CN204723549U - One scalable inhalation device - Google Patents

One scalable inhalation device Download PDF

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Publication number
CN204723549U
CN204723549U CN201520469918.0U CN201520469918U CN204723549U CN 204723549 U CN204723549 U CN 204723549U CN 201520469918 U CN201520469918 U CN 201520469918U CN 204723549 U CN204723549 U CN 204723549U
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China
Prior art keywords
cylindrical drum
oxygen
scalable
inhalation device
end cap
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Expired - Fee Related
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CN201520469918.0U
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Chinese (zh)
Inventor
林奔
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Guangdong Yiyang Medical Equipment Co Ltd
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Guangdong Yiyang Medical Equipment Co Ltd
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Priority to CN201520469918.0U priority Critical patent/CN204723549U/en
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Publication of CN204723549U publication Critical patent/CN204723549U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

This utility model relates to oxygen breathing device field, in particular to one one scalable inhalation device.This one scalable inhalation device comprises oxygen supply bottle, connection tube and Oxygen tube; Described oxygen supply bottle is provided with spool; Described connection tube comprises siphunculus and block wing, and described block wing is fixedly installed on the outer wall of described siphunculus, and one end of described siphunculus is connected with described Oxygen tube, and the other end of described siphunculus is connected with described spool.The inhalation device of this one scalable inhalation device is connected with oxygen supply bottle one, when avoiding oxygen uptake, connects the troublesome operation flow process of inhalation device and oxygen supply bottle, thus improves the problem of oxygen uptake inconvenience.

Description

One scalable inhalation device
Technical field
This utility model relates to oxygen breathing device field, in particular to one one scalable inhalation device.
Background technology
When physiological anoxia or pathological hypoxic appear in human body, need supplemental oxygen in time, can oxygen use the Experience Degree that decide user quickly and easily, and therefore the convenience of oxygen inhalation apparatus to supplemental oxygen plays an important role.
Just oxygen inhalation apparatus in the market, mainly comprises bottle, bottle cap and breathing mask, and user uses the step of vigor oxygen to be: first take off breathing mask and bottle cap, face shield is arranged on the gas outlet of bottle; Again face shield is covered mouth and nose, press button of giving vent to anger, simultaneously dark air-breathing; After finally finishing using, face shield is taken off, cover face shield and bottle cap.This oxygen inhalation apparatus could use after will being first connected with bottle by breathing mask, there is inconvenient problem with use.
Utility model content
The purpose of this utility model is to provide one scalable inhalation device, to improve the problems referred to above.
To achieve these goals, this utility model provides following technical scheme:
A kind of one scalable inhalation device, comprises oxygen supply bottle, connection tube and Oxygen tube;
Described oxygen supply bottle is provided with spool;
Described connection tube comprises siphunculus and block wing, and described block wing is fixedly installed on the outer wall of described siphunculus, and one end of described siphunculus is connected with described Oxygen tube, and the other end of described siphunculus is connected with described spool.
The keying of the spool on oxygen supply bottle is for controlling the release of oxygen, and when being pressed downwards by spool, spool is opened, releasing oxygen; When unclamping spool, after spool upwards resets, spool is closed, and stops releasing oxygen.Spool is connected with Oxygen tube by connection tube, and because connection tube comprises siphunculus and block wing, the object arranging block wing is to facilitate oxygen therapic patient to control the keying of spool.When oxygen therapic patient needs oxygen uptake, by the insertion nostril, one end be not connected with connection tube of Oxygen tube, pin block wing downwards with finger, spool is opened, and oxygen is released and is sucked by human body by connection tube and Oxygen tube, when stopping oxygen uptake, finger unclamps block wing, and spool is closed, and stops oxygen uptake.
Further, in above-mentioned one scalable inhalation device, also comprise the regulating part for controlling the keying of described spool by compressing described block wing.
It is convenient, attractive in appearance that the object arranging the regulating part controlling spool keying is that this device is used.
Further, in above-mentioned one scalable inhalation device, described regulating part is the first cylindrical drum that one end is provided with the first end cap, and described first end cap offers the first through hole passed for described Oxygen tube, and the inwall of described first cylindrical drum is provided with the first female thread;
Described first cylindrical drum inside is provided with the second cylindrical drum for compressing described block wing, and one end of described second cylindrical drum is connected with described first through hole, and the internal diameter of described second cylindrical drum is greater than the external diameter of described siphunculus;
The bottleneck of described oxygen supply bottle is provided with the first external screw thread, and described first external screw thread and described first female thread match.
First female thread of the first cylindrical drum inwall and the first external screw thread of bottleneck are with the use of mainly playing two aspects, and one is be connected with oxygen supply bottle by regulating part, and two is the keyings by rotating regulating part motor control spool up or down.Because working as rotation first cylindrical drum, first cylindrical drum can move up or down relative to spool, the inside of the first cylindrical drum is provided with the second cylindrical drum for compressing block wing again, when making it move downwardly to certain position by rotation first cylinder, block wing moves down under the effect that compresses of the second cylindrical drum, the spool being connected to connection tube is opened and releasing oxygen, when made by rotation first cylinder its move up certain position time, second cylinder moves up thereupon and makes it remove to compress effect to block wing, the spool being connected to connection tube is made to close and stop releasing oxygen.
The object of such setting is can realize lasting oxygen uptake without the need to pinning connection tube always, facilitate oxygen therapic patient to control the keying of spool, facilitate oxygen uptake, and structure is simple, convenient manufacture.
As the another kind of embodiment of regulating part, also comprise connector, described connector comprises three cylindrical cylinder and is provided with the 4th cylindrical drum of the second end cap, described second end cap is provided with the second through hole, described three cylindrical cylinder is positioned on described second end cap, and is connected with described second through hole, and the outer wall of described three cylindrical cylinder is provided with the second external screw thread, described three cylindrical jacket casing is located at outside described connection tube, and described 4th cylindrical drum is fixedly connected with described oxygen cylinder;
Described regulating part is the first cylindrical drum that one end is provided with end cap, and described end cap offers the first through hole passed for described Oxygen tube, and the inwall of described first cylindrical drum is provided with the first female thread, and described first female thread and described second external screw thread match;
Described first cylindrical drum inside is provided with the second cylindrical drum blocking described block wing, and one end of described second cylindrical drum is connected with described first through hole, and the internal diameter of described second cylindrical drum is greater than the external diameter of described siphunculus.
First screw-internal thread fit of the second external screw thread and regulating part that are connected to the connector of oxygen supply bottle uses and mainly plays two aspects, and one is be connected with oxygen supply bottle by regulating part, and two is the keyings by rotating regulating part motor control spool up or down.Because working as rotation first cylindrical drum, first cylindrical drum can move up or down relative to spool, the inside of the first cylindrical drum is provided with the second cylindrical drum for compressing block wing again, when making it move downwardly to certain position by rotation first cylinder, block wing moves down under the effect that compresses of the second cylindrical drum, the spool being connected to connection tube is opened and releasing oxygen, when made by rotation first cylinder its move up certain position time, second cylinder moves up thereupon and makes it remove to compress effect to block wing, the spool being connected to connection tube is made to close and stop releasing oxygen.
The object of such setting is can realize lasting oxygen uptake without the need to pinning connection tube always, facilitates oxygen therapic patient to control the keying of spool, facilitates oxygen uptake, and good looking appearance, convenient manufacture.
Further, in above-mentioned one scalable inhalation device, described regulating part also comprises enclosing cover, described enclosing cover is the 5th cylindrical drum with the 3rd end cap, the outer wall of described 5th cylindrical drum is provided with anti-skidding ripple, described 5th cylindrical drum is sheathed on described first cylindrical drum, and described first end cap and described 3rd end cap are positioned at same plane.
The object one arranging enclosing cover to make its profile more attractive in appearance, and two is arrange anti-skidding ripple by enclosing cover, avoiding the regulating part when rotating regulating part to skid, being more conducive to opening spool and being convenient to oxygen uptake.
Further, in above-mentioned one scalable inhalation device, described Oxygen tube is connected with nasal obstruction away from one end of described connection tube.
The nasal obstruction ergonomically designed is connected with Oxygen tube, is fixed in nostril by the tube head of Oxygen tube, and saves the tube head pinning Oxygen tube with hands when being convenient to oxygen uptake.Be arranged so that oxygen uptake is convenient like this.
Further, in above-mentioned one scalable inhalation device, described nasal obstruction is provided with at least one through hole be connected with outside air.
The object of such setting is, human body, while oxygen intake, by sucking the contrast of air condition oxygen intake, and for discharging the gas of breathing out in body, can also arrange the comfort level that improve oxygen therapic patient oxygen uptake like this.
Further, in above-mentioned one scalable inhalation device, described block wing is circular slab.
The object of such setting is to make its good looking appearance, easy to use.
Compared with prior art, the beneficial effect that this utility model realizes is:
The spool of inhalation device is connected with Oxygen tube by connection tube by the one scalable inhalation device that this utility model provides, connection tube comprises siphunculus and block wing, when oxygen therapic patient needs oxygen uptake, by the insertion nostril, one end be not connected with connection tube of Oxygen tube, pin block wing downwards with finger, spool is opened, oxygen is released and is sucked by human body by connection tube and Oxygen tube, and when stopping oxygen uptake, finger unclamps block wing, spool is closed, and stops oxygen uptake.The inhalation device of this one scalable inhalation device is connected with oxygen supply bottle one, when avoiding oxygen uptake, connects the troublesome operation flow process of inhalation device and oxygen supply bottle, thus improves the problem of oxygen uptake inconvenience.
Accompanying drawing explanation
The explosive view of the one scalable inhalation device that Fig. 1 provides for this utility model embodiment 1;
The explosive view of the one scalable inhalation device that Fig. 2 provides for this utility model embodiment 2;
The structural representation of the regulating part that Fig. 3 provides for this utility model embodiment 2;
The explosive view of the one scalable inhalation device that Fig. 4 provides for this utility model embodiment 3.
Wherein, the corresponding relation between Reference numeral and component names is as follows: spool 101, connection tube 102, regulating part 103, Oxygen tube 104, connector 105, nasal obstruction 106, block wing 107, oxygen supply bottle 200.
Detailed description of the invention
When physiological anoxia or pathological hypoxic appear in human body, need supplemental oxygen in time, can oxygen use the Experience Degree that decide user quickly and easily, and therefore the convenience of oxygen inhalation apparatus to supplemental oxygen plays an important role.
Just oxygen inhalation apparatus in the market, mainly comprises bottle, bottle cap and breathing mask, and user uses the step of vigor oxygen to be: first take off breathing mask and bottle cap, face shield is arranged on the gas outlet of bottle; Again face shield is covered mouth and nose, press button of giving vent to anger, simultaneously dark air-breathing; After finally finishing using, face shield is taken off, cover face shield and bottle cap.This oxygen inhalation apparatus could use after will being first connected with bottle by breathing mask, there is inconvenient problem with use, and user can not be made to be drawn onto oxygen in time.
In order to make the problems referred to above improve, inventor, through a large amount of research and practices, provides a kind of one scalable inhalation device, comprises oxygen supply bottle, connection tube and Oxygen tube; Described oxygen supply bottle is provided with spool; Described connection tube comprises siphunculus and block wing, and described block wing is fixedly installed on the outer wall of described siphunculus, and one end of described connection tube is connected with described Oxygen tube, and the other end of described connection tube is connected with described spool.The inhalation device of this one scalable inhalation device is connected with oxygen supply bottle one, when avoiding oxygen uptake, and the troublesome operation that also inhalation device will be connected with oxygen supply bottle, thus improve the problem of oxygen uptake inconvenience.
For making the object of this utility model embodiment, technical scheme and advantage clearly, below in conjunction with the accompanying drawing in this utility model embodiment, technical scheme in this utility model embodiment is clearly and completely described, obviously, described embodiment is this utility model part embodiment, instead of whole embodiments.The assembly of this utility model embodiment describing and illustrate in usual accompanying drawing herein can be arranged with various different configuration and design.Therefore, below to the detailed description of the embodiment of the present utility model provided in the accompanying drawings and the claimed scope of the present utility model of not intended to be limiting, but selected embodiment of the present utility model is only represented.Based on the embodiment in this utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of this utility model protection.
In description of the present utility model, it will be appreciated that, term " " center ", " longitudinal direction ", " transverse direction ", " length ", " width ", " thickness ", " on ", D score, " front ", " afterwards ", " left side ", " right side ", " vertically ", " level ", " top ", " end " " interior ", " outward ", " clockwise ", orientation or the position relationship of the instruction such as " counterclockwise " are based on orientation shown in the drawings or position relationship, only this utility model and simplified characterization for convenience of description, instead of indicate or imply that the equipment of indication or element must have specific orientation, with specific azimuth configuration and operation, therefore can not be interpreted as restriction of the present utility model.
In addition, term " first ", " second " only for describing object, and can not be interpreted as instruction or hint relative importance or imply the quantity indicating indicated technical characteristic.Thus, be limited with " first ", the feature of " second " can express or impliedly comprise one or more these features.In description of the present utility model, the implication of " multiple " is two or more, unless otherwise expressly limited specifically.
In this utility model, unless otherwise clearly defined and limited, the term such as term " installation ", " being connected ", " connection ", " fixing " should be interpreted broadly, and such as, can be fixedly connected with, also can be removably connect, or integral; Can be mechanical connection, also can be electrical connection; Can be directly be connected, also indirectly can be connected by intermediary, can be the connection of two element internals or the interaction relationship of two elements.For the ordinary skill in the art, the concrete meaning of above-mentioned term in this utility model can be understood as the case may be.
In this utility model, unless otherwise clearly defined and limited, fisrt feature second feature it " on " or D score can comprise the first and second features and directly contact, also can comprise the first and second features and not be directly contact but by the other characterisation contact between them.And, fisrt feature second feature " on ", " top " and " above " comprise fisrt feature directly over second feature and oblique upper, or only represent that fisrt feature level height is higher than second feature.Fisrt feature second feature " under ", " below " and " below " comprise fisrt feature immediately below second feature and tiltedly below, or only represent that fisrt feature level height is less than second feature.
Embodiment 1
The structural representation of the one scalable inhalation device that Fig. 1 provides for this utility model embodiment 1, as shown in Figure 1, the one scalable inhalation device that this utility model embodiment 1 provides, comprises spool 101, connection tube 102, Oxygen tube 104, block wing 107, oxygen supply bottle 200.
As shown in Figure 1, oxygen supply bottle 200 is provided with spool 101, and connection tube 102 comprises siphunculus and block wing 107, and block wing 107 is fixedly installed on the outer wall of siphunculus, and one end of siphunculus is connected with Oxygen tube 104, and the other end of siphunculus is connected with spool 101.
Oxygen supply bottle 200 is provided with spool 101, and the keying of spool 101 is for controlling the release of oxygen, and when being pressed downwards by spool 101, spool 101 is opened, releasing oxygen; When unclamping spool 101, after spool 101 upwards resets, spool 101 is closed, and stops releasing oxygen.
Connection tube 102 comprises siphunculus and block wing 107, and block wing 107 is fixedly installed on the outer wall of siphunculus, and the object arranging block wing 107 is to facilitate finger presses connection tube 102 to control the keying of spool 101; One end of siphunculus is connected with Oxygen tube 104, and the other end of siphunculus is connected with spool 101.When oxygen therapic patient needs oxygen uptake, by the insertion nostril, one end be not connected with connection tube 102 of Oxygen tube 104, block wing 107 is pinned downwards with finger, spool 101 is opened, oxygen is released and is sucked by human body by connection tube 102 and Oxygen tube 104, and when stopping oxygen uptake, finger unclamps block wing 107, spool 101 is closed, and stops oxygen uptake.
The inhalation device of this one scalable inhalation device is connected with oxygen supply bottle 200 one, when avoiding oxygen uptake, connects the troublesome operation flow process of inhalation device and oxygen supply bottle 200, thus improves the problem of oxygen uptake inconvenience.
Embodiment 2
The explosive view of the one scalable inhalation device that Fig. 2 provides for this utility model embodiment 2, the structural representation of the regulating part that Fig. 3 provides for this utility model embodiment 2.As shown in Fig. 2-Fig. 3, the one scalable inhalation device that the present embodiment provides is compared with embodiment 1, and the main improvement of the present embodiment is also comprising regulating part 103, connector 105 and nasal obstruction 106.
For concise and to the point description, the not mentioned part of the present embodiment part, can corresponding contents in reference example 1.
As shown in Figure 2, this one scalable inhalation device comprises oxygen supply bottle 200, connection tube 102, connector 105, regulating part 103 and nasal obstruction 106.
As shown in Figure 2, connector 105 comprises three cylindrical cylinder and is provided with the 4th cylindrical drum of the second end cap, second end cap is provided with the second through hole, three cylindrical cylinder is positioned on the second end cap, and be connected with the second through hole, the outer wall of three cylindrical cylinder is provided with the second external screw thread, and three cylindrical jacket casing is located at outside connection tube 102, and the 4th cylindrical drum is fixedly connected with oxygen cylinder.
As shown in Figure 3, regulating part 103 is provided with the first cylindrical drum of end cap for one end, and end cap offers the first through hole passed for Oxygen tube 104, and the inwall of the first cylindrical drum is provided with the first female thread, and the first female thread and the second external screw thread match; First cylindrical drum inside is provided with the second cylindrical drum blocking block wing 107, and one end of the second cylindrical drum is connected with the first through hole, and the internal diameter of the second cylindrical drum is greater than the external diameter of siphunculus.
First screw-internal thread fit of the second external screw thread and regulating part 103 that are connected to the connector 105 of oxygen supply bottle 200 uses and mainly plays two aspects, one is be connected with oxygen supply bottle 200 by regulating part 103, and two is the keyings by rotating regulating part 103 motor control spool 101 up or down.Because working as rotation first cylindrical drum, first cylindrical drum can move up or down relative to spool 101, the inside of the first cylindrical drum is provided with the second cylindrical drum for compressing block wing 107 again, when making it move downwardly to certain position by rotation first cylinder, block wing 107 moves down under the effect that compresses of the second cylindrical drum, the spool 101 being connected to connection tube 102 is opened and releasing oxygen, when made by rotation first cylinder its move up certain position time, second cylinder moves up thereupon and makes it remove to compress effect to block wing 107, the spool 101 being connected to connection tube 102 is made to close and stop releasing oxygen.
The object of such setting is can realize lasting oxygen uptake without the need to pinning connection tube 102 always, facilitates oxygen therapic patient to control the keying of spool 101, facilitates oxygen uptake, and good looking appearance, convenient manufacture.
Especially, in order to avoid when rotating regulating part 103, regulating part 103 skids, as shown in Figure 3, regulating part 103 also comprises enclosing cover, enclosing cover is the 5th cylindrical drum with the 3rd end cap, the outer wall of the 5th cylindrical drum is provided with anti-skidding ripple, and the 5th cylindrical drum is sheathed on the first cylindrical drum, and the first end cap and the 3rd end cap are positioned at same plane.Such setting makes the profile of this one scalable inhalation device more attractive in appearance, and is more conducive to opening spool 101 and is convenient to oxygen uptake.
Easy understand ground, if directly Oxygen tube 104 is inserted nostril, Oxygen tube 104 is easy to drop in nostril, natch, in order to prevent it from dropping, oxygen therapic patient also can press...with one's finger Oxygen tube 104, but there is inconvenient problem with use like this, therefore the one scalable inhalation device of the present embodiment is also provided with nasal obstruction 106, and the shape of nasal obstruction 106 design is waist drum shape, and nasal obstruction 106 is connected to Oxygen tube 104 one end away from connection tube 102.Conveniently discharge the gas of breathing out in body and regulate the contrast of oxygen intake, nasal obstruction 106 is provided with three through holes be connected with outside air.
In the present embodiment, the block wing 107 of connection tube 102 is circular slab, and the object arranged like this is to make its good looking appearance, easy to use.Natch, block wing 107 also can be other shapes.
Embodiment 3
The explosive view of the one scalable inhalation device that Fig. 4 provides for this utility model embodiment 3, as shown in Figure 4, the one scalable inhalation device that the present embodiment provides is compared with embodiment 2, the main improvement of the present embodiment is without connector 105, bottleneck is provided with the second external screw thread, and the first screw-internal thread fit of the second external screw thread and regulating part 103 uses.
For concise and to the point description, the not mentioned part of the present embodiment part, can corresponding contents in reference example 2.
As shown in Figure 4, the one scalable inhalation device that the present embodiment provides comprises oxygen uptake bottle, connection tube 102, Oxygen tube 104, nasal obstruction 106 and regulating part 103.
The structure of the regulating part 103 of the present embodiment is identical with the structure of the regulating part 103 of embodiment 2, can consult shown in Fig. 3, regulating part 103 is provided with the first cylindrical drum of the first end cap for one end, first end cap offers the first through hole passed for Oxygen tube 104, and the inwall of the first cylindrical drum is provided with the first female thread; First cylindrical drum inside is provided with the second cylindrical drum for compressing block wing 107, and one end of the second cylindrical drum is connected with the first through hole, and the internal diameter of the second cylindrical drum is greater than the external diameter of siphunculus.
As shown in Figure 4, the bottleneck of oxygen supply bottle 200 is provided with the first external screw thread, and the first external screw thread and the first female thread match.
First female thread of the first cylindrical drum inwall and the first external screw thread of bottleneck are with the use of mainly playing two aspects, and one is be connected with oxygen supply bottle 200 by regulating part 103, and two is the keyings by rotating regulating part 103 motor control spool 101 up or down.Because working as rotation first cylindrical drum, first cylindrical drum can move up or down relative to spool 101, the inside of the first cylindrical drum is provided with the second cylindrical drum for compressing block wing 107 again, when making it move downwardly to certain position by rotation first cylinder, block wing 107 moves down under the effect that compresses of the second cylindrical drum, the spool 101 being connected to connection tube 102 is opened and releasing oxygen, when made by rotation first cylinder its move up certain position time, second cylinder moves up thereupon and makes it remove to compress effect to block wing 107, the spool 101 being connected to connection tube 102 is made to close and stop releasing oxygen.
The object of such setting is can realize lasting oxygen uptake without the need to pinning connection tube 102 always, facilitate oxygen therapic patient to control the keying of spool 101, facilitate oxygen uptake, and structure is simple, convenient manufacture.
The foregoing is only preferred embodiment of the present utility model, be not limited to this utility model, for a person skilled in the art, this utility model can have various modifications and variations.All within spirit of the present utility model and principle, any amendment done, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (8)

1. one scalable inhalation device, is characterized in that, comprise oxygen supply bottle, connection tube and Oxygen tube;
Described oxygen supply bottle is provided with spool;
Described connection tube comprises siphunculus and block wing, and described block wing is fixedly installed on the outer wall of described siphunculus, and one end of described siphunculus is connected with described Oxygen tube, and the other end of described siphunculus is connected with described spool.
2. one scalable inhalation device according to claim 1, is characterized in that, described one scalable inhalation device also comprises the regulating part for controlling the keying of described spool by compressing described block wing.
3. one scalable inhalation device according to claim 2, it is characterized in that, described regulating part is the first cylindrical drum that one end is provided with the first end cap, and described first end cap offers the first through hole passed for described Oxygen tube, and the inwall of described first cylindrical drum is provided with the first female thread;
Described first cylindrical drum inside is provided with the second cylindrical drum for compressing described block wing, and one end of described second cylindrical drum is connected with described first through hole, and the internal diameter of described second cylindrical drum is greater than the external diameter of described siphunculus;
The bottleneck of described oxygen supply bottle is provided with the first external screw thread, and described first external screw thread and described first female thread match.
4. one scalable inhalation device according to claim 2, it is characterized in that, also comprise connector, described connector comprises three cylindrical cylinder and is provided with the 4th cylindrical drum of the second end cap, described second end cap is provided with the second through hole, described three cylindrical cylinder is positioned on described second end cap, and be connected with described second through hole, the outer wall of described three cylindrical cylinder is provided with the second external screw thread, described three cylindrical jacket casing is located at outside described connection tube, and described 4th cylindrical drum is fixedly connected with described oxygen cylinder;
Described regulating part is the first cylindrical drum that one end is provided with end cap, and described end cap offers the first through hole passed for described Oxygen tube, and the inwall of described first cylindrical drum is provided with the first female thread, and described first female thread and described second external screw thread match;
Described first cylindrical drum inside is provided with the second cylindrical drum blocking described block wing, and one end of described second cylindrical drum is connected with described first through hole, and the internal diameter of described second cylindrical drum is greater than the external diameter of described siphunculus.
5. the one scalable inhalation device according to claim 3 or 4, it is characterized in that, described regulating part also comprises enclosing cover, described enclosing cover is the 5th cylindrical drum with the 3rd end cap, the outer wall of described 5th cylindrical drum is provided with anti-skidding ripple, described 5th cylindrical drum is sheathed on described first cylindrical drum, and described first end cap and described 3rd end cap are positioned at same plane.
6. one scalable inhalation device according to claim 4, it is characterized in that, described Oxygen tube is connected with nasal obstruction away from one end of described connection tube.
7. one scalable inhalation device according to claim 5, is characterized in that, described nasal obstruction is provided with at least one through hole be connected with outside air.
8. one scalable inhalation device according to claim 6, is characterized in that, described block wing is circular slab.
CN201520469918.0U 2015-07-01 2015-07-01 One scalable inhalation device Expired - Fee Related CN204723549U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108704212A (en) * 2018-06-25 2018-10-26 冯荏淇 A kind of gas-guide tube
CN109821122A (en) * 2019-03-12 2019-05-31 上海万亘实业有限公司 A kind of inhalation device convenient to use

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108704212A (en) * 2018-06-25 2018-10-26 冯荏淇 A kind of gas-guide tube
CN109821122A (en) * 2019-03-12 2019-05-31 上海万亘实业有限公司 A kind of inhalation device convenient to use

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Granted publication date: 20151028

Termination date: 20190701