CN219963650U - Autogenous cutting atomizing mask - Google Patents

Autogenous cutting atomizing mask Download PDF

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Publication number
CN219963650U
CN219963650U CN202320451238.0U CN202320451238U CN219963650U CN 219963650 U CN219963650 U CN 219963650U CN 202320451238 U CN202320451238 U CN 202320451238U CN 219963650 U CN219963650 U CN 219963650U
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CN
China
Prior art keywords
atomizing
bottle body
mask
air source
air
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Active
Application number
CN202320451238.0U
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Chinese (zh)
Inventor
党豪杰
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Beijing Jiina High Tech Medical Equipment Co ltd
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Beijing Jiina High Tech Medical Equipment Co ltd
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Priority to CN202320451238.0U priority Critical patent/CN219963650U/en
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Abstract

The utility model belongs to the technical field of medical equipment, in particular to an autogenous cutting atomizing mask, which comprises an atomizing bottle body, an atomizing core, an atomizing bottle cap, a corrugated pipe, a universal adapter, an adapter ring, a throat mask and an air source conduit, wherein the air source interface is arranged at the bottom of the atomizing bottle body, the air source conduit is connected with the air source interface, a central column communicated with the air source interface is arranged at the lower part of the atomizing bottle body, a gas emission cavity is arranged in the central column, the atomizing core is arranged in the atomizing bottle body, two axial water tanks are arranged on the inner wall of a water jacket at the lower part of the atomizing core, and the water jacket at the lower part of the atomizing core is sleeved with the central column of the atomizing bottle body. The utility model outputs the atomization amount accurately, trace, uniformly and continuously, reduces nursing staff, is specially used for the oxygen inhalation atomization treatment of an aerocut patient, adopts intermittent addition of the humidifying liquid to humidify the airway, ensures that the humidifying liquid stably and slowly enters the deep part of the respiratory tract as tiny aerosol, and achieves effective airway humidification.

Description

Autogenous cutting atomizing mask
Technical Field
The utility model relates to the technical field of medical equipment, in particular to an autogenous cutting atomizing mask.
Background
Tracheotomy is a first-aid operation for rescuing the life of a patient, and is used for relieving laryngeal dyspnea and respiratory dysfunction, improving pulmonary ventilation function and facilitating aspiration of lower respiratory tract secretion. The patient still needs to wet the air passage and clean the air passage through the atomizer after operation, so that the problem that the air passage of the patient is not smooth due to sticky sputum is avoided, and the existing autogenous cutting atomizing mask is easy to flow backwards when the patient performs autogenous cutting respiration; and the drainage tube is too short to suck phlegm.
The current atomizing face guard mainly comprises gas cylinder joint, pipe, medicine cup, bellows, tee bend, stings the mouth and constitutes, and the face guard atomizing mainly comprises gas cylinder joint, pipe, medicine cup, at the use of current atomizing face guard, can't carry out accuracy, trace, even, continuously export to atomizing volume, and the patient is at some times lying on the bed and is inconvenient to be moved can't hold the atomizing face guard and absorb, needs medical personnel to help, has increased medical personnel's work load like this.
Disclosure of Invention
The utility model aims to solve the defects in the prior art and provides an autogenous cutting atomizing mask.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the autogenous cutting atomizing mask comprises an atomizing bottle body, an atomizing core, an atomizing bottle cap, a corrugated pipe, a universal adapter, an adapter ring, a throat mask and an air source conduit, wherein the air source interface is arranged at the bottom of the atomizing bottle body, the air source conduit is connected with the air source interface, a central column communicated with the air source interface is arranged at the lower part of the atomizing bottle body, a gas emission cavity is arranged in the central column, the atomizing core is arranged in the atomizing bottle body, two axial water tanks are arranged on the inner wall of a water jacket at the lower part of the atomizing core, the water jacket at the lower part of the atomizing core is sleeved with the central column of the atomizing bottle body, and the two axial water tanks of the atomizing core are sealed to form a siphon water channel; a cylinder is arranged in the middle of the atomization core, a narrow slit is formed between the end face of the cylinder and the air nozzle of the atomization bottle body, and a sound-damping transverse baffle plate and a vertical baffle plate are arranged in the middle of the atomization core; the periphery of the atomizing bottle cap is clamped with the top of the atomizing bottle body; the side surface of the upper part of the atomizing bottle body is provided with an air suction interface, and an air suction device is inserted on the air suction interface.
Preferably, the air suction device comprises a throat mask, an adapter ring and a universal adapter, wherein the throat mask is a horn-shaped elliptical cone, the universal adapter is arranged at the top of the throat mask, and an interface of the universal adapter is spliced with the corrugated pipe; the edge of the bottom of the throat mask is matched with the throat of a human body, the two sides of the edge of the throat mask are provided with head band connecting holes, the joint of the universal adapter adopts a 360-degree rotation design of a bidirectional swivel, and the throat mask is made of medical polymer materials.
Preferably, the air suction interface of the throat mask is inserted into one end of the adapter ring, the other end of the adapter ring is connected with the universal adapter, and the top of the universal adapter is provided with an air outlet.
Preferably, one end of the universal adapter is spliced with the air suction interface of the adapter ring, and the other end of the universal adapter is connected with the corrugated pipe.
Preferably, one end of the corrugated pipe is inserted into the air suction interface on the side face of the atomizing bottle body, and the other end of the corrugated pipe is connected to the universal adapter in a socket connection mode.
Preferably, the two ends of the air source conduit are provided with socket interfaces with double wings, one end of the air source conduit is connected with the air emission cavity of the central column at the bottom of the atomizing bottle body, and the other end of the air source conduit is connected with the plug of the air source.
In the utility model, the autogenous cutting atomizing mask has the beneficial effects that:
(1) The humidifying liquid can be changed into small aerosol, so that the airway is in a physiological humidifying state, the humidifying environment of the respiratory tract is fully improved, dilution and discharge of sputum scab are facilitated, and the purpose of effective humidification is achieved;
(2) The choking cough and the stimulating cough caused by large instillation quantity are avoided;
(3) The sputum can be diluted sufficiently, so that the sputum is easy to expectorate, thereby reducing the times of sputum suction and hypoxia caused by sputum suction, and reducing the occurrence of airway mucous membrane injury and airway hemorrhage;
(4) The mask can stably cover the outer opening of the autogenous cutting, so that dust in the air is prevented from entering;
(5) Can also be used as a mask for inhaling oxygen when not humidified;
(6) The nursing workload is reduced, and the working efficiency is improved.
Drawings
FIG. 1 is a schematic view of an autogenous cutting atomizing mask according to one embodiment of the present utility model;
FIG. 2a is a schematic cross-sectional view of the atomizing bottle of the embodiment of FIG. 1;
FIG. 2b is a schematic view of a portion of the structure of the atomizing bottle A-A;
FIG. 2c is a schematic view of a part of the structure of the atomizing bottle B-B;
FIG. 2d is a schematic view of a portion of the wall thickness of an atomizing bottle;
FIG. 2e is a schematic elevational view of the atomizing bottle;
FIG. 3a is a schematic view of the atomizer cap according to the embodiment of FIG. 1;
FIG. 3b is a schematic side view of the atomizing bottle cap of the embodiment of FIG. 1;
FIG. 3c is a schematic view of a portion of the structure of the atomizing bottle cap A-A;
FIG. 3d is a schematic view of part of the structure of the atomizing bottle cap I;
FIG. 4 is a schematic view of the air supply conduit of the embodiment of FIG. 1;
FIG. 5a is a schematic view of the core structure in the embodiment of FIG. 1;
FIG. 5b is a schematic view of a portion of the structure of the spray core A-A;
FIG. 5c is a schematic view of the structure of the B-B part of the spray core;
FIG. 6a is a schematic view of a universal adapter according to an embodiment of the present utility model;
FIG. 6b is a top view of FIG. 6 a;
FIG. 7a is a schematic view of an adapter ring according to an embodiment of the present utility model;
FIG. 7b is a top view of FIG. 7 a;
FIG. 8a is a schematic illustration of a laryngeal mask in accordance with an embodiment of the present utility model;
FIG. 8b is a top view of FIG. 8 a;
fig. 8c is a left side view of fig. 8 a.
In the figure: 1 atomizing bottle, 2 atomizing core, 3 atomizing bottle lid, 4 bellows, 5 universal adapter, 6 adapter ring, 7 throat face guard, 8 air supply pipe.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-8, the autogenous cutting atomizing mask comprises an atomizing bottle body 1, an atomizing core 2, an atomizing bottle cap 3, a corrugated pipe 4, a universal adapter 5, an adapter ring 6, a throat mask 7 and an air source conduit 8, wherein the air source interface is arranged at the bottom of the atomizing bottle body 1, the air source conduit 8 is connected with the air source interface, a central column communicated with the air source interface is arranged at the lower part of the atomizing bottle body 1, a gas emission cavity is arranged in the central column, the atomizing core 2 is arranged in the atomizing bottle body 1, two axial water tanks are arranged on the inner wall of a water jacket at the lower part of the atomizing core 2, the water jacket at the lower part of the atomizing core 2 is sleeved with the central column of the atomizing bottle body 1, and the two axial water tanks of the atomizing core 2 are sealed to form a siphon water channel; a cylinder is arranged in the middle of the atomizing core 2, a narrow slit is formed between the end face of the cylinder and the air nozzle of the atomizing bottle body 1, and a sound elimination rail plate and a vertical rail plate are arranged in the middle of the atomizing core 2; the periphery of the atomizing bottle cap 3 is clamped with the top of the atomizing bottle body 1; the side surface of the upper part of the atomizing bottle body 1 is provided with an air suction interface, and an air suction device is inserted on the air suction interface.
In the utility model, the air suction device comprises a throat mask 7, an adapter ring 6 and a universal adapter 5, wherein the throat mask 7 is a horn-shaped elliptical cone, the universal adapter 5 is arranged at the top of the throat mask 7, and the interface of the universal adapter 5 is spliced with the corrugated pipe 4; the edge of the bottom of the throat mask 7 is matched with the throat of a human body, the two sides of the edge of the throat mask 7 are provided with head band connecting holes, the joint of the universal adapter 5 adopts a bidirectional swivel 360 DEG rotation design, and the throat mask 7 is made of medical polymer materials.
In the utility model, an air suction interface of a throat mask 7 is inserted into one end of an adapter ring 6, the other end of the adapter ring 6 is connected with a universal adapter 5, and an air outlet is arranged at the top of the universal adapter 5.
In the utility model, one end of the universal adapter 5 is spliced with the air suction interface of the adapter ring 6, and the other end is connected with the corrugated pipe 4.
In the utility model, one end of the corrugated pipe 4 is inserted into an air suction interface on the side surface of the atomizing bottle body 1, and the other end is connected to the universal adapter 5 in a socket connection mode.
In the utility model, socket connectors with double wings are arranged at two ends of an air source conduit 8, one end of the air source conduit is connected with an air emission cavity of a central column at the bottom of an atomization bottle body 1, and the other end of the air source conduit is connected with an air source plug.
In the above embodiment, the jet air flow passes through the narrow slit gap of the atomizing core and is sprayed on the cylindrical end surface, so that the air flow is changed into a horizontal direction to be emitted, the surface tension of the liquid at the position from the siphon to the nozzle is destroyed by the air flow emitted at high speed, and the air flow is free to be dispersed into small molecular groups to complete the atomization process. According to the utility model, through design improvement, the atomization effect is improved, and the atomization efficiency and the fog uniformity are improved. The mask is matched with the throat of a human body, and the joint of the throat mask adopts a 360-degree rotation design of a bidirectional swivel, so that a patient wears the sputum aspirator conveniently and is more comfortable to use.
In the utility model, the working principle is that the jet air flow passes through a narrow slit with a certain gap and is sprayed to the end face of the opposite side cylinder to change the refraction of the air flow into the air flow which is emitted in the horizontal direction, and the air flow emitted in the high-speed horizontal direction breaks down the surface tension of the liquid which is siphoned to the periphery of the nozzle by blowing off, so that the free and uniform water particles are suspended and dispersed in the air to form aerosol. According to the utility model, through technical improvement, the atomization efficiency and the fog uniformity are both improved, the device is a mechanism for atomizing a water film, the autogenous cutting atomizing mask can realize 360-degree rotation, and the swing angle is 20 degrees to meet different requirements.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (6)

1. The autogenous cutting atomizing mask is characterized by comprising an atomizing bottle body (1), an atomizing core (2), an atomizing bottle cap (3), a corrugated pipe (4), a universal adapter (5), an adapter ring (6), a throat mask (7) and an air source conduit (8), wherein an air source interface is arranged at the bottom of the atomizing bottle body (1), the air source conduit (8) is connected with the air source interface, a central column communicated with the air source interface is arranged at the lower part of the atomizing bottle body (1), a gas emission cavity is arranged in the central column, the atomizing core (2) is arranged in the atomizing bottle body (1), two axial water tanks are arranged on the inner wall of a water jacket at the lower part of the atomizing core (2), the water jacket at the lower part of the atomizing core (2) is sleeved with the central column of the atomizing bottle body (1), and the two axial water tanks of the atomizing core (2) are sealed to form a siphon water channel; a cylinder is arranged in the middle of the atomizing core (2), a narrow slit is formed between the end face of the cylinder and the air nozzle of the atomizing bottle body (1), and a sound elimination transverse baffle and a vertical baffle are arranged in the middle of the atomizing core (2); the periphery of the atomizing bottle cap (3) is clamped with the top of the atomizing bottle body (1); the side surface of the upper part of the atomizing bottle body (1) is provided with an air suction interface, and an air suction device is inserted on the air suction interface.
2. The autogenous cutting atomizing mask according to claim 1, wherein the air suction device comprises a throat mask (7), an adapter ring (6) and a universal adapter (5), the throat mask (7) is a horn-shaped elliptical cone, the universal adapter (5) is arranged at the top of the throat mask (7), and an interface of the universal adapter (5) is spliced with the corrugated pipe (4); the edge of the bottom of the throat mask (7) is matched with the throat of a human body, the two sides of the edge of the throat mask (7) are provided with head band connecting holes, the joint of the universal adapter (5) adopts a bidirectional swivel 360 DEG rotation design, and the throat mask (7) is made of medical polymer materials.
3. An autogenous cutting atomizing mask according to claim 1, wherein the air suction interface of the throat mask (7) is inserted into one end of the adapter ring (6), the other end of the adapter ring (6) is connected with the universal adapter (5), and an air outlet is arranged at the top of the universal adapter (5).
4. An autogenous cutting atomizing mask according to claim 1, wherein one end of the universal adapter (5) is connected with the air suction interface of the adapter ring (6) in a plugging manner, and the other end is connected with a corrugated pipe (4).
5. An aerocutting atomising mask according to claim 1, characterized in that one end of the bellows (4) is plugged into the suction interface of the side of the atomising bottle (1) and the other end is socket-connected to a universal adapter (5).
6. The autogenous cutting atomizing mask according to claim 1, wherein the two ends of the air source conduit (8) are provided with socket interfaces with double wings, one end of the air source conduit is connected with the air emission cavity of the central column at the bottom of the atomizing bottle body (1), and the other end of the air source conduit is connected with the plug of the air source.
CN202320451238.0U 2023-03-10 2023-03-10 Autogenous cutting atomizing mask Active CN219963650U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320451238.0U CN219963650U (en) 2023-03-10 2023-03-10 Autogenous cutting atomizing mask

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320451238.0U CN219963650U (en) 2023-03-10 2023-03-10 Autogenous cutting atomizing mask

Publications (1)

Publication Number Publication Date
CN219963650U true CN219963650U (en) 2023-11-07

Family

ID=88583992

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320451238.0U Active CN219963650U (en) 2023-03-10 2023-03-10 Autogenous cutting atomizing mask

Country Status (1)

Country Link
CN (1) CN219963650U (en)

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