CN213724067U - Infusion support capable of heating infusion tube - Google Patents

Infusion support capable of heating infusion tube Download PDF

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Publication number
CN213724067U
CN213724067U CN202022467544.2U CN202022467544U CN213724067U CN 213724067 U CN213724067 U CN 213724067U CN 202022467544 U CN202022467544 U CN 202022467544U CN 213724067 U CN213724067 U CN 213724067U
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infusion
heating
wire
cavity
sliding block
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CN202022467544.2U
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Chinese (zh)
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陈颖
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Nanjing First Hospital
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Nanjing First Hospital
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Abstract

The utility model relates to a can be to infusion support that transfer line heated, including the infusion hack lever, the upper end of infusion hack lever is provided with a plurality of infusion bottle couple, wherein: the lower extreme of infusion hack lever is provided with the inserted bar head, the middle part of infusion hack lever is provided with the cavity, one side of cavity is provided with axial spout, the middle part of cavity is provided with the electrically conductive post that corresponds with spout length, the transfer line structure of heating includes upper connection post, lower spliced pole, last slider, lower slider and heat preservation pad, the positive pole line, electrically conductive post, go up the wire, the heating silk screen, lower wire and negative pole line form a conductive path, when positive pole line and negative pole line and power switch-on, the heating silk screen can heat the heat preservation pad with fixed power. The utility model has the advantages of simple structure, convenient use, no operation difficulty and suitability for the use of the masses.

Description

Infusion support capable of heating infusion tube
Technical Field
The utility model relates to the technical field of medical equipment, specific infusion support that can heat to the transfer line that says so.
Background
The infusion support is a kind of medical equipment necessary for an infusion room, is used as a support of an infusion bottle and provides a placement space and enough height for the infusion bottle.
In the infusion process, a nurse often needs to heat the infusion tube of a patient according to the needs of the patient, and even a plurality of special heaters are provided for heating and insulating the infusion tube.
The utility model relates to a have the infusion support that heats the heat preservation function to the transfer line, use this infusion support after, whether the patient can select to heat the transfer line according to self condition, easy operation can effectively improve patient's infusion satisfaction.
SUMMERY OF THE UTILITY MODEL
In view of the above, the present invention provides a transfusion stand capable of heating a transfusion tube in response to the problems of the background art.
In order to realize the technical purpose, the utility model discloses the technical scheme who takes does:
the utility model provides a can be to infusion support that transfer line heated, includes the infusion hack lever, the upper end of infusion hack lever is provided with a plurality of infusion bottle couple, wherein: the lower end of the transfusion frame rod is provided with a plug rod head which can be inserted into an external power supply seat with a power supply, a positive wire and a negative wire are arranged in the transfusion frame rod, the middle part of the transfusion frame rod is provided with a cavity, one side of the cavity is provided with an axial chute, the middle part of the cavity is provided with a conductive post corresponding to the length of the chute, the lower end of the positive wire is connected with a positive electrode contact strip arranged in the plug rod head, the upper end of the positive wire is connected with the conductive post, the transfusion frame rod is provided with a vertical through groove penetrating through the cavity at the cavity, the transfusion frame also comprises a transfusion tube heating structure, the transfusion tube heating structure comprises an upper connecting post, a lower connecting post, an upper sliding block, a lower sliding block and a heat insulation pad, the outer end of the upper connecting post is fixed at the upper part of the back surface of the heat insulation pad, the outer end of the lower connecting post is fixed at the lower part of the back surface of the heat insulation pad, the upper sliding block and the lower sliding block are both slidably mounted on the chute, the upper sliding block is provided with a friction positioning groove, the heat preservation pad is positioned outside the infusion frame rod, the inner end of the upper connecting post passes through the through groove and simultaneously passes through the friction positioning groove to be in clearance fit with the conductive post, the upper connecting post and the upper sliding block are in friction fixed fit with each other through the friction force of the upper connecting post and the friction positioning groove, the inner end of the lower connecting post passes through the through groove to be fixedly connected with the lower sliding block, when the upper connecting post is pressed by external force, the upper connecting post and the upper sliding block can slide relatively, so that the inner end of the upper connecting post is contacted with the conductive post, the heating screen is arranged in the heat preservation pad, the left end and the right end of the heat preservation pad are provided with mutually matched magic veneers, when the two magic veneers are enclosed, the infusion tube can be enclosed in the heat preservation pad, the upper connecting post is internally provided with an upper conducting wire, one end of the upper conducting wire is connected with the heating screen, the other end is connected to the inner end of the upper connecting post and forms a metal end, when the inner end of the upper connecting post is contacted with the conductive post, the metal end is contacted with the conductive column, a lower conducting wire is arranged in the lower connecting column, one end of the lower conducting wire is connected with the heating screen, the other end of the lower conducting wire is connected to the inner end of the lower connecting column and is directly connected with the upper end of the negative wire, the lower end of the negative wire is connected with a negative electrode connecting piece arranged in the insertion rod head, the positive wire, the conductive column, the upper conducting wire, the heating screen, the lower conducting wire and the negative wire form a conductive path, and when the positive wire and the negative wire are connected with a power supply, the heating screen can heat the heat preservation pad with fixed power.
In order to optimize the structural form, the specific measures adopted further comprise:
the upper connecting column is made of rubber materials, the metal end is a sheet metal plate, and the metal end is fixed at the inner end of the upper connecting column in an adhesive mode.
The lower connecting column is made of rubber materials, and the length of the upper connecting column is longer than that of the lower connecting column.
The negative wire part is positioned in the cavity, and the negative wire positioned in the cavity is bent and folded, so that the change of the distance between the inner end of the lower connecting post and the upper end of the negative wire when the infusion tube heating structure slides up and down is compensated.
The outer surfaces of the positive wire and the negative wire are coated with insulating layers.
The upper end and the lower end of the conductive column are fixedly connected with the infusion frame rod through the inner cavity support.
The insertion rod head is provided with an insertion opening, the positive electrode power connection piece and the negative electrode power connection piece are both located in the insertion opening, and a rubber friction layer used for increasing friction force is arranged on the inner surface of the insertion opening.
The heat preservation pad is provided with the indicating lamp, the indicating lamp is connected to the upper wire, and the indicating lamp is turned on when the heating wire mesh is electrified.
The indicator light is an LED light.
The heat-insulating pad is made of non-woven fiber cloth.
The utility model discloses an infusion support that can heat to transfer line, the bottom has the inserted bar head for be connected with the vertical pole of back of seat, be provided with the power socket that matches with the inserted bar head in the vertical pole of back of seat. The positive and negative conductor wires are all wired from the infusion support, the infusion support is safe and reliable, the insulation pad is arranged on the infusion support and used for wrapping the infusion tube, and after the insulation pad is electrified, the infusion tube can be heated at fixed power, so that the infusion tube is kept warm.
The utility model discloses a heat preservation pad position can be adjusted from top to bottom, and through sliding from top to bottom with last sliding block, lower sliding block on the spout, can adjust the heat preservation pad height, makes the heat preservation pad can adapt to different crowds' needs.
The utility model discloses an it is very simple to fill up break-make electricity operation to keep warm, and the switch is the last spliced pole that fills up that keeps warm, should go up spliced pole and last sliding block friction fit, simultaneously with lead electrical pillar clearance fit, press the spliced pole, go up the spliced pole and take place the friction slip with last sliding block, the last wire of going up the spliced pole with lead electrical pillar and be connected to the switch on, when needs deenergization, pull back last spliced pole once, make go up the spliced pole with lead the electrical pillar disconnection can.
The utility model discloses simple structure, convenient to use does not have the operation degree of difficulty, is fit for numerous crowds and uses.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a perspective view of FIG. 1;
FIG. 3 is a schematic front view of the insulating mat;
FIG. 4 is a schematic view of the reverse side of the thermal pad;
FIG. 5 is a side view of the insulating mat;
FIG. 6 is a schematic view of a slider;
fig. 7 is a schematic circuit diagram of a heating screen.
Wherein the reference numerals are: the infusion support rod comprises an infusion support rod 1, an infusion bottle hook 11, a rod inserting head 12, a positive wire 13, a negative wire 14, a cavity 15, a conductive column 16, a through groove 17, an inner cavity support 18, a rubber friction layer 19, an infusion tube heating structure 2, an upper connecting column 21, a lower connecting column 22, an upper sliding block 23, a friction positioning groove 23a, a lower sliding block 24, a heat insulation pad 3, a heating screen 31, a magic tape 32, a metal end 33, an indicator lamp 34 and a sliding groove 4.
Detailed Description
Embodiments of the present invention are described in further detail below with reference to the accompanying drawings.
The utility model provides a can be to infusion support that transfer line heated, includes infusion hack lever 1, and the upper end of infusion hack lever 1 is provided with a plurality of infusion bottle couple 11, wherein: the lower end of the transfusion frame pole 1 is provided with a plug pole head 12, the plug pole head 12 can be inserted into an external power supply seat with a power supply, a positive pole line 13 and a negative pole line 14 are arranged in the transfusion frame pole 1, the middle part of the transfusion frame pole 1 is provided with a cavity 15, one side of the cavity 15 is provided with an axial chute 4, the middle part of the cavity 15 is provided with a conductive post 16 corresponding to the length of the chute, the lower end of the positive pole line 13 is connected with a positive pole electric connecting piece arranged in the plug pole head 12, the upper end is connected with the conductive post 16, the transfusion frame pole 1 is provided with a vertical through groove 17 penetrating through the cavity 15 at the cavity 15, the transfusion frame also comprises a transfusion tube heating structure 2, the transfusion tube heating structure 2 comprises an upper connecting pole 21, a lower connecting pole 22, an upper sliding block 23, a lower sliding block 24 and a heat insulation pad 3, the outer, the upper sliding block 23 and the lower sliding block 24 are both slidably mounted on the sliding chute 4, the upper sliding block 23 is located above the lower sliding block 24, the upper sliding block 23 is provided with a friction positioning groove 23a, the heat insulation pad 3 is located outside the transfusion frame rod 1, the inner end of the upper connecting post 21 passes through the through groove 17 and simultaneously passes through the friction positioning groove 23a to be in clearance fit with the conductive post 16, the upper connecting post 21 and the upper sliding block 23 are in friction fixed fit through the friction force of the upper connecting post 21 and the friction positioning groove 23a, the inner end of the lower connecting post 22 passes through the through groove 17 to be fixedly connected with the lower sliding block 24, when the upper connecting post 21 is pressed by external force, the upper connecting post 21 and the upper sliding block 23 can slide relatively, so that the inner end of the upper connecting post 21 is in contact with the conductive post 16, the heating screen 31 is mounted in the heat insulation pad 3, the left end and the right end of the heat insulation pad 3 are provided with magic adhesive surfaces 32 which are mutually matched, when the two magic adhesive surfaces 32 are enclosed, the infusion tube can be wrapped in the heat preservation pad 3, an upper conducting wire is arranged in the upper connecting column 21, one end of the upper conducting wire is connected with the heating screen 31, the other end of the upper conducting wire is connected to the inner end of the upper connecting column 21 and forms a metal end head 33, when the inner end of the upper connecting column 21 is in contact with the conductive column 16, the metal end head 33 is in contact with the conductive column 16, a lower conducting wire is arranged in the lower connecting column 22, one end of the lower conducting wire is connected with the heating screen 31, the other end of the lower conducting wire is connected to the inner end of the lower connecting column 22 and is directly connected with the upper end of the negative wire 14, the lower end of the negative wire 14 is connected with a negative electrode connecting piece arranged in the insertion rod head 12, the positive wire 13, the conductive column 16, the upper conducting wire, the heating screen 31, the lower conducting wire and the negative wire 14 form a conductive path, and when the positive wire 13 and the negative wire 14 are connected with a power supply, the heating screen 31 can heat preservation pad 3 with fixed power.
In the embodiment, the upper connecting column 21 is made of rubber material, the metal end head 33 is a sheet metal plate, and the metal end head 33 is fixed at the inner end of the upper connecting column 21 by gluing.
In the embodiment, the lower connecting column 22 is made of rubber material, and the length of the upper connecting column 21 is longer than that of the lower connecting column 22.
In the embodiment, the negative wire 14 is partially located in the cavity 15, and the negative wire 14 located in the cavity 15 is bent and folded to compensate for the change of the distance between the inner end of the lower connection post 22 and the upper end of the negative wire 14 when the infusion tube heating structure 2 slides up and down.
In the embodiment, the outer surfaces of the positive electrode wire 13 and the negative electrode wire 14 are coated with insulating layers.
In the embodiment, the upper end and the lower end of the conductive column 16 are fixedly connected with the infusion stand bar 1 through the inner cavity bracket 18.
In the embodiment, the inserting rod head 12 is provided with a socket, the positive electrode electric connecting piece and the negative electrode electric connecting piece are both positioned in the socket, and the inner surface of the socket is provided with a rubber friction layer 19 for increasing friction force.
In the embodiment, the heat insulating pad 3 is provided with the indicator lamp 34, the indicator lamp 34 is connected to the upper wire, and the indicator lamp 34 is turned on when the heating wire net 31 is electrified.
In an embodiment, indicator light 34 is an LED light.
In the embodiment, the heat insulating pad 3 is made of non-woven fiber cloth.
The utility model discloses during the use, infusion hack lever 1 is inserted in external power supply seat for a long time, generally speaking, external power supply seat is located the handrail or the back of infusion seat, the outward appearance of infusion hack lever 1 is as shown in figure 1, when patient infuses, hang the infusion bottle on infusion bottle couple 11, then according to patient's demand, adjust the height that the transfer line heated structure 2, the regulation method is directly stirred the transfer line from top to bottom with the hand and is heated structure 2 can, the back that the transfer line heated structure 2 passes through upper connecting post 21, lower connecting post 22 connects upper sliding block 23 and lower sliding block 24, when pressing upper connecting post 21, can make upper connecting post 21 inner communicate with leading electrical pillar 16, positive wire 13 at this moment, lead electrical pillar 16, go up the wire, heating silk screen 31, lower wire and negative pole line 14 form a conducting path, heating silk screen 31 can heat preservation pad 3 with fixed power, put the transfer line in the front of heat preservation pad 3, the infusion tube can be heated by wrapping the magic adhesive surfaces 32 with each other, and when the power supply needs to be cut off, the upper connecting column 21 is pulled back, so that the upper connecting column 21 and the conductive column 16 are cut off.
Above only the utility model discloses an it is preferred embodiment, the utility model discloses a scope of protection not only limits in above-mentioned embodiment, and the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, a plurality of modifications and decorations without departing from the principle of the present invention should be considered as the protection scope of the present invention.

Claims (10)

1. The utility model provides a can be to infusion support that transfer line heated, includes infusion hack lever (1), the upper end of infusion hack lever (1) be provided with a plurality of infusion bottle couple (11), characterized by: the lower extreme of infusion hack lever (1) be provided with intubate head (12), intubate head (12) can insert in the external power supply seat that has the power, infusion hack lever (1) in be provided with positive pole line (13) and negative pole line (14), the middle part of infusion hack lever (1) be provided with cavity (15), one side of cavity (15) be provided with axial spout (4), the middle part of cavity (15) is provided with and leads electrical pillar (16) that correspond with spout length, positive pole line (13) lower extreme with establish the anodal electric connection piece in intubate head (12) and be connected, the upper end is connected with electrically conductive pillar (16), infusion hack lever (1) be provided with vertical logical groove (17) that run through cavity (15) in cavity (15) department, still including the infusion pipe (2) of heating, the infusion pipe (2) of heating include spliced pole (21), Lower connecting post (22), last sliding block (23), lower sliding block (24) and heat preservation pad (3), last connecting post (21) outer end fix the upper portion at the heat preservation pad (3) back, lower connecting post (22) outer end is fixed the lower part at the heat preservation pad (3) back, last sliding block (23) and lower sliding block (24) equal slidable mounting on spout (4), last sliding block (23) be located lower sliding block (24) top, last sliding block (23) on be provided with friction constant head tank (23a), heat preservation pad (3) be located the infusion hack lever (1) outside, when last connecting post (21) inner passes logical groove (17), still pass friction constant head tank (23a), with lead electrical pillar (16) clearance fit, go up connecting post (21) and last sliding block (23) through the friction constant head tank (23) of last connecting post (21) and friction constant head tank (23a), the inner of lower spliced pole (22) pass through logical groove (17) and lower slider (24) fixed connection, when external force presses upper spliced pole (21), enable upper spliced pole (21) and last slider (23) relative slip to make upper spliced pole (21) inner and lead electrical pillar (16) contact, heat preservation pad (3) in install heating silk screen (31), the left and right sides both ends of heat preservation pad (3) are provided with magic wainscot (32) of mutually supporting, when two magic wainscots (32) surround, can wrap up the transfer line in heat preservation pad (3), upper spliced pole (21) in be provided with the wire, upper wire one end be connected with heating silk screen (31), the other end is connected to upper spliced pole (21) inner and forms a metal end (33), when upper spliced pole (21) inner and lead electrical pillar (16) contact, metal end (33) and lead electrical pillar (16) contact, lower spliced pole (22) in be provided with down the wire, lower wire one end be connected with heating screen (31), the other end is connected to lower spliced pole (22) the inner and directly is connected with negative pole line (14) upper end, negative pole line (14) lower extreme with establish the negative pole electric connection piece in insertion pole head (12) and be connected, positive pole line (13), lead electrical pillar (16), go up wire, heating screen (31), lower wire and negative pole line (14) form a conductive path, when positive pole line (13) and negative pole line (14) and power switch-on, heating screen (31) can heat insulating pad (3) with fixed power heating.
2. The infusion support capable of heating infusion tubes as claimed in claim 1, wherein: the upper connecting column (21) is made of rubber materials, the metal end head (33) is a sheet metal plate, and the metal end head (33) is fixed at the inner end of the upper connecting column (21) in an adhesive mode.
3. The infusion support capable of heating infusion tubes as claimed in claim 2, wherein: the lower connecting column (22) is made of rubber materials, and the length of the upper connecting column (21) is longer than that of the lower connecting column (22).
4. The infusion support capable of heating infusion tubes as claimed in claim 3, wherein: the negative electrode wire (14) is partially positioned in the cavity (15), and the negative electrode wire (14) positioned in the cavity (15) is bent and folded to compensate the change of the distance between the inner end of the lower connecting post (22) and the upper end of the negative electrode wire (14) when the infusion tube heating structure (2) slides up and down.
5. The infusion support capable of heating infusion tubes as claimed in claim 4, wherein: the outer surfaces of the positive wire (13) and the negative wire (14) are coated with insulating layers.
6. The infusion support capable of heating infusion tubes as claimed in claim 5, wherein: the upper end and the lower end of the conductive post (16) are fixedly connected with the transfusion frame rod (1) through an inner cavity bracket (18).
7. The infusion support capable of heating infusion tubes as claimed in claim 6, wherein: the socket head (12) is provided with a socket, the positive electrode electric connecting piece and the negative electrode electric connecting piece are both positioned in the socket, and the inner surface of the socket is provided with a rubber friction layer (19) for increasing friction force.
8. The infusion support capable of warming infusion tubes of claim 7, wherein: the heat-insulation pad (3) is provided with an indicator lamp (34), the indicator lamp (34) is connected to the upper wire, and when the heating wire mesh (31) is electrified, the indicator lamp (34) is turned on.
9. The infusion support capable of warming infusion tubes of claim 8, wherein: the indicator lamp (34) is an LED lamp.
10. The infusion support capable of warming infusion tubes of claim 9, wherein: the heat-insulating pad (3) is made of non-woven fiber cloth.
CN202022467544.2U 2020-10-30 2020-10-30 Infusion support capable of heating infusion tube Active CN213724067U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022467544.2U CN213724067U (en) 2020-10-30 2020-10-30 Infusion support capable of heating infusion tube

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022467544.2U CN213724067U (en) 2020-10-30 2020-10-30 Infusion support capable of heating infusion tube

Publications (1)

Publication Number Publication Date
CN213724067U true CN213724067U (en) 2021-07-20

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ID=76856046

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022467544.2U Active CN213724067U (en) 2020-10-30 2020-10-30 Infusion support capable of heating infusion tube

Country Status (1)

Country Link
CN (1) CN213724067U (en)

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