CN216496919U - Be applied to trachea and open patient's tracheal cannula and seal a tub cap - Google Patents
Be applied to trachea and open patient's tracheal cannula and seal a tub cap Download PDFInfo
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- CN216496919U CN216496919U CN202023087947.0U CN202023087947U CN216496919U CN 216496919 U CN216496919 U CN 216496919U CN 202023087947 U CN202023087947 U CN 202023087947U CN 216496919 U CN216496919 U CN 216496919U
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- pipe
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- sleeve
- oxygen therapy
- oxygen
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Abstract
The utility model discloses a tracheal cannula sealing cap applied to a tracheotomy patient, which comprises a cannula, an oxygen catheter and a flow velocity clamp; the two opposite ends of the pipe sleeve are respectively provided with a pipe orifice and a delivery port, and the pipe orifice is communicated with the delivery port; the oxygen conveying pipe is arranged outside the pipe sleeve and is communicated with the conveying port; the flow velocity clamp is sleeved outside the oxygen therapy tube and used for adjusting the flux of the oxygen therapy tube; therefore, when the tracheal tube sealing device is applied, one end of the tube sleeve, which is provided with the tube orifice, can be sleeved outside a clinical common tracheotomy tube sleeve, so that the tracheotomy tube sleeve is sealed, the tube is gradually sealed by adjusting the flow velocity clamp, and the dilemma existing in the prior art is practically solved.
Description
Technical Field
The utility model relates to the field of medical treatment, in particular to a tracheal cannula sealing cap applied to a tracheotomy patient.
Background
Tracheotomy is an emergency and effective treatment means for rescuing patients with critical illness from unsmooth breathing. The standard and effective trachea sealing technology is the key for reducing the incidence rate of respiratory tract infection, improving the success rate of drawing the trachea in the future and reducing the hospitalization date of patients.
Silica gel, the metal autogenous cutting sleeve pipe of present market producer production all do not have supporting tube sealing equipment, and clinical many choices are with transparent film dressing, heparin tube plug, aseptic gauze etc. as sealing, stifled pipe material, find the existence problem has in the use: the device is complex to manufacture, easy to fall off, not in line with the requirements of disinfection and isolation, easy to cause secondary infection, mostly directly inserted into the trachea, low in comfort level, easy to cause the patient to choke or fall into the cannula to cause the invalidation of pipe blockage, and free of the requirement that the regulator cannot gradually seal the pipe.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a tracheal cannula sealing cap applied to a tracheotomy patient, which aims to solve the problem that the prior art cannot realize gradual tracheal sealing.
In order to solve the technical problem, the utility model provides a tracheal cannula sealing cap applied to a tracheotomy patient, which comprises a cannula, an oxygen catheter and a flow velocity clamp; the two opposite ends of the pipe sleeve are respectively provided with a pipe orifice and a conveying port, and the pipe orifice is communicated with the conveying port; the oxygen conveying pipe is arranged outside the pipe sleeve and is communicated with the conveying port; the flow rate clamp is sleeved outside the oxygen therapy tube and used for adjusting the flux of the oxygen therapy tube.
In one embodiment, the tube sleeve is transparent or translucent.
In one embodiment, the flow rate clip comprises a jacket and an adjustment switch; the jacket is sleeved outside the oxygen therapy pipe, a guide straight groove is arranged on the jacket, and the oxygen therapy pipe is exposed in the guide straight groove; the adjusting switch is movably arranged in the guide straight groove, the moving path of the adjusting switch is consistent with the arrangement path of the guide straight groove, and the adjusting switch is abutted against the oxygen therapy tube to adjust the flux of the oxygen therapy tube.
In one embodiment, the jacket is further provided with an indicating scale which is arranged along the extended path of the guide straight groove.
In one embodiment, the sleeve is a flexible hose sleeve.
The utility model has the following beneficial effects:
the two opposite ends of the pipe sleeve are respectively provided with the pipe orifice and the delivery port, and the pipe orifice is communicated with the delivery port, so that when the oxygen catheter is applied, one end, provided with the pipe orifice, of the pipe sleeve is sleeved outside a tracheotomy sleeve commonly used in clinic, so that the tracheotomy sleeve is sealed, at the moment, the oxygen catheter is arranged outside the pipe sleeve, the oxygen catheter is communicated with the delivery port, the flow velocity jacket is arranged outside the oxygen catheter, and the flow velocity clamp is used for adjusting the flow rate of the oxygen catheter, so that the gradual pipe sealing can be realized by adjusting the flow velocity clamp, and the dilemma in the prior art is practically solved.
Drawings
In order to more clearly illustrate the technical solution of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural view provided by a preferred embodiment of the present invention.
The reference numbers are as follows:
10. pipe sleeve; 11. a pipe orifice; 12. a delivery port;
20. an oxygen delivery tube;
30. a flow rate clamp; 31. a jacket; 32. an adjustment switch; 33. a guide straight groove; 34. indicating the scale.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
The utility model provides a tracheal tube sealing cap applied to a tracheotomy patient tracheal tube, which is shown in figure 1 and comprises a tracheal tube 10, an oxygen catheter 20 and a flow velocity clamp 30; the opposite two ends of the pipe sleeve 10 are respectively provided with a pipe orifice 11 and a delivery port 12, and the pipe orifice 11 is communicated with the delivery port 12; the oxygen therapy pipe 20 is arranged outside the pipe sleeve 10, and the oxygen therapy pipe 20 is communicated with the conveying port 12; the flow rate clamp 30 is sleeved outside the oxygen therapy tube 20, and the flow rate clamp 30 is used for adjusting the flow rate of the oxygen therapy tube 20.
When the tracheal tube sealing device is applied, one end, provided with the tube orifice 11, of the tube sleeve 10 can be sleeved outside a common clinical tracheotomy tube sleeve, so that the tracheotomy tube sleeve is sealed, the tube can be gradually sealed by adjusting the flow velocity clamp 30, and the dilemma of the prior art is practically solved.
As shown in fig. 1, the flow rate clip 30 of this embodiment includes a jacket 31 and an adjustment switch 32; the jacket 31 is sleeved outside the oxygen therapy tube 20, a guide straight groove 33 is arranged on the jacket 31, and the oxygen therapy tube 20 is exposed in the guide straight groove 33; the adjusting switch 32 is movably installed in the guide straight groove 33, the moving path of the adjusting switch 32 is consistent with the arrangement path of the guide straight groove 33, and the adjusting switch 32 is abutted with the oxygen therapy pipe 20 to adjust the flux of the oxygen therapy pipe 20.
At this time, the adjusting switch 32 can move in the guiding straight slot 33, and when the adjusting switch 32 moves to the top, the adjusting switch 32 completely cuts off the conduction of the oxygen therapy tube 20 by pressing the oxygen therapy tube 20; when the adjusting switch 32 moves downwards, the degree of the oxygen therapy tube 20 pressed by the adjusting switch 32 is gradually reduced, thereby realizing the flow rate adjustment of the oxygen therapy tube 20.
As shown in fig. 1, in order to facilitate the medical staff to know the flow rate adjustment of the oxygen therapy tube 20, the jacket 31 of this embodiment is further provided with an indication scale 34, and the indication scale 34 is arranged along the extended path of the guide straight groove 33, so that the medical staff can directly know that the adjustment switch 32 has moved to the required position.
In addition, in order to ensure that the tube sleeve 10 can be tightly sleeved outside the tracheotomy tube, the tube sleeve 10 is an elastic soft rubber tube sleeve 10, namely, the tube sleeve 10 can be sleeved outside the tracheotomy tube in a self-adaptive manner, so that the sealing performance between the tube sleeve 10 and the tracheotomy tube is ensured.
The foregoing is a preferred embodiment of the present invention, and it should be noted that modifications and embellishments could be made by those skilled in the art without departing from the principle of the present invention, and these modifications and embellishments are also regarded as the scope of the present invention.
Claims (5)
1. A tracheal cannula sealing cap applied to a tracheotomy patient, which is characterized in that,
comprises a pipe sleeve, an oxygen conveying pipe and a flow velocity clamp;
the two opposite ends of the pipe sleeve are respectively provided with a pipe orifice and a conveying port, and the pipe orifice is communicated with the conveying port;
the oxygen conveying pipe is arranged outside the pipe sleeve and is communicated with the conveying port;
the flow rate clamp is sleeved outside the oxygen therapy tube and used for adjusting the flux of the oxygen therapy tube.
2. The tracheal sealing cap of claim 1 applied to a tracheotomy patient, wherein the cuff is transparent or translucent.
3. The tracheal sealing cap for tracheotomy patient according to claim 1,
the flow rate clamp comprises a clamp sleeve and an adjusting switch;
the jacket is sleeved outside the oxygen therapy pipe, a guide straight groove is arranged on the jacket, and the oxygen therapy pipe is exposed in the guide straight groove;
the adjusting switch is movably arranged in the guide straight groove, the moving path of the adjusting switch is consistent with the arrangement path of the guide straight groove, and the adjusting switch is abutted against the oxygen therapy tube to adjust the flux of the oxygen therapy tube.
4. The tracheal sealing cap for tracheotomy patients as claimed in claim 3, wherein said clip is further provided with indication marks, and said indication marks are arranged along the extended path of said guide straight groove.
5. The tracheal sealing cap for tracheotomy patients according to claim 1, wherein the cannula is a flexible soft gel cannula.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023087947.0U CN216496919U (en) | 2020-12-18 | 2020-12-18 | Be applied to trachea and open patient's tracheal cannula and seal a tub cap |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023087947.0U CN216496919U (en) | 2020-12-18 | 2020-12-18 | Be applied to trachea and open patient's tracheal cannula and seal a tub cap |
Publications (1)
Publication Number | Publication Date |
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CN216496919U true CN216496919U (en) | 2022-05-13 |
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Family Applications (1)
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CN202023087947.0U Active CN216496919U (en) | 2020-12-18 | 2020-12-18 | Be applied to trachea and open patient's tracheal cannula and seal a tub cap |
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2020
- 2020-12-18 CN CN202023087947.0U patent/CN216496919U/en active Active
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