CN216963221U - Medical atomizer structure of flexible regulation - Google Patents

Medical atomizer structure of flexible regulation Download PDF

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Publication number
CN216963221U
CN216963221U CN202220047294.3U CN202220047294U CN216963221U CN 216963221 U CN216963221 U CN 216963221U CN 202220047294 U CN202220047294 U CN 202220047294U CN 216963221 U CN216963221 U CN 216963221U
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China
Prior art keywords
air inlet
mask
inlet pipe
pipe
atomization
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CN202220047294.3U
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Chinese (zh)
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张朝文
麦曼娜
李晔
庄灿锋
胡泽润
朱荷香
张文华
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Dongguan Maternal And Child Health Hospital
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Dongguan Maternal And Child Health Hospital
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Abstract

The utility model discloses a bendable adjustable medical atomizer structure, which comprises a jet atomizer, a middle connecting pipe and an atomization oxygen inhalation mask, wherein the middle connecting pipe is arranged between the jet atomizer and the atomization oxygen inhalation mask; the jet flow atomizer is provided with an oxygen input connector and an atomization output connector, and the core part of the atomization output connector is provided with an output connector central hole; the atomization oxygen inhalation mask comprises a mask main body and a mask air inlet pipe, wherein the core part of the mask air inlet pipe is provided with an air inlet pipe center hole communicated with a breathing cavity of the mask main body; the middle connecting pipe comprises a medical soft rubber pipe and a shaped metal hose sleeved on the periphery of the medical soft rubber pipe, the upper ends of the medical soft rubber pipe and the shaped metal hose are respectively connected with a face shield air inlet pipe, and the lower ends of the medical soft rubber pipe and the shaped metal hose are respectively connected with an atomization output connector. Through the structural design, the liquid medicine atomizing device has the advantages of novel structural design, good adjustability and convenience in use, and can effectively improve the liquid medicine atomizing utilization rate.

Description

Medical atomizer structure of flexible regulation
Technical Field
The utility model relates to the technical field of medical atomizers, in particular to a bendable and adjustable medical atomizer structure.
Background
The atomization inhalation method is characterized in that high-speed oxygen airflow is utilized to enable liquid medicine to form mist, atomized liquid medicine directly enters the pharynx, the bronchus and the lung through the mouth and the nose, and the medicine directly acts on a diseased region to quickly exert the medicine effect, so that the treatment purpose is achieved; among them, the aerosol inhalation method is widely used for treating respiratory diseases to eliminate inflammation and edema, to thin sputum and to help to eliminate phlegm. Compared with the traditional means for treating respiratory diseases by taking medicines, the aerosol inhalation method ensures that the medicines directly and quickly enter the respiratory tract and the lung for deposition in a respiratory inhalation mode, thereby achieving painless, quick and effective treatment.
In the process of treating patients by medical staff through an aerosol inhalation method, a device mainly used is a medical atomizer; the medical atomizer atomizes the liquid medicine into mist by mainly using the jet atomizer, and the liquid medicine atomized by the jet atomizer is conveyed to the atomizing oxygen inhalation mask through the hose so as to be atomized and inhaled by a patient.
It should be noted that, for the existing medical atomizer, when carrying out aerosol inhalation therapy on a patient, the patient, family members of the patient or medical staff need to keep holding the jet atomizer all the time so as to keep the jet atomizer in a correct position state; in the actual operation process, because the patient position is not fixed and often can alternate the position, this jet atomizer position beat will appear and can not keep in the correct position state, and in case the jet atomizer is not in the correct position state, then can lead to the liquid medicine in the jet atomizer to incline towards one side and make the liquid medicine fully not atomize completely, and liquid medicine atomizing utilization ratio is awaited for urgent need to improve. In addition, since the liquid medicine is metered during the aerosol inhalation therapy, if the liquid medicine is not completely atomized, the quantitative aerosol therapy of the liquid medicine cannot be performed, which also affects the effect of the aerosol inhalation therapy.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a medical atomizer structure capable of being adjusted in a bending way aiming at the defects of the prior art, the medical atomizer capable of being adjusted in a bending way has novel structural design, good adjustability and convenient use, and can effectively improve the utilization rate of liquid medicine atomization.
In order to achieve the above object, the present invention is achieved by the following technical solutions.
A medical atomizer structure capable of being flexibly adjusted comprises a jet atomizer, a middle connecting pipe and an atomizing oxygen inhalation mask, wherein the middle connecting pipe is arranged between the jet atomizer and the atomizing oxygen inhalation mask;
the jet atomizer is provided with an oxygen input connector for connecting an oxygen input pipe and an atomization output connector for enabling atomized liquid medicine to flow out, and the core part of the atomization output connector is provided with an output connector central hole communicated with the inner cavity of the jet atomizer;
the atomization oxygen inhalation mask comprises a mask main body and a mask air inlet pipe which is arranged at the front end part of the mask main body and protrudes forwards to extend, the mask main body is provided with a breathing cavity, and the core part of the mask air inlet pipe is provided with an air inlet pipe center hole which completely penetrates through and is communicated with the breathing cavity;
the middle connecting pipe is of a double-layer pipe structure and comprises a medical soft rubber pipe and a sizing metal hose sleeved on the periphery of the medical soft rubber pipe, the upper ends of the medical soft rubber pipe and the sizing metal hose are respectively connected with a mask air inlet pipe, and the inner cavity of the medical soft rubber pipe is communicated with the central hole of the air inlet pipe of the mask air inlet pipe; the lower end parts of the medical soft rubber hose and the shaped metal hose are respectively connected with an atomization output joint of the jet atomizer, and the inner cavity of the medical soft rubber hose is communicated with a central hole of the output joint of the atomization output joint.
The front end part of the mask air inlet pipe is provided with an air inlet pipe large-diameter part and an air inlet pipe small-diameter part, the upper end part of the medical soft rubber pipe is sleeved on the air inlet pipe small-diameter part of the mask air inlet pipe, and the upper end part of the sizing metal hose is sleeved on the air inlet pipe large-diameter part of the mask air inlet pipe.
The upper end part of the sizing metal hose is provided with a metal hose upper end connector, and the metal hose upper end connector is buckled or screwed with the large-diameter part of the air inlet pipe of the mask air inlet pipe.
The atomization output connector is provided with an output connector large-diameter part and an output connector small-diameter part, the lower end part of the medical soft rubber hose is sleeved on the output connector small-diameter part of the atomization output connector, and the lower end part of the sizing metal hose is sleeved on the output connector large-diameter part of the atomization output connector.
The lower end part of the shaped metal hose is provided with a metal hose lower end connector, and the metal hose lower end connector is buckled or screwed with the large-diameter part of the output connector of the atomization output connector.
The mask body is a soft rubber part, the mask air inlet pipe is a hard rubber part, and the mask body and the mask air inlet pipe are of an integrated structure.
Wherein, the mask main body is a silica gel piece.
Wherein the mask body is provided with a suspension loop rope.
Wherein, the medical soft rubber tube is a silicone tube.
The utility model has the beneficial effects that: the utility model relates to a medical atomizer structure capable of being flexibly adjusted, which comprises a jet atomizer, a middle connecting pipe and an atomizing oxygen mask, wherein the middle connecting pipe is arranged between the jet atomizer and the atomizing oxygen mask; the jet atomizer is provided with an oxygen input connector for connecting an oxygen input pipe and an atomization output connector for enabling atomized liquid medicine to flow out, and the core part of the atomization output connector is provided with an output connector central hole communicated with the inner cavity of the jet atomizer; the atomization oxygen inhalation mask comprises a mask main body and a mask air inlet pipe which is arranged at the front end part of the mask main body and protrudes forwards to extend, the mask main body is provided with a breathing cavity, and the core part of the mask air inlet pipe is provided with an air inlet pipe center hole which completely penetrates through and is communicated with the breathing cavity; the middle connecting pipe is of a double-layer pipe structure and comprises a medical soft rubber pipe and a sizing metal hose sleeved on the periphery of the medical soft rubber pipe, the upper ends of the medical soft rubber pipe and the sizing metal hose are respectively connected with a mask air inlet pipe, and the inner cavity of the medical soft rubber pipe is communicated with the central hole of the air inlet pipe of the mask air inlet pipe; the lower end parts of the medical soft rubber hose and the shaped metal hose are respectively connected with an atomization output joint of the jet atomizer, and the inner cavity of the medical soft rubber hose is communicated with a central hole of the output joint of the atomization output joint. Through the structural design, the liquid medicine atomizing device has the advantages of novel structural design, good adjustability and convenience in use, and can effectively improve the liquid medicine atomizing utilization rate.
Drawings
The utility model will be further described with reference to the drawings to which, however, the embodiments shown in the drawings do not constitute any limitation.
FIG. 1 is a schematic structural diagram of the present invention.
In fig. 1, included are:
1-jet atomizer 11-oxygen input joint
12-atomization output joint 121-output joint center hole
122-output joint large diameter part 123-output joint small diameter part
2-middle connecting pipe 21-medical soft rubber hose
22-shaped metal hose 221-metal hose upper end connector
222-metal hose lower end connector 3-atomizing oxygen inhalation mask
31-mask body 32-mask air inlet pipe
321-central hole 322 of air inlet pipe-large diameter part of air inlet pipe
323 air inlet pipe small diameter part 33 and ear hanging rope.
Detailed Description
The present invention will be described below with reference to specific embodiments.
As shown in fig. 1, a medical atomizer structure capable of being flexibly adjusted comprises a jet atomizer 1, a middle connecting pipe 2 and an atomizing oxygen mask 3, wherein the middle connecting pipe 2 is arranged between the jet atomizer 1 and the atomizing oxygen mask 3.
Wherein, the jet atomizer 1 is provided with an oxygen input joint 11 for connecting an oxygen input pipe and an atomization output joint 12 for atomized liquid medicine to flow out, and the core part of the atomization output joint 12 is provided with an output joint center hole 121 communicated with the inner cavity of the jet atomizer 1.
Further, atomizing oxygen inhalation mask 3 is including mask main part 31, set up in mask main part 31 front end portion and forward the protruding face guard intake pipe 32 that extends, and mask main part 31 is provided with respiratory cavity, and the core of face guard intake pipe 32 is seted up and is run through completely and with the intake pipe centre bore 321 of respiratory cavity intercommunication.
Furthermore, the middle connecting pipe 2 is a double-layer pipe structure, and the middle connecting pipe 2 comprises a medical soft rubber pipe 21 and a shaped metal hose 22 sleeved on the periphery of the medical soft rubber pipe 21, the upper ends of the medical soft rubber pipe 21 and the shaped metal hose 22 are respectively connected with a mask air inlet pipe 32, and the inner cavity of the medical soft rubber pipe 21 is communicated with an air inlet pipe center hole 321 of the mask air inlet pipe 32; the lower ends of the medical soft rubber hose 21 and the shaped metal hose 22 are respectively connected with the atomization output joint 12 of the jet atomizer 1, and the inner cavity of the medical soft rubber hose 21 is communicated with the output joint center hole 121 of the atomization output joint 12. Preferably, the medical soft hose 21 is a silicone tube; of course, the above materials do not limit the present invention, that is, the soft medical rubber hose 21 of the present invention can also be made of other soft medical rubber materials, such as PVC.
It should be noted that the upper end of the intermediate connection tube 2 of the present invention is connected to the mask air inlet tube 32 of the nebulizing oxygen inhalation mask 3 in the following manner: the front end of the mask air inlet pipe 32 is provided with an air inlet pipe large-diameter part 322 and an air inlet pipe small-diameter part 323, the upper end of the medical soft rubber pipe 21 is sleeved on the air inlet pipe small-diameter part 323 of the mask air inlet pipe 32, and the upper end of the shaping metal hose 22 is sleeved on the air inlet pipe large-diameter part 322 of the mask air inlet pipe 32. Likewise, the lower end of the intermediate connection pipe 2 of the present invention is connected to the atomizing output joint 12 by: the atomization output joint 12 is provided with an output joint large-diameter part 122 and an output joint small-diameter part 123, the lower end part of the medical soft hose 21 is sleeved on the output joint small-diameter part 123 of the atomization output joint 12, and the lower end part of the shaped metal hose 22 is sleeved on the output joint large-diameter part 122 of the atomization output joint 12.
The upper end of the medical soft hose 21 and the upper end of the shaped metal hose 22 are detachably connected to the mask air inlet tube 32, so that when cleaning and disinfection are needed, a user can directly pull out the nebulization oxygen mask 3 from the upper end of the middle connecting tube 2, and the upper end of the medical soft hose 21 and the upper end of the shaped metal hose 22 are separated from the air inlet tube large-diameter part 322 and the air inlet tube small-diameter part 323 corresponding to the mask air inlet tube 32. Similarly, the lower end of the soft medical hose 21 and the lower end of the shaped metal hose 22 of the present invention are detachably connected to the atomizing output connector 12, so that the user can directly pull out the jet atomizer 1 from the lower end of the middle connection pipe 2 and separate the lower ends of the soft medical hose 21 and the shaped metal hose 22 from the large diameter portion 122 and the small diameter portion 123 of the output connector corresponding to the atomizing output connector 12, respectively, when cleaning and disinfection are required. The utility model can disassemble the whole body into single independent parts, thus effectively improving the convenience of cleaning and disinfecting operations and effectively improving the cleaning and disinfecting effects.
It should be emphasized that, because the medical soft hose 21 of the present invention has a soft structure and a certain elasticity, when the medical soft hose 21 is connected to the mask inlet pipe 32 and the atomizing output connector 12, it is only necessary to directly sleeve the upper end portion of the medical soft hose 21 on the inlet pipe small-diameter portion 323 and directly sleeve the lower end portion of the medical soft hose 21 on the output connector small-diameter portion 123, the upper end portion of the medical soft hose 21 elastically holds the inlet pipe small-diameter portion 323, and the lower end portion of the medical soft hose elastically holds the output connector small-diameter portion 123, so that the assembly and connection are convenient and the sealing performance of the connection portion can be effectively ensured.
In addition, the upper end and the lower end of the shaped metal hose 22 of the present invention can be detachably connected to the corresponding mask air inlet pipe 32 and the atomizing output connector 12, specifically: the upper end part of the shaped metal hose 22 is provided with a metal hose upper end connector 221, and the metal hose upper end connector 221 is buckled or screwed with the air inlet pipe large-diameter part 322 of the mask air inlet pipe 32; the lower end of the shaped metal hose 22 is provided with a metal hose lower end fitting 222, and the metal hose lower end fitting 222 is fastened or screwed with the output fitting large diameter portion 122 of the atomization output fitting 12.
More preferably, for the atomizing oxygen inhalation mask 3 of the present invention, the mask main body 31 is a soft rubber, the mask air inlet tube 32 is a hard rubber, and the mask main body 31 and the mask air inlet tube 32 are an integral structure; the mask body 31 may be a silicone member. In addition, in order to make the patient wear the atomizing oxygen mask 3 comfortably and conveniently, the mask body 31 is provided with a suspension loop rope 33, and the patient directly hangs the suspension loop rope 33 on the ears during use.
In the using process of the utility model, the oxygen input joint 11 of the jet atomizer 1 is connected with an oxygen input pipe, oxygen generated by an oxygen bottle or an oxygen generator is sequentially introduced into the inner cavity of the jet atomizer 1 through the oxygen input pipe and the oxygen input joint 11 at a high speed, the inner cavity of the jet atomizer 1 is filled with liquid medicine, and under the condition of introducing high-speed oxygen airflow, the jet atomizer 1 atomizes the liquid medicine and enables the atomized liquid medicine to sequentially enter the respiratory cavity of the mask main body 31 through the atomization output joint 12, the medical soft rubber tube 21 and the mask air inlet tube 32 so as to be used for atomization inhalation therapy of a patient.
It is emphasized that for the intermediate connection tube 2 of the present invention, the shaped metal hose 22 can be bent at any angle and can be fixed at a specified desired angular position, i.e. the shaped metal hose 22 can be bent at any angle and oriented; the medical soft hose 21 is a soft hose structure, and the medical soft hose 21 can be bent along with the shaped metal hose 22 in the process of bending the shaped metal hose 22. When the patient who wears atomizing oxygen mask 3 is in different positions, medical personnel or patient family members can make efflux atomizer 1 be in the correct position state through crooked regulation design metal collapsible tube 22 to avoid leading to the liquid medicine in the efflux atomizer 1 can not atomize completely because of efflux atomizer 1 position is incorrect, can improve liquid medicine atomizing utilization ratio effectively promptly.
Moreover, since the shaped metal hose 22 of the present invention can be bent and positioned at a desired position, when in use, the medical staff or the family members of the patient only need to adjust the shaped metal hose 22, and do not need to hold the jet nebulizer 1 and keep the jet nebulizer 1 in the correct position, which is very convenient to use.
According to the above situation, the liquid medicine atomizing device has the advantages of novel structural design, good adjustability and convenience in use through the structural design, and can effectively improve the liquid medicine atomizing utilization rate.
The above description is only a preferred embodiment of the present invention, and for those skilled in the art, the present invention should not be limited by the description of the present invention, which should be interpreted as a limitation.

Claims (9)

1. The utility model provides a medical vaporizer structure of flexible regulation which characterized in that: the device comprises a jet atomizer (1), a middle connecting pipe (2) and an atomization oxygen inhalation mask (3), wherein the middle connecting pipe (2) is arranged between the jet atomizer (1) and the atomization oxygen inhalation mask (3);
the jet atomizer (1) is provided with an oxygen input connector (11) used for connecting an oxygen input pipe and an atomization output connector (12) used for enabling atomized liquid medicine to flow out, and the core part of the atomization output connector (12) is provided with an output connector central hole (121) communicated with the inner cavity of the jet atomizer (1);
the atomization oxygen inhalation mask (3) comprises a mask main body (31) and a mask air inlet pipe (32) which is arranged at the front end part of the mask main body (31) and extends forwards in a protruding way, the mask main body (31) is provided with a breathing cavity, and the core part of the mask air inlet pipe (32) is provided with an air inlet pipe center hole (321) which completely penetrates through and is communicated with the breathing cavity;
the middle connecting pipe (2) is of a double-layer pipe structure, the middle connecting pipe (2) comprises a medical soft rubber pipe (21) and a shaping metal hose (22) sleeved on the periphery of the medical soft rubber pipe (21), the upper ends of the medical soft rubber pipe (21) and the shaping metal hose (22) are respectively connected with a mask air inlet pipe (32), and the inner cavity of the medical soft rubber pipe (21) is communicated with an air inlet pipe center hole (321) of the mask air inlet pipe (32); the lower ends of the medical soft rubber hose (21) and the shaped metal hose (22) are respectively connected with an atomization output joint (12) of the jet atomizer (1), and the inner cavity of the medical soft rubber hose (21) is communicated with an output joint center hole (121) of the atomization output joint (12).
2. A flexibly adjustable medical vaporizer structure according to claim 1, wherein: the front end part of the mask air inlet pipe (32) is provided with an air inlet pipe large-diameter part (322) and an air inlet pipe small-diameter part (323), the upper end part of the medical soft rubber pipe (21) is sleeved on the air inlet pipe small-diameter part (323) of the mask air inlet pipe (32), and the upper end part of the shaping metal hose (22) is sleeved on the air inlet pipe large-diameter part (322) of the mask air inlet pipe (32).
3. A flexibly adjustable medical vaporizer structure according to claim 2, wherein: the upper end part of the shaped metal hose (22) is provided with a metal hose upper end connector (221), and the metal hose upper end connector (221) is buckled or screwed with the air inlet pipe large-diameter part (322) of the mask air inlet pipe (32).
4. A flexibly adjustable medical vaporizer structure according to claim 1, wherein: the atomization output connector (12) is provided with an output connector large-diameter part (122) and an output connector small-diameter part (123), the lower end part of the medical soft rubber hose (21) is sleeved on the output connector small-diameter part (123) of the atomization output connector (12), and the lower end part of the sizing metal hose (22) is sleeved on the output connector large-diameter part (122) of the atomization output connector (12).
5. A flexibly adjustable medical vaporizer structure according to claim 4, wherein: the lower end part of the shaped metal hose (22) is provided with a metal hose lower end connector (222), and the metal hose lower end connector (222) is buckled or screwed with the large-diameter part (122) of the output connector of the atomization output connector (12).
6. A flexibly adjustable medical vaporizer structure according to claim 1, wherein: the mask is characterized in that the mask main body (31) is a soft rubber part, the mask air inlet pipe (32) is a hard rubber part, and the mask main body (31) and the mask air inlet pipe (32) are of an integrated structure.
7. A bendable adjustable medical vaporizer structure according to claim 6, wherein: the mask main body (31) is a silica gel piece.
8. A flexibly adjustable medical vaporizer structure according to claim 1, wherein: the mask main body (31) is provided with a suspension loop rope (33).
9. A flexibly adjustable medical vaporizer structure according to claim 1, wherein: the medical soft rubber hose (21) is a silicone tube.
CN202220047294.3U 2022-01-10 2022-01-10 Medical atomizer structure of flexible regulation Active CN216963221U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220047294.3U CN216963221U (en) 2022-01-10 2022-01-10 Medical atomizer structure of flexible regulation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220047294.3U CN216963221U (en) 2022-01-10 2022-01-10 Medical atomizer structure of flexible regulation

Publications (1)

Publication Number Publication Date
CN216963221U true CN216963221U (en) 2022-07-15

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ID=82349682

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Application Number Title Priority Date Filing Date
CN202220047294.3U Active CN216963221U (en) 2022-01-10 2022-01-10 Medical atomizer structure of flexible regulation

Country Status (1)

Country Link
CN (1) CN216963221U (en)

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