Medical atomizer with through hole trachea cannula
Technical Field
The utility model belongs to the technical field of atomizers, and particularly relates to a medical atomizer with a through hole trachea cannula.
Background
Compared with the traditional means for treating respiratory diseases such as asthma by taking medicines, the medical atomizer atomizes the liquid medicine into tiny particles, and the medicines enter the respiratory tract and the lung for deposition in a respiratory inhalation mode, so that painless, rapid and effective treatment is achieved, and the device belongs to two types of medical devices.
The atomizer of the prior medical tracheal cannula with the through hole is used, because the inside of an atomizer pipeline contains a large amount of water vapor, a patient can feel suffocated due to the fact that the water vapor inside the atomizer pipeline is too much when the atomizer pipeline is used for a long time, and the water vapor is easy to flow back to the respiratory tract of the patient when the patient breathes, so that the patient can feel suffocated.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a medical atomizer with a tracheal cannula with a through hole, which aims to solve the problems that when the existing atomizer with the tracheal cannula with the through hole in the background art is used, because a large amount of water vapor is contained in an atomizer pipeline, a patient uses too much water vapor in the atomizer pipeline for a long time, and the water vapor is easy to flow back to the respiratory tract of the patient when the patient breathes, so that the patient is suffocated.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a medical atomizer of taking through-hole trachea cannula, includes the atomizer main part, one side swing joint of atomizer main part has the respiratory tube, the middle part swing joint of respiratory tube has first connecting pipe, the bottom swing joint of first connecting pipe has first breathing piece, the top fixedly connected with atomizer main part of first connecting pipe, respiratory tube opposite side top fixedly connected with second connecting pipe, the bottom swing joint of second connecting pipe has the second to breathe the piece, the top fixedly connected with conveying pipe of second connecting pipe, the outer wall swing joint of conveying pipe has the sponge.
Preferably, one side swing joint of atomizer main part has the anti-overflow gasket, the opposite side swing joint of anti-overflow gasket has the respiratory tube, one side top swing joint of respiratory tube has the torsional spring, one side swing joint of torsional spring has the movable rod, one side bottom fixedly connected with fixture block of movable rod, the top fixedly connected with pull ring of fixture block.
Preferably, the outer wall swing joint of sponge has solid fixed ring, the thread groove has been seted up to the outer wall of sponge, gu the outer wall of fixed ring is laminated with the outer wall of conveying pipe each other.
Preferably, circular holes are formed in the anti-overflow gasket, and the outer wall of the breathing tube is attached to the outer wall of the circular holes.
Preferably, the outer wall of the second connecting pipe is fixedly and movably connected with a connecting frame, and the outer wall of the connecting frame is mutually attached to the outer wall of the second connecting pipe.
Preferably, the cross-sectional shape of the breathing tube is rectangular, and the length of the breathing tube is half of the length of the nebulizer body.
Preferably, the sectional shape of the fixture block is rectangular, and the outer wall of the fixture block is attached to the outer wall of the atomizer main body.
Compared with the prior art, the utility model has the beneficial effects that:
1. through the intubate of design, first breathing piece, first connecting pipe, the second breathing piece, the second connecting pipe, the conveying pipe, gu fixed ring, the sponge, when first breathing piece begins the activity, inhale patient's inside the medicine of first connecting pipe this moment, then when patient begins expiration, support the outer wall at first connecting pipe to first breathing piece this moment, just so can not be with the inside of exhaling in spreading into the atomizer main part, so in order to better let the medicine flow into patient's health, the effectual inside that the gas that patient looked into the atomizer main part of having solved, make the problem that patient's state of an illness worsens.
2. Through the anti-overflow gasket of design, torsional spring, movable rod, fixture block, pull ring, pulling pull ring this moment, the pull ring drives the movable rod and begins to rotate, when the movable rod begins to rotate, drive the torsional spring and begin to rotate this moment, then begin to take place to warp when the torsional spring receives pressure, be so for better the outer wall of intubate joint in the atomizer main part, the effectual atomizer main part of having solved can't remove when carrying out work to make the problem that patient's difficult degree increases.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic cross-sectional view of a first respirator of the present invention;
FIG. 3 is a schematic cross-sectional view of the cannula of the present invention;
fig. 4 is an enlarged schematic view of the structure at a in fig. 3 according to the present invention.
In the figure: 1. an atomizer body; 2. a breathing tube; 3. a first respiratory patch; 4. a first connecting pipe; 5. a second respiratory patch; 6. a second connecting pipe; 7. a transfer tube; 8. a fixing ring; 9. a sponge; 10. an anti-overflow gasket; 11. a torsion spring; 12. a movable rod; 13. a clamping block; 14. and (4) a pull ring.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: the utility model provides a medical atomizer of taking through-hole trachea cannula, including atomizer main part 1, one side swing joint of atomizer main part 1 has respiratory tube 2, the middle part swing joint of respiratory tube 2 has first connecting pipe 4, the bottom swing joint of first connecting pipe 4 has first breathing piece 3, the top fixedly connected with atomizer main part 1 of first connecting pipe 4, 2 opposite side top fixedly connected with second connecting pipes 6 of respiratory tube, the bottom swing joint of second connecting pipe 6 has the second breathing piece 5, the top fixedly connected with conveying pipe 7 of second connecting pipe 6, the outer wall swing joint of conveying pipe 7 has sponge 9.
In the embodiment, firstly, when the nebulizer body 1 needs to be used, the breathing tube 2 is inserted into the trachea of a patient needing treatment, then the nebulizer body 1 is opened, and at this time, the medicine inside the nebulizer body 1 penetrates into the first connecting tube 4 through the inside of the nebulizer body 1, then when the patient starts to inhale, the first breathing sheet 3 is driven to start moving, when the first breathing sheet 3 starts to move, the medicine inside the first connecting tube 4 is inhaled into the patient, and when the patient starts to exhale, the first breathing sheet 3 is abutted against the outer wall of the first connecting tube 4, so that the exhaled air cannot be introduced into the inside of the nebulizer body 1, and then when the second breathing sheet 5 is breathed, the second breathing sheet 5 is opened, the gas is delivered from the inside of the second connecting pipe 6, then the gas is delivered to the inside of the conveying pipe 7 through the inside of the second connecting pipe 6, then the gas is purified and discharged through the inside of the sponge 9 in the inside of the conveying pipe 7, so that the gas does not flow back, and the practicability of the atomizer body 1 is also improved.
Specifically, one side swing joint of atomizer main part 1 has anti-overflow gasket 10, and the opposite side swing joint of anti-overflow gasket 10 has respiratory tube 2, and one side top swing joint of respiratory tube 2 has torsional spring 11, and one side swing joint of torsional spring 11 has movable rod 12, one side bottom fixedly connected with fixture block 13 of movable rod 12 the top fixedly connected with pull ring 14 of fixture block 13.
In this embodiment, the anti-overflow gasket 10 is first placed on the other side of the nebulizer body 1, then the breathing tube 2 is placed on the other side of the nebulizer body 1, and at this time, the pull ring 14 is pulled, and the pull ring 14 drives the movable rod 12 to start rotating, when the movable rod 12 starts to rotate, the torsion spring 11 is driven to rotate, and when the torsion spring 11 is stressed, the torsion spring begins to deform, so that the movable rod 12 is opened, then the breathing tube 2 is attached to the other side of the atomizer main body 1, then the pull ring 14 is loosened, the pressure on the torsion spring 11 disappears at the moment, the clamping block 13 is firmly clamped on the other side of the atomizer main body 1, thus the breathing tube 2 can be rapidly disassembled, but also the atomizer main body 1 can move when in use, thereby effectively increasing the use efficiency of the atomizer main body 1 and relieving the pain of patients when using the atomizer main body 1.
Specifically, the outer wall swing joint of sponge 9 has solid fixed ring 8, and the thread groove has been seted up to the outer wall of sponge 9, and solid fixed ring 8's outer wall and the outer wall of conveying pipe 7 are laminated each other.
In this embodiment, the outer wall swing joint of sponge 9 has solid fixed ring 8 to be better fix sponge 9 at the outer wall of conveying pipe 7, let sponge 9 can be better after using change for staff's work efficiency.
Specifically, circular holes are formed in the anti-overflow gasket 10, and the outer wall of the breathing tube 2 is attached to the outer wall of the circular holes.
In this embodiment, the circular hole is opened inside the anti-overflow pad 10 to better let the medicine flow into the breathing tube 2 through the inside of the anti-overflow pad 10, so that the medicine is not easy to overflow when in use.
Specifically, the outer wall of the second connecting pipe 6 is fixedly and movably connected with a connecting frame, and the outer wall of the connecting frame is mutually attached to the outer wall of the second connecting pipe 6.
In this embodiment, the outer wall fixed swing joint of second connecting pipe 6 has the connection frame to be in order better to fix second connecting pipe 6 at the outer wall of breathing pipe 2, lets second connecting pipe 6 be difficult for taking place to drop when carrying out work.
Specifically, the cross-sectional shape of the breathing tube 2 is rectangular, and the length of the breathing tube 2 is half of the length of the nebulizer body 1.
In this embodiment, the rectangular cross-section of the breathing tube 2 is designed to better fit the wound of the patient, so that the patient can better relieve pain during treatment.
Specifically, the sectional shape of the latch 13 is rectangular, and the outer wall of the latch 13 is attached to the outer wall of the nebulizer body 1.
In this embodiment, the sectional shape of the clamping block 13 is rectangular, so that the breathing tube 2 can be better clamped on the outer wall of the atomizer main body 1, and the breathing tube 2 is not easy to fall off when working.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.