Eye thermal therapy device with massage component
By using an eye thermal therapy device with a massage component and utilizing the collaborative work of components such as a multi-chamber airbag and an atomizing nozzle, the problem of difficult precise control of massage intensity and the amount of liquid medicine sprayed in the existing technology is solved, thereby improving the comfort and therapeutic effect of the thermal therapy device.
Patent Information
- Application Number
- CN202510926147.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-07-07
AI Technical Summary
Existing heat therapy devices are unable to accurately control the massage intensity and the amount of medicine sprayed at the patient's designated eye position, resulting in uneven absorption of the medicine by the skin or waste of the medicine, affecting the effect of the hot compress.
An eye thermal therapy device with a massage component is used, including a massage component, a hot compress component, a sealing component and a control component. Through the coordinated work of components such as a multi-cavity air bag, an atomizing nozzle, and a heating element, precise control of the massage intensity and the amount of liquid sprayed can be achieved.
It improves the comfort and therapeutic effect of the thermal therapy device, ensures that the medicine penetrates evenly into the skin, avoids waste of medicine, adapts to the face shapes of different patients, and realizes targeted massage and thermal therapy.
Smart Images

Figure CN120392410B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of eye thermal therapy devices, and in particular to an eye thermal therapy device with a massage component. Background Art
[0002] The eye thermal therapy device can heat the human skin through the heating function, and can also apply hot compresses to the human eyes through atomized water mist particles to promote the internal circulation metabolism of the eye tissue. The above functions act on the human body in combination to achieve the treatment purpose.
[0003] The eye thermal therapy device uses the bioelectric energy emitted by electromagnetic pulses to drive the vibration of the eye skin, accurately stimulate the acupuncture points around the eyes, and effectively drive the movement of cells around the acupuncture points, fully activate cell activity, and promote microcirculation around the eyes. For example, the Chinese patent with publication number CN119424200A in the related technology proposes an eye thermal therapy device with a massage component, which has the advantage of concentrating appropriate pressing pressure on the acupuncture points around the patient's eyes through leather, so that the patient's acupuncture points can be effectively pressed and massaged, thereby improving the efficiency and effect of relieving the patient's eye fatigue symptoms.
[0004] Regarding the above-mentioned related technologies, the inventor believes that there are the following defects: in order to enhance the effect of the thermal therapy device on the patient's hot compress, it is usually necessary to control the massage strength of the thermal therapy device on the patient's eyes and the amount of medicine sprayed. However, the existing thermal therapy device is not convenient for accurately adjusting the massage strength of the patient's designated eye position and the amount of medicine sprayed at the corresponding eye position. When the pressure on the patient's designated eye position is too large and the medicine is sprayed too little, the skin will absorb the medicine unevenly, thereby affecting the effect of the eye hot compress. When the pressure on the patient's designated eye position is too small and the medicine is sprayed too much, it will cause waste of medicine. At the same time, the excessive accumulation of medicine around the eyes will cause irritation, making it difficult to adapt to the eye thermal therapy needs of different patients, thereby reducing the treatment effect of the thermal therapy device. Summary of the Invention
[0005] In order to solve the problem that the existing thermal therapy device is not convenient for accurately controlling the massage strength of the patient's designated eye position and the spraying amount of the corresponding eye liquid, when the pressure on the patient's designated eye position is too large and the medicine liquid is sprayed too little, it will cause the skin to absorb the medicine liquid unevenly, thereby affecting the effect of the eye hot compress; when the pressure on the patient's designated eye position is too small and the medicine liquid is sprayed too much, it will cause waste of the medicine liquid, the present application provides an eye thermal therapy device with a massage component.
[0006] The present application provides an eye thermal therapy device with a massage component, which adopts the following technical solutions:
[0007] An eye thermotherapy device with a massage component comprises a thermotherapy device shell and a therapy mechanism arranged on the thermotherapy device shell; the therapy mechanism comprises a massage component and a heat compress component for massaging and hot compressing the human eye, and a sealing component for sealing the thermotherapy device shell to the human eye; the heat compress component comprises a water tank, a heating wire and multiple atomizing nozzles arranged on the thermotherapy device shell, a water storage member for storing water for the multiple atomizing nozzles, an adjustment member for automatically adjusting the water output of the atomizing nozzles, and a heating member for heating the heating wire; the massage component comprises a multi-channel air pump and multiple multi-cavity airbags arranged on the thermotherapy device shell, an air supply member and an exhaust member for supplying and exhausting air to the multiple multi-cavity airbags, and a control member for controlling the air intake of each multi-cavity airbag, and the adjustment member can be automatically driven by the air supply member; the sealing component comprises an elastic band and conductive silicone arranged on the thermotherapy device shell, and an extrusion member for extruding the conductive silicone.
[0008] By adopting the above technical solution, when the patient uses the thermotherapy device to press the eyes, in order to ensure the thermotherapy effect of the medicinal liquid in the thermotherapy device on the skin, generally, the greater the force at the pressing position, the higher the humidity of the medicinal liquid at the pressed position. On the one hand, the thermotherapy can be made more uniform and deep, and massage can promote the skin to absorb the medicinal liquid. On the other hand, the friction coefficient can be reduced to avoid pulling the delicate skin around the eyes and causing abrasions, so as to improve the comfort of the patient's eyes. The physical therapy institution can perform thermotherapy on the human eye, the massage component can massage the human eye, the hot compress component can apply hot compress to the human eye, and the sealing component can ensure the sealing between the thermotherapy device shell and the human eye, to avoid the gap between the human eye and the thermotherapy device shell causing the flow rate of hot air and liquid, so as to ensure the effect of human eye treatment;
[0009] The water storage component can spray the medicine liquid on different positions of the patient's eyes through multiple atomizing nozzles, so that the medicine liquid can be sprayed on every position of the patient's eyes. The adjustment component can accurately control the spraying amount of the medicine liquid of each atomizing nozzle, so as to ensure the effect of the patient's eyes on the absorption of the medicine liquid and avoid the waste of the medicine liquid. The heating component can be used in conjunction with the medicine liquid to perform heat therapy on the patient's eyes. The gas supply component and the exhaust component can make multiple multi-chamber airbags perform timed gas supply and exhaust, so as to achieve the goal of multiple multi-chamber airbags to massage different positions of the patient's eyes. The control component can accurately control the inflation and deflation speed of each multi-chamber airbag according to the different massage intensity requirements of the muscles and acupoints in different parts of the patient's eyes, and at the same time can control the gas volume of each multi-chamber airbag, so as to achieve targeted massage of different parts. The extrusion component can ensure that the heat therapy device shell fits the patient's eyes precisely, and can change according to the contour of the patient's eyes, so that the heat therapy device can be adapted to patients with different face sizes.
[0010] Optionally, the water storage component includes two water outlet pipes connected to the water tank and a micro water pump respectively connected to the two water outlet pipes. Multiple atomizing nozzles are connected to branch pipes, and the multiple branch pipes are divided into two groups. The two groups of branch pipes are respectively connected to the two water outlet pipes.
[0011] By adopting the above technical solution, the water storage component can atomize the medicine liquid and spray it on the patient's eyes for treatment. Two micro water pumps can control the two water outlet pipes to open and store water at a fixed time. Then, the medicine liquid in the water tank can flow through the two water outlet pipes to multiple branch pipes and multiple atomizing nozzles. Then, multiple atomizing nozzles will spray the medicine liquid on the designated positions of the patient's eyes to ensure the effect of human eye treatment.
[0012] Optionally, the regulating member includes a control valve respectively fixed on a plurality of branch pipes, a gear rotatably arranged on the control valve, a plurality of telescopic springs fixed on the thermal therapy device shell, and a rack respectively fixed on the plurality of telescopic springs, the plurality of racks are respectively engaged with a plurality of gears, the plurality of atomizing nozzles are respectively fixedly connected to the multi-cavity airbags, the plurality of atomizing nozzles are respectively fixedly connected to a telescopic rod, and the plurality of telescopic rods are respectively fixedly connected to the thermal therapy device shell.
[0013] By adopting the above technical solution, the adjusting part can accurately control the spraying amount of each atomizing nozzle according to the drive of the air transmission part. When the expansion and contraction of multiple multi-cavity airbags drive the multiple atomizing nozzles to move respectively, they will also drive the multiple racks to move respectively, and then drive the multiple gears to rotate respectively. The number of rotations of the multiple gears can respectively control the size of the opening of the multiple control valves to the multiple branch pipes. The greater the range of movement of the atomizing nozzle and the rack driven by the expansion of the multi-cavity airbag, the more the number of rotations of the gears, and the larger the gap between the control valve and the branch pipe, and the more medicine liquid is sprayed by the atomizing nozzle. The amount of medicine sprayed can be accurately controlled according to the needs of pressing the designated acupuncture points on the patient's eyes.
[0014] Optionally, the gas delivery component includes multiple connecting tubes connected to the multi-channel air pump and two-position three-way solenoid valves respectively fixed on the multiple connecting tubes, and the multiple connecting tubes are respectively connected to the multiple multi-cavity airbags.
[0015] By adopting the above technical solution, the gas transmission component can draw gas into multiple multi-cavity airbags respectively, so that the multiple multi-cavity airbags can be expanded. The gas can be drawn into multiple connecting tubes and multiple multi-cavity airbags in turn through a multi-channel air pump, so that the multiple multi-cavity airbags can be expanded, which can drive multiple atomizing nozzles to move respectively, and then press the patient's eyes. At the same time, in conjunction with multiple two-position three-way solenoid valves, the timed opening and closing of multiple connecting tubes can be controlled respectively, so that the patient's eyes can be massaged.
[0016] Optionally, the plurality of multi-cavity airbags are divided into two groups, the two groups of multi-cavity airbags are arranged symmetrically on the left and right, each group contains six multi-cavity airbags, and the six multi-cavity airbags are arranged symmetrically on the top and bottom.
[0017] By adopting the above technical solution, multiple multi-chamber airbags can perform multi-range pressing on the patient's eye area, control the time for each two-position three-way solenoid valve to be opened regularly, and accurately control the inflation and deflation speed of each multi-chamber airbag according to the patient's eye treatment needs. At the same time, the amount of air in each multi-chamber airbag can be controlled, and then the pressing force of each multi-chamber airbag can be controlled. According to the patient's eye pressing needs at each position, targeted massage of different parts can be achieved by controlling the inflation and deflation speed of each multi-chamber airbag.
[0018] Optionally, the exhaust component includes an exhaust pipe fixed to the thermal therapy device shell, and the exhaust ports of the plurality of two-position three-way solenoid valves are all connected to the exhaust pipe, and the exhaust pipe is connected to the thermal therapy device shell.
[0019] By adopting the above technical solution, the exhaust component can discharge multiple multi-chamber airbags at a regular time, and then cooperate with the gas supply component to control the expansion and contraction of the multi-chamber airbags, so as to achieve frequent massage of the patient's eyes by multiple multi-chamber airbags. When the multi-chamber airbags are deflated, the gas will float into the exhaust pipe through the connecting tube and the two-position three-way solenoid valve to achieve gas deflation, and then through the inflation and deflation of the multi-chamber airbags, multiple atomizing nozzles can be used to frequently press the patient's eyes.
[0020] Optionally, the extrusion member includes a plurality of buffer springs fixed on the thermal therapy device shell and buffer blocks respectively fixed on the plurality of buffer springs, the plurality of buffer blocks are all fitted with the conductive silicone, and the plurality of buffer blocks are evenly distributed on the conductive silicone.
[0021] By adopting the above technical solution, the extrusion part can ensure the sealing between the thermal therapy device and the patient's eyes. By pulling the elastic strap, the patient can wear the thermal therapy device shell on the head and point the sponge to the patient's eyes. The conductive silicone fits the corners of the patient's eyes. When the elastic strap is completely tightened, the conductive silicone will be squeezed, and then the multiple buffer springs will push the multiple buffer blocks respectively, so that the conductive silicone can be deformed according to the corners of the patient's eyes, and can change according to the contour of the patient's eyes, so that the thermal therapy device can be adapted to patients with different face sizes.
[0022] Optionally, the heating element includes two heating films, two insulation layers, two conductive wires, a circuit board and a battery arranged on the shell of the thermal therapy device, the two conductive wires are respectively connected to the two heating films, the two heating films are respectively adhered to the two insulation layers, the two conductive wires and the heating wire are electrically connected to the circuit board, the circuit board is electrically connected to the battery, and the heating wire is adhered to the conductive silicone.
[0023] By adopting the above technical solution, the heating element cooperates with the water storage element and the adjustment element to provide hot compress to the patient's eyes. When the two heating films and the heating wire are turned on to generate heat, the water storage element cooperates with the atomization spraying of the liquid to provide heat therapy to the patient's eyes.
[0024] Optionally, the control component includes an on / off button, a heating adjustment button, a massage enhancement button, a massage reduction button and an indicator light arranged on the thermal therapy device shell, and a remote control electrically connected to the on / off button. The on / off button, the heating adjustment button, the massage enhancement button, the massage reduction button and the indicator light are all electrically connected to the circuit board, and the two micro water pumps are both electrically connected to the heating adjustment button.
[0025] By adopting the above technical solution, the control component can control the timed opening of the water storage component and the air transmission component. Pressing the power button can drive the multi-channel air pump. By pressing the massage enhancement button or the massage reduction button, the time of frequent opening of the multi-channel air pump and multiple two-position three-way solenoid valves can be controlled. Pressing the massage enhancement button can speed up the inflation and deflation time of multiple multi-cavity airbags, and pressing the massage reduction button can slow down the inflation and deflation time of multiple multi-cavity airbags. The massage enhancement button and the massage reduction button both have three levels of adjustment, and the inflation and deflation time of multiple multi-cavity airbags can be adjusted according to the patient's treatment needs. Pressing the heating adjustment button can turn on the two micro water pumps, two heating films and heating wire, and perform heat therapy on the patient's eyes.
[0026] Optionally, the thermal therapy device shell is composed of an eye mask front shell, an aluminum sheet, a facial silicone bracket, a facial bracket and a silicone cover plate. The facial silicone bracket, the facial bracket and the silicone cover plate are connected together by screws, and the eye mask front shell is movably snap-connected to the silicone cover plate.
[0027] By adopting the above technical solution, the thermotherapy device shell is composed of the eye mask front shell, aluminum sheet, facial silicone bracket, facial bracket and silicone cover, which can ensure the overall strength of the thermotherapy device and avoid damage to the thermotherapy device as much as possible. At the same time, it is convenient to disassemble and assemble the thermotherapy device as a whole, and the thermotherapy device can be inspected regularly to ensure the service life of the thermotherapy device.
[0028] In summary, this application includes at least one of the following beneficial technical effects:
[0029] 1. The extrusion piece can be changed according to the contour of the patient's eyes, so that the thermotherapy device can be used on patients with different face sizes, thereby increasing the use range of the thermotherapy device. In addition, the conductive silicone can be completely and tightly fitted to the corners of the patient's eyes, avoiding the heat and flow rate of the drug solution caused by the patient using the thermotherapy device for hot compresses, thereby ensuring the effect of human eye treatment;
[0030] 2. The air supply parts cooperate with the exhaust parts to press the patient's eyes, and can control the inflation and deflation of multiple multi-chamber airbags respectively. Then, through the inflation and deflation of the multi-chamber airbags, multiple atomizing nozzles can be used to frequently press the patient's eyes. At the same time, multiple multi-chamber airbags can be used to press the patient's eyes in a wide range, ensuring that every position of the patient's eyes can achieve a massage effect. When multiple multi-chamber airbags are quickly inflated and deflated, they can simulate the pounding technique to bring powerful stimulation to the eyes. When multiple multi-chamber airbags are slowly inflated and deflated, they can simulate the kneading technique to relieve eye stimulation. The inflation and deflation time of multiple multi-chamber airbags can be adjusted according to the patient's treatment needs. Each airbag can be accurately controlled according to the patient's eye treatment needs. The speed of inflation and deflation of the multi-chamber airbags can control the amount of air in each multi-chamber airbag, and thus the pressing force of each multi-chamber airbag. According to the patient's eye pressing requirements, the pressing force of multiple multi-chamber airbags on each designated acupoint of the patient's eyes can be accurately controlled. By controlling the inflation and deflation speed of each multi-chamber airbag, the thermal therapy device can simulate pushing, holding and kneading techniques. According to the different massage force requirements of muscles and acupoints in different parts of the patient's eyes, targeted massage of different parts can be achieved. For parts prone to fatigue and tension, a faster inflation speed can be used to provide a stronger massage force. For thicker parts, the inflation time can be appropriately extended to fully expand the multi-chamber airbags.
[0031] 3. The heating element cooperates with the water storage element to perform heat therapy on the patient's eyes. At the same time, the expansion and contraction of multiple atomizing nozzles can be coordinated with multiple multi-cavity airbags to perform hot compresses on the patient's eyes, which can further enhance the effect of heat therapy on the patient's eyes. The air supply element cooperates with the adjustment element to press each acupoint with different strengths according to the multiple multi-cavity airbags. The amount of medicine sprayed on each corresponding acupoint is also different. The amount of medicine sprayed can be accurately controlled according to the needs of pressing the patient's designated eye acupoints, which can ensure that the patient's eye heat therapy is more uniform and in-depth. Massage can promote the absorption of medicine by the eye skin, and at the same time avoid To avoid waste of liquid medicine, the exhaust component can gradually close the atomizing nozzle when the multi-chamber airbag is deflated, and at the same time, the multi-chamber airbag can be deflated quickly to ensure the massage effect of the multi-chamber airbag, so that the thermal therapy device can accurately control the massage intensity of the patient's designated eye position and the spraying amount of the corresponding eye position. The greater the pressure on the patient's designated eye position, the more liquid medicine will be sprayed at the corresponding acupoint, avoiding uneven absorption of the liquid medicine by the skin and ensuring the effect of eye hot compress. If the pressure on the patient's designated eye position is too small, the spraying amount of the corresponding acupoint will be smaller, avoiding waste of liquid medicine. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application;
[0033] Figure 2 Appearance diagram of the conductive silicone connection structure in the embodiment of this application;
[0034] Figure 3 Appearance diagram of the connection structure of the thermal therapy device shell in the embodiment of the present application;
[0035] Figure 4 A cross-sectional view of the connection structure of the thermal therapy device shell in the embodiment of the present application;
[0036] Figure 5 Appearance diagram of the water tank connection structure in the embodiment of the present application;
[0037] Figure 6 Appearance diagram of the multi-channel air pump connection structure in the embodiment of the present application;
[0038] Figure 7 Appearance diagram of the atomizing nozzle connection structure in the embodiment of the present application.
[0039] Figure numerals: 1. Thermal therapy device shell; 2. Elastic strap; 3. Water tank; 4. Battery; 5. Circuit board; 6. Heating wire; 7. Heating film; 8. Insulation layer; 9. Power button; 10. Heating adjustment button; 11. Massage enhancement button; 12. Massage reduction button; 13. Water outlet pipe; 14. Micro water pump; 15. Branch pipe; 16. Indicator light; 17. Atomizing nozzle; 18. Sponge; 19. Control valve; 20. Gear; 21. Rack; 22. Telescopic spring; 23. Telescopic rod; 24. Multi-channel air pump; 25. Connecting pipe; 26. Multi-chamber airbag; 27. Two-position three-way solenoid valve; 28. Exhaust pipe; 29. Buffer block; 30. Speaker; 31. Waterproof cover; 32. Conductive silicone. DETAILED DESCRIPTION
[0040] The following is combined with Figure 1-7 This application is described in further detail.
[0041] The present application discloses an eye thermal therapy device with a massage component, referring to Figure 1 and Figure 2, including a thermotherapy device shell 1 and a physiotherapy mechanism arranged on the thermotherapy device shell 1; the physiotherapy mechanism includes a massage component and a hot compress component for massaging and hot compressing the human eye, and a sealing component for sealing the thermotherapy device shell 1 to the human eye; the hot compress component includes a water tank 3, a heating wire 6 and multiple atomizing nozzles 17 arranged on the thermotherapy device shell 1, a water storage component for storing water for the multiple atomizing nozzles 17, an adjusting component for automatically adjusting the water output of the atomizing nozzles 17, and a heating component for heating the heating wire 6; the massage component includes a multi-channel air pump 24 and multiple multi-cavity airbags 26 arranged on the thermotherapy device shell 1, an air supply component and an exhaust component for supplying and exhausting air to the multiple multi-cavity airbags 26, and a control component for controlling the air intake of each multi-cavity airbag 26, and the adjusting component can be automatically driven by the air supply component; the sealing component includes an elastic bandage 2 and conductive silicone 32 arranged on the thermotherapy device shell 1, and an extrusion component for extruding the conductive silicone 32.
[0042] The water storage component includes two water outlet pipes 13 connected to the water tank 3 and micro water pumps 14 respectively connected to the two water outlet pipes 13. Multiple atomizing nozzles 17 are connected to branch pipes 15. The multiple branch pipes 15 are divided into two groups. The two groups of branch pipes 15 are respectively connected to the two water outlet pipes 13. A water inlet is provided on the water tank 3, and a waterproof cover 31 is provided on the water inlet. Liquid can be poured into the water tank 3 by setting the water inlet. The water inlet can be sealed or opened by the waterproof cover 31 to prevent liquid leakage in the water tank 3 when the thermal therapy device is in use. Atomizers are provided on the two water outlet pipes 13, and the liquid can be atomized by the atomizers.
[0043] The regulating member includes a control valve 19 respectively fixed on a plurality of branch pipes 15, a gear 20 rotatably arranged on the control valve 19, a plurality of telescopic springs 22 fixed on the thermotherapy device shell 1, and a rack 21 respectively fixed on the plurality of telescopic springs 22. The plurality of racks 21 are respectively engaged with the plurality of gears 20. The plurality of atomizing nozzles 17 are respectively fixedly connected to the multi-cavity airbag 26. The plurality of atomizing nozzles 17 are all fixedly connected with a telescopic rod 23. The plurality of telescopic rods 23 are all fixedly connected to the thermotherapy device shell 1. The telescopic rod 23 consists of an inner rod and an outer rod, and the inner rod is a solid rod and the outer rod is a hollow rod. The inner rod and the outer rod are slidably connected. By setting the telescopic rod 23, the atomizing nozzle 17 can be limited to avoid the multi-cavity airbag. 26 drives the atomizing nozzle 17 to move when the offset phenomenon occurs, ensuring that the atomizing nozzle 17 moves linearly, and multiple atomizing nozzles 17 are provided with sponges 18, which can adsorb and release the liquid medicine through the sponge 18. The pressing of the atomizing nozzle 17 can ensure the effect of the patient's eye absorption of the liquid medicine, and at the same time, the atomizing nozzle 17 can have a buffering effect, which can appropriately reduce the direct impact and pressure of the atomizing nozzle 17 on the eye, making the massage process more comfortable and gentle. The branch pipe 15 is composed of a hard pipe and a hose. The control valve 19 is located on the hard pipe. The hose is used to connect the hard pipe and the atomizing nozzle 17. The hose can have a telescopic effect when the multi-chamber airbag 26 drives the atomizing nozzle 17 to move.
[0044] The gas transmission parts include multiple connecting pipes 25 connected to the multi-channel air pump 24, and two-position three-way solenoid valves 27 respectively fixed on the multiple connecting pipes 25. The multiple connecting pipes 25 are respectively connected to the multiple multi-cavity air bags 26. An air inlet is opened on the thermal therapy device shell 1.
[0045] The multiple multi-cavity airbags 26 are divided into two groups. The two groups of multi-cavity airbags 26 are arranged symmetrically on the left and right. Each group of multi-cavity airbags 26 has six multi-cavity airbags 26. The six multi-cavity airbags 26 are arranged symmetrically on the top and bottom. Each multi-cavity airbag 26 has three connected chambers.
[0046] The exhaust component includes an exhaust pipe 28 fixed to the thermotherapy device housing 1 , and the exhaust ports of the plurality of two-position three-way solenoid valves 27 are all connected to the exhaust pipe 28 , and the exhaust pipe 28 is connected to the thermotherapy device housing 1 .
[0047] The extrusion part includes multiple buffer springs fixed on the thermotherapy device shell 1 and buffer blocks 29 respectively fixed on the multiple buffer springs. The multiple buffer blocks 29 are all fitted with the conductive silicone 32. The multiple buffer blocks 29 are evenly distributed on the conductive silicone 32. A storage groove is provided on the thermotherapy device shell 1. The multiple buffer springs are respectively located on the inner sides of the multiple storage grooves. The multiple buffer springs can be respectively stored through the multiple storage grooves. Two metal shafts are rotatably connected to the thermotherapy device shell 1, and the elastic band 2 is connected to the thermotherapy device shell 1 through the two metal shafts.
[0048] The heating element includes two heating films 7, two insulation layers 8, two conductive wires, a circuit board 5 and a battery 4 arranged on the thermal therapy device shell 1. The two conductive wires are respectively connected to the two heating films 7, and the two heating films 7 are respectively fitted with the two insulation layers 8. The two conductive wires and the heating wire 6 are electrically connected to the circuit board 5, the circuit board 5 is electrically connected to the battery 4, and the heating wire 6 is fitted with the conductive silicone 32. The insulation layer 8 is arranged on the heating film 7 and the conductive silicone 32 is arranged on the heating wire 6, which can prevent the eyes from directly contacting the high-temperature heating film 7 and causing burns, effectively reduce the surface temperature of the heating film 7, ensure the safety of the patient during use, and avoid damage to the eye skin caused by high temperature.
[0049] The control components include an on / off button 9, a heating adjustment button 10, a massage enhancement button 11, a massage reduction button 12 and an indicator light 16 arranged on the thermal therapy device housing 1, and a remote control electrically connected to the on / off button 9. The on / off button 9, the heating adjustment button 10, the massage enhancement button 11, the massage reduction button 12 and the indicator light 16 are all electrically connected to the circuit board 5, the two micro water pumps 14 are all electrically connected to the heating adjustment button 10, and the two conductive wires and the heating wire 6 are all electrically connected to the heating adjustment button 10.
[0050] The thermal therapy device shell 1 consists of an eye mask front shell, an aluminum sheet, a facial silicone bracket, a facial bracket and a silicone cover. The facial silicone bracket, the facial bracket and the silicone cover are connected together by screws. The eye mask front shell and the silicone cover are movably connected. The aluminum sheet is located between the water tank 3 shell and the silicone cover. The circuit board 5 is provided with a speaker 30 and a magnet. The thermal therapy device shell 1 is provided with a charging port.
[0051] Multiple two-position three-way solenoid valves 27, speakers 30, circuit boards 5, micro water pumps 14 and multi-channel air pumps 24 are all electrically connected to the remote control, which can control the timed opening and closing of multiple two-position three-way solenoid valves 27, speakers 30, circuit boards 5, micro water pumps 14 and multi-channel air pumps 24.
[0052] During treatment:
[0053] a. Stay relaxed: Try to stay relaxed, close your eyes and enjoy the treatment;
[0054] b. Monitor sensations: Pay attention to any abnormal sensations and stop using immediately if you feel any discomfort;
[0055] c. Timely adjustment: adjust the mode or time as needed.
[0056] End of treatment:
[0057] a. Turn off the power: After the treatment, turn off the power of the device;
[0058] b. Remove the device: Remove the device carefully and avoid pulling the skin;
[0059] c. Clean the device: Clean the water tank 3 and the surface of the device according to the instructions, especially the part that comes into contact with the skin.
[0060] Clean up residual liquid:
[0061] ① Remove the water tank 3, open the waterproof cover 31 on the water tank 3 and pour out the remaining solution;
[0062] ② If liquid medicine is added to the water tank 3 for atomization, the following steps need to be added;
[0063] ③ Add a small amount (2-4 ml) of pure water to the water tank 3, cover the water tank 3 tightly, and gently shake the water tank 3 to fully dissolve the residual liquid in the pure water;
[0064] ④ Reopen the water tank 3, pour out the solution in the cup, and add a small amount (2-4 ml) of pure water;
[0065] ⑤ Install the water tank 3 filled with pure water on the device, press the power button 9 to start the device, and keep spraying for 1-2 minutes to atomize the pure water to clean the residual solution on the atomizing nozzle 17;
[0066] ⑥Repeat step ① and pour out the remaining purified water.
[0067] When non-purified water is added to the water tank 3 for atomization, the residual liquid must be cleaned after use, otherwise the atomizing nozzle 17 will be blocked, affecting the atomization effect.
[0068] Power-deficient state: when the power is less than 10%, the indicator light 16 flashes (accompanied by voice feedback from the speaker 30) and the device shuts down after 10 seconds; Charging state: all operations of the device are prohibited. In the charging state, the indicator light 16 flashes in a breathing manner and stays on when fully charged; Standby state: the indicator light 16 stays on.
[0069] Requirements for the use environment and location of thermal therapy devices:
[0070] 1. Do not place the product near heat sources, electric stoves or hot ovens to avoid scalding the product;
[0071] 2. The ophthalmic physiotherapy device should not be used near working high-frequency medical equipment or other high-frequency radio frequency equipment to prevent electromagnetic interference;
[0072] 3. It should be used in a clean, ventilated, heat-insulated, moisture-proof, dust-proof environment free of toxic gases and corrosive substances;
[0073] 4. Do not place or store this product in a water-rich environment (such as a bathtub, shower room, or sink) where it may fall or be pulled. Whether it is the first time you use this product or during use, you should always check whether the charging cable of this product is damaged. Never unplug the charging cable with wet hands.
[0074] 5. Do not store the ophthalmic therapy device when the water tank 3 contains liquid medicine or water.
[0075] Scope of application: It has a certain relieving and auxiliary therapeutic effect on symptoms such as blurred vision, eye fatigue, dry eyes, and tearing caused by myopia and visual fatigue.
[0076] Equipment cleaning: Clean the equipment regularly, especially the part that contacts the skin. Check the equipment regularly to ensure that all parts are working properly. Replace worn or damaged accessories as needed. Be sure to disinfect the water tank 3 and the main body shell with 75% medical alcohol before and after each use. If disinfection is required after use, please let the physiotherapy device stand for 15 minutes to allow the heating element temperature to return to room temperature. Spray the disinfectant evenly on the surface of the physiotherapy device to keep it moist, or use a non-shedding cloth to dip it in the disinfectant and wipe the surface of the physiotherapy device twice. Let it disinfect for three minutes. The water tank 3 can be thoroughly cleaned with purified water after disinfection.
[0077] If the battery 4 performs abnormally, such as being usable only for a short time after a long period of charging, or the battery 4 overheats during charging or use, you should contact the manufacturer in a timely manner to conduct a safety inspection of the battery 4 to avoid other possible dangers.
[0078] The implementation principle of an eye thermal therapy device with a massage component in the embodiment of the present application is as follows:
[0079] (1) By pulling the elastic band 2, the patient can wear the thermotherapy device shell 1 on the head, and put the sponge 18 against the patient's eyes, and the conductive silicone 32 fits the corners of the patient's eyes. When the elastic band 2 is completely tightened, the conductive silicone 32 will be squeezed, and then the multiple buffer springs push the multiple buffer blocks 29 respectively, so that the conductive silicone 32 can be deformed according to the corners of the patient's eyes and can change according to the contours of the patient's eyes, so that the thermotherapy device can be adapted to patients with different face sizes, thereby improving the use range of the thermotherapy device, and then the conductive silicone 32 can be completely and tightly fitted with the corners of the patient's eyes, avoiding the heat and flow rate of the liquid medicine caused by the patient when using the thermotherapy device for hot compress, so as to ensure the effect of human eye treatment;
[0080] (2) After the patient puts on the thermotherapy device shell 1, the sponge 18 will fit the patient's eye area, and then press the power button 9 to drive the massage component. The gas can be pumped into the multiple connecting tubes 25 and the multiple multi-cavity air bags 26 in sequence through the multi-channel air pump 24, so that the multiple multi-cavity air bags 26 can expand, and can respectively drive the multiple atomizing nozzles 17 to move, and then press the patient's eyes. At the same time, with the cooperation of multiple two-position three-way solenoid valves 27, the timing of opening and closing of the multiple connecting tubes 25 can be controlled respectively, and the timing of inflation and deflation of the multiple multi-cavity air bags 26 can be controlled respectively. When the multi-cavity airbag 26 is deflated, the gas will float into the exhaust pipe 28 through the connecting pipe 25 and the two-position three-way solenoid valve 27 to realize the deflation of the gas. Then, through the inflation and deflation of the multi-cavity airbag 26, the multiple atomizing nozzles 17 can press the patient's eyes frequently to ensure the massage effect of the patient's eyes. At the same time, by setting up multiple multi-cavity airbags 26, the patient's eyes can be pressed in a multi-range, ensuring that every position of the patient's eyes can achieve the massage effect. When the multiple multi-cavity airbags 26 are deflated, the gas can be discharged through the exhaust pipe 28;
[0081] (3) By pressing the massage enhancement key 11 or the massage reduction key 12, the time for the multi-channel air pump 24 and the multiple two-position three-way solenoid valves 27 to be frequently opened can be controlled. Then, when the massage enhancement key 11 is pressed, the time for the multiple multi-cavity air bags 26 to be inflated and deflated can be accelerated. The pounding technique can bring powerful stimulation to the eyes and effectively relieve the tension of the eye muscles. The more times the massage enhancement key 11 is pressed, the faster the inflation and deflation time of the multiple cavity air bags 26 will be. When the massage reduction key 12 is pressed, the time for the multiple multi-cavity air bags 26 to be inflated and deflated can be slowed down. The rubbing technique can relieve the irritation of the eyes and bring soothing relief to the eyes. Massage effect: The more times the massage reduction button 12 is pressed, the faster the multi-chamber airbag 26 will inflate and deflate. Starting from the initial start of the multi-channel air pump 24, the massage enhancement button 11 and the massage reduction button 12 both have three-level adjustment. The inflation and deflation time of the multiple multi-chamber airbags 26 can be adjusted according to the patient's treatment needs to ensure the patient's massage treatment needs. When the multi-chamber airbag 26 is quickly inflated, the pressure of the multi-chamber airbag 26 on the pressed part increases instantly, causing the blood vessels to be squeezed. When the airbag is quickly deflated, the pressure suddenly decreases, causing the blood vessels to dilate. This process of compression and release helps to accelerate blood flow and relieve physical fatigue.
[0082] (4) The time for each two-position three-way solenoid valve 27 to be opened can be controlled by the remote controller. The speed of inflation and deflation of each multi-chamber airbag 26 can be accurately controlled according to the patient's eye treatment needs. At the same time, the amount of air in each multi-chamber airbag 26 can be controlled, and the pressing force of each multi-chamber airbag 26 can be controlled. According to the patient's eye pressing needs, the pressing force of multiple multi-chamber airbags 26 on each designated acupuncture point of the patient's eyes can be accurately controlled. Moreover, the speed of inflation and deflation of each multi-chamber airbag 26 can be used to simulate the pushing and unloading of the heat therapy device. The holding and kneading techniques can add a sense of rhythm and rhythm to the massage process. According to the different massage intensity requirements of the muscles and acupoints in different parts of the patient's eyes, by controlling the inflation and deflation speed of each multi-cavity airbag 26, targeted massage of different parts can be achieved. For parts prone to fatigue and tension, a faster inflation speed can be used to provide stronger massage intensity and deeply relax the muscles. For thicker parts, the inflation time can be appropriately extended to fully expand the multi-cavity airbag 26, provide more uniform and lasting pressure, and promote blood circulation.
[0083] (5) By pressing the heating adjustment button 10, the two micro water pumps 14, the two heating membranes 7 and the heating wire 6 can be turned on, and then the liquid medicine in the water tank 3 can flow to the multiple branch pipes 15 and the multiple atomizing nozzles 17 in sequence through the two water outlet pipes 13, and then the multiple atomizing nozzles 17 will spray the liquid medicine on the designated positions of the patient's eyes respectively, and then, in conjunction with the heating of the two heating membranes 7 and the heating wire 6, the patient's eyes can be subjected to heat therapy, promoting the internal circulation metabolism of the eye tissue, and at the same time, in conjunction with the multiple multi-cavity air bags 26, the expansion and contraction of the multiple atomizing nozzles 17 can be respectively performed on the patient's eyes, which can further enhance the effect of the heat therapy on the patient's eyes;
[0084] (6) When the expansion and contraction of the multiple multi-cavity airbags 26 drive the multiple atomizing nozzles 17 to move, they also drive the multiple racks 21 to move, and then drive the multiple gears 20 to rotate. The number of turns of the multiple gears 20 can control the size of the opening of the multiple control valves 19 to the multiple branch pipes 15. The more the expansion of the multi-cavity airbags 26 drives the atomizing nozzles 17 and the racks 21 to move, the more turns the gears 20 make, and the larger the gap between the control valves 19 and the branch pipes 15 is, the larger the atomizing nozzles 17 and the racks 21 are. The more liquid medicine is sprayed by the spray head 17, the greater the pressure on the designated acupoint by the multi-chamber airbag 26, and the more liquid medicine is sprayed on the corresponding acupoint. In this way, the pressure on each acupoint by the multiple multi-chamber airbags 26 is different, and the amount of liquid medicine sprayed on each corresponding acupoint is also different. The amount of liquid medicine sprayed can be accurately controlled according to the needs of pressing the designated acupoints on the patient's eyes, which can ensure that the patient's eye thermal therapy is more uniform and deep, and promote the absorption of liquid medicine by the eye skin with massage, while avoiding waste of liquid medicine.
[0085] (7) At the same time, when the multiple multi-cavity airbags 26 are deflated, the multiple racks 21 can be rebounded by the elastic force of the multiple telescopic springs 22, and the multiple gears 20 can be rotated, so that the multiple control valves 19 can automatically close the multiple atomizing nozzles 17 respectively. On the one hand, when the multi-cavity airbags 26 are deflated, the atomizing nozzles 17 can also be gradually closed, so as to avoid the atomizing nozzles 17 still spraying liquid medicine when the multi-cavity airbags 26 stop massaging. On the other hand, the rebound of the telescopic springs 22 can quickly deflate the multi-cavity airbags 26, so that the multi-cavity airbags 26 are quickly exhausted, thereby ensuring the massage effect of the multi-cavity airbags 26.
[0086] (8) Compared with the existing technology, the overall structure is simple and easy to use, and the purpose of the thermal therapy device to accurately control the massage strength of the patient's designated eye position and the amount of medicine sprayed at the corresponding eye position is achieved. The greater the pressure on the patient's designated eye position, the more medicine is sprayed at the corresponding acupoint, avoiding uneven absorption of the medicine by the skin and ensuring the effect of eye hot compress. The smaller the pressure on the patient's designated eye position, the smaller the amount of medicine sprayed at the corresponding acupoint, avoiding waste of medicine and preventing excessive accumulation of medicine around the eyes to cause irritation. It can adapt to the needs of different patients for eye thermal therapy and ensure the therapeutic effect of the thermal therapy device on the patient's eyes.
[0087] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. An eye thermal therapy device with a massage component, characterized in that: It comprises a thermotherapy device shell (1) and a physiotherapy mechanism arranged on the thermotherapy device shell (1); The physiotherapy mechanism comprises a massage component and a hot compress component for massaging and hot compressing the human eye, and a sealing component for sealing and fitting the thermal therapy device housing (1) to the human eye; The hot compress assembly comprises a water tank (3) arranged on the thermal therapy device housing (1), a heating wire (6) and a plurality of atomizing nozzles (17), a water storage member for storing water in the plurality of atomizing nozzles (17), an adjusting member for automatically adjusting the water output of the atomizing nozzles (17), and a heating member for heating the heating wire (6); The massage component comprises a multi-channel air pump (24) and a plurality of multi-cavity air bags (26) arranged on the thermal therapy device housing (1), an air delivery member and an air exhaust member for delivering air to and exhausting air from the plurality of multi-cavity air bags (26), and a control member for controlling the air intake amount of each multi-cavity air bag (26), and the regulating member can be automatically driven by the air delivery member; The sealing assembly comprises an elastic band (2) and a conductive silicone rubber (32) arranged on the thermotherapy device housing (1), and an extrusion piece for extruding the conductive silicone rubber (32); The water storage component includes two water outlet pipes (13) connected to the water tank (3) and micro water pumps (14) respectively connected to the two water outlet pipes (13); the plurality of atomizing nozzles (17) are all connected to branch pipes (15); the plurality of branch pipes (15) are divided into two groups, and the two groups of branch pipes (15) are respectively connected to the two water outlet pipes (13); The regulating member includes a control valve (19) respectively fixed on a plurality of branch pipes (15), a gear (20) rotatably arranged on the control valve (19), a plurality of telescopic springs (22) fixed on the thermotherapy device housing (1), and a rack (21) respectively fixed on the plurality of telescopic springs (22), the plurality of racks (21) respectively meshing with the plurality of gears (20), the plurality of atomizing nozzles (17) respectively fixedly connected to the multi-cavity airbag (26), the plurality of atomizing nozzles (17) are respectively fixedly connected to a telescopic rod (23), the plurality of telescopic rods (23) are respectively fixedly connected to the thermotherapy device housing (1), and when the plurality of multi-cavity airbags (26) expand and contract to drive the plurality of atomizing nozzles (17) to move, the plurality of racks (21) are also respectively driven to move.
2. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The gas delivery component comprises a plurality of connecting tubes (25) connected to a multi-channel air pump (24), and two-position three-way solenoid valves (27) respectively fixed to the plurality of connecting tubes (25), and the plurality of connecting tubes (25) are respectively connected to a plurality of multi-cavity air bags (26).
3. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The plurality of multi-cavity airbags (26) are divided into two groups, the two groups of multi-cavity airbags (26) are arranged symmetrically in left and right directions, each group of multi-cavity airbags (26) comprises six multi-cavity airbags (26), and the six multi-cavity airbags (26) are arranged symmetrically in top and bottom directions.
4. The eye thermal therapy device with a massage component according to claim 2, characterized in that: The exhaust component comprises an exhaust pipe (28) fixed to the thermotherapy device housing (1); the exhaust ports of the plurality of two-position three-way solenoid valves (27) are all connected to the exhaust pipe (28); and the exhaust pipe (28) is connected to the thermotherapy device housing (1).
5. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The extrusion member comprises a plurality of buffer springs fixed on the thermotherapy device housing (1) and buffer blocks (29) respectively fixed on the plurality of buffer springs. The plurality of buffer blocks (29) are all fitted with the conductive silicone rubber (32), and the plurality of buffer blocks (29) are evenly distributed on the conductive silicone rubber (32).
6. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The heating element comprises two heating films (7), two heat-insulating layers (8), two conductive wires, a circuit board (5) and a battery (4) arranged on a thermotherapy device shell (1); the two conductive wires are respectively connected to the two heating films (7); the two heating films (7) are respectively attached to the two heat-insulating layers (8); the two conductive wires and the heating wire (6) are both electrically connected to the circuit board (5); the circuit board (5) is electrically connected to the battery (4); and the heating wire (6) is attached to the conductive silicone (32).
7. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The control component includes an on / off key (9), a heating adjustment key (10), a massage enhancement key (11), a massage reduction key (12) and an indicator light (16) arranged on the thermal therapy device housing (1), and a remote control electrically connected to the on / off key (9); the on / off key (9), the heating adjustment key (10), the massage enhancement key (11), the massage reduction key (12) and the indicator light (16) are all electrically connected to the circuit board (5); and the two micro water pumps (14) are both electrically connected to the heating adjustment key (10).
8. The eye thermal therapy device with a massage component according to claim 1, characterized in that: The thermal therapy device shell (1) is composed of an eye mask front shell, an aluminum sheet, a facial silicone bracket, a facial bracket and a silicone cover plate, wherein the facial silicone bracket, the facial bracket and the silicone cover plate are connected together by screws, and the eye mask front shell is movably snap-connected to the silicone cover plate.
Citation Information
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