CN213407367U - Noninvasive ventilator aerosol inhalation device - Google Patents

Noninvasive ventilator aerosol inhalation device Download PDF

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Publication number
CN213407367U
CN213407367U CN202020459896.0U CN202020459896U CN213407367U CN 213407367 U CN213407367 U CN 213407367U CN 202020459896 U CN202020459896 U CN 202020459896U CN 213407367 U CN213407367 U CN 213407367U
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CN
China
Prior art keywords
heating
pipe
heating cabinet
inhalation device
noninvasive ventilator
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Expired - Fee Related
Application number
CN202020459896.0U
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Chinese (zh)
Inventor
罗绍友
罗洪
卢凤翔
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Qianxinan Buyi and Miao Autonomous Prefecture Peoples Hospital
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Qianxinan Buyi and Miao Autonomous Prefecture Peoples Hospital
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Priority to CN202020459896.0U priority Critical patent/CN213407367U/en
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Publication of CN213407367U publication Critical patent/CN213407367U/en
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Abstract

The utility model provides a noninvasive ventilator aerosol inhalation device, respirator is equipped with the interface, the interface is connected with the angle modulation pipe, the angle modulation pipe is connected with the connecting pipe, the connecting pipe is connected with the heating device, the heating device is connected with the intake pipe, the intake pipe is connected with the atomizer, the atomizer other end is through-connected with the oxygen intake pipe, the respirator both sides are equipped with connecting lugs, two are fixed with first regulation band and second regulation band in the connecting lug respectively, the connecting lug below is equipped with the relief valve, relief valve one side is equipped with the through-hole; heating device still includes the heating cabinet, the heating cabinet top is equipped with the air inlet, the heating cabinet bottom is equipped with the gas vent, be equipped with the heating pipe in the heating cabinet, heating pipe one end with the air inlet link up continuously, the utility model relates to a can heat gas, pipeline angle regulation, prevent blockking up noninvasive ventilator aerosol inhalation device.

Description

Noninvasive ventilator aerosol inhalation device
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a noninvasive ventilator aerosol inhalation device.
Background
Currently, in clinic, many patients with chronic lung diseases need to use noninvasive ventilators to improve ventilation and nebulization inhalation to help sputum discharge; the noninvasive ventilator is an effective instrument commonly used for patients with clinical dyspnea. The principle of the breathing mask is similar to that of an inflator, after external ambient air enters a breathing machine, a compression device in the breathing machine compresses the air according to air pressure parameters set by a doctor, and the air is inhaled into a patient through the breathing mask.
However, the existing breathing atomization inhalation device cannot adjust the temperature in the using process, and particularly reduces the comfort of a patient in winter with lower temperature.
Therefore, there is a need to provide a new nebulizing inhalation device for noninvasive ventilator to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
The utility model provides a have self-heating, adjust the pipeline angle, prevent blockking up noninvasive ventilator aerosol inhalation device.
In order to solve the technical problem, the utility model provides a noninvasive ventilator aerosol inhalation device, include:
the breathing mask comprises a breathing mask 1, wherein the breathing mask 1 is provided with a connector 2, the connector 2 is connected with an angle adjusting pipe 3, the angle adjusting pipe 3 is connected with a connecting pipe 4, the connecting pipe 4 is connected with a heating device 5, the heating device 5 is connected with an air inlet pipe 6, the air inlet pipe 6 is connected with an atomizer 7, the other end of the atomizer 7 is connected with an oxygen inlet pipe 8 in a penetrating way, two sides of the breathing mask 1 are provided with connecting convex blocks 14, a first adjusting belt 9 and a second adjusting belt 10 are respectively fixed in the two connecting convex blocks 14, a safety valve 11 is arranged below the connecting convex blocks 14, and one side of the safety valve 11 is provided;
heating device 5 still includes heating cabinet 51, heating cabinet 51 top is equipped with air inlet 52, heating cabinet 51 bottom is equipped with gas vent 53, be equipped with heating pipe 54 in heating cabinet 51, heating pipe 54 one end with air inlet 52 link up continuously, the heating pipe 54 other end with gas vent 53 link up continuously, electric heater 55 is installed to heating cabinet 51 bottom screw thread, heating cabinet 51 bottom is equipped with temperature sensor 56, be equipped with temperature controller 57 in the middle of heating cabinet 51 bottom, gas vent 53 set up in temperature sensor 56's opposite side, heating cabinet 51 one side is equipped with the inlet, the inlet that heating cabinet 51 established is equipped with the water valve.
Preferably, the connection protrusion 14 is in a T shape, the connection protrusion 14 is used for fixing the first adjustment strap 9 and the second adjustment strap 10, the first adjustment strap 9 is provided with a hook-and-loop strap female surface, the second adjustment strap 10 is provided with a hook-and-loop strap female surface, the angle adjustment tube 3 is provided with a micro vent hole at a position of a top bending portion, the micro vent hole provided on the angle adjustment tube 3 is used for preventing blockage, a probe of the temperature sensor 56 passes through the bottom of the heating box 51 to be communicated with an inner cavity, the temperature controller 57 is electrically connected with the electric heater 55, two sides of the interface 2 are provided with the fixture blocks 13, the angle adjustment tube 3 is rotatably connected between the two fixture blocks 13, the electric, the heating pipe 54 is spirally wound outside the electric heater 55, and the electric heater 55 is used for heating the heating liquid filled in the inner cavity of the heating box 51.
Compared with the prior art, the utility model provides a noninvasive ventilator aerosol inhalation device has following beneficial effect:
(1) the utility model provides a noninvasive ventilator aerosol inhalation device, through being equipped with heating device 5 on connecting pipe 4, air inlet 52 of heating device 5 is link up with intake pipe 6 that atomizer 7 is connected, the other end of atomizer 7 is link up with poplar oxygen intake pipe 8, make the oxygen of oxygen intake pipe 8 input pass through atomizer 7 at a high speed, enter into heating device 5 through intake pipe 6 and heat after the liquid medicine in atomizer 7 atomizes, heat the liquid in heating box 51 through electric heater 55 in heating device 5, link up with intake pipe 6 through heating pipe 54, gasified oxygen is discharged into heating pipe 54 through intake pipe 6, heating pipe 54 is the heliciform and twines outside electric heater 55, make gas can prolong the time in heating box 51, make the heating more abundant, thereby the device heats heating pipe 54 located in heating box 51 through the liquid of heating packing in heating box 51, thereby make the atomizing gas heating in the heating pipe 54, make the gas after the atomizing enter into the oral cavity temperature more suitable, be equipped with temperature sensor 56 through heating cabinet 51, temperature sensor 56 electric connection has temperature controller 57, and the user can set up suitable temperature through temperature controller 57, improves the comfort that the patient used.
(2) The utility model provides a noninvasive ventilator aerosol inhalation device, be convenient for adapt to the patient of different head sizes through being equipped with first regulation band 9 and second regulation band 10, convenient the regulation, be equipped with interface 2 through respirator 1, interface 2 is connected with angle regulation pipe 3, 2 both sides of interface are equipped with fixture block 13, it is connected with angle regulation pipe 3 to rotate between two fixture blocks 13, the person of facilitating the use adjusts the pipeline use angle as required, be equipped with relief valve 11 through connecting 14 below of lug, 11 one side of all valves is equipped with through-hole 12, be used for breathing freely, it is equipped with miniature exhaust hole to be located top kink position through angle regulation pipe 3, the miniature exhaust hole that angle regulation pipe 3 established is used for preventing blockking up.
Drawings
Fig. 1 is a schematic structural diagram of a preferred embodiment of the present invention;
FIG. 2 is a schematic view of a heating device of the rotary base shown in FIG. 1;
FIG. 3 is a schematic view of the bottom of the heating cabinet of FIG. 1;
fig. 4 is a schematic structural view of the respiratory mask shown in fig. 1.
Reference numbers in the figures: 1. breathing mask, 2, interface, 3, angle adjusting pipe, 4, connecting pipe, 5, heating device, 51, heating cabinet, 52, air inlet, 53, gas vent, 54, heating pipe, 55, electric heater, 56, temperature sensor, 57, temperature controller, 6, intake pipe, 7, atomizer, 8, oxygen intake pipe, 9, first regulation band, 10, second regulation band, 11, relief valve, 12, through-hole, 13, fixture block, 14, connection lug.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
Please refer to fig. 1-4, wherein fig. 1 is a schematic structural diagram of a preferred embodiment of the present invention; FIG. 2 is a schematic view of a heating device of the rotary base shown in FIG. 1; FIG. 3 is a schematic view of the bottom of the heating cabinet of FIG. 1; fig. 4 is a schematic structural view of the respiratory mask shown in fig. 1. The method comprises the following steps: the breathing mask comprises a breathing mask 1, wherein the breathing mask 1 is provided with a connector 2, the connector 2 is connected with an angle adjusting pipe 3, the angle adjusting pipe 3 is connected with a connecting pipe 4, the connecting pipe 4 is connected with a heating device 5, the heating device 5 is connected with an air inlet pipe 6, the air inlet pipe 6 is connected with an atomizer 7, the other end of the atomizer 7 is connected with an oxygen inlet pipe 8 in a penetrating way, two sides of the breathing mask 1 are provided with connecting convex blocks 14, a first adjusting belt 9 and a second adjusting belt 10 are respectively fixed in the two connecting convex blocks 14, a safety valve 11 is arranged below the connecting convex blocks 14, and one side of the safety valve 11 is provided;
heating device 5 still includes heating cabinet 51, heating cabinet 51 top is equipped with air inlet 52, heating cabinet 51 bottom is equipped with gas vent 53, be equipped with heating pipe 54 in heating cabinet 51, heating pipe 54 one end with air inlet 52 link up continuously, the heating pipe 54 other end with gas vent 53 link up continuously, electric heater 55 is installed to heating cabinet 51 bottom screw thread, heating cabinet 51 bottom is equipped with temperature sensor 56, be equipped with temperature controller 57 in the middle of heating cabinet 51 bottom, gas vent 53 set up in temperature sensor 56's opposite side, heating cabinet 51 one side is equipped with the inlet, the inlet that heating cabinet 51 established is equipped with the water valve.
In a specific implementation process, as shown in fig. 1 and 2, the connection protrusion 14 is in a "T" shape, the connection protrusion 14 is used to fix the first adjustment tape 9 and the second adjustment tape 10, the first adjustment tape 9 is provided with a female surface of a hook and loop fastener, the second adjustment tape 10 is provided with a female surface of a hook and loop fastener, the angle adjustment tube 3 is provided with a micro vent hole at a position of a top bending portion, the micro vent hole provided on the angle adjustment tube 3 is used for preventing blockage, a probe of the temperature sensor 56 passes through the bottom of the heating box 51 to communicate with an inner cavity, the temperature controller 57 is electrically connected with the electric heater 55, fixture blocks 13 are provided at two sides of the interface 2, and the angle adjustment tube, the electric heater 55 is arranged inside the heating pipe 54, the heating pipe 54 is spirally wound outside the electric heater 55, and the electric heater 55 is used for heating the heating liquid filled in the inner cavity of the heating box 51.
The utility model provides a theory of operation as follows:
the utility model provides a noninvasive ventilator aerosol inhalation device, when working, the user connects one end of atomizer 7 with the respirator first, the other end of atomizer 7 is connected with air inlet 52 of heating device 5 through, connect the gas outlet of heating device 5 with connecting pipe 4 through, connecting pipe 4 and angle adjusting pipe 3 are installed by screw thread, connect and fix on the patient's head through first adjusting band 9 and second adjusting band 10 that breathing mask 1 both sides were equipped with, adjust breathing mask 1, make it laminate on the patient's face, adjust the angle through angle adjusting pipe 3, start respirator and electric heater 55, link up with intake pipe 6 that atomizer 7 is connected through air inlet 52 of heating device 5, the other end of atomizer 7 links up with poplar intake pipe 8, make the oxygen that oxygen intake pipe 8 inputs pass through atomizer 7 at a high speed, after being atomized, the liquid medicine in the atomizer 7 enters the heating device 5 for heating through the air inlet pipe 6, the liquid in the heating box 51 is heated through the electric heater 55 in the heating device 5, the liquid is communicated with the air inlet pipe 6 through the heating pipe 54, the gasified oxygen is discharged into the heating pipe 54 through the air inlet pipe 6, the heating pipe 54 is spirally wound outside the electric heater 55, so that the gas can prolong the time in the heating box 51, the heating is more sufficient, the device heats the heating pipe 54 in the heating box 51 by heating the liquid filled in the heating box 51, so that the atomized gas in the heating pipe 54 is heated, the temperature sensor 56 is arranged in the heating box 51, the temperature sensor 56 is electrically connected with the temperature controller 57, a user can set a proper heating temperature through the temperature controller 57, and the heated gas is discharged into the breathing mask 1 through the connecting pipe 4, thereby entering the oral cavity of the patient and improving the comfort of the patient by increasing the temperature of the atomized gas.
Compared with the prior art, the utility model provides a noninvasive ventilator aerosol inhalation device has following beneficial effect:
the utility model provides a noninvasive ventilator aerosol inhalation device, through being equipped with heating device 5 on connecting pipe 4, air inlet 52 of heating device 5 link up with intake pipe 6 that atomizer 7 is connected, the other end of atomizer 7 links up with poplar oxygen intake pipe 8 and links up, make the oxygen of oxygen intake pipe 8 input pass through atomizer 7 at a high speed, enter into heating device 5 through intake pipe 6 and heat after the liquid medicine in atomizer 7 atomizes, heat the liquid in heating box 51 through electric heater 55 in heating device 5, link up with intake pipe 6 through heating pipe 54, gasified oxygen is discharged into heating pipe 54 through intake pipe 6, heating pipe 54 is the heliciform and twines outside electric heater 55, make gas can prolong the time in heating box 51, make the heating more abundant, thereby the device heats heating pipe 54 located in heating box 51 through heating the liquid of filling in heating box 51, thereby make the atomizing gas heating in the heating pipe 54, make the gas after the atomizing enter into the oral cavity temperature more suitable, through being equipped with temperature sensor 56 in the heating cabinet 51, temperature sensor 56 model is HIH-3602, and temperature sensor 56 electric connection has temperature controller 57, temperature controller 57 model is JUC-31F, and the user can set up suitable temperature through temperature controller 57, improves the comfort that the patient used.
The utility model provides a noninvasive ventilator aerosol inhalation device, be convenient for adapt to the patient of different head sizes through being equipped with first regulation band 9 and second regulation band 10, convenient the regulation, be equipped with interface 2 through respirator 1, interface 2 is connected with angle regulation pipe 3, 2 both sides of interface are equipped with fixture block 13, it is connected with angle regulation pipe 3 to rotate between two fixture blocks 13, the person of facilitating the use adjusts the pipeline use angle as required, be equipped with relief valve 11 through connecting 14 below of lug, 11 one side of relief valve is equipped with through-hole 12, be used for breathing freely, it is equipped with miniature exhaust hole to be located top kink position through angle regulation pipe 3, the miniature exhaust hole that angle regulation pipe 3 established is used for preventing blockking up.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.

Claims (7)

1. A noninvasive ventilator aerosol inhalation device, comprising:
the breathing mask comprises a breathing mask (1), wherein the breathing mask (1) is provided with a connector (2), the connector (2) is connected with an angle adjusting pipe (3), the angle adjusting pipe (3) is connected with a connecting pipe (4), the connecting pipe (4) is connected with a heating device (5), the heating device (5) is connected with an air inlet pipe (6), the air inlet pipe (6) is connected with an atomizer (7), the other end of the atomizer (7) is communicated with an oxygen inlet pipe (8), connecting convex blocks (14) are arranged on two sides of the breathing mask (1), a first adjusting belt (9) and a second adjusting belt (10) are respectively fixed in the two connecting convex blocks (14), a safety valve (11) is arranged below the connecting convex blocks (14), and a through hole (12) is formed in one side of the safety valve (;
heating device (5) still includes heating cabinet (51), heating cabinet (51) top is equipped with air inlet (52), heating cabinet (51) bottom is equipped with gas vent (53), be equipped with heating pipe (54) in heating cabinet (51), heating pipe (54) one end with air inlet (52) link up continuously, heating pipe (54) other end with gas vent (53) link up continuously, electric heater (55) are installed to heating cabinet (51) bottom screw thread, heating cabinet (51) bottom is equipped with temperature sensor (56), be equipped with temperature controller (57) in the middle of heating cabinet (51) bottom, gas vent (53) set up in the opposite side of temperature sensor (56), heating cabinet (51) one side is equipped with the inlet, the inlet that heating cabinet (51) was established is equipped with the water valve.
2. The nebulizing inhalation device of noninvasive ventilator according to claim 1, characterized in that the connection protrusion (14) is "T" shaped, the connection protrusion (14) is used to fix the first adjusting belt (9) and the second adjusting belt (10), and the first adjusting belt (9) is provided with a hook and loop female surface.
3. The nebulizing inhalation device of noninvasive ventilator according to claim 1, characterized in that the first adjusting belt (9) is provided with a female surface of a hook and loop fastener, and the second adjusting belt (10) is provided with a belt surface of a hook and loop fastener.
4. The nebulizing inhalation device of noninvasive ventilator according to claim 1, characterized in that the angle adjusting tube (3) is provided with a micro vent hole at the position of the top bending part, and the micro vent hole of the angle adjusting tube (3) is used for preventing blockage.
5. The nebulizing inhalation device of noninvasive ventilator of claim 1 characterized in that the probe of the temperature sensor (56) is connected to the inner cavity through the bottom of the heating box (51), and the temperature controller (57) is electrically connected to the electric heater (55).
6. The nebulizing inhalation device of noninvasive ventilator according to claim 1, characterized in that the interface (2) is provided with two clamping blocks (13) at both sides, and an angle adjusting tube (3) is rotatably connected between the two clamping blocks (13).
7. The apnea inhalator apparatus according to claim 1, wherein the electric heater (55) is disposed inside the heating tube (54), the heating tube (54) is spirally wound outside the electric heater (55), and the electric heater (55) is used for heating the heating liquid filled in the inner cavity of the heating tank (51).
CN202020459896.0U 2020-04-01 2020-04-01 Noninvasive ventilator aerosol inhalation device Expired - Fee Related CN213407367U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020459896.0U CN213407367U (en) 2020-04-01 2020-04-01 Noninvasive ventilator aerosol inhalation device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020459896.0U CN213407367U (en) 2020-04-01 2020-04-01 Noninvasive ventilator aerosol inhalation device

Publications (1)

Publication Number Publication Date
CN213407367U true CN213407367U (en) 2021-06-11

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CN202020459896.0U Expired - Fee Related CN213407367U (en) 2020-04-01 2020-04-01 Noninvasive ventilator aerosol inhalation device

Country Status (1)

Country Link
CN (1) CN213407367U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114028680A (en) * 2021-12-22 2022-02-11 合肥康居人智能科技有限公司 Oxygen-making and atomizing all-in-one machine for treating respiratory diseases

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114028680A (en) * 2021-12-22 2022-02-11 合肥康居人智能科技有限公司 Oxygen-making and atomizing all-in-one machine for treating respiratory diseases

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210611

CF01 Termination of patent right due to non-payment of annual fee