CN210472973U - Breathe internal medicine with breathing training ware - Google Patents
Breathe internal medicine with breathing training ware Download PDFInfo
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- CN210472973U CN210472973U CN201921271329.6U CN201921271329U CN210472973U CN 210472973 U CN210472973 U CN 210472973U CN 201921271329 U CN201921271329 U CN 201921271329U CN 210472973 U CN210472973 U CN 210472973U
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- gas cylinder
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Abstract
The utility model discloses a respiration training device for respiration medicine, which comprises three transparent gas cylinders arranged in parallel, wherein the top and the bottom of each transparent gas cylinder are respectively provided with a floating ball seat with an arc surface and a gas hole penetrating through the floating ball seat and the transparent gas cylinder; the transparent gas cylinders are all communicated with the L-shaped gas cylinder, and the L-shaped gas cylinder is positioned above the transparent gas cylinder; the left end of the L-shaped gas cylinder is communicated with an air tap through a hose; at least two support rods are fixed on the floating ball seats of the transparent gas cylinder at the rightmost end; a lower supporting leg is fixed below the transparent gas cylinder, an upper supporting leg is fixed above the transparent gas cylinder, and floating balls are mounted in the transparent gas cylinder. The utility model discloses simple structure, convenient to use can breathe in or the measurement and the exercise of exhaling as required, has prevented simultaneously that the gas circuit from blockking up the sudden increase of the pressure of lung that causes suddenly, and when having guaranteed to exhale and the exercise of breathing in, can not because the gas tightness problem appears in the pulling force.
Description
Technical Field
This patent belongs to machinery, especially relates to a breathe internal medicine with breathing training ware.
Background
Breathe internal medicine often can adopt the breathing training ware to breathe the training to the patient, and current breathing training ware is provided with three cavity usually, installs a floater in the cavity respectively, makes the floater suspension through blowing or breathing in, if three floater all suspends then proves breathing dynamics is qualified, otherwise explains nonconformity, needs to continue to breathe the training. But its problem that exists lies in, can block up all gas pockets when three floater all suspend, leads to the air flue no longer to ventilate, and the people is inhaling vigorously or exhaling at this moment, blocks up the gas circuit suddenly, can lead to the human lung burden to aggravate suddenly, causes the damage to patient.
In addition, the hose clamp of the existing breathing exercise machine is usually arranged on the top, so that the existing breathing exercise machine cannot be inverted, and the inverted breathing exercise machine can only carry out the detection and the exercise of inspiration or expiration.
Finally, the air cock of present breathing training ware is bayonet, and during the use, the effort is breathed, and body posture changes, and it leads to inserting the sealed not tight of department to remove the air cock very easily, leads to leaking gas for the test is inaccurate. And the bolt is used for connection, so that the bolt is easy to be screwed too tightly and is not easy to disassemble and assemble.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model discloses a breathe internal medicine with breathing training ware. The utility model discloses simple structure, convenient to use can breathe in or the measurement and the exercise of exhaling as required, has prevented simultaneously that the gas circuit from blockking up the sudden increase of the pressure of lung that causes suddenly, and when having guaranteed to exhale and the exercise of breathing in, can not because the gas tightness problem appears in the pulling force.
In order to achieve the above purpose, the technical scheme of the utility model is that:
a respiration training device for a respiration medicine comprises three transparent gas cylinders which are arranged in parallel, wherein the top and the bottom of each transparent gas cylinder are respectively provided with a floating ball seat with an arc-shaped surface and a gas hole which penetrates through the floating ball seat and the transparent gas cylinder; the transparent gas cylinders are all communicated with the L-shaped gas cylinder, and the L-shaped gas cylinder is positioned above the transparent gas cylinder; the left end of the L-shaped gas cylinder is communicated with an air tap through a hose; at least two support rods are fixed on the floating ball seats of the transparent gas cylinder at the rightmost end; a lower supporting leg is fixed below the transparent gas cylinder, an upper supporting leg is fixed above the transparent gas cylinder, and floating balls are mounted in the transparent gas cylinder.
In a further improvement, the hose is connected with a first connecting assembly, and the air nozzle is connected with a second connecting assembly; the first connecting assembly comprises a cylindrical barrel communicated with the hose, L-shaped clamping plates which are oppositely arranged are fixed in the barrel, the bottom of the barrel is provided with a top plate through a spring connector, and a through hole matched with the air tap is formed in the top plate; the bulges at the two sides of the air tap are provided with transverse blocks, and the outer ends of the transverse blocks are connected with vertical blocks; an interval matched with the transverse block is formed between the two L-shaped clamping plates.
In a further improvement, the hose is a corrugated tube.
In a further improvement, the end part of the corrugated pipe is connected with a pipe orifice, and the middle part of the leftmost transparent gas cylinder is connected with a C-shaped clamping ring matched with the pipe orifice.
In a further improvement, the floating balls are sequentially weighted from left to right.
In a further improvement, an air cover is fixed on the outer wall of the air tap.
The utility model has the advantages that:
1. measurements and exercises of inspiration or expiration may be performed as desired.
2. The sudden increase of the lung pressure caused by the sudden blockage of the air passage is prevented.
3. And when the exhalation and inhalation exercises are carried out, the problem of air tightness caused by pulling force is avoided.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic structural diagram of a first connecting assembly;
FIG. 3 is a schematic view of the structure of the air faucet;
FIG. 4 is a top view of the C-shaped retainer ring.
Detailed Description
The present invention will be further explained with reference to the drawings and the embodiments.
Examples
The respiration training device for the respiratory medicine shown in fig. 1-4 has the same structure as the existing respiration training device, three transparent gas cylinders 1 are arranged in parallel, floating balls 12 are arranged in the transparent gas cylinders 1, but in order to facilitate inspiration exercise and expiration exercise, the top and the bottom of the transparent gas cylinders 1 are respectively provided with a floating ball seat 2 with an arc surface and an air hole 3 penetrating through the floating ball seat 2 and the transparent gas cylinders 1; the three transparent gas cylinders 1 are communicated with an L-shaped gas cylinder 4. The L-shaped gas cylinder 4 is positioned above the transparent gas cylinder 1; the left lower end of the L-shaped gas cylinder 4 is communicated with a gas nozzle 6 through a hose 5. The floating ball 12 is weighted from left to right in sequence.
In order to prevent the air holes 3 from being suddenly and completely blocked when the air is sucked or blown, so that the pressure of the lung is suddenly increased to cause lung injury, at least two supporting rods 7 are fixed on the floating ball seat 2 of the transparent air bottle 1 at the rightmost end. Therefore, even if the third floating ball is also blown, the floating ball floats to the corresponding air hole 3, and the air path can not be blocked due to the existence of the supporting rod 7, so that the burden of the lung is suddenly increased when the air path is blocked.
For training and testing of inspiration or expiration to be useful,
a lower supporting leg 8 is fixed below the transparent gas cylinder 1, an upper supporting leg 9 is fixed above the transparent gas cylinder 1, and a C-shaped clamping ring 11 matched with a pipe orifice 10 of the hose is connected to the middle of the leftmost transparent gas cylinder 1. So that the hose is normally prevented from being on the side of the breathing exercise machine. When needing to inhale the exercise, L form gas cylinder 4 is in the top, and patient breathes in after exhaling and bites air cock 6 and can train and test. When the expiration exercise is carried out, the breathing trainer is inverted, the L-shaped gas cylinder 4 is positioned below, and the patient bites the gas nozzle 6 after inspiration to exhale, so that the expiration exercise and the test can be carried out.
In order to facilitate the quick assembly and disassembly of the hose 5 and the air faucet 6, the air faucet can not fall off and loosen due to the pulling force, and the following improvements are carried out:
the hose 5 is connected with a first connecting assembly, and the air tap 6 is connected with a second connecting assembly; the first connecting component comprises a cylindrical barrel 51 communicated with the hose 5, an L-shaped clamping plate 52 which is oppositely arranged is fixed in the barrel 51, the bottom of the barrel 51 is connected with a top plate 54 through a spring 53, and a through hole 55 matched with the air tap 6 is formed in the top plate 54; the two sides of the air tap 6 are convexly provided with transverse blocks 61, and the outer ends of the transverse blocks 61 are connected with vertical blocks 62; the two L-shaped catch plates 52 form a space 56 therebetween that cooperates with the cross piece 61.
The air tap 6 is connected with the hose 5 in such a way that the transverse block 61 penetrates through the interval 56 to press the top plate 54 downwards, then the transverse block is rotated by 90 degrees to release the hand, namely the vertical block 62 is clamped into the L-shaped clamping plate 52 to realize fixation under the thrust of the spring, and when the air tap needs to be disassembled, the reverse operation is performed. So when making to breathe the exercise, the pulling air cock can not lead to air cock and hose to appear removing and lead to not hard up gas leakage yet, and the dismouting is convenient fast simultaneously.
The hose 5 is preferably a bellows, so that telescoping is possible. The end of the bellows is connected to a nozzle 10. An air cover 63 is fixed on the outer wall of the air tap 6.
While the embodiments of the invention have been disclosed above, it is not limited to the applications set forth in the description and embodiments, but is capable of being applied in all kinds of fields adapted to the invention, and further modifications may readily be made by those skilled in the art, and the invention is therefore not limited to the details shown and described herein, without departing from the general concept defined by the claims and their equivalents.
Claims (6)
1. A respiration training device for a respiration medicine comprises three transparent gas cylinders (1) which are arranged in parallel, wherein the top and the bottom of each transparent gas cylinder (1) are respectively provided with a floating ball seat (2) with an arc surface and a gas hole (3) which penetrates through the floating ball seat (2) and the transparent gas cylinder (1); the transparent gas cylinders (1) are communicated with the L-shaped gas cylinders (4), and the L-shaped gas cylinders (4) are positioned above the transparent gas cylinders (1); the left end of the L-shaped gas cylinder (4) is communicated with an air tap (6) through a hose (5); it is characterized in that at least two support rods (7) are fixed on the floating ball seats (2) in the transparent gas cylinder (1) at the rightmost end; a lower supporting leg (8) is fixed below the transparent gas cylinder (1), an upper supporting leg (9) is fixed above the transparent gas cylinder, and floating balls (12) are mounted in the transparent gas cylinder (1).
2. The respiration training machine for department of respiration as claimed in claim 1, wherein a first connecting assembly is connected to the hose (5), and a second connecting assembly is connected to the air nozzle (6); the first connecting assembly comprises a cylindrical barrel (51) communicated with the hose (5), L-shaped clamping plates (52) which are oppositely arranged are fixed in the barrel (51), the bottom of the barrel (51) is provided with a top plate (54) through a spring (53) connecting body, and the top plate (54) is provided with a through hole (55) matched with the air tap (6); the two sides of the air tap (6) are convexly provided with transverse blocks (61), and the outer ends of the transverse blocks (61) are connected with vertical blocks (62); a space (56) matched with the cross block (61) is formed between the two L-shaped clamping plates (52).
3. Breathing training device for the department of respiration as claimed in claim 1, characterised in that the hose (5) is a bellows.
4. The respiration training machine for department of respiration as claimed in claim 3, wherein the end of the bellows is connected with a tube orifice (10), and the middle part of the leftmost transparent gas cylinder (1) is connected with a C-shaped snap ring (11) which is matched with the tube orifice (10).
5. The respiration training machine for department of respiration as claimed in claim 1, wherein said floating ball (12) is weighted in order from left to right.
6. The respiration training machine for department of respiration as claimed in claim 1, wherein an air cover (63) is fixed to the outer wall of the air nozzle (6).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921271329.6U CN210472973U (en) | 2019-08-07 | 2019-08-07 | Breathe internal medicine with breathing training ware |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921271329.6U CN210472973U (en) | 2019-08-07 | 2019-08-07 | Breathe internal medicine with breathing training ware |
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CN210472973U true CN210472973U (en) | 2020-05-08 |
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CN201921271329.6U Expired - Fee Related CN210472973U (en) | 2019-08-07 | 2019-08-07 | Breathe internal medicine with breathing training ware |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113856166A (en) * | 2021-10-14 | 2021-12-31 | 肖潘宇 | Breathe internal medicine and breathe training ware with lung postsurgical |
-
2019
- 2019-08-07 CN CN201921271329.6U patent/CN210472973U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113856166A (en) * | 2021-10-14 | 2021-12-31 | 肖潘宇 | Breathe internal medicine and breathe training ware with lung postsurgical |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200508 Termination date: 20210807 |
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CF01 | Termination of patent right due to non-payment of annual fee |