CN220344916U - Novel high-flow respiratory humidification therapeutic instrument pipeline - Google Patents

Novel high-flow respiratory humidification therapeutic instrument pipeline Download PDF

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Publication number
CN220344916U
CN220344916U CN202321833596.4U CN202321833596U CN220344916U CN 220344916 U CN220344916 U CN 220344916U CN 202321833596 U CN202321833596 U CN 202321833596U CN 220344916 U CN220344916 U CN 220344916U
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pipe
water
communicated
novel high
flow
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CN202321833596.4U
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薛云龙
李玉华
杨红霞
张晨
李欣悦
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Beijing Youan Hospital
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Beijing Youan Hospital
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Abstract

The utility model discloses a novel high-flow respiratory humidification therapeutic apparatus pipeline, which comprises a conduit, wherein a convex pipe is communicated with the conduit, and a water receiving component is arranged on the convex pipe; the water receiving assembly comprises a Y-shaped pipe communicated with the convex pipe, a water collecting bottle is communicated with the Y-shaped pipe, and a backflow preventing unit is arranged in the Y-shaped pipe; the heating wire is wound on the guide pipe, the heating wire works to heat air flow in the guide pipe and generate water mist, and the water mist is collected through the cooperation of the water receiving unit and the backflow preventing unit. This novel high flow breathes humidifying therapeutic instrument pipeline through setting up pipe, protruding type pipe, water receiving assembly, prevent mutually supporting between reflux unit and the heater strip, through protruding type pipe and the cooperation between Y type pipe and the water collecting bottle in the water receiving assembly, can collect the treatment with the water smoke in the pipe, when avoiding the inside gas flow of pipe, in blowing the nasal cavity of patient with the water of accumulation, the security when having improved the pipeline and used.

Description

Novel high-flow respiratory humidification therapeutic instrument pipeline
Technical Field
The utility model relates to the technical field of medical appliances, in particular to a novel high-flow respiratory humidification therapeutic apparatus pipeline.
Background
The high-flow respiratory humidification therapeutic apparatus is a therapeutic mode for continuously providing high-flow (8-80L/min) inhaled gas with adjustable and relatively constant oxygen inhalation concentration (21% -100%), temperature (31-37 ℃) and humidity for patients through a high-flow special nasal plug or other patient interfaces; the high-flow respiratory humidification therapeutic apparatus needs to be matched with a pipeline for use and treatment when in use.
When the existing high-flow respiratory humidification therapeutic apparatus is used for a long time, humidified water mist can be accumulated in a pipeline along with the prolonged use time, so that the pipeline is accumulated with water; when the accumulated water reaches a certain degree, the accumulated water can be blown into the nasal cavity and even the airway of the user along with the pipeline by high-speed air flow, so that the user can feel choked or mistakenly inhale, and a certain danger exists.
Disclosure of Invention
The utility model aims to provide a novel high-flow respiratory humidification therapeutic apparatus pipeline to solve the defects in the prior art.
In order to achieve the above object, the present utility model provides the following technical solutions: the novel high-flow respiratory humidification therapeutic apparatus pipeline comprises a conduit, wherein a convex pipe is communicated with the conduit, and a water receiving component is arranged on the convex pipe; the water receiving assembly comprises a Y-shaped pipe communicated with the convex pipe, a water collecting bottle is communicated with the Y-shaped pipe, and a backflow preventing unit is arranged in the Y-shaped pipe; the heating wire is wound on the guide pipe, the heating wire works to heat air flow in the guide pipe and generate water mist, and the water mist is collected through the cooperation of the water receiving unit and the backflow preventing unit.
Further, the backflow prevention unit comprises a fixed rod fixed in the Y-shaped pipe, a floating plate is arranged on the fixed rod, and a sealing plug is arranged at the top of the floating plate; and a blocking piece for limiting the floating plate is arranged in the Y-shaped pipe.
Further, the blocking piece is a supporting rod, and water blocking rings are arranged in the two ends of the guide pipe.
Further, a three-way pipe is communicated with the catheter, one end of the three-way pipe is communicated with a breathing pipe, and an atomization assembly is arranged on the three-way pipe.
Further, the atomizing assembly comprises an atomizer which is communicated with the three-way pipe, one end of the atomizer is communicated with an atomizing mask pipe, and the three-way pipe is provided with a switch valve.
Further, a pressure gauge is arranged on the tee pipe.
In the technical scheme, the novel high-flow respiratory humidification therapeutic apparatus pipeline provided by the utility model has the beneficial effects that:
1. this novel high flow breathes humidifying therapeutic instrument pipeline through setting up pipe, protruding type pipe, water receiving assembly, prevent mutually supporting between reflux unit and the heater strip, through protruding type pipe and the cooperation between Y type pipe and the water collecting bottle in the water receiving assembly, can collect the treatment with the water smoke in the pipe, when avoiding the inside gas flow of pipe, in blowing the nasal cavity of patient with the water of accumulation, the security when having improved the pipeline and used.
2. This novel high flow breathes humidification therapeutic instrument pipeline through setting up the cooperation between three-way pipe and the atomizing subassembly, can breathe humidification treatment in high flow in step, atomizes in step and doses the treatment, has improved the effect of breathing humidification treatment, has stronger practicality.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments described in the present utility model, and other drawings may be obtained according to these drawings for a person having ordinary skill in the art.
FIG. 1 is a schematic diagram of an overall structure according to an embodiment of the present utility model;
FIG. 2 is a schematic longitudinal section of an internal structure of a catheter according to an embodiment of the present utility model;
FIG. 3 is an enlarged view of FIG. 2 at A;
fig. 4 is an enlarged view at B in fig. 2.
Reference numerals illustrate:
1. a conduit; 2. a male tube; 301. a Y-shaped tube; 302. a water collecting bottle; 4. a heating wire; 501. a fixed rod; 502. a floating plate; 503. sealing the plug; 6. a support rod; 7. a water blocking ring; 8. a three-way pipe; 9. a breathing tube; 101. an atomizer; 102. an atomizing mask tube; 103. a switch valve; 11. a pressure gauge.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present disclosure more apparent, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present disclosure. It will be apparent that the described embodiments are some, but not all, of the embodiments of the present disclosure. All other embodiments, which can be made by one of ordinary skill in the art without the need for inventive faculty, are within the scope of the present disclosure, based on the described embodiments of the present disclosure.
Referring to fig. 1-4, a novel high-flow respiratory humidification therapeutic apparatus pipeline comprises a conduit 1, wherein a convex pipe 2 is communicated with the conduit 1, and a water receiving component is arranged on the convex pipe 2; the water receiving assembly comprises a Y-shaped pipe 301 communicated with the convex pipe 2, a water collecting bottle 302 is communicated with the Y-shaped pipe 301, and a backflow preventing unit is arranged in the Y-shaped pipe 301; the heating wire 4 is wound on the guide pipe 1, the heating wire 4 works to heat the air flow in the guide pipe 1 and generate water mist, and the water mist is collected through the cooperation of the water receiving unit and the backflow preventing unit.
Specifically, the novel high-flow respiratory humidification therapeutic apparatus pipeline comprises a conduit 1, wherein the conduit 1 is an existing medical device, and not described in detail herein, a convex pipe 2 is communicated with the conduit 1, the convex pipe 2 is communicated with the bottom of the conduit 1, when cooling water exists in the conduit 1, the cooling water flows into the convex pipe 2 communicated with the conduit 1 along the conduit 1 due to the gravity of the cooling water, and a water receiving component is arranged on the convex pipe 2; the water receiving assembly comprises a Y-shaped pipe 301 communicated with a convex pipe 2, wherein the Y-shaped pipe 301 is communicated with a water collecting bottle 302, the water collecting bottle 302 is detachably connected with the Y-shaped pipe 301, the Y-shaped pipe 301 in the water collecting bottle 302 can be detached to pour after the water collecting bottle 302 is fully filled with water conveniently, the water collecting bottle 302 can be transparent, the water in the water collecting bottle is conveniently and directly observed, the Y-shaped pipe 301 is communicated with the middle part of a conduit 1, when the conduit 1 is used, the two ends of the conduit 1 are tilted to form an arc shape, when water mist of the conduit 1 flows into the convex pipe 2, the water mist can smoothly enter the Y-shaped pipe 301 because the Y-shaped pipe 301 is communicated with the bottom of the convex pipe 2, and finally enters the water collecting bottle 302 along the Y-shaped pipe 301 to be collected in the same way, and the Y-shaped pipe 301 is provided with a backflow prevention unit for preventing backflow of the water entering the water collecting bottle 302 from flowing into the conduit 1, so that choking can easily happen; the heating wire 4 is wound on the catheter 1, the heating wire 4 works to heat the air flow in the catheter 1 and generate water mist, the water mist is collected through the cooperation of the water receiving unit and the backflow preventing unit, the heating wire 4 is connected with an external power supply and a control switch, the heating wire 4 is spirally uniformly wound outside the catheter 1 and used for heating the air flow passing through the catheter 1, so that the air is heated to a proper temperature, and then enters the nasal cavity of a patient, the heating wire 4 heats the air flow in the catheter 1 and simultaneously generates water vapor, the water vapor is not timely treated and can be brought into the nasal cavity of the patient by the air flow, so that the choking danger occurs, the water receiving assembly can effectively collect the water vapor generated along with the water mist, the existing danger is effectively solved, and the safety of the high-flow respiratory humidification therapeutic instrument during use is improved.
In a further embodiment of the present utility model, the backflow preventing unit includes a fixing rod 501 fixed in the Y-pipe 301, a floating plate 502 is provided on the fixing rod 501, and a sealing plug 503 is provided on the top of the floating plate 502; a stopper for limiting the floating plate 502 is provided in the Y-tube 301.
Preferably, the backflow preventing unit comprises a fixing rod 501 fixed in the Y-shaped pipe 301, the fixing rod 501 is fixed in a channel which is communicated with the water collecting bottle 302 by the Y-shaped pipe 301, the channel is arranged to be convex, a floating plate 502 is arranged on the fixing rod 501, a sealing plug 503 is arranged at the top of the floating plate 502, the fixing rod 501 is arranged to limit the motion track of the floating plate 502 and the sealing plug 503, the floating plate 502 and the sealing plug 503 are made of materials with better buoyancy and lighter weight, such as foam materials, when water remains in the Y-shaped pipe 301, the sealing plug 503 is pushed to be opened, so that water can enter the water collecting bottle 302 through the Y-shaped pipe 301, and when more liquid in the water collecting bottle 302 enters the Y-shaped pipe 301, the water can float the floating plate 502 and the sealing plug 503 on the fixing rod 501 and plug 503 to plug the Y-shaped pipe 301, so that the liquid cannot flow back into the guide pipe 1, and the safety of the guide pipe 1 in use is improved; a stopper for limiting the floating plate 502 is provided in the Y-tube 301.
In a further embodiment of the present utility model, the blocking member is a supporting rod 6, and the inside of both ends of the conduit 1 is provided with water blocking rings 7.
Preferably, the blocking piece is the bracing piece 6, through setting up bracing piece 6, when so that floating plate 502 receives the rivers influence of pipe 1 and open, the bottom of floating plate 502 separates one end distance with the logical groove of Y type pipe 301, so that the water in pipe 1 can get into water-collecting bottle 302 through Y type pipe 301 smoothly, the inside at pipe 1 both ends all is provided with water retaining ring 7, set up water retaining ring 7 and be in order to restrict the rivers in pipe 1, so that rivers can not backward flow to the port department of pipe 1.
In a further embodiment of the present utility model, the catheter 1 is connected to a tee pipe 8, one end of the tee pipe 8 is connected to a breathing pipe 9, and an atomization assembly is disposed on the tee pipe 8.
Preferably, the three-way pipe 8 is communicated with the catheter 1, one end of the three-way pipe 8 is communicated with the breathing pipe 9, the three-way pipe 8 and the breathing pipe 9 are all existing equipment, the three-way pipe 8 is arranged at one end of the catheter 1 connected with a patient, the breathing pipe 9 can guide oxygen passing through the catheter 1 and the three-way pipe 8 into the nasal cavity of the patient, and an atomization assembly is arranged on the three-way pipe 8.
In a further embodiment of the present utility model, the atomizing assembly includes an atomizer 101 connected to the tee 8, one end of the atomizer 101 is connected to an atomizing mask tube 102, and the tee 8 is provided with an on-off valve 103.
Preferably, the atomizing subassembly includes the atomizer 101 of intercommunication on three-way pipe 8, and the one end intercommunication of atomizer 101 has atomizing face guard pipe 102, and atomizer 101 and atomizing face guard pipe 102 are current equipment only, do not make excessive redundant description here, are provided with ooff valve 103 on the three-way pipe 8, and ooff valve 103 on the three-way pipe 8 sets up on the passageway of three-way pipe 8 and atomizer 101 intercommunication for whether control oxygen gets into and carries out atomizing work in the atomizer 101.
In a further embodiment of the present utility model, the tee 8 is provided with a pressure gauge 11.
Preferably, the tee 8 is provided with a pressure gauge 11, the pressure gauge 11 is used for detecting the oxygen amount entering the atomizer 101, and the pressure gauge 11 is also an important component body in the existing atomization operation, and the specific connection and the use thereof are all in the prior art, and are not described in detail herein.
Working principle: when the nasal cavity treatment device is used, one end of the catheter 1 is communicated with the high-flow respiratory humidification therapeutic apparatus, the breathing tube 9 communicated with the other end of the catheter 1 is fixed on the nasal cavity of a patient, at the moment, the high-flow respiratory humidification therapeutic apparatus and the heating wire 4 on the catheter 1 are opened, air-oxygen mixed gas with certain oxygen concentration is heated by the heating wire 4 on the catheter 1, then the air-oxygen mixed gas is conveyed into the nasal cavity of the patient at a high flow rate to treat the nasal cavity of the patient, certain liquid possibly is generated in the heating process, at the moment, the liquid flows into the convex tube 2 due to the gravity of the liquid and along the pipeline, the liquid entering into the convex tube 2 flows into the Y-shaped tube 301 along the bending shape of the convex tube 2, and the sealing plug 503 blocked on the Y-shaped tube 301 is pushed to move downwards, so that a channel between the Y-shaped tube 301 and the water collecting bottle 302 is opened, and the liquid can enter into the water collecting bottle 302 through the Y-shaped tube 301 to be uniformly collected;
when the atomization treatment is needed, the face mask on the atomization mask tube 102 is fixed on the face of a patient, at the moment, the switch valve 103 on the three-way tube 8 is opened, partial air-oxygen mixed gas enters the atomizer 101 to be atomized, atomized gas enters the face of the patient along the atomization mask tube 102, and finally enters through the oral cavity of the patient, so that the treatment is achieved.
It should be noted that the electric equipment in the present application can be powered by a storage battery or an external power supply.
While certain exemplary embodiments of the present utility model have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that modifications may be made to the described embodiments in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are to be regarded as illustrative in nature and not as restrictive of the scope of the utility model, which is defined by the appended claims.

Claims (6)

1. The utility model provides a novel high flow breathes humidifying therapeutic instrument pipeline, includes pipe (1), its characterized in that:
the catheter (1) is communicated with a convex pipe (2), and the convex pipe (2) is provided with a water receiving component;
the water receiving assembly comprises a Y-shaped pipe (301) communicated with the convex pipe (2), a water collecting bottle (302) is communicated with the Y-shaped pipe (301), and a backflow prevention unit is arranged in the Y-shaped pipe (301);
the air flow inside the guide pipe (1) is heated and water mist is generated by the operation of the heating wire (4), and the water mist is collected by the cooperation of the water receiving unit and the backflow preventing unit.
2. The novel high-flow respiratory humidification therapeutic apparatus pipeline according to claim 1, wherein the backflow prevention unit comprises a fixed rod (501) fixed in a Y-shaped pipe (301), a floating plate (502) is arranged on the fixed rod (501), and a sealing plug (503) is arranged at the top of the floating plate (502);
a blocking piece for limiting the floating plate (502) is arranged in the Y-shaped pipe (301).
3. The novel high-flow respiratory humidification therapeutic apparatus pipeline according to claim 2, wherein the blocking piece is a supporting rod (6), and water blocking rings (7) are arranged in the two ends of the conduit (1).
4. The novel high-flow respiratory humidification therapeutic apparatus pipeline according to claim 1, wherein a three-way pipe (8) is communicated with the catheter (1), one end of the three-way pipe (8) is communicated with a respiratory tube (9), and an atomization assembly is arranged on the three-way pipe (8).
5. The novel high-flow respiratory humidification therapeutic apparatus pipeline according to claim 4, wherein the atomization assembly comprises an atomizer (101) communicated with a tee pipe (8), one end of the atomizer (101) is communicated with an atomization mask pipe (102), and the tee pipe (8) is provided with a switch valve (103).
6. The novel high-flow respiratory humidification therapeutic apparatus pipeline according to claim 4, wherein a pressure gauge (11) is arranged on the tee pipe (8).
CN202321833596.4U 2023-07-13 2023-07-13 Novel high-flow respiratory humidification therapeutic instrument pipeline Active CN220344916U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321833596.4U CN220344916U (en) 2023-07-13 2023-07-13 Novel high-flow respiratory humidification therapeutic instrument pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321833596.4U CN220344916U (en) 2023-07-13 2023-07-13 Novel high-flow respiratory humidification therapeutic instrument pipeline

Publications (1)

Publication Number Publication Date
CN220344916U true CN220344916U (en) 2024-01-16

Family

ID=89502699

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321833596.4U Active CN220344916U (en) 2023-07-13 2023-07-13 Novel high-flow respiratory humidification therapeutic instrument pipeline

Country Status (1)

Country Link
CN (1) CN220344916U (en)

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