Nursing device for atomizing and fumigating eyes of various body positions
The eye atomization fumigation device with multi-angle adjustment and constant temperature heating solves the problems of multi-directional adjustment and insufficient heating of the medicine liquid in the existing device, and achieves precise atomization fumigation in various body positions and lipid dissolution effect in the meibomian glands.
Patent Information
- Application Number
- CN202511098426.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-06
- Publication Date
- 2025-10-10
AI Technical Summary
Existing eye mist fumigation devices are difficult to adjust in multiple angles and cannot accurately cover the patient's eyes. In addition, the liquid medicine cannot be heated at a constant temperature during the mist fumigation process, which reduces the effect of the mist fumigation.
A nursing device including a base, an electric push rod, a support rod, an atomizer host and a regulator is designed. Multi-angle adjustment is achieved through the electric push rod and the regulator. The constant temperature heating of the medicine liquid is achieved by combining ultrasonic vibration and heat conduction tubes to ensure the accuracy and effect of atomization fumigation.
It realizes eye atomization fumigation in various body positions, ensures that the atomization fumigation eye mask accurately covers the patient's eyes, and improves the permeability of the drug solution aerosol through constant temperature heating, thereby enhancing the lipid dissolution effect in the meibomian glands.
Smart Images

Figure CN120753935A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of eye care, and more particularly to a care device for atomizing and fumigating eyes in various body positions. Background Art
[0002] Eye mist fumigation care refers to the use of ultrasonic vibration and oxygen airflow to convert liquid (including liquid medicine or physiological solution) into tiny droplets or gaseous molecules, forming a highly permeable aerosol environment, which directly acts on the ocular surface and eyelid margin tissue to relieve eye fatigue and dryness; However, existing eye mist fumigation care devices have the following shortcomings when performing mist fumigation on the eyes: the mist fumigation eye mask is difficult to adjust in multiple directions, resulting in the patient being unable to perform eye mist fumigation in various body positions, causing inconvenience to the eye mist fumigation. At the same time, the distance between the two mist fumigation eye masks cannot be adjusted, resulting in the mist fumigation eye masks being unable to accurately cover the two eyes of different patients, reducing the effect of the mist fumigation eye mask. In addition, the liquid medicine cannot be heated synchronously at a constant temperature during the ultrasonic vibration process, thereby reducing the effect of dissolving the lipids blocked in the meibomian glands of the patient's eyes. Summary of the Invention
[0003] The technical solution adopted by the present invention to achieve the technical purpose is: a nursing device for atomizing and fumigating eyes in various body positions, the structure of which includes a base, an electric push rod, a support rod, an atomizing host and a regulator, the bottom of the electric push rod is fixed to the middle of the upper surface of the base, and the output end of the top of the electric push rod pushes the support rod to rise and fall, the top of the support rod is fixed to the bottom surface of the atomizing host, and three inclined support arms are further provided on the outer side of the support rod, and the three inclined support arms support the bottom surface of the atomizing host, the regulator is provided on the right side of the atomizing host, and the regulator consists of a connecting plate, a cannula, a support arm, an outer tube, an adjusting tube, a built-in hose and an adjusting arm, the connecting plate is arranged on the right surface of the atomizing host, and a cannula is provided on the left side of the connecting plate, the cannula is plugged and installed in the air outlet provided on the right side of the atomizing host, the right side of the connecting plate is connected to the support arm and the outer tube, and the outer tube is connected to the cannula, the right end of the outer tube is connected to the adjusting tube, and the built-in hose is arranged inside the outer tube and the adjusting tube, and the right end of the adjusting tube is connected to the adjusting arm; An external ring sleeve is provided on the outside of the adjusting tube, and a guide rod is also provided on the outer surface of the external ring sleeve, and the outside of the external ring sleeve is supported and connected by a support arm, and an auxiliary wheel is provided inside the external ring sleeve to assist in sliding the outer wall of the adjusting tube, and a driving turntable is provided at the lower end of the supporting arm, and the driving turntable drives the driven pulley to rotate through a belt, and the driven pulley drives the friction wheel to rotate through a belt, and the friction wheel is attached to the outer wall of the adjusting tube to drive the adjusting tube to adjust the rotation angle, and a hidden circuit is provided inside the supporting arm to control the forward and reverse rotation of the driving turntable, and the friction wheel drives the adjusting tube to adjust the forward and reverse rotation angle by driving the turntable forward and reverse.
[0004] As a further improvement of the application, the left end of the adjusting arm is internally provided with an inner connector pipe, and the adjusting pipe is fixed inside the inner connector pipe, the surface of the left end of the adjusting arm is further embedded with a guide groove, the guide rod slides along the inside of the guide groove, an eye cover is further arranged on the adjusting arm, the built-in hose is connected with the rear connector pipe arranged at the rear end of the eye cover, the inner diameter of the inner connector pipe matches the outer diameter of the adjusting pipe, so that the adjusting pipe is fixed inside the inner connector pipe to drive the adjusting arm to rotate synchronously, thereby adjusting the angle of the eye cover.
[0005] As a further improvement of the application, the rear connector pipe is externally connected with a nested ring, and the nested ring is externally fixed with a sliding block, the sliding block is slidingly arranged inside the guide groove arranged at the upper end of the adjusting arm, a knob is further arranged at the surface of the right end of the adjusting arm, the knob is fixed at the right end of the worm, and the worm is arranged inside the adjusting arm, the adjusting arm is arranged inside the sliding block in a clearance fit, the worm is provided with two, and the threads on the two worms are reverse threads, the rotation of the two worms can drive the two sliding blocks to slide in opposite directions, thereby adjusting the distance between the two eye covers.
[0006] As a further improvement of the application, the front surface of the atomization host is embedded with a display screen and a control panel, and the upper end of the atomization host is internally embedded with a placing groove, a medicine box is arranged inside the placing groove, a bottom plate is arranged at the bottom of the inside of the placing groove, and a heat conducting pipe is arranged inside the bottom plate; The atomization host below the bottom plate is further internally embedded with a built-in water cavity, the built-in water cavity is externally connected with an adding port, and a screw plug is arranged at the bottom of the drain port at the lower end of the built-in water cavity, the built-in water cavity is further internally arranged with a heat conducting pipe, the adding port is inclined and has a cavity structure with a wide upper end and a narrow lower end, water can be added into the built-in water cavity through the adding port, and the water is heated by the heat conducting pipe.
[0007] As a further improvement of the application, the bottom of the medicine box is provided with an ultrasonic vibration plate, and the bottom of the medicine box is provided with two grooves, so that the heat conducting pipe can be located inside the grooves to heat the liquid medicine in the medicine box at a constant temperature, the upper right side of the medicine box is further embedded with a mist outlet, and the mist outlet is connected with a transmission pipe inside the atomization host, the transmission pipe is connected with the air outlet, thereby transmitting the generated mist into the eye cover.
[0008] The beneficial effects of the application are as follows: 1. The control panel is controlled to control the forward and reverse rotation of the driving turntable, the friction wheel drives the adjusting pipe to rotate in the forward and reverse directions, the adjusting arm is adjusted at multiple angles, the eye cover on the surface of the adjusting arm can be adjusted to be in a vertical or horizontal position, and when in the vertical position, the angle of inclination can also be adjusted according to the sitting posture of the patient, so that the patient can perform eye atomization and fumigation in multiple body positions. 2. By turning the knob, the two worms can drive the two sliders to slide in opposite directions, thereby adjusting the distance between the two eye masks, ensuring that the two eye masks can be accurately covered on the patient's two eyes, and improving the effect of the atomized fumigation eye mask; 3. The liquid medicine inside the medicine box is atomized at the bottom of the medicine box through the ultrasonic vibration plate, and the water is heated in conjunction with the heat pipe. The heat is conducted upward to the inside of the medicine box through the heat pipe, so that the liquid medicine inside the medicine box is heated at a constant temperature, effectively increasing the liquid medicine to form a highly permeable aerosol, thereby improving the effect of dissolving the lipids blocked in the meibomian glands of the patient's eyes. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 The present invention is a structural schematic diagram of a care device for atomizing and fumigating eyes in various body positions.
[0010] Figure 2 It is a schematic diagram of the partial three-dimensional structure of the regulating tube of the present invention.
[0011] Figure 3 Schematic diagram of the internal structure of the regulator of the present invention.
[0012] Figure 4 It is a schematic diagram of the three-dimensional structure of the regulating arm of the present invention.
[0013] Figure 5 Schematic diagram of the three-dimensional structure of the eye mask of the present invention.
[0014] Figure 6 This is a schematic diagram of the three-dimensional cross-sectional structure of the atomizer host of the present invention.
[0015] Figure: Base 1, Electric Push Rod 2, Support Rod 3, Tilt Arm 31, Atomizer 4, Display 41, Control Panel 42, Air Vent 43, Storage Slot 44, Bottom Plate 441, Heat Pipe 442, Built-in Water Chamber 45, Addition Port 451, Screw Plug 452, Medicine Box 46, Ultrasonic Vibration Plate 461, Mist Outlet 462, Conductor Tube 47, Regulator 5, Connector Plate 51, Intubation Tube 5 2. Support arm 53, outer tube 54, adjustment tube 55, external ring sleeve 551, guide rod 5511, auxiliary wheel 552, drive turntable 553, driven wheel 554, friction wheel 555, internal hose 56, adjustment arm 57, internal tube 571, guide groove 572, eyecup 573, rear tube 5731, slider 5732, nesting ring 5733, knob 5734, worm gear 5735. DETAILED DESCRIPTION
[0016] The present invention will be further described below with reference to the accompanying drawings: Example 1: As attached Figure 1 To the attached Figure 6 As shown: The present invention discloses a nursing device for atomizing and fumigating eyes in various body positions, the structure of which includes a base 1, an electric push rod 2, a support rod 3, an atomizing main unit 4 and a regulator 5. The bottom of the electric push rod 2 is fixed to the middle of the upper surface of the base 1, and the output end of the top of the electric push rod 2 pushes the support rod 3 to rise and fall. The top of the support rod 3 is fixed to the bottom surface of the atomizing main unit 4, and three inclined support arms 31 are further provided on the outside of the support rod 3. The three inclined support arms 31 support the bottom surface of the atomizing main unit 4. The regulator 5 is provided on the right side of the atomizing main unit 4. The regulator 5 consists of a connecting plate 51, an intubation tube 52, a support arm 53, an outer tube 54, an adjusting tube 55, a built-in hose 56 and an adjusting The connecting plate 51 is provided on the right side surface of the atomizing host 4, and a cannula 52 is provided on the left side of the connecting plate 51. The cannula 52 is plugged into the air outlet 43 provided on the right side of the atomizing host 4. The right side of the connecting plate 51 is connected to a support arm 53 and an outer tube 54, and the outer tube 54 is connected to the cannula 52. The right end of the outer tube 54 is connected to an adjusting tube 55, and a built-in hose 56 is provided inside the outer tube 54 and the adjusting tube 55. The right end of the adjusting tube 55 is connected to an adjusting arm 57; an external ring sleeve 551 is provided on the outside of the adjusting tube 55, and a guide rod 5511 is also provided on the outer surface of the external ring sleeve 551, and the external ring sleeve The outside of 551 is supported and connected by a support arm 53, and an auxiliary wheel 552 is provided inside the external ring sleeve 551 to assist the sliding of the outer wall of the adjustment tube 55. A driving turntable 553 is provided at the lower end of the support arm 53, and the driving turntable 553 drives the driven wheel 554 to rotate through a belt, and the driven wheel 554 drives the friction wheel 555 to rotate through a belt, and the friction wheel 555 is fitted on the outer wall of the adjustment tube 55 to drive the adjustment tube 55 to adjust the rotation angle; an inner tube 571 is provided inside the left end of the adjustment arm 57, and the adjustment tube 55 is fixed inside the inner tube 571, and a guide groove 572 is also embedded in the left end surface of the adjustment arm 57, and the guide rod 5511 is along The guide groove 572 guides the sliding movement inside, and the adjusting arm 57 is further provided with an eyecup 573. The built-in hose 56 is connected to the inside of the rear pipe 5731 provided at the rear end of the eyecup 573. The outer side of the rear pipe 5731 is connected to the nested ring 5733, and a slider 5732 is fixed to the upper end of the nested ring 5733. The slider 5732 is slidably installed on the inner side of the guide groove at the upper end of the adjusting arm 57. A knob 5734 is further provided on the right end surface of the adjusting arm 57. The knob 5734 is fixed to the right end of the worm 5735, and the worm 5735 is installed inside the adjusting arm 57. The adjusting arm 57 is clearance-fitted and passes through the interior of the slider 5732.
[0017] As a further improvement of the present invention, the front surface of the atomizing host 4 is embedded with a display screen 41 and a control panel 42, and a placement slot 44 is embedded inside the upper end of the atomizing host 4, a medicine box 46 is placed inside the placement slot 44, a bottom plate 441 is provided at the bottom of the inner side of the placement slot 44, and a heat conduction pipe 442 is passed through the bottom plate 441; a built-in water cavity 45 is also embedded inside the atomizing host 4 below the bottom plate 441, the upper end of the built-in water cavity 45 is connected to the addition port 451, and a screw plug is provided at the bottom of the drain port at the lower end of the built-in water cavity 45 452, a heat conduction pipe 442 is also installed inside the built-in water cavity 45; an ultrasonic vibration plate 461 is provided at the bottom of the medicine box 46, and two grooves are provided at the bottom of the medicine box 46, so that the heat conduction pipe 442 can be located inside the groove to heat the liquid medicine inside the medicine box 46 at a constant temperature, and a mist outlet 462 is also embedded on the right side of the upper end of the medicine box 46, and the mist outlet 462 is connected to the conduction pipe 47 inside the atomizing host 4, and the conduction pipe 47 is connected to the air outlet 43, so that the generated mist is transmitted to the inside of the eye mask 573; In the present invention, the base 1 is placed on a suitable ground position, and the atomization and fumigation eye care is performed according to whether the patient chooses to sit or lie down for atomization and fumigation eye care. First, the electric push rod 2 is adjusted to adjust the atomization host 4 to a suitable height, and then the control panel 42 is controlled to control the forward and reverse rotation of the driving turntable 553 so that the friction wheel 555 drives the adjustment tube 55 to adjust the forward and reverse rotation angle, so that the adjustment arm 57 can be adjusted at multiple angles, and the eye mask 573 on the surface of the adjustment arm 57 can be adjusted to a vertical or horizontal position, and when in a vertical position, the tilt angle can be adjusted according to the patient's sitting posture, so that the patient can perform eye atomization in various postures. Fumigation is performed, and by turning the knob 5734, the rotation of the two worm gears 5735 can drive the two sliders 5732 to slide in the opposite direction, thereby adjusting the distance between the two eye masks 573 to ensure that the two eye masks 573 can be accurately covered on the patient's two eyes, thereby improving the effect of the atomized fumigation eye masks. At the same time, the internal medicine liquid is atomized at the bottom of the medicine box 46 through the ultrasonic vibration plate 461, and the water is heated by the heat pipe 442. The heat is conducted upward to the inside of the medicine box 46 through the heat pipe 442, so that the medicine liquid inside the medicine box 46 is heated at a constant temperature, effectively improving the medicine liquid to form a high-permeability aerosol, thereby improving the effect of dissolving the lipids blocked in the meibomian glands of the patient's eyes.
[0018] A preferred technical solution is that a hidden circuit is provided inside the support arm 53 to control the forward and reverse rotation of the driving dial 553. The forward and reverse rotation of the driving dial 553 causes the friction wheel 555 to drive the adjustment tube 55 to adjust the forward and reverse rotation angle, so that the adjustment arm 57 can be adjusted at multiple angles, thereby allowing the patient to undergo eye atomization fumigation in various body positions; In a preferred technical solution, the inner diameter of the inner tube 571 matches the outer diameter of the adjustment tube 55, so that the adjustment tube 55 is fixed inside the inner tube 571 and drives the adjustment arm 57 to rotate synchronously, thereby adjusting the angle of the eye mask 573. During the rotation adjustment process, the four guide rods 5511 slide along the inner guide groove 572, improving the smoothness of the rotation adjustment and the accuracy of the fixed-axis rotation, thereby improving the stability of the eye mask 573 after the angle is adjusted. In a preferred technical solution, two worms 5735 are provided, and the threads on the two worms 5735 are reverse threads. The rotation of the two worms 5735 can drive the two sliders 5732 to slide in opposite directions, thereby adjusting the distance between the two eye masks 573 to ensure that the two eye masks 573 can accurately cover the patient's two eyes, and the mist generated by the atomizing host 4 is dispersed from the eye masks 573 through the two built-in hoses 56 connected to the eye masks 573 to act on the patient's eyes for atomization fumigation; A preferred technical solution is that the addition port 451 is a cavity inclined structure with a wide upper end and a narrow lower end. Water can be added into the built-in water cavity 45 through the addition port 451, and the water is heated by the heat pipe 442. The heat is conducted upward to the inside of the medicine box 46 through the heat pipe 442, so that the medicine inside the medicine box 46 is heated at a constant temperature, which can improve the effect of dissolving the lipids blocked in the meibomian glands of the patient's eyes.
[0019] Utilizing the technical solution of the present invention, or those skilled in the art designing similar technical solutions inspired by the technical solution of the present invention to achieve the above technical effects, all fall within the scope of protection of the present invention.
Claims
1. A nursing device for atomizing and fumigating eyes in various body positions, the structure of which comprises a base (1), an electric push rod (2), a support rod (3), an atomizing main unit (4) and a regulator (5), wherein the bottom of the electric push rod (2) is fixed to the middle of the upper surface of the base (1), and the top output end of the electric push rod (2) pushes the support rod (3) to move up and down, the top of the support rod (3) is fixed to the bottom surface of the atomizing main unit (4), and three inclined support arms (31) are further provided on the outside of the support rod (3), and the three inclined support arms (31) support the bottom surface of the atomizing main unit (4), and the regulator (5) is provided on the right side of the atomizing main unit (4), characterized in that: The regulator (5) is composed of a connecting plate (51), an insert tube (52), a support arm (53), an outer tube (54), an adjusting tube (55), a built-in hose (56) and an adjusting arm (57). The connecting plate (51) is arranged on the right side surface of the atomizing main unit (4), and the insert tube (52) is arranged on the left side of the connecting plate (51). The insert tube (52) is plugged and installed inside the air outlet (43) arranged on the right side of the atomizing main unit (4). The right side of the connecting plate (51) is connected to the support arm (53) and the outer tube (54), and the outer tube (54) and the insert tube (52) are connected through. The right end of the outer tube (54) is connected to the adjusting tube (55), and the built-in hose (56) is arranged inside the outer tube (54) and the adjusting tube (55). The right end of the adjusting tube (55) is connected to the adjusting arm (57). The regulating tube (55) is provided with an external ring sleeve (551) on the outside, and a guide rod (5511) is further provided on the outer surface of the external ring sleeve (551). The external portion of the external ring sleeve (551) is supported and connected by a support arm (53). An auxiliary wheel (552) is provided inside the external ring sleeve (551) to assist in sliding the outer wall of the regulating tube (55). A driving turntable (553) is provided at the lower end of the support arm (53). The driving turntable (553) drives a driven wheel (554) to rotate via a belt, and the driven wheel (554) drives a friction wheel (555) to rotate via a belt. The friction wheel (555) is attached to the outer wall of the regulating tube (55) to drive the regulating tube (55) to adjust its rotation angle.
2. The eye misting and fumigation care device for various body positions according to claim 1, characterized in that: An internal pipe (571) is provided inside the left end of the regulating arm (57), and the regulating tube (55) is fixed inside the internal pipe (571). A guide groove (572) is also embedded in the surface of the left end of the regulating arm (57), and the guide rod (5511) slides along the guide groove (572). An eye mask (573) is also provided on the regulating arm (57), and the internal hose (56) is connected to the inside of a rear pipe (5731) provided at the rear end of the eye mask (573).
3. The eye misting and fumigation care device for various body positions according to claim 2, characterized in that: The outer side of the rear pipe (5731) is connected to a nested ring (5733), and a slider (5732) is fixed to the upper end of the nested ring (5733). The slider (5732) is slidably mounted on the inner side of the guide groove at the upper end of the adjustment arm (57). The right end surface of the adjustment arm (57) is also provided with a knob (5734). The knob (5734) is fixed to the right end of the worm (5735), and the worm (5735) is mounted inside the adjustment arm (57). The adjustment arm (57) is fitted through the inside of the slider (5732) with a clearance fit.
4. The eye misting and fumigation care device for various body positions according to claim 1, characterized in that: The front surface of the atomizing main unit (4) is embedded with a display screen (41) and a control panel (42), and the upper end of the atomizing main unit (4) is embedded with a placement groove (44), a medicine box (46) is placed inside the placement groove (44), and a bottom plate (441) is provided at the bottom of the inner side of the placement groove (44), and a heat conduction pipe (442) is passed through the bottom plate (441); A built-in water cavity (45) is also embedded in the atomizing main unit (4) below the bottom plate (441), the upper end of the built-in water cavity (45) is connected to a feeding port (451), and a spiral plug (452) is provided at the bottom of the drainage port at the lower end of the built-in water cavity (45), and a heat pipe (442) is also installed inside the built-in water cavity (45).
5. The eye care device for misting and fumigating eyes in various body positions according to claim 4, characterized in that: An ultrasonic vibration plate (461) is provided at the bottom of the medicine box (46), and two grooves are provided at the bottom of the medicine box (46), so that the heat conduction pipe (442) can be located inside the groove to heat the liquid medicine inside the medicine box (46) at a constant temperature. A mist outlet (462) is also embedded on the right side of the upper end of the medicine box (46), and the mist outlet (462) is connected to the conduction pipe (47) inside the atomizing host (4), and the conduction pipe (47) is connected to the air outlet (43), so that the generated mist is transmitted to the inside of the eye mask (573).