopic cylinder (6) is slidably inserted into the end of the connecting rod (42), and the second telescopic cylinder (7) is slidably inserted into the end of the first telescopic cylinder (6). The massage ball (41) and the end of the second telescopic cylinder (7) away from the first telescopic cylinder (6) are fixedly connected. Elastic elements are provided between the connecting rod (42) and the first telescopic cylinder (6), and between the first telescopic cylinder (6) and the second telescopic cylinder (7). Each elastic element provides a force that moves away from each other.
8. A multifunctional eye atomizing therapy device according to claim 7, characterized in that: The first telescopic cylinder (6) is coaxially sleeved with a snap-fit ball (61), which is slidably snapped into the limiting groove (51).
9. A multifunctional eye atomizing therapy device according to claim 1, characterized in that: The gear adjustment mechanism (3) includes a power on / off button (31), an atomizing switch button (32), a non-contact massage intensity increase (33), a non-contact massage intensity decrease (34), and a contact massage switch (35). The power supply control mechanism is electrically connected to the power on / off button (31), the atomizing switch button (32), the non-contact massage intensity increase (33), the non-contact massage intensity decrease (34), and the contact massage switch (35).
Citation Information
Patent Citations
Eye massager and eye massage equipment
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