CN220046682U - Simple transfusion communication device - Google Patents

Simple transfusion communication device Download PDF

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Publication number
CN220046682U
CN220046682U CN202321460285.8U CN202321460285U CN220046682U CN 220046682 U CN220046682 U CN 220046682U CN 202321460285 U CN202321460285 U CN 202321460285U CN 220046682 U CN220046682 U CN 220046682U
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China
Prior art keywords
connecting seat
splint
communication device
pipe
communicating pipe
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CN202321460285.8U
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Chinese (zh)
Inventor
刘丽娟
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Zhejiang University ZJU
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Zhejiang University ZJU
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Abstract

The utility model discloses a simple transfusion communication device, which comprises a connecting seat, wherein both ends of the inside of the connecting seat are provided with circular grooves, and the later inner stages of the two circular grooves are respectively connected with a vent pipe and a communicating pipe in a penetrating way, and the simple transfusion communication device further comprises: the left end the inside of circular slot all is slotted and is provided with two first splint, and the surface of two first splint all is the circular arc shape. This simple and easy infusion UNICOM device installs second splint and link, utilize the equal fixed mounting in the top both ends of connecting seat to have the link, then all be connected with the second splint through second vortex spring in the top of two links, when need carry out the centre gripping spacing to the breather pipe that does not use with communicating pipe, place breather pipe and communicating pipe extrusion in the inboard of two second splint, then two second vortex springs can carry out elastic reset to the position of two back second splint that rotate through self elasticity, the better convenience carries out spacing centre gripping to the breather pipe that does not use with communicating pipe and uses.

Description

Simple transfusion communication device
Technical Field
The utility model relates to the technical field related to medical appliances, in particular to a simple transfusion communication device.
Background
The infusion refers to a large-dose injection which is infused into the body by intravenous drip, and when in infusion, the patient can be treated and used in the later period by using the ventilation pipe and the communicating pipe which are matched and used simultaneously;
in the large transfusion communication device disclosed in the patent CN2431885Y, when the utility model is used, the occurrence of blood return and air inlet when the needle is blocked and exhausted can be avoided like the existing transfusion device. Meanwhile, the labor intensity of the medical staff for repeatedly puncturing the patient can be reduced when the medical staff exchange liquid for exhausting, the time of the medical staff is saved, and the psychological burden of the patient during transfusion is reduced. The utility model has the significance of popularization to the whole society, but when the communication device is used for transfusion, the condition of intravenous drip glass bottled medicine, such as human serum albumin, immunoglobulin, shenmai injection and the like, is frequently encountered in nursing work, the quantity of the transfusion is often more than 1 bottle, and if one bottle is connected, the work burden of nurses is increased, the risk of needle puncture is increased, and the stable transfusion of the communication device at the later stage is inconvenient to use;
therefore, we propose a simple transfusion communication device which can well solve the problems.
Disclosure of Invention
The utility model aims to provide a simple transfusion communication device, which solves the problems that in the current market provided by the background technology, in the case of intravenous drip of bottled medicaments such as human serum albumin, immunoglobulin, ginseng and wheat injection and the like, the quantity of the transfusion is usually more than 1 bottle, the workload of nurses is increased and the risk of needle puncture is increased if one bottle is connected, and the stable transfusion of the communication device in later period is inconvenient.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a simple transfusion communication device comprises a connecting seat, a vent pipe, a communication pipe, a pressing rod and a circular groove;
the connecting seat is characterized in that circular grooves are formed in two ends of the inner part of the connecting seat, the surfaces of the two circular grooves are circular, and a vent pipe and a communicating pipe are respectively connected in a penetrating manner at the later period of the inner part of the two circular grooves;
further comprises: the left end the inside of circular slot all flutes and is provided with two first splint, and the surface of two first splint all is the circular arc shape to the inboard later stage laminating of two first splint has breather pipe or communicating pipe.
Preferably, the inside both ends of connecting seat are all grooved and run through sliding connection has the push rod, and two the outer end of push rod all runs through and extends to the both ends outside of connecting seat, two the inboard of push rod all is provided with the rack, and the inboard meshing of two racks is connected with drive gear, the inside both ends of connecting seat are all grooved and are connected with drive gear through first scroll spring rotation, and two drive gear is about the vertical central line symmetry setting of connecting seat, and the outside of two drive gear all is connected with the movable rod through the rack meshing, the inside both ends of connecting seat are all grooved and are slided and are installed the movable rod, and two the structure of movable rod is equal to the inboard of two movable rods is all connected with first splint, utilizes the inside both ends of connecting seat to be connected with drive gear through first scroll spring rotation, and the outside of two drive gears all is connected with the movable rod through the rack meshing, can be convenient to carry out elastic reset to the position of shrink first splint behind the shrink movement, more convenient to carry out spacing to the position of adjusting back breather pipe or communicating pipe.
Preferably, the inner sides of the two first clamping plates are respectively connected with a first mounting pad in a fit mode, the surfaces of the two first mounting pads are respectively in an arc shape, the inner sides of the two first clamping plates are respectively connected with the first mounting pads in a fit mode, and the positions of the first clamping plates and the vent pipe or the communicating pipe can be increased through the two first mounting pads to limit.
Preferably, two connecting frames are mounted at two ends of the upper side of the connecting seat through screws, four second clamping plates are mounted above the four connecting frames through rotation, the inner sides of the four second clamping plates are provided with second mounting pads in a laminating mode, the second mounting pads are provided with the inner sides of the four second clamping plates in a laminating mode, and the position of the vent pipe or the communicating pipe after the vent pipe is not used can be conveniently limited.
Preferably, the front side winding of four second splint is connected with second vortex spring, and the outside of four second vortex springs all is connected to the inner wall of link, utilizes four the front side winding of second splint is connected with second vortex spring, and the outside of four second vortex springs all is connected to the inner wall of link, can conveniently carry out elastic reset to the position of upset back second splint through the elasticity of second vortex spring self.
Compared with the prior art, the utility model has the following beneficial effects:
(1) The simple transfusion communication device is provided with circular grooves, first clamping plates and transmission gears, the circular grooves are formed in the two ends of the inside of the connecting seat, then the first clamping plates are arranged in the two ends of the inside of the two circular grooves in a slotting mode, the positions of the ventilation pipe and the communication pipe after penetrating connection can be limited through the two first clamping plates, when the use length of the ventilation pipe and the communication pipe needs to be adjusted, the transmission gears are driven by the rack to drive the movable rod to contract and move only by pressing the pressing rod, then one end of the first clamping plates is separated from the ventilation pipe and the communication pipe, the use length of the ventilation pipe and the communication pipe can be adjusted, finally the positions of the first clamping plates after moving can be elastically reset by utilizing the elasticity of the first vortex springs, the positions of the ventilation pipe and the communication pipe after adjustment can be limited and fixed more conveniently, and transfusion can be used more conveniently in the later stage;
(2) This simple and easy infusion UNICOM device is provided with second splint and link, utilizes the equal fixed mounting in the top both ends of connecting seat to have the link, then all is connected with the second splint through second vortex spring in the top of two links, when needs carry out the centre gripping spacing to the breather pipe that does not use with communicating pipe, places breather pipe and communicating pipe extrusion in the inboard of two second splint, and then two second vortex springs can carry out elastic reset to the position of two back second splint that rotate through self elasticity, and the better convenience carries out spacing centre gripping to the breather pipe that does not use with communicating pipe and uses.
Drawings
FIG. 1 is a schematic view of the main section structure of the present utility model;
FIG. 2 is a schematic view of a connecting seat in a top-down section;
FIG. 3 is an enlarged schematic view of the structure of FIG. 2A according to the present utility model;
FIG. 4 is a schematic view of a partial main sectional structure of a connecting seat and a second clamping plate of the present utility model;
fig. 5 is a schematic view of a partial main sectional structure of a second clamping plate and a connecting frame of the present utility model.
In the figure: 1. a connecting seat; 2. a vent pipe; 3. a communicating pipe; 4. pressing a pressing rod; 5. a circular groove; 6. a first clamping plate; 7. a first mounting mat; 8. a second clamping plate; 9. a moving rod; 10. a rack; 11. a transmission gear; 12. a first scroll spring; 13. a connecting frame; 14. a second mounting mat; 15. and a second scroll spring.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, the present utility model provides a technical solution: a simple transfusion communication device comprises a connecting seat 1, a ventilation pipe 2, a communication pipe 3, a pressing rod 4, a circular groove 5, a first clamping plate 6, a first mounting pad 7, a second clamping plate 8, a moving rod 9, a rack 10, a transmission gear 11, a first vortex spring 12, a connecting frame 13, a second mounting pad 14 and a second vortex spring 15;
the connecting seat 1 is provided with circular grooves 5 at two ends of the inner part, the surfaces of the two circular grooves 5 are circular, and the inner later stages of the two circular grooves 5 are respectively connected with a vent pipe 2 and a communicating pipe 3 in a penetrating way;
further comprises: the inside of left end circular slot 5 all is grooved and is provided with two first splint 6, and the surface of two first splint 6 all is the circular arc shape to the inboard later stage laminating of two first splint 6 has breather pipe 2 or communicating pipe 3, as shown in fig. 1-3, runs through the breather pipe 2 respectively through two circular slots 5 with communicating pipe 3 and extends to the outside of connecting seat 1, can make things convenient for the infusion in later stage to use.
The two ends of the inside of the connecting seat 1 are respectively grooved and pass through the pressing rods 4 in a sliding connection manner, the outer ends of the two pressing rods 4 are respectively and respectively extended to the outer sides of the two ends of the connecting seat 1 in a penetrating manner, racks 10 are respectively arranged on the inner sides of the two pressing rods 4, transmission gears 11 are respectively connected with the inner sides of the two racks 10 in a meshed manner, the grooves of the two ends of the inside of the connecting seat 1 are respectively and rotatably connected with the transmission gears 11 through first vortex springs 12, the two transmission gears 11 are symmetrically arranged about the vertical central line of the connecting seat 1, the outer sides of the two transmission gears 11 are respectively and rotatably connected with a movable rod 9 through racks 10, the two ends of the inside of the connecting seat 1 are respectively grooved and slidably provided with the movable rods 9, the structures of the two movable rods 9 are identical, the inner sides of the two movable rods 9 are respectively connected with first clamping plates 6, the inner sides of the two first clamping plates 6 are respectively and fittingly connected with first pads 7, and the surfaces of the two first mounting pads 7 are arc-shaped, when the service lengths of the vent pipe 2 and the communicating pipe 3 are required to be regulated, the moving rod 9 which is meshed and connected below the bottom of the transmission gear 11 is driven by the rack 10 to perform shrinkage movement only by pressing the pressing rod 4, the first clamping plate 6 at one end can be driven to perform position shrinkage movement, then the service lengths of the vent pipe 2 and the communicating pipe 3 can be regulated and used, because the inner sides of the two first clamping plates 6 are respectively connected with the first mounting pads 7 in a fit manner, the friction force between the first clamping plates 6 and the vent pipe 2 and the communicating pipe 3 can be increased, finally the positions of the first clamping plates 6 after the movement can be elastically reset by utilizing the self elastic force of the first vortex spring 12, so that the positions of the vent pipe 2 and the communicating pipe 3 after the length regulation can be limited and fixed by the two first clamping plates 6, the stable use of later transfusion is more convenient.
Two link 13 are all installed to the equal screw in top both ends of connecting seat 1, and four link 13's top all rotates and installs four second splint 8, and the inboard of four second splint 8 is all laminated and is provided with second mounting pad 14, the front side winding of four second splint 8 is connected with second scroll spring 15, and the outside of four second scroll spring 15 all is connected to the inner wall of link 13, as shown in fig. 1-5, when needs are placed the breather pipe 2 that does not use or communicating pipe 3 and are used, only need to extrude breather pipe 2 or communicating pipe 3 and place in the inside of two second splint 8, then two second scroll springs 15 can conveniently carry out elastic reset to the position of two extrusion upset back second splint 8 through self elasticity, the better convenience is spacing fixed to the position of unused breather pipe 2 or communicating pipe 3, avoid the phenomenon emergence of needle stabbing.
Working principle: when the simple transfusion communication device is used, firstly, the vent pipe 2 and the communicating pipe 3 respectively penetrate through two circular grooves 5 to extend to the outer side of the connecting seat 1, then, only the pressing rod 4 is needed to be pressed to drive the moving rod 9 which is in meshed connection with the lower part of the bottom part of the transmission gear 11 through the rack 10 to perform shrinkage movement, the first clamping plate 6 at one end can be driven to perform position shrinkage movement, then the using length of the vent pipe 2 and the communicating pipe 3 can be adjusted, finally, the position of the moving first clamping plate 6 can be elastically reset by utilizing the self elastic force of the first vortex spring 12, the two first clamping plates 6 can be used for limiting and fixing the positions of the vent pipe 2 and the communicating pipe 3 after adjusting the length, then the vent pipe 2 or the communicating pipe 3 is extruded and placed in the two second clamping plates 8, then, the two second vortex springs 15 can conveniently perform elastic reset on the positions of the two second clamping plates 8 after extrusion overturning through the self elastic force, and the position of the unused vent pipe 2 or communicating pipe 3 can be conveniently limited and fixed, and the phenomenon that puncture is caused in the later stage is avoided.
Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art may modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some technical features thereof, and any modifications, equivalent substitutions, improvements and other modifications within the spirit and principles of the present utility model should be included in the scope of the present utility model.

Claims (7)

1. A simple transfusion communication device comprises a connecting seat (1), a vent pipe (2), a communicating pipe (3), a pressing rod (4) and a circular groove (5);
the connecting seat (1) is provided with circular grooves (5) at two ends in the interior, the surfaces of the two circular grooves (5) are circular, and the inner later stages of the two circular grooves (5) are respectively connected with a vent pipe (2) and a communicating pipe (3) in a penetrating way;
characterized by further comprising:
the left end the inside of circular slot (5) all flutedly is provided with two first splint (6), and the surface of two first splint (6) all is the circular arc shape to the laminating of the inboard later stage of two first splint (6) has breather pipe (2) or communicating pipe (3).
2. The simple infusion communication device of claim 1, wherein: the inside both ends of connecting seat (1) are all grooved and run through sliding connection has press pole (4), and two press the outer end of pole (4) all run through and extend to the both ends outside of connecting seat (1), two press the inboard of pole (4) all to be provided with rack (10), and the inboard meshing of two racks (10) is connected with drive gear (11).
3. The simple infusion communication device of claim 2, wherein: the connecting seat is characterized in that grooves are formed in two ends of the inside of the connecting seat (1) and are rotationally connected with transmission gears (11) through first vortex springs (12), the two transmission gears (11) are symmetrically arranged about the vertical central line of the connecting seat (1), and the outer sides of the two transmission gears (11) are connected with a moving rod (9) through racks (10) in a meshed mode.
4. A simple infusion communication device according to claim 3, wherein: the movable rod (9) is arranged at two ends of the inside of the connecting seat (1) in a slotted sliding mode, the structures of the two movable rods (9) are identical, and the inner sides of the two movable rods (9) are connected with the first clamping plate (6).
5. The simple infusion communication device of claim 4, wherein: the inner sides of the two first clamping plates (6) are respectively connected with a first mounting pad (7) in a fitting mode, and the surfaces of the two first mounting pads (7) are respectively in an arc shape.
6. The simple infusion communication device of claim 1, wherein: two connecting frames (13) are installed at the equal screw in top both ends of connecting seat (1), and four second splint (8) are all installed in the top of four connecting frames (13) all rotation to four the inboard of second splint (8) is all laminated and is provided with second mounting pad (14).
7. The simple infusion communication device of claim 6, wherein: the front sides of the four second clamping plates (8) are wound and connected with second vortex springs (15), and the outer sides of the four second vortex springs (15) are connected to the inner wall of the connecting frame (13).
CN202321460285.8U 2023-06-09 2023-06-09 Simple transfusion communication device Active CN220046682U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321460285.8U CN220046682U (en) 2023-06-09 2023-06-09 Simple transfusion communication device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321460285.8U CN220046682U (en) 2023-06-09 2023-06-09 Simple transfusion communication device

Publications (1)

Publication Number Publication Date
CN220046682U true CN220046682U (en) 2023-11-21

Family

ID=88754703

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321460285.8U Active CN220046682U (en) 2023-06-09 2023-06-09 Simple transfusion communication device

Country Status (1)

Country Link
CN (1) CN220046682U (en)

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