Atomization treatment structure used for being connected with atomizer
By designing an atomization treatment structure for connecting the atomizer, including storage devices, check-way valves and regulators, the problem of the inability to completely absorb and waste traditional Chinese medicine liquid mist is solved, and efficient use and flow regulation of the medicine liquid mist is achieved.
Patent Information
- Application Number
- CN202421458813.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-06-25
AI Technical Summary
When used in existing medical oxygen atomizing masks, patients cannot completely absorb all outgoing drug mist, and multiple openings lead to waste of drug mist.
An atomization treatment structure for connecting atomizer is designed, including a nasal straw, a storage device, a check valve and a regulator. The storage device is connected to the atomizer through a check valve, and a regulator is provided on the nasal straw. The regulator adjusts the flow rate of the medicinal liquid mist through the roller and hollow cavity structure.
Through the design of storage devices and one-way valves, patients can store and use drug mist at any time to avoid waste; the regulator can adjust the flow of drug mist according to needs, ensuring that the patient can absorb it completely and reduce discomfort.
Smart Images

Figure CN222930139U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of respiratory atomization, in particular to an atomization treatment structure for connecting an atomizer. Background Art
[0002] Clinically, there is a treatment method in which western medicine is atomized by oxygen and then inhaled by patients to enter the respiratory tract and lungs of patients. Currently, patients are usually given a face mask to inhale the medicine. Since the face mask covers the patient's nose and mouth together, this inhalation method is not convenient for patients to exhale carbon dioxide, and users are prone to discomfort. The utility model patent with the publication number of CN211724282U discloses a medical oxygen atomization face mask. At the positions on the mask body opposite to both sides of the human nose, a first opening is provided, and at the position on the mask body opposite to the human mouth, a second opening is provided, thereby greatly increasing the exhaust port area of carbon dioxide waste gas on the premise of ensuring the gas inhalation amount, and avoiding the user from feeling stuffy. However, when using this device, patients cannot fully absorb all the outflowing liquid medicine mist, and in order to avoid the user from feeling stuffy, a plurality of openings are provided on the mask body, which causes the unabsorbed liquid medicine mist to volatilize into the air from the openings, resulting in the waste of the liquid medicine mist. How to solve the above problems has become an urgent technical problem to be solved. Summary of the Utility Model
[0003] The purpose of the utility model is to provide an atomization treatment structure for connecting an atomizer to prevent the waste of liquid medicine mist.
[0004] To achieve the above purpose, the utility model adopts the following technical solutions:
[0005] An atomization treatment structure for connecting an atomizer provided by the utility model includes a nasal straw; a storage device is connected between the nasal straw and the atomizer in a communicating manner, and a one-way valve is arranged between the storage device and the atomizer, and the one-way valve is used to prevent the liquid medicine mist in the storage device from flowing back to the atomizer, and a regulator is arranged on the nasal straw.
[0006] Further, the storage device includes a storage airbag, a first connecting pipe and a second connecting pipe are arranged on the storage airbag, the storage airbag is connected to the atomizer through the first connecting pipe in a communicating manner, the storage airbag is connected to the nasal straw through the second connecting pipe in a communicating manner, and the one-way valve is installed on the first connecting pipe.
[0007] Further, the atomizer and the first connecting pipe are detachably matched.
[0008] Further, the regulator includes a roller and a hollow cavity with a decreasing inner diameter from top to bottom. Two tracks are provided on the cavity, and the two tracks are symmetrically arranged on the inner walls of both sides of the cavity. The left and right ends of the roller are respectively slidably installed in the tracks on the same side. An opening is provided on the side wall of the cavity, and a part of the roller is exposed outside the cavity through the opening. The nasal suction tube passes through the cavity from top to bottom, and the roller is in contact with the nasal suction tube.
[0009] Further, a third connecting tube capable of controlling on-off and used for connecting an oxygen inhalation tube is also provided on the nasal suction tube, and the third connecting tube is communicated with the nasal suction tube.
[0010] Further, a sealing cover is provided at the pipe orifice of the third connecting tube, and the sealing cover is detachably matched with the pipe orifice of the third connecting tube.
[0011] Further, the sealing cover is in threaded fit with the pipe orifice of the third connecting tube.
[0012] Further, the atomizer is in threaded fit with the first connecting tube.
[0013] Due to the adoption of the above structure, the beneficial effects of the present utility model are as follows:
[0014] By providing a storage device, a one-way valve and a regulator, when the patient uses the atomizer to absorb the medicinal liquid mist, the patient can adjust the flow rate of the medicinal liquid mist according to his own needs, preventing the flow rate of the medicinal liquid mist from being too large, resulting in the patient being unable to fully absorb the medicinal liquid mist, thus causing waste of the medicinal liquid mist. The storage device can store the medicinal liquid mist and the one-way valve can prevent the medicinal liquid mist from flowing back. The patient can send the medicinal liquid mist into the storage device and then turn off the atomizer, so as to achieve the ready-to-use of the medicinal liquid mist and prevent waste of the medicinal liquid mist.
[0015] Through the following description and in combination with the drawings, the present utility model will become clearer. These drawings are used to explain the embodiments of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0017] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0018] Figure 2 is a sectional view of the regulator of the present utility model. Detailed implementation mode
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts belong to the protection scope of the present utility model.
[0020] Please refer to Figure 1 and Figure 2 A fogging treatment structure for connecting a nebulizer provided by the present utility model includes a nasal cannula 1; a storage device is connected between the nasal cannula 1 and the nebulizer 2, and a one-way valve 7 is arranged between the storage device and the nebulizer 2. The one-way valve 7 is used to prevent the liquid medicine mist in the storage device from flowing back into the nebulizer 2. A regulator 4 is arranged on the nasal cannula 1. By arranging the storage device, the one-way valve 7 and the regulator 4, when a patient uses the nebulizer 2 to absorb the liquid medicine mist, the patient can adjust the flow rate of the liquid medicine mist according to his own needs, thereby preventing discomfort caused by excessive flow rate of the liquid medicine mist; the patient can send the liquid medicine mist into the storage device and then turn off the nebulizer 2, so as to achieve the ready-to-use of the liquid medicine mist and prevent the waste of the liquid medicine mist. The one-way valve 7 can also prevent the liquid medicine mist from flowing back into the nebulizer 2, thereby maintaining the hygiene inside the nebulizer 2.
[0021] In the present utility model, the storage device includes a storage airbag 3. A first connecting pipe 5 and a second connecting pipe 6 are arranged on the storage airbag 3. The storage airbag 3 is connected to the nebulizer 2 through the first connecting pipe 5, and the storage airbag 3 is connected to the nasal cannula 1 through the second connecting pipe 6. The one-way valve 7 is installed on the first connecting pipe 5. The storage airbag 3 can store the mist of the liquid medicine mist. After the patient sends the mist of the atomized medicine into the storage airbag 3 and then turns off the nebulizer 2, the ready-to-use of the liquid medicine mist can be achieved and the waste of the liquid medicine mist can be prevented. The regulator 4 can also adjust the flow rate of the liquid medicine mist in the storage airbag 3, thereby further preventing the waste of the liquid medicine mist and the mist; the one-way valve 7 can prevent the liquid medicine mist from flowing back into the nebulizer 2, thereby ensuring the hygiene inside the nebulizer 2.
[0022] In the present utility model, the nebulizer 2 and the first connecting pipe 5 are detachably matched, which is convenient for the patient to separate the nebulizer 2 from the storage airbag 3 filled with the liquid medicine mist, so as to achieve the ready-to-use of the liquid medicine mist and prevent the waste of the liquid medicine mist.
[0023] In the present utility model, the regulator 4 includes a roller 401 and a hollow cavity 402 with a decreasing inner diameter from top to bottom. Two tracks are provided on the cavity 402, and the two tracks are symmetrically arranged on the inner walls of both sides of the cavity 402. The left and right ends of the roller 401 are respectively slidably installed in the tracks on the same side. An opening is provided on the side wall of the cavity 402, and a part of the roller 401 is exposed outside the cavity 402 through the opening. The nasal suction tube 1 passes through the cavity 402 from top to bottom, and the roller 401 is in contact with the nasal suction tube 1. By providing the roller 401 and the hollow cavity 402 with a decreasing inner diameter from top to bottom, the patient can squeeze the nasal suction tube 1 by moving the roller 401 downward to reduce the inner diameter of the nasal suction tube 1, or can increase the inner diameter of the nasal suction tube 1 by moving the roller 401 upward, thereby achieving the technical effect of adjusting the flow rate of the liquid medicine mist and preventing the discomfort of the patient caused by the excessive flow rate of the liquid medicine mist.
[0024] In the present utility model, a third connecting tube 8 capable of controlling on-off and used for connecting an oxygen inhalation tube is further provided on the nasal suction tube 1, and the third connecting tube 8 is communicated with the nasal suction tube 1. By providing the third connecting tube 8 capable of controlling on-off, the patient can not only directly use the nasal suction tube 1 to absorb the liquid medicine, but also connect the oxygen inhalation tube to the third connecting tube 8, so as to absorb the liquid medicine during the oxygen inhalation process, improving the convenience of use of the present utility model.
[0025] In the present utility model, a sealing cover is provided at the pipe orifice of the third connecting tube 8, and the sealing cover is detachably matched with the pipe orifice of the third connecting tube 8. The patient can open or close the third connecting tube 8 through the sealing cover.
[0026] In the present utility model, the sealing cover is in threaded fit with the pipe orifice of the third connecting tube 8, which not only facilitates the patient to connect the third connecting tube 8 with the oxygen inhalation tube, but also ensures the airtightness between the third connecting tube 8 and the oxygen inhalation tube.
[0027] In the present utility model, the atomizer 2 is in threaded fit with the first connecting tube 5, which not only facilitates the patient to separate the atomizer 2 from the storage airbag 3 filled with the liquid medicine mist, enabling the liquid medicine mist to be taken and used at any time, but also ensures the airtightness between the atomizer 2 and the storage airbag 3.
[0028] When the utility model is in use, first connect the first connecting pipe 5 with a one-way valve 7 to the atomizer 2, then insert the nasal suction tube 1 into the nostril and turn on the atomizer 2, and finally adjust the flow rate of the liquid medicine mist through the regulator 4; the patient can also first close the passage between the storage airbag 3 and the nasal suction tube 1 through the regulator 4, then turn on the atomizer 2 to deliver the liquid medicine mist into the storage airbag 3. The one-way valve 7 can prevent the liquid medicine mist from flowing back from the storage airbag 3 into the atomizer 2. Finally, turn off the atomizer 2 and control the flow rate of the liquid medicine mist through the regulator 4, so that the liquid medicine mist can be taken and used at any time, thereby preventing waste of the liquid medicine mist; the patient can also connect the oxygen inhalation tube to the third connecting pipe 8, so as to absorb the liquid medicine during oxygen inhalation. In addition, if the liquid medicine mist used is essential oil, the storage airbag 3 in the utility model can delay the evaporation rate of the essential oil and retain the smell of the essential oil. Even if the storage airbag 3 is separated from the atomizer 2, the storage airbag 3 can also act as an odor storage airbag for the patient to use flexibly.
[0029] The preferred embodiments of the present utility model have been described above. It should be understood that the present utility model is not limited to the above specific embodiments, and the devices and structures not described in detail should be understood to be implemented in a common manner in the art; any person skilled in the art can make many possible changes and modifications to the technical solution of the present utility model, or modify it into an equivalent embodiment with equivalent changes, without departing from the scope of the technical solution of the present utility model, which does not affect the essence of the present utility model. Therefore, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present utility model without departing from the content of the technical solution of the present utility model still fall within the scope of protection of the technical solution of the present utility model.
Claims
1. An atomization processing structure for connecting to an atomizer, comprising a nasal suction tube (1); characterized in that: The nasal suction tube (1) is connected to the nebulizer (2) via a storage device. A one-way valve (7) is provided between the storage device and the nebulizer (2). The one-way valve (7) is used to prevent the mist of the liquid medicine in the storage device from flowing back to the nebulizer (2). A regulator (4) is provided on the nasal suction tube (1).
2. The atomization processing structure for connecting an atomizer according to claim 1, characterized in that: The storage device comprises a storage air bag (3), on which a first connecting tube (5) and a second connecting tube (6) are arranged, the storage air bag (3) is connected to the atomizer (2) via the first connecting tube (5), the storage air bag (3) is connected to the nasal suction tube (1) via the second connecting tube (6), and the one-way valve (7) is installed on the first connecting tube (5).
3. The atomization processing structure for connecting an atomizer according to claim 2, characterized in that: The atomizer (2) and the first connecting tube (5) are detachably matched.
4. The atomization processing structure for connecting an atomizer according to claim 1, characterized in that: The regulator (4) comprises a roller (401) and a hollow cavity (402) whose inner diameter decreases from top to bottom. Two tracks are arranged on the cavity (402), and the two tracks are symmetrically arranged on the inner walls of the cavity (402) on both sides. The left and right ends of the roller (401) are respectively slidably installed in the tracks on the same side. An opening is arranged on the side wall of the cavity (402), and a part of the roller (401) is exposed outside the cavity (402) through the opening. The nasal suction tube (1) passes through the cavity (402) from top to bottom, and the roller (401) is in contact with the nasal suction tube (1).
5. The atomization processing structure for connecting an atomizer according to claim 1, characterized in that: The nasal suction tube (1) is also provided with a third connecting tube (8) capable of controlling on and off and used for connecting to an oxygen inhalation tube, and the third connecting tube (8) is connected to the nasal suction tube (1).
6. The atomization processing structure for connecting an atomizer according to claim 5, characterized in that: The pipe opening of the third connecting pipe (8) is provided with a sealing cover, and the sealing cover is detachably matched with the pipe opening of the third connecting pipe (8).
7. The atomization processing structure for connecting an atomizer according to claim 6, characterized in that: The sealing cover is threadably matched with the pipe opening of the third connecting pipe (8).
8. The atomization processing structure for connecting an atomizer according to claim 3, characterized in that: The atomizer (2) is threadably matched with the first connecting tube (5).
Citation Information
Patent Citations
Medical oxygen atomization mask
CN211724282U
Cited By
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CN121401550A