Auxiliary inhalation atomization device and method for children

By designing an adjustable head-mounted atomization device and lifting and translation mechanism, the problem that the existing atomization inhalation device is difficult to be suitable for children is solved, and the effect of children being able to move normally during the treatment process and facilitating long-term treatment is achieved.

CN119950909AInactive Publication Date: 2025-05-09HEBEI PROVINCIAL CHILDRENS HOSPITAL (HEBEI PROVINCIAL FIFTH PEOPLES HOSPITAL HEBEI PROVINCIAL INST OF PEDIATRICS)
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Patent Information

Application Number
CN202510284492.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing atomization inhalation device is difficult to be suitable for children, especially during long-term treatment, which makes it difficult for children to persist in treatment for a long time.

Method used

A children's assisted inhalation atomization device is designed, using an adjustable head-mounted device, combined with lifting and translation mechanisms, adjusting the position of the breathing port of the atomization device, which is suitable for children's heads of different sizes and allows children to perform normal activities during the treatment process.

Benefits of technology

The device enables children to perform normal activities while undergoing atomization treatment, which facilitates long-term treatment and is suitable for different head sizes of children.

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Abstract

The invention discloses an auxiliary inhalation atomization device and method for children, and belongs to the field of aerosol inhalation therapies.The auxiliary inhalation atomization device for children comprises a head-mounted constraint ring, the head-mounted constraint ring is connected with a translation mechanism through a lifting mechanism, one side of the translation mechanism is connected with an auxiliary box used for providing electric energy, and the other side of the translation mechanism is connected with an atomization box. The other side of the translation mechanism is connected with the atomization mechanism, the atomization mechanism comprises a liquid medicine conveying assembly, an atomization assembly and a suction assembly which are connected in sequence, and the top end of the atomization assembly is connected with the translation mechanism used for driving the atomization mechanism to translate through a supporting rod. The adjustable head-mounted device is matched with the lifting and translation mechanism, the position of the breathing opening of the atomization device is adjusted, the atomization device can be suitable for different children, the children can do normal activities when wearing the atomization device on the head for atomization treatment, and long-time atomization treatment is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of atomization inhalation therapy, and in particular to a child-assisted inhalation atomization device and method. Background Art

[0002] A nebulizer inhalation device is a medical device that converts drugs into tiny particles and inhales them through the respiratory tract to treat respiratory diseases. Its main components include a nebulizer, which usually includes an ultrasonic nebulizer: ultrasonic sound energy is used to break the drug solution into tiny particles under the action of the ultrasonic film at the bottom of the nebulizer cup, and then the airflow generated by the air supply device generates drug mist, which is delivered to the patient through the mist delivery pipe for inhalation; a jet nebulizer: the high-speed movement of compressed gas is used to impact and break the drug into tiny aerosol particles for inhalation; a screen nebulizer: an ultrasonic vibrating film is used to make the drug solution vibrate violently, and through tiny sieve holes of a fixed diameter, tiny particles are released for inhalation.

[0003] Existing atomizer inhalation devices are usually used by adults, and the atomization treatment time is usually more than ten to dozens of minutes. For children, the treatment time of dozens of minutes is too restrictive and usually difficult to persist for a long time. Therefore, there is an urgent need for an atomizer inhalation device that is easy to wear and can be worn by different children without affecting their normal activities, and is convenient for long-term atomization treatment. Summary of the invention

[0004] The purpose of the present invention is to provide a child-assisted inhalation atomization device and method. Through an adjustable head-mounted device, in conjunction with a lifting and translation mechanism, the position of the breathing port of the atomization device can be adjusted, and it can be suitable for different children. Children can carry out normal activities while wearing the atomization device for atomization treatment, which is convenient for long-term atomization treatment.

[0005] To achieve the above-mentioned objectives, the present invention provides a child-assisted inhalation atomization device, comprising a head-mounted restraint ring, which is connected to a translation mechanism through a lifting mechanism, one side of the translation mechanism is connected to an auxiliary box for providing electrical energy, and the other side of the translation mechanism is connected to an atomization mechanism, the atomization mechanism comprises a liquid medicine delivery component, an atomization component and an inhalation component which are connected in sequence, and the top end of the atomization component is connected to a translation mechanism for driving the atomization mechanism to translate through a support rod.

[0006] Preferably, the head and tail of the head-mounted restraint ring are separately arranged, and the head and tail of the head-mounted restraint ring are connected by Velcro.

[0007] Preferably, the lifting mechanism includes fixed blocks symmetrically arranged on both sides of the head-mounted restraining ring, two sliding rods are slidably arranged in the fixed blocks, a lifting gear is rotatably arranged in the middle of the sliding rod, and the lifting gear is meshed and connected with the sliding rod.

[0008] Preferably, the translation mechanism includes a fixing frame symmetrically arranged on both sides of the head-mounted restraining ring, the top of the fixing frame is connected to the bottom end of the sliding rod, two translation rods are slidably arranged in the sliding frame, a translation gear is rotatably arranged in the middle of the translation rod, and the translation gear is meshingly connected to the translation rod.

[0009] Preferably, one end of the translation rod away from the fixing frame is connected to a support block, and the support block is arranged at the top end of the support rod.

[0010] Preferably, the liquid medicine delivery assembly comprises a liquid medicine box connected to the inlet of the atomizing assembly, a pressure plug is slidably arranged in the liquid medicine box, the top end of the pressure plug is connected to a push handle arranged outside the liquid medicine box through a push rod, and the pressure plug is connected to the inner surface of the liquid medicine box through an elastic clamping structure; The elastic clamping structure includes a pressure plate arranged at the bottom end of the pressure plug, elastic clamping blocks are symmetrically arranged on both sides of the pressure plate, a groove for clamping the elastic clamping block is arranged on the inner surface of the medicine liquid box, the cross section of the elastic clamping block is a right-angled trapezoid, the inclined surface of the elastic clamping block faces the bottom direction of the medicine liquid box, the elastic clamping block is connected to the inside of the pressure plate through a spring, a cross bar is arranged inside the pressure plate, one end of the cross bar passes through the middle of the spring and is connected to the elastic clamping block, the other end of the cross bar is connected to the bottom end of the vertical rod, the vertical rod passes through the push rod and goes out from the top end of the push handle, and the push rod, the push handle, and the pressure plate are all provided with cavities for the movement of the cross bar and the vertical rod; A funnel is arranged below the pressure plate, the funnel is arranged inside the medicine liquid box, an opening and closing cover with a return closing function is arranged at the bottom outlet of the funnel, one end of the opening and closing cover is rotatably connected with the funnel, and a liquid storage cavity is arranged below the funnel.

[0011] Preferably, the inhalation assembly includes a hard cavity connected to the outlet of the atomization assembly, a soft inhalation nozzle is connected to the hard cavity, a plurality of breathing holes connected to the interior of the hard cavity are arranged inside the soft inhalation nozzle, two baffle plates are symmetrically arranged inside the hard cavity, a rotating plate 1 is rotatably arranged on one baffle plate, a limit block 1 for limiting the rotation of the rotating plate 1 toward one side of the atomization assembly is arranged on the other baffle plate, rotating plate 2 is rotatably arranged on both baffle plates, rotating plate 2 is arranged at one end of the baffle plate away from the atomization assembly, rotating plate 1 is arranged at one end of the baffle plate close to the atomization assembly, a limit block 2 for limiting the rotation of the rotating plate 2 toward the outside of the baffle plate is arranged on the baffle plate, and an air outlet is arranged on the hard cavity, and the air outlet is located on the inner side of the baffle plate.

[0012] Preferably, the atomization assembly comprises a shell, and an atomizer for atomizing the medicinal liquid is arranged inside the shell.

[0013] Preferably, a battery for powering the atomizer is disposed in the auxiliary box, and the battery is connected to the atomizer via a power transmission line.

[0014] The present invention also provides a method for using a child-assisted inhalation atomization device, comprising the following steps: Step 1: Put the headband on the head of the child who needs treatment, and adjust the size of the headband according to the child's head. After adjustment, stick the headband at the ends with Velcro; Step 2: The lifting gear of the lifting mechanism drives the sliding rod to move up and down, thereby driving the entire atomizing mechanism to move up and down, so that the soft suction nozzle of the inhalation component is adjusted to a position parallel to the child's mouth; Step 3: The translation gear of the translation mechanism drives the translation rod to slide, thereby driving the entire atomization mechanism to move forward and backward, so that the soft inhalation nozzle of the inhalation assembly is translated to the child's mouth position; Step 4: The child bites the soft inhalation mouthpiece of the inhalation component to breathe; Step 5. When inhaling, the child inhales through the breathing hole of the soft suction mouth, the rotating plate one rotates to open, and the rotating plate two is closed under the obstruction of the limit block two, and the atomized liquid medicine passes through the opening of the rotating plate through the breathing hole to perform atomization treatment on the child; when exhaling, the rotating plate one is closed under the obstruction of the limit block one, and the rotating plate two is rotated to open, and the gas exhaled by the child enters the inner side of the blocking plate through the opening of the rotating plate two and is discharged from the air outlet, completing the atomization treatment.

[0015] Therefore, the present invention adopts the above-mentioned child-assisted inhalation atomization device and method, which has the following beneficial effects: (1) The present invention uses an adjustable head-mounted device, in conjunction with a lifting and translation mechanism, to adjust the position of the breathing port of the atomizer device, and can be suitable for different children. Children can carry out normal activities while wearing the device for atomization treatment, which is convenient for long-term atomization treatment; (2) The present invention uses an elastic block with a rebound function and a liquid medicine box with a groove, so that the pressure plug does not rise up during the process of pushing the liquid medicine downward, and pushes a certain amount of liquid medicine in sequence. At the same time, by connecting the horizontal bar and the vertical bar with the elastic block, the elastic block can be retracted by pressing, so that the pressure plug is easy to take out and replenish the liquid medicine. By arranging a funnel under the pressure plug, the pressure plug presses the liquid medicine downward, and the liquid medicine enters the liquid storage cavity through the funnel. The bottom outlet of the funnel is provided with an opening and closing cover with a return closing function, so that the opening and closing cover can be automatically closed after opening, so that the liquid medicine will not flow back. (3) The present invention arranges rotating plate 1, rotating plate 2, limit block 1 and limit block 2 in the hard cavity of the inhalation component, so that when the child inhales, the atomized liquid medicine is inhaled by the child through the opening of rotating plate 1 for atomization treatment. When the child exhales, the gas exhaled by the child enters the inner side of the blocking plate through the opening of rotating plate 2 and is discharged from the air outlet. At the same time, the soft inhalation nozzle of the inhalation component is used to prevent the child's mouth from being damaged by biting and inhaling. The soft inhalation nozzle is provided with a plurality of breathing holes, so that the child's biting and inhaling will not block the suction of the atomized liquid medicine.

[0016] The technical solution of the present invention is further described in detail below through the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of an embodiment of a child auxiliary inhalation atomization device of the present invention; Figure 2 A top view of an embodiment of a child-assisted inhalation atomization device of the present invention; Figure 3 A side view of an embodiment of a child-assisted inhalation atomization device of the present invention; Figure 4 for Figure 3 A magnified schematic diagram of point A; Figure 5 for Figure 3 An enlarged schematic diagram of point B; Figure 6 A bottom view of the connection between the translation gear and the translation rod of an embodiment of a child auxiliary inhalation atomization device of the present invention; Figure 7 A schematic diagram of an atomization mechanism of an embodiment of a child auxiliary inhalation atomization device of the present invention; Figure 8 for Figure 7 An enlarged schematic diagram of point C; Fig. 9 for Figure 7 An enlarged schematic diagram of point D; Fig.10 for Figure 7 An enlarged schematic diagram of point E; Fig.11 A schematic diagram of the internal structure of an inhalation component of an embodiment of a child-assisted inhalation atomization device of the present invention; Fig.12 This is a schematic diagram of the distribution of breathing holes in an embodiment of a child auxiliary inhalation atomization device of the present invention.

[0018] Reference numerals 1. Headband; 2. Auxiliary box; 3. Fixed block; 4. Sliding rod; 5. Lifting gear; 6. Lifting and rotating handle; 7. Fixed frame; 8. Translation rod; 9. Translation gear; 10. Translation and rotating handle; 11. Support block; 12. Support rod; 13. Shell; 14. Liquid box; 15. Pressure plug; 16. Push rod; 17. Push handle; 18. Pressure plate; 19. Elastic block; 20. Spring; 21. Cross bar; 22. Vertical bar; 23. Funnel; 24. Opening and closing cover; 25. Liquid storage chamber; 26. Hard chamber; 27. Soft suction nozzle; 28. Breathing hole; 29. ​​Blocking plate; 30. Rotating plate 1; 31. Limit block 1; 32. Rotating plate 2; 33. Limit block 2; 34. Air outlet. DETAILED DESCRIPTION

[0019] In order to make the purpose, technical scheme and advantages disclosed in the embodiments of the present invention clearer, the embodiments of the present invention are further described in detail in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the embodiments of the present invention and are not intended to limit the embodiments of the present invention. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals throughout represent the same or similar elements or elements with the same or similar functions.

[0020] It should be noted that the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or server that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units that are not explicitly listed or inherent to these processes, methods, products or devices.

[0021] Like reference numerals and letters denote similar items in the following drawings, and thus, once an item is defined in one drawing, further definition and explanation thereof is not required in subsequent drawings.

[0022] In the description of the present invention, it should be noted that the terms "upper", "lower", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, or are directions or positional relationships in which the product of the invention is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as a limitation on the present invention.

[0023] In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "setting", "installation" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be an indirect connection through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0024] Example like Figure 1 , Figure 2 , Figure 3As shown, the child auxiliary inhalation atomization device of the present invention comprises a head-mounted restraint ring 1, which is formed by a plurality of layers of woven cloth. A metal sheet with a bending function can be arranged on the inner side of the woven cloth to improve the support. The head and tail of the woven cloth are arranged separately, and the head and tail are connected by a long strip of Velcro. By adjusting the position where the head and tail of the head-mounted restraint ring 1 are attached, the size of the head-mounted restraint ring 1 can be adjusted to be suitable for children with different head circumferences.

[0025] The headband 1 is connected to the translation mechanism through a lifting mechanism. The lifting mechanism includes two fixed blocks 3 symmetrically fixedly arranged on both sides of the headband 1, and the fixed blocks 3 are located above the ears of the child. Two sliding rods 4 are slidably arranged in each fixed block 3, and a lifting gear 5 is arranged between the two sliding rods 4. A cavity is arranged in the fixed block 3, and the lifting gear 5 is arranged in the cavity. Figure 4 As shown, the center of the lifting gear 5 is fixedly connected to the rotating rod, one end of the rotating rod is rotatably connected to the fixed block 3, and the other end of the rotating rod passes through the center of the lifting gear 5 and is connected to the lifting rotating handle 6 outside the fixed block 3. The sliding rod 4 is provided with a tooth hole adapted to the lifting gear 5, and the lifting gear 5 is meshed and connected with the sliding rod 4 through the tooth hole on the sliding rod 4. Rotating the lifting rotating handle 6 drives the lifting gear 5 to rotate, and then drives the sliding rod 4 to rise and fall in the fixed block 3, thereby adjusting the up and down position of the atomizing mechanism, so as to facilitate alignment with the child's mouth.

[0026] The translation mechanism includes a fixing frame 7 symmetrically arranged on both sides of the headband 1, and the top end of the fixing frame 7 is fixedly connected to the bottom end of the sliding rod 4. Figure 5 , Figure 6 As shown, two translation rods 8 are slidably arranged in the sliding frame, and a translation gear 9 is rotatably arranged in the middle of the translation rod 8. A fixed plate is arranged on the sliding frame, and a rotation shaft is fixedly arranged in the center of the translation gear 9. One end of the rotation shaft is rotatably connected to the fixed plate, and the other end of the rotation shaft passes through the center of the translation gear 9 and is connected to the translation rotation handle. A strip-shaped long opening for exposing the translation rod 8 is arranged on the sliding frame, and a tooth hole matching the translation gear 9 is arranged on the exposed side of the translation rod 8. The translation gear 9 is meshed and connected with the translation rod 8 through the tooth hole on the translation rod 8. Rotating the translation rotation handle 10 drives the translation gear 9 to rotate, and then drives the translation rod 8 to slide in translation in the fixed frame 7, so as to adjust the front and rear position of the atomization mechanism, so as to facilitate alignment with the child's mouth.

[0027] One side of the translation mechanism is connected to the auxiliary box 2 for providing electrical energy, and the other side of the translation mechanism is connected to the atomization mechanism. Figure 7As shown, the atomization mechanism includes a liquid medicine delivery component, an atomization component and an inhalation component connected in sequence, and the top of the atomization component is connected to a translation mechanism for driving the atomization mechanism to translate through a support rod 12. The end of the translation rod 8 away from the fixed frame 7 is connected to a support block 11, and the support block 11 is arranged at the top of the support rod 12. The atomization assembly includes a shell 13, and an atomizer for atomizing liquid medicine is arranged inside the shell 13, and the support rod 12 is arranged at the top of the shell 13. A battery for powering the atomizer is arranged in the auxiliary box 2, and the battery is connected to the atomizer through a transmission line.

[0028] like Figure 7 , Figure 8 , Fig. 9 , Fig.10 As shown, the liquid medicine delivery assembly includes a liquid medicine box 14 connected to the inlet of the atomization assembly, and a pressure plug 15 is slidably arranged in the liquid medicine box 14. The top of the pressure plug 15 is connected to a push handle 17 arranged outside the liquid medicine box 14 through a push rod 16. The pressure plug 15 is connected to the inner surface of the liquid medicine box 14 through an elastic clamping structure. The elastic clamping structure includes a pressure plate 18 arranged at the bottom end of the pressure plug 15, and empty grooves are symmetrically arranged on both sides of the pressure plate 18. An elastic clamping block 19 is arranged in the empty groove, and the elastic clamping block 19 is connected to the wall surface of the empty groove through a spring 20. The inner surface of the liquid medicine box 14 is provided with a groove for clamping the elastic clamping block 19. The cross section of the elastic clamping block 19 is a right-angled trapezoid, and the inclined surface of the elastic clamping block 19 faces the bottom direction of the liquid medicine box 14. A cross bar 21 is slidably arranged inside the pressure plate 18, one end of the cross bar 21 passes through the middle of the spring 20 and is fixedly connected to the elastic block 19, and the other end of the cross bar 21 is fixedly connected to the bottom end of the vertical bar 22, and the vertical bar 22 passes through the push rod 16 and comes out from the top of the push handle 17, and a pressing block is arranged at one end thereof. The push rod 16, the push handle 17, and the pressure plate 18 are all provided with cavities for the movement of the cross bar 21 and the vertical bar 22, and the entire elastic card structure is symmetrically arranged in two groups, wherein a certain space is left between the symmetrically arranged vertical bars 22. The side of the liquid medicine box 14 is arranged as a transparent panel (the inner side of the transparent panel has a groove), and the outer side of the transparent panel is provided with a scale corresponding to the groove. Push the push handle 17 downward, and the push handle 17 drives the pressure plug 15 to move downward through the push rod 16. The downward movement of the pressure plug 15 drives the pressure plate 18 downward. Since the bottoms of the elastic blocks 19 on both sides of the pressure plate 18 are inclined, they can slide out of the slots and continue to move downward. When sliding to the next scale, the elastic blocks 19 are bounced into the grooves under the action of the springs 20. Since the cross section of the elastic blocks 19 is a trapezoid, the top of the elastic blocks 19 is a horizontal plane. Under the upward pressure of the liquid medicine, the elastic blocks 19 are stuck in the grooves and will not move without downward pressure. Pressing the two pressing blocks inward drives the two vertical rods 22 to move inward, and the crossbar 21 moves with the vertical rods 22, thereby driving the elastic blocks 19 to retract into the empty slots of the pressure plate 18.

[0029] A funnel 23 is provided below the pressure plate 18, and the funnel 23 is provided inside the liquid medicine box 14. An opening and closing cover 24 with a return closing function is provided at the bottom outlet of the funnel 23, and a rotating rod is provided at one end of the opening and closing cover 24, and both ends of the rotating rod are rotatably connected to the fixed seat at the bottom of the funnel 23, and a torsion spring is provided on the rotating rod, and the torsion spring enables the opening and closing cover 24 to automatically close after opening, so that the liquid medicine will not flow back. A liquid storage chamber 25 is provided below the funnel 23, and the pressure plug 15 presses the liquid medicine downward, and the liquid medicine enters the liquid storage chamber 25 through the funnel 23, and then enters the atomizer through the inlet of the atomizing component for atomization. The liquid medicine box can be replenished with liquid medicine by pulling out the pressure plug 15.

[0030] like Figure 7 , Fig.11 , Fig.12 As shown, the inhalation assembly includes a hard cavity 26 connected to the outlet of the atomizing assembly, a soft inhalation nozzle 27 is connected to the hard cavity 26, and a plurality of breathing holes 28 connected to the inside of the hard cavity 26 are arranged inside the soft inhalation nozzle 27. Two baffles 29 are symmetrically arranged inside the hard cavity 26, a rotating plate 30 is rotatably arranged on one baffle 29, and a stopper 31 for limiting the rotation of the rotating plate 30 to one side of the atomizing assembly is arranged on the other baffle 29. Rotating plates 232 are rotatably arranged on both baffles 29, and rotating plates 232 are arranged at one end of the baffle 29 away from the atomizing assembly, and rotating plates 130 are arranged at one end of the baffle 29 close to the atomizing assembly. Stopper 233 for limiting the rotation of rotating plates 232 to the outside of the baffle 29 is arranged on the baffle 29. An air outlet 34 is arranged on the hard cavity 26, and the air outlet 34 is located on the inner side of the baffle 29. When inhaling, the child inhales through the breathing hole 28 of the soft suction nozzle 27, the rotating plate 1 30 rotates to open, and the rotating plate 2 32 is closed under the obstruction of the limit block 2 33, and the atomized liquid medicine passes through the opening of the rotating plate 1 through the breathing hole 28 to perform atomization treatment on the child; when exhaling, the rotating plate 1 30 is closed under the obstruction of the limit block 1 31, and the rotating plate 2 32 rotates to open, and the gas exhaled by the child enters the inner side of the blocking plate 29 through the opening of the rotating plate 2 32 and is discharged from the air outlet 34.

[0031] The method for using the child-assisted inhalation atomization device of the present invention comprises the following steps: Step 1: Wear the headband 1 on the head of the child who needs treatment, and adjust the size of the headband 1 according to the child's head. After adjustment, stick the headband 1 at both ends with Velcro; Step 2: The lifting gear 5 of the lifting mechanism drives the sliding rod 4 to move up and down, thereby driving the entire atomizing mechanism to move up and down, so that the soft suction nozzle 27 of the suction assembly is adjusted to a position parallel to the child's mouth; Step 3: The translation gear 9 of the translation mechanism drives the translation rod 8 to slide, thereby driving the entire atomization mechanism to move forward and backward, so that the soft suction nozzle 27 of the inhalation assembly is translated to the child's mouth position; Step 4: The child bites the soft suction mouthpiece 27 of the suction assembly to breathe; Step 5. When inhaling, the child inhales through the breathing hole 28 of the soft suction nozzle 27, the rotating plate 1 30 rotates to open, and the rotating plate 2 32 is closed under the obstruction of the limit block 2 33, and the atomized liquid medicine passes through the opening of the rotating plate 1 through the breathing hole 28 to perform atomization treatment on the child; when exhaling, the rotating plate 1 30 is closed under the obstruction of the limit block 1 31, and the rotating plate 2 32 rotates to open, and the gas exhaled by the child enters the inner side of the blocking plate 29 through the opening of the rotating plate 2 32 and is discharged from the air outlet 34, completing the atomization treatment.

[0032] Therefore, the present invention adopts the above-mentioned child-assisted inhalation atomization device and method, and adjusts the position of the breathing port of the atomization device through an adjustable head-mounted device in conjunction with a lifting and translation mechanism. It can be suitable for different children. Children can carry out normal activities while wearing the head-mounted device for atomization treatment, which is convenient for long-term atomization treatment.

[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention rather than to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that they can still modify or replace the technical solution of the present invention with equivalents, and these modifications or equivalent replacements cannot cause the modified technical solution to deviate from the spirit and scope of the technical solution of the present invention.

Claims

1. A child-assisted inhalation atomization device, characterized in that: It includes a head-mounted restraint ring, which is connected to a translation mechanism through a lifting mechanism. One side of the translation mechanism is connected to an auxiliary box for providing electrical energy, and the other side of the translation mechanism is connected to an atomization mechanism. The atomization mechanism includes a liquid medicine delivery component, an atomization component and an inhalation component which are connected in sequence. The top end of the atomization component is connected to the translation mechanism for driving the atomization mechanism to translate through a support rod.

2. The child-assisted inhalation atomizer device according to claim 1, characterized in that: The head and tail of the head restraint ring are separately arranged, and the head and tail of the head restraint ring are connected by Velcro.

3. The child-assisted inhalation atomizer device according to claim 1, characterized in that: The lifting mechanism comprises fixed blocks symmetrically arranged on both sides of the head-mounted restraining ring, two sliding rods are slidably arranged in the fixed blocks, a lifting gear is rotatably arranged in the middle of the sliding rod, and the lifting gear is meshed and connected with the sliding rod.

4. The child-assisted inhalation atomization device according to claim 3, characterized in that: The translation mechanism includes a fixing frame symmetrically arranged on both sides of the head-mounted restraint ring, the top of the fixing frame is connected to the bottom end of the sliding rod, two translation rods are slidingly arranged in the sliding frame, a translation gear is rotatably arranged in the middle of the translation rod, and the translation gear is meshed and connected with the translation rod.

5. The child-assisted inhalation atomization device according to claim 4, characterized in that: One end of the translation rod away from the fixing frame is connected with a support block, and the support block is arranged on the top end of the support rod.

6. The child-assisted inhalation atomization device according to claim 1, characterized in that: The liquid medicine delivery assembly includes a liquid medicine box connected to the inlet of the atomizer assembly, a pressure plug is slidably arranged in the liquid medicine box, the top end of the pressure plug is connected to a push handle arranged outside the liquid medicine box through a push rod, and the pressure plug is connected to the inner surface of the liquid medicine box through an elastic clamping structure; The elastic clamping structure includes a pressure plate arranged at the bottom end of the pressure plug, elastic clamping blocks are symmetrically arranged on both sides of the pressure plate, a groove for clamping the elastic clamping block is arranged on the inner surface of the medicine liquid box, the cross section of the elastic clamping block is a right-angled trapezoid, the inclined surface of the elastic clamping block faces the bottom direction of the medicine liquid box, the elastic clamping block is connected to the inside of the pressure plate through a spring, a cross bar is arranged inside the pressure plate, one end of the cross bar passes through the middle of the spring and is connected to the elastic clamping block, the other end of the cross bar is connected to the bottom end of the vertical rod, the vertical rod passes through the push rod and goes out from the top end of the push handle, and the push rod, the push handle, and the pressure plate are all provided with cavities for the movement of the cross bar and the vertical rod; A funnel is arranged below the pressure plate, the funnel is arranged inside the medicine liquid box, an opening and closing cover with a return closing function is arranged at the bottom outlet of the funnel, one end of the opening and closing cover is rotatably connected with the funnel, and a liquid storage cavity is arranged below the funnel.

7. The child-assisted inhalation atomizer device according to claim 1, characterized in that: The inhalation component includes a hard cavity connected to the outlet of the atomization component, a soft inhalation nozzle is connected to the hard cavity, a plurality of breathing holes connected to the inside of the hard cavity are arranged inside the soft inhalation nozzle, two blocking plates are symmetrically arranged inside the hard cavity, a rotating plate 1 is rotatably arranged on one blocking plate, a limiting block 1 for limiting the rotation of the rotating plate 1 toward one side of the atomization component is arranged on the other blocking plate, rotating plates 2 are rotatably arranged on both blocking plates, rotating plate 2 is arranged at one end of the blocking plate away from the atomization component, rotating plate 1 is arranged at one end of the blocking plate close to the atomization component, limiting block 2 for limiting the rotation of the rotating plate 2 toward the outside of the blocking plate is arranged on the blocking plate, and an air outlet is arranged on the hard cavity, and the air outlet is located on the inner side of the blocking plate.

8. The child-assisted inhalation atomization device according to claim 1, characterized in that: The atomization assembly comprises a shell, and an atomizer for atomizing the medicine liquid is arranged inside the shell.

9. The child-assisted inhalation atomizer device according to claim 6, characterized in that: A battery for powering the atomizer is arranged in the auxiliary box, and the battery is connected to the atomizer through a transmission line.

10. A method for using a child-assisted inhalation atomizer according to any one of claims 1 to 9, characterized in that: The following steps are involved: Step 1: Put the headband on the head of the child who needs treatment, and adjust the size of the headband according to the child's head. After adjustment, stick the headband at the ends with Velcro; Step 2: The lifting gear of the lifting mechanism drives the sliding rod to move up and down, thereby driving the entire atomizing mechanism to move up and down, so that the soft suction nozzle of the inhalation component is adjusted to a position parallel to the child's mouth; Step 3: The translation gear of the translation mechanism drives the translation rod to slide, thereby driving the entire atomization mechanism to move forward and backward, so that the soft inhalation nozzle of the inhalation assembly is translated to the child's mouth position; Step 4: The child bites the soft inhalation mouthpiece of the inhalation component to breathe; Step 5. When inhaling, the child inhales through the breathing hole of the soft suction mouth, the rotating plate one rotates to open, and the rotating plate two is closed under the obstruction of the limit block two, and the atomized liquid medicine passes through the opening of the rotating plate through the breathing hole to perform atomization treatment on the child; when exhaling, the rotating plate one is closed under the obstruction of the limit block one, and the rotating plate two is rotated to open, and the gas exhaled by the child enters the inner side of the blocking plate through the opening of the rotating plate two and is discharged from the air outlet, completing the atomization treatment.