A clinical atomization treatment nozzle for skin with adjustable spray angle

By designing a skin clinical atomization treatment nozzle with adjustable spray angle, multiple spray units and magnet control are used to solve the problem of uneven distribution of the drug mist, achieving uniform coverage of the drug mist and pore absorption, and improving the treatment effect.

CN116672587BActive Publication Date: 2025-08-29CENT SOUTH UNIV
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Patent Information

Application Number
CN202310497608.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-05
Publication Date
2025-08-29
Estimated Expiration
2043-05-05

AI Technical Summary

Technical Problem

In the existing clinical atomization treatment of skin, the mist is unevenly distributed, making it difficult to effectively cover the curved skin, and the spray head cannot adjust the spray angle according to the skin shape.

Method used

A skin clinical atomization treatment nozzle with adjustable spray angle is designed, and multiple uniformly distributed spray units and power members are used to control the concentration or dispersion of the spray units through magnets to achieve uniform coverage of the medicine mist and vertical impact on the skin.

Benefits of technology

It improves the uniformity of the coverage of the medicinal mist on the skin surface and the pore absorption effect, reduces the waste of medicinal mist, and enhances the therapeutic effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of clinical skin treatment, and specifically to a clinical atomization treatment nozzle for skin with adjustable spray angle, comprising a main box, an opening at the bottom of the main box, and a spray row component provided at the opening; a power component, a position control plate, a double control component and an L-shaped air pipe are provided in the main box; one side of the power component is connected to the position control plate, which is fixed on the inner wall of the main box; one side of the double control component is connected to the L-shaped air pipe; the spray row component comprises a wave-folded tube and a spray unit; a plurality of evenly distributed spray units are provided on the wave-folded tube, and the bottom end of the L-shaped air pipe is connected to the wave-folded tube; the present invention arranges a plurality of continuously directional adjustable spray units above the patient's diseased skin, so that after the drug mist airflow is supplied, multiple drug mist airflows will impact the diseased skin, and the airflow direction can be deflected, thereby increasing the probability of the drug mist flow vertically impacting the skin surface, and assisting in improving the effect of the skin pores absorbing the drug mist.
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Description

Technical Field

[0001] The invention relates to the technical field of clinical skin treatment, in particular to a clinical skin atomization treatment nozzle with adjustable spray angle. Background Art

[0002] In the existing technology, clinical atomization treatment of skin can be achieved by spraying. The medicine mist falls on the skin, and the hot air in the medicine mist can open the pores of the skin, so that the medicine mist can easily enter the skin. In traditional technology, a single spray head blows at the skin, which will result in uneven physical therapy. The centralized physical therapy effect of the medicine mist airflow is good because the medicine mist has a concentrated impact. Therefore, the original single spray head is replaced with multiple evenly distributed spray heads to achieve uniform physical therapy of the medicine mist. This method still has shortcomings. Multiple streams of medicine mist airflow are blown toward the skin in a direction, and there is still unevenness. In addition, since human skin is a curved surface, in order to make the medicine mist airflow appear vertically on the skin, the spray head needs to change direction when blowing out the airflow. In order to solve the above problems and needs, the present invention provides a skin clinical atomization treatment nozzle with an adjustable spray angle. Summary of the Invention

[0003] The object of the present invention is to provide a clinical atomization treatment nozzle for skin with adjustable spray angle, so as to solve the problems raised in the above background technology.

[0004] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a clinical atomization treatment nozzle for skin with adjustable spray angle, comprising a main box, the bottom of which is open, and a spray row component is provided at the opening, the main box is provided with a power component, a control plate, a double control component and an L-shaped air pipe, one side of the power component is connected to the control plate, the control plate is fixed on the inner wall of the main box, one side of the double control is connected to the L-shaped air pipe, the spray row component comprises a wavy folded tube and a spray unit, a plurality of evenly distributed spray units are provided on the wavy folded tube, the bottom end of the L-shaped air pipe is connected to the wavy folded tube, and one end of the double control protrudes to the outside of the main box, the power component comprises a main frame, a disk component, a rubber conveyor belt and a power tool, one side of the main frame is connected to the disk component and the rubber conveyor belt, the bottom end of the disk component contacts the rubber conveyor belt, the rubber conveyor belt is driven and controlled by the power tool, and the disk component and the double control are driven and connected.

[0005] Preferably, the dual control unit includes a dual control device, a J-shaped tube and a nebulizer, one end of the dual control device is connected to the nebulizer, the other end of the dual control device is connected to the disk for transmission, one end of the L-shaped air pipe is connected to the dual control device, and a J-shaped tube is connected between the dual control device and the nebulizer.

[0006] Preferably, the disk member includes a cam body, a turntable, a first L-shaped plate, a first shaft, an L-shaped rack, a spring, a square cylinder seat, an L-shaped sub-plate and an L-shaped top column. The first shaft passes through the axis of the turntable, one end of the first shaft is movably sleeved in a through hole opened on the main frame, the other end of the first shaft is supported by the L-shaped top column, the bottom end of the L-shaped top column is fixed to the main frame, the square cylinder seat is slidably sleeved on the L-shaped top column, an L-shaped rack is fixed to one side of the square cylinder seat, and the L-shaped rack is meshed with the gear of the fixed sleeve on the first shaft One end of the first L-shaped plate is fixed on the L-shaped top column, and the other end of the first L-shaped plate is connected to a cam body, which is transmission-connected to the dual-control device. The cam body applies pressure to control the L-shaped rack. A spring is fixed on the outside of the first shaft, and an L-shaped sub-plate is fixed on one side of the L-shaped top column. One end of the L-shaped sub-plate is fixedly connected to the outermost end of the spring. The main frame limits the support of the rubber conveyor belt, the top rubber belt on the rubber conveyor belt is in contact with the turntable, and the bottom rubber belt on the rubber conveyor belt is fixedly connected to the power tool.

[0007] Preferably, the cam body includes a cam, a camshaft and a second gear. The camshaft is movably sleeved in a through hole opened at one end of the first L-shaped plate. The second gear is fixed to one end of the camshaft and the cam is fixed to the other end. The cam is in contact with the L-shaped rack, and the second gear is transmitted to the dual-control device.

[0008] Preferably, the spray unit includes a first reset spring, an inner cylinder, an outer ring body, an L-shaped short plate, a hose and an air outlet. One end of the hose is connected to the corrugated folded tube, and the other end of the hose is connected to the air outlet. The outer ring of the air outlet is provided with an inner cylinder, and the outer sliding sleeve of the inner cylinder is provided with an outer ring body. The fixed ring on the outer ring body is provided with multiple first reset springs. The first reset springs elastically support one side edge of the inner cylinder. One end of the L-shaped short plate is fixed on the outer ring body, and the other end is fixed on the corrugated folded tube. The inner cylinder is a spherical shell-shaped cylinder, and the inner side wall of the outer ring body is spherical.

[0009] Preferably, the air outlet includes a metal ball, a steering column, an inner frame, a second spring, a piston column and a cylindrical air nozzle, a piston column is slidingly provided on the top of the cylindrical air nozzle, one side of the cylindrical air nozzle is connected to the hose, and the piston column blocks the port of the control hose, a metal ball is fixed to one end of the steering column, the other end of the steering column is fixed on the piston column, a second spring is sleeved on the outside of the steering column, the second spring is supported between the piston column and the inner frame, the inner frame includes a concave folded plate and a column fixed on the outside of the concave folded plate, the steering column slides through a through hole opened at one end of the concave folded plate of the inner frame, the other end of the concave folded plate of the inner frame is fixed on the cylindrical air nozzle, and the column of the inner frame is fixed on the inner wall of the inner tube.

[0010] Preferably, the dual-control device includes a transfer box, a fluid fan and a long worm. The transfer box includes a cylindrical shell, a square box connected to one end of the cylindrical shell and a square tube connected to the other end of the cylindrical box. The square box of the transfer box is connected to the L-shaped air pipe, and one end of the J-shaped tube passes through the shell of one side of the square tube of the transfer box. A fluid fan is provided in the cylindrical shell of the transfer box, and the middle of the fluid fan passes through the long worm, and the long worm passes through the shell of the transfer box, and the spiral teeth at one end of the long worm are engaged with the second gear.

[0011] Preferably, the power tool includes a wavy curved column, a Z-shaped plate, a roller assembly, a long closed-loop plate, a magnet and a bottom film. The long closed-loop plate is fixed on the bottom rubber belt of the rubber conveyor belt, and the roller assembly is connected to the bottom of the long closed-loop plate. Two Z-shaped plates are connected to the bottom of the roller assembly, and the wavy curved column passes between the two Z-shaped plates. The end of the wavy curved column is fixed to the main frame, and a bottom film is fixed to the bottom end of the Z-shaped plate. A plurality of magnets are fixed on the bottom film. The roller assembly moves on the wavy curved column, and the roller assembly and the long closed-loop plate are distributed in parallel. The roller assembly moves along the direction of the long closed-loop plate. The long closed-loop plate and the wavy curved column are vertically distributed, and the long closed-loop plate moves along the direction of the wavy curved column.

[0012] Preferably, the roller integration includes a second wheel, a concave curved plate, a fourth spring piece, a concave slide plate and a first wheel, the two ends of the concave curved plate are turned inward, and the ends are provided with a concave slide plate, the concave slide plate is slidably inserted into the slide groove opened at the end of the concave curved plate, the concave slide plate limits the control of the first wheel, the two first wheels cooperate to clamp the wavy curved column, two fourth spring pieces are fixed on the concave curved plate, each fourth spring piece corresponds to an elastic support of a concave slide plate, a row of second wheels are provided on both sides of the long closed loop plate, two rows of second wheels limit the long closed loop plate, and the second wheel is fixed on the concave curved plate, and the top of the Z-shaped plate is fixed on the concave curved plate.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. The present invention arranges multiple continuously directional spray units above the patient's diseased skin. In this way, after the drug mist airflow is supplied, multiple streams of drug mist airflow will impact the diseased skin, and the airflow direction can be deflected, increasing the probability of the drug mist flow vertically impacting the skin surface, thereby helping to improve the effect of the skin pores absorbing the drug mist.

[0015] 2. Magnets can be placed on the film according to medical needs. If multiple magnets are placed together, the spray units caused to spray outward will also be concentrated, which will control the operation of the spray units in the designated area. In this way, the range of the spray can be controlled according to the patient's skin area to avoid wasting the medicine mist. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural schematic diagram of the present invention.

[0017] Figure 2 Schematic diagram of the spray arrangement position.

[0018] Figure 3 Schematic diagram of the spray arrangement structure.

[0019] Figure 4 This is a schematic diagram of the dual control structure.

[0020] Figure 5 Schematic diagram of the disk structure.

[0021] Figure 6 for Figure 3 Schematic diagram of the structure at point A in the middle.

[0022] Figure 7 Schematic diagram of the spray unit structure.

[0023] Figure 8 This is a schematic diagram of the punching bag structure.

[0024] Figure 9 It is a schematic diagram of the dual control device structure.

[0025] Figure 10 It is a schematic diagram of the power component structure.

[0026] Figure 11 for Figure 10 Schematic diagram of the structure at point B.

[0027] Figure 12 This is a schematic diagram of the mainboard structure.

[0028] In the figure: main box 1, spray row 2, power part 3, control plate 4, dual control 5, L-shaped air pipe 6, corrugated tube 7, spray unit 8, main frame 10, disk 11, rubber conveyor belt 12, power tool 13, dual control device 14, J-shaped tube 15, atomizer 16, cam body 17, turntable 18, first L-shaped plate 19, first shaft 20, L-shaped rack 21, spring 22, square cylinder seat 23, L-shaped sub-plate 24, L-shaped top column 25, cam 26, camshaft 27, second gear 2 8. First reset spring 29, inner tube 30, outer ring 31, L-shaped short plate 32, hose 33, air outlet 34, metal ball 35, steering column 36, inner frame 37, second spring 38, piston column 39, cylindrical air nozzle 40, transfer box 41, fluid fan 42, long worm 43, wavy curved column 44, Z-shaped plate 45, roller assembly 46, long closed-loop plate 47, magnet 48, bottom plate 49, second wheel 50, concave curved plate 51, fourth spring 52, concave sliding plate 53, first wheel 54. DETAILED DESCRIPTION

[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the technical solutions in the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0030] See also Figures 1 to 12 The present invention provides a technical solution: a clinical atomization treatment nozzle for skin with adjustable spray angle, comprising a main box 1, the main box 1 having an opening at the bottom, and a spray row component 2 being arranged at the opening, the main box 1 being provided with a power component 3, a control plate 4, a dual control component 5 and an L-shaped air pipe 6, one side of the power component 3 being connected to the control plate 4, the control plate 4 being fixed on the inner wall of the main box 1, one side of the dual control component 5 being connected with the L-shaped air pipe 6, the spray row component 2 comprising a wave-folded tube 7 and a spray unit 8, a plurality of evenly distributed spray units 8 being arranged on the wave-folded tube 7, the bottom end of the L-shaped air pipe 6 being docked with the wave-folded tube 7, one end of the dual control component 5 protruding to the outside of the main box 1, the power component 3 comprising a main frame 10, a disk component 11, a rubber conveyor belt 12 and a power tool 13, one side of the main frame 10 being connected to the disk component 11 and the rubber conveyor belt 12, the bottom end of the disk component 11 being in contact with the rubber conveyor belt 12, the transmission control power tool 13 being below the rubber conveyor belt 12, the disk component 11 and the dual control component 5 being transmission-connected.

[0031] The dual control unit 5 includes a dual control device 14, a J-shaped tube 15 and a nebulizer 16. One end of the dual control device 14 is connected to the nebulizer 16, and the other end of the dual control device 14 is transmission-connected to the disk 11. One end of the L-shaped air pipe 6 is docked with the dual control device 14. A J-shaped tube 15 is connected between the dual control device 14 and the nebulizer 16. The nebulizer 16 is a prior art device. An infusion tube is externally connected to the nebulizer 16. Through the supply mechanism in the prior art, the drug liquid is delivered to the nebulizer 16 through the external tube. After the drug mist is generated, it is delivered to the L-shaped air pipe 6 through the dual control device 14, and then diffused to multiple spray units 8 through the wave-folded tube 7.

[0032] The disk 11 includes a cam body 17, a turntable 18, a first L-shaped plate 19, a first shaft 20, an L-shaped rack 21, a spring 22, a square cylinder seat 23, an L-shaped sub-plate 24 and an L-shaped top column 25. The first shaft 20 passes through the axis of the turntable 18. One end of the first shaft 20 is movably sleeved in a through hole opened on the main frame 10. The other end of the first shaft 20 is supported by the L-shaped top column 25. The bottom end of the L-shaped top column 25 is fixed to the main frame 10. The square cylinder seat 23 is slidably sleeved on the L-shaped top column 25. An L-shaped rack 21 is fixed to one side of the square cylinder seat 23. The L-shaped rack 21 is engaged with the gear of the fixed sleeve on the first shaft 20. One end of the first L-shaped plate 19 is fixed on the L-shaped top column 25, and the other end of the first L-shaped plate 19 is connected to the cam body 17. The cam body 17 is transmission-connected to the dual-control device 14. The cam body 17 applies pressure to control the L-shaped rack 21. The outside of the first shaft 20 is fixed with a spring 22. An L-shaped sub-plate 24 is fixed on one side of the L-shaped top column 25. One end of the L-shaped sub-plate 24 is fixedly connected to the outermost end of the spring 22. The main frame 10 limits the support of the rubber conveyor belt 12. The top rubber belt on the rubber conveyor belt 12 is in contact with the turntable 18, and the bottom rubber belt on the rubber conveyor belt 12 is fixedly connected to the power tool 13.

[0033] The cam body 17 includes a cam 26, a camshaft 27 and a second gear 28. The camshaft 27 is movably sleeved in a through hole opened at one end of the first L-shaped plate 19. The second gear 28 is fixed to one end of the camshaft 27, and the cam 26 is fixed to the other end. The cam 26 is in contact with the L-shaped rack 21, and the second gear 28 and the dual-control device 14 are transmitted.

[0034] The spray unit 8 includes a first reset spring piece 29, an inner cylinder 30, an outer ring body 31, an L-shaped short plate 32, a hose 33 and an air outlet tube 34. One end of the hose 33 is connected to the corrugated folded tube 7, and the other end of the hose 33 is connected to the air outlet tube 34. The outer ring of the air outlet tube 34 is provided with an inner cylinder 30, and the outer sliding sleeve of the inner cylinder 30 is provided with an outer ring body 31. A plurality of first reset spring pieces 29 are provided on the fixed ring of the outer ring body 31. The first reset spring pieces 29 elastically support one side edge of the inner cylinder 30. One end of the L-shaped short plate 32 is fixed on the outer ring body 31, and the other end is fixed on the corrugated folded tube 7. The inner cylinder 30 is a spherical shell-shaped cylinder, and the inner side wall of the outer ring body 31 is spherical.

[0035] The air outlet tube 34 includes a metal ball 35, a direction column 36, an inner frame 37, a second spring 38, a piston column 39 and a cylindrical air nozzle 40. A piston column 39 is slidingly provided on the top of the cylindrical air nozzle 40. One side of the cylindrical air nozzle 40 is connected to the hose 33, and the piston column 39 blocks the port of the control hose 33. A metal ball 35 is fixed to one end of the direction column 36, and the other end of the direction column 36 is fixed on the piston column 39. A second spring 38 is sleeved on the outside of the direction column 36, and the second spring 38 is supported between the piston column 39 and the inner frame 37. The inner frame 37 includes a concave plate and a column fixed on the outside of the concave plate. The direction column 36 slides through a through hole opened at one end of the concave plate of the inner frame 37. The other end of the concave plate of the inner frame 37 is fixed on the cylindrical air nozzle 40, and the column of the inner frame 37 is fixed on the inner wall of the inner cylinder 30.

[0036] The dual control device 14 includes a transfer box 41, a fluid fan 42 and a long worm 43. The transfer box 41 includes a cylindrical shell, a square box connected to one end of the cylindrical shell and a square tube connected to the other end of the cylindrical box. The square box of the transfer box 41 is connected to the L-shaped air pipe 6. One end of the J-shaped tube 15 passes through the shell of the square tube of the transfer box 41. A fluid fan 42 is provided in the cylindrical shell of the transfer box 41. The middle of the fluid fan 42 passes through the long worm 43, and the long worm 43 passes through the shell of the transfer box 41. The spiral teeth at one end of the worm 43 are engaged with the second gear 28, and the other end of the long worm 43 is externally connected to the motor drive mechanism in the prior art. The long worm 43 rotates to control the fluid fan 42 and the second gear 28. The rotation of the fluid fan 42 causes the airflow in the transfer box 41 to flow in a directional manner. The mist sprayed from the J-tube 15 is injected into the transfer box 41, and then accompanied by the directional flow of the airflow in the transfer box 41, it is diffused into multiple spray units 8 through the L-shaped air pipe 6 and the corrugated folded tube 7.

[0037] The power tool 13 includes a wavy curved column 44, a Z-shaped plate 45, a roller assembly 46, a long closed-loop plate 47, a magnet 48 and a bottom film 49. The long closed-loop plate 47 is fixed on the bottom rubber belt of the rubber conveyor belt 12. The roller assembly 46 is connected to the bottom of the long closed-loop plate 47. Two Z-shaped plates 45 are connected to the bottom of the roller assembly 46. The wavy curved column 44 passes between the two Z-shaped plates 45. The end of the wavy curved column 44 is fixed to the main frame 10. A bottom film 49 is fixed to the bottom of the Z-shaped plate 45. Multiple magnets 48 are fixed on the bottom film 49. The roller assembly 46 moves on the wavy curved column 44. The roller assembly 46 and the long closed-loop plate 47 are distributed in parallel. The roller assembly 46 moves along the direction of the long closed-loop plate 47. The long closed-loop plate 47 and the wavy curved column 44 are distributed vertically, and the long closed-loop plate 47 moves along the direction of the wavy curved column 44.

[0038] The roller assembly 46 includes a second wheel 50, a concave curved plate 51, a fourth spring piece 52, a concave slide plate 53 and a first wheel 54. The two ends of the concave curved plate 51 are turned inward, and a concave slide plate 53 is provided at the end. The concave slide plate 53 is slidably inserted into the slide groove opened at the end of the concave curved plate 51. The concave slide plate 53 limits the control of the first wheel 54. The two first wheels 54 cooperate to clamp the wavy curved column 44. Two fourth spring pieces 52 are fixed on the concave curved plate 51. Each fourth spring piece 52 corresponds to an elastic support of a concave slide plate 53. A row of second wheels 50 is provided on both sides of the long closed loop plate 47. The two rows of second wheels 50 limit the long closed loop plate 47, and the second wheel 50 is fixed on the concave curved plate 51. The top of the Z-shaped plate 45 is fixed on the concave curved plate 51.

[0039] The entire atomization treatment nozzle device is placed above the diseased skin of the human body, and the medicine mist airflow is sprayed from multiple spray units 8, and the single airflow can change direction when impacting the skin, thereby increasing the probability of the airflow blowing vertically to the skin, and the medicine mist can more easily enter the skin pores, thereby improving the effect of the medicine mist therapy. Specifically, when the magnet 48 moves above the spray unit 8, after the magnet 48 approaches the metal ball 35, the magnet 48 attracts the metal ball 35, and the metal ball 35 drives the direction column 36 to move, thereby pulling out a part of the piston column 39, and the side wall of the piston column 39 is not Then seal the port of the hose 33 so that the medicine mist in the wave-folded tube 7 can be injected into the cylindrical air nozzle 40 through the hose 33, and then blown downward from the cylindrical air nozzle 40. During the process of the magnet 48 attracting the metal ball 35, the cylindrical air nozzle 40 will also be tilted, because when the magnet 48 moves above the metal ball 35, it not only produces an upward attraction to the metal ball 35, but also an inclined attraction, because the outer ring body 31 and the inner cylinder 30 are hinged, the inner cylinder 30, the inner frame 37 and the cylindrical air nozzle 40 are fixed as a whole and can rotate and tilt synchronously.

[0040] refer to Figure 10 and Figure 11 The magnet 48 moves because the long closed-loop plate 47 moves along the direction of the wavy curved column 44. During the movement, the roller assembly 46 moves back and forth as a whole. Specifically, the wavy curved column 44 supports the first wheel 54, and the first wheel 54 drives the concave slide 53, and then the fourth spring piece 52 elastically supports the concave curved plate 51, and the concave curved plate 51 moves back and forth, and then the Z-shaped plate 45 controls the bottom plate 49, so that the magnet 48 moves along the curved path of the wavy curved column 44.

[0041] The long closed loop plate 47 moves because the second gear 28 continuously rotates the control cam 26, and the cam 26 supports the L-shaped rack 21. Figure 5 and Figure 6It is understood that the clockwork spring 22 controls the first shaft 20, and the first shaft 20 has a reverse trend, thereby controlling the L-shaped rack 21 to have an upward trend, and the cam 26 presses down the L-shaped rack 21, so that the cam 26 continues to rotate, causing the L-shaped rack 21 to rise and fall back and forth, and then controls the turntable 18 through the first shaft 20. The turntable 18 rotates forward for multiple circles and then reverses and resets. In this way, the turntable 18 controls the rubber conveyor belt 12 to transport in a certain direction and then transport in the opposite direction, thereby causing the long closed-loop plate 47 to move back and forth.

[0042] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A clinical atomization treatment nozzle for skin with adjustable spray angle, comprising a main box (1), characterized in that: The main box (1) has an opening at the bottom, and a spray row (2) is provided at the opening. A power part (3), a position control plate (4), a double control (5) and an L-shaped air pipe (6) are provided in the main box (1). One side of the power part (3) is connected to the position control plate (4), which is fixed on the inner wall of the main box (1). One side of the double control (5) is connected to the L-shaped air pipe (6). The spray row (2) includes a wave-folded tube (7) and a spray unit (8). A plurality of evenly distributed spray units (8) are provided on the wave-folded tube (7). The bottom end of the L-shaped air pipe (6) is connected to the corrugated folded tube (7), one end of the double control (5) protrudes to the outside of the main box (1), the power component (3) includes a main frame (10), a disk component (11), a rubber conveyor belt (12) and a power tool (13), one side of the main frame (10) is connected to the disk component (11) and the rubber conveyor belt (12), the bottom end of the disk component (11) contacts the rubber conveyor belt (12), the transmission control power tool (13) is located below the rubber conveyor belt (12), and the disk component (11) and the double control (5) are in transmission connection; The dual control unit (5) includes a dual control device (14), a J-shaped tube (15) and an atomizer (16); one end of the dual control device (14) is connected to the atomizer (16); the other end of the dual control device (14) is in transmission connection with the disk (11); one end of the L-shaped air pipe (6) is connected to the dual control device (14); and the J-shaped tube (15) is connected between the dual control device (14) and the atomizer (16); The disk member (11) comprises a cam body (17), a rotating disk (18), a first L-shaped plate (19), a first shaft (20), an L-shaped rack (21), a spring spring (22), a square cylinder seat (23), an L-shaped auxiliary plate (24) and an L-shaped top column (25). The first shaft (20) is passed through the axis of the rotating disk (18). One end of the first shaft (20) is movably sleeved in a through hole provided on the main frame (10). The other end of the first shaft (20) is supported by the L-shaped top column (25). The bottom end of the L-shaped top column (25) is fixed on the main frame (10). The square cylinder seat (23) is slidably sleeved on the L-shaped top column (25). An L-shaped rack (21) is fixed on one side of the square cylinder seat (23). The L-shaped rack (21) and the first shaft (20) are fixed on the The gears of the sleeve are engaged, one end of the first L-shaped plate (19) is fixed on the L-shaped top column (25), the other end of the first L-shaped plate (19) is connected to the cam body (17), the cam body (17) and the double control device (14) are transmission-connected, the cam body (17) controls the L-shaped rack (21) by pressure, the first shaft (20) is fixed with a spring spring (22) on the outside, an L-shaped sub-plate (24) is fixed on one side of the L-shaped top column (25), one end of the L-shaped sub-plate (24) is fixedly connected to the outermost end of the spring spring (22), the main frame (10) limits the support of the rubber conveyor belt (12), the top rubber belt on the rubber conveyor belt (12) contacts the turntable (18), and the bottom rubber belt on the rubber conveyor belt (12) is fixedly connected to the power tool (13); The spray unit (8) comprises a first reset spring piece (29), an inner cylinder (30), an outer ring body (31), an L-shaped short plate (32), a hose (33) and an air outlet (34); one end of the hose (33) is connected to the wave folded tube (7); the other end of the hose (33) is connected to the air outlet (34); the outer ring of the air outlet (34) is provided with an inner cylinder (30); the outer ring of the inner cylinder (30) is provided with an outer ring (31) for sliding; a plurality of first reset spring pieces (29) are provided on a fixed ring on the outer ring (31); the first reset spring pieces (29) elastically support one side edge of the inner cylinder (30); one end of the L-shaped short plate (32) is fixed on the outer ring body (31), and the other end is fixed on the wave folded tube (7); the inner cylinder (30) is a spherical shell-shaped cylinder; the inner side wall of the outer ring (31) is spherical; The air outlet tube (34) comprises a metal ball (35), a steering column (36), an inner frame (37), a second spring (38), a piston column (39) and a cylindrical air nozzle (40). The top of the cylindrical air nozzle (40) is provided with a piston column (39) which is slidable. One side of the cylindrical air nozzle (40) is connected to the hose (33), and the piston column (39) blocks the port of the control hose (33). One end of the steering column (36) is fixed with a metal ball (35), and the other end of the steering column (36) is fixed with a metal ball (35). The steering column (36) is fixed on the piston column (39), and the second spring (38) is sleeved on the outside of the steering column (36). The second spring (38) is supported between the piston column (39) and the inner frame (37). The inner frame (37) includes a concave folding plate and a column fixed outside the concave folding plate. The steering column (36) slides through a through hole opened at one end of the concave folding plate of the inner frame (37). The other end of the concave folding plate of the inner frame (37) is fixed on the cylindrical air nozzle (40). The column of the inner frame (37) is fixed on the inner wall of the inner cylinder (30). The power tool (13) comprises a wave curved column (44), a Z-shaped plate (45), a roller assembly (46), a long closed-loop plate (47), a magnet (48) and a bottom plate (49), wherein the long closed-loop plate (47) is fixed on the bottom rubber belt of the rubber conveyor belt (12), a roller assembly (46) is connected below the long closed-loop plate (47), two Z-shaped plates (45) are connected below the roller assembly (46), the wave curved column (44) passes between the two Z-shaped plates (45), and the wave curved column (44) ) is fixed on the main frame (10), a bottom plate (49) is fixed on the bottom end of the Z-shaped plate (45), a plurality of magnets (48) are fixed on the bottom plate (49), a roller assembly (46) moves on the wave curved column (44), the roller assembly (46) and the long closed-loop plate (47) are parallelly distributed, the roller assembly (46) moves along the direction of the long closed-loop plate (47), the long closed-loop plate (47) and the wave curved column (44) are vertically distributed, and the long closed-loop plate (47) moves along the direction of the wave curved column (44).

2. The skin clinical atomization treatment nozzle with adjustable spray angle according to claim 1, characterized in that: The cam body (17) comprises a cam (26), a cam shaft (27) and a second gear (28). The cam shaft (27) is movably sleeved in a through hole opened at one end of the first L-shaped plate (19). The second gear (28) is fixed to one end of the cam shaft (27), and the cam (26) is fixed to the other end. The cam (26) contacts the L-shaped rack (21), and the second gear (28) and the dual control device (14) are driven.

3. The skin clinical atomization treatment nozzle with adjustable spray angle according to claim 2, characterized in that: The dual-control device (14) comprises a transfer box (41), a fluid fan (42) and a long worm (43). The transfer box (41) comprises a cylindrical shell, a square box connected to one end of the cylindrical shell and a square tube connected to the other end of the cylindrical box. The square box of the transfer box (41) is connected to the L-shaped air pipe (6). One end of the J-shaped tube (15) passes through the shell of one side of the square tube of the transfer box (41). A fluid fan (42) is provided in the cylindrical shell of the transfer box (41). The middle part of the fluid fan (42) passes through the long worm (43), and the long worm (43) passes through the shell of the transfer box (41). The spiral teeth at one end of the long worm (43) are engaged with the second gear (28).

4. The skin clinical atomization treatment nozzle with adjustable spray angle according to claim 1, characterized in that: The roller assembly (46) includes a second wheel (50), a concave curved plate (51), a fourth spring piece (52), a concave slide plate (53) and a first wheel (54). The two ends of the concave curved plate (51) are turned inward, and the ends are provided with concave slide plates (53). The concave slide plates (53) are slidably inserted into the sliding grooves provided at the ends of the concave curved plate (51). The concave slide plates (53) limit the first wheel (54). The two first wheels (54) cooperate with each other. The wave curved column (44) is clamped, and two fourth elastic pieces (52) are fixed on the concave curved plate (51). Each fourth elastic piece (52) elastically supports a concave sliding plate (53). A row of second wheels (50) are provided on both sides of the long closed loop plate (47). The two rows of second wheels (50) limit the long closed loop plate (47), and the second wheels (50) are fixed on the concave curved plate (51). The top end of the Z-shaped plate (45) is fixed on the concave curved plate (51).

Citation Information

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