CN219127708U - Anti-interference infusion support - Google Patents
Anti-interference infusion support Download PDFInfo
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- CN219127708U CN219127708U CN202320214023.7U CN202320214023U CN219127708U CN 219127708 U CN219127708 U CN 219127708U CN 202320214023 U CN202320214023 U CN 202320214023U CN 219127708 U CN219127708 U CN 219127708U
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Abstract
The utility model relates to the technical field of supporting tools, in particular to an anti-interference infusion support which comprises a base, a support and a binding device, wherein the support is fixedly connected with the surface of the base, the surface of the support is fixedly connected with a hanging frame, the binding device is arranged on the surface of the support, the binding device comprises a chuck, the chuck is fixedly connected with the surface of the support, a sliding groove is formed in the surface of the chuck, a limiting pin is slidably connected with the inner wall of the chuck, a clamping groove is formed in the surface of the limiting pin, a damping shifting block is fixedly connected with the inner wall of the clamping groove, a guide groove is formed in the surface of the chuck, an extrusion frame is slidably connected with the inner wall of the guide groove, and a bolt is fixedly connected with the surface of the extrusion frame. According to the utility model, the restraint device is arranged, so that the device can limit the position of the infusion tube, the probability of collision of the infusion tube by personnel in the air is reduced, the restraint of the device on the infusion tube is improved, and the stability of the infusion tube in infusion is improved.
Description
Technical Field
The utility model relates to the technical field of supporting tools, in particular to an anti-interference infusion support.
Background
In the process of patient transfusion, a transfusion stand is often required to be used for hanging and supporting medicines in an upside-down mode so as to ensure that the medicine liquid bag can be smoothly input into a patient, and medical staff can place the medicine liquid bag by hanging the medicine liquid bag upside-down on the transfusion stand.
The prior art, such as the utility model of publication number CN217430578U, discloses an infusion support which employs a top cover, a lower cover and an infusion hook detachably connected to the top cover; the top cover is provided with a plurality of slots and an accommodating space for the movement of the infusion hook, and the slots are communicated with the accommodating space; the infusion hook is inserted into the slot and is positioned in the accommodating space; the lower cover is detachably connected with the top cover and positioned below the accommodating space, so that the position of the infusion hook is limited; the infusion support can be quickly installed and detached, is convenient to transport, and can be convenient to replace parts, so that the use cost is reduced, and the problem that the existing infusion support is inconvenient to store due to the fact that the infusion hooks are welded and fixed in a welded mode because the infusion hooks are welded and fixed on the support in a whole is solved.
The inventor finds in daily work that in the process of supporting a liquid medicine bag by using an infusion support, the existing infusion support has single function and can only provide support for the liquid medicine bag, when a patient infuses, the liquid medicine bag is hung upside down, so that the used infusion tube is in a suspended state, meanwhile, because the infusion area is relatively dense, when people in the infusion area move, the people can collide with the suspended infusion tube easily, thereby causing interference to the infusion tube and seriously easily causing the problem of blood diversion of the patient.
Disclosure of Invention
The utility model aims to solve the problems that in the prior art, when people in an infusion area move, the people easily collide with a suspended infusion tube, so that the infusion tube is interfered, and the diversion of blood of a patient is seriously easy to cause.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides an anti-interference infusion support, includes base, support and constraint device, the fixed surface of support and base is connected, the fixed surface of support is connected with the stores pylon, the constraint device sets up the surface at the support, the constraint device includes the chuck, the fixed surface of chuck and support is connected, the spout has been seted up on the surface of chuck, the inner wall sliding connection that the chuck is located the spout has the spacer pin, the draw-in groove has been seted up on the surface of spacer pin, the spacer pin is located the inner wall fixedly connected with damping shifting block of draw-in groove.
Preferably, the guide slot has been seted up on the surface of chuck, the inner wall sliding connection that the chuck is located the guide slot has the extrusion frame, the fixed surface of extrusion frame is connected with the bolt, the fixed surface of extrusion frame is connected with reset spring, sets up the chuck, can carry out preliminary restriction to the position of transfer line through the chuck to reduce the probability that the transfer line is collided.
Preferably, the slot is offered on the surface of chuck, the spacer pin is pegged graft mutually with the inner wall of slot, the quantity of spacer pin is four, four the spacer pin is circumference array setting about the chuck, sets up the spacer pin, can restrict the transfer line in the chuck under the state of being restricted through the spacer pin.
Preferably, the extrusion frame penetrates through the guide groove, a round hole is formed in the surface of the limiting pin, the bolt is inserted into the inner wall of the round hole, the reset spring is fixedly connected with the inner wall of the guide groove, and the reset spring is arranged and can restrict the position of the extrusion frame so as to achieve the limiting effect of the extrusion frame.
Preferably, the mounting groove has been seted up on the surface of base, the inner wall that the base is located the mounting groove is provided with adsorption equipment, adsorption equipment includes the assembly plate, the inner wall fixed connection of assembly plate and mounting groove, the fixed surface of assembly plate is connected with the sucking disc, the fixed surface of assembly plate is connected with the air duct, sets up the assembly plate, can fix the position of sucking disc through the assembly plate to realize the adsorption effect of sucking disc.
Preferably, the inner wall threaded connection of air duct has the alignment jig, the air duct has been seted up to the inner wall of air duct, the inner wall fixedly connected with spacing ring of air duct, the fixed surface of alignment jig is connected with the sealing plug, sets up the alignment jig, can adjust the position of sealing plug through the alignment jig to control the state of air duct.
Preferably, the connecting hole has been seted up on the surface of assembly plate, the air duct is linked together with the inner wall of connecting hole, the air duct runs through the base setting, the surface butt of spacing ring and sealing plug, sealing plug and the inner wall sliding connection of air duct set up the air duct, can seal the sucking disc under by the confined state through the air duct.
Compared with the prior art, the utility model has the advantages and positive effects that:
according to the utility model, the restraint device is arranged, when a patient is transfused, the hydraulic belt is hung on the hanging frame, the infusion tube is inserted into the liquid medicine bag immediately, and after the infusion tube is inserted into the liquid medicine bag, the needle head of the infusion tube can be inserted into the vein of the patient, so that the patient is transfused; after the infusion tube is inserted into the liquid medicine bag, the infusion tube is placed into the chuck, the extrusion frame is pressed immediately, the extrusion frame is forced to extrude the reset spring, the reset spring is extruded and deformed, the extrusion frame loses the constraint of the reset spring and displaces, meanwhile, the bolt is driven by the extrusion frame to slide into the guide groove, the damping shifting block is pushed immediately, the damping shifting block is forced to push the limiting pin, the limiting pin is inserted into the slot under the pushing of the damping shifting block, after the limiting pin is inserted into the slot, the extrusion frame is loosened, the reset spring is used for applying the pressure rebound of the extrusion frame, the extrusion frame is pushed by the reset spring to reset, meanwhile, the bolt is pushed by the extrusion frame to be inserted into the round hole and limits the position of the limiting pin, when the position of the limiting pin is limited, the infusion tube can be limited in the chuck immediately, the limiting operation of the infusion tube can be completed by arranging the binding device, the probability of suspending the infusion tube by personnel is reduced, the constraint of the device on the infusion tube is improved, and the stability of the infusion tube in infusion is improved.
Drawings
Fig. 1 is a schematic perspective view of an anti-interference infusion support according to the present utility model;
fig. 2 is a schematic diagram showing a bottom view structure of an anti-interference infusion support according to the present utility model;
FIG. 3 is a schematic diagram showing a structure of a restraint device of an anti-interference infusion support;
fig. 4 is a schematic structural diagram of an adsorption device of an anti-interference infusion support provided by the utility model;
fig. 5 is a schematic diagram of the structure of the anti-interference infusion support at a position a in fig. 4.
Legend description:
1. a base; 2. a bracket; 3. a hanging rack; 4. a tie-down device; 41. a chuck; 42. a limiting pin; 43. damping shifting blocks; 44. a guide groove; 45. an extrusion frame; 46. a plug pin; 47. a return spring; 5. an adsorption device; 51. an assembly plate; 52. a suction cup; 53. an air duct; 54. an adjusting frame; 55. an air guide groove; 56. a limiting ring; 57. and (5) sealing plugs.
Detailed Description
Referring to fig. 1-5, the present utility model provides a technical solution: the utility model provides an anti-interference infusion support, includes base 1, support 2 and constraint device 4, and the fixed surface of support 2 and base 1 is connected, and the fixed surface of support 2 is connected with stores pylon 3, and constraint device 4 sets up the surface at support 2, and the mounting groove has been seted up on the surface of base 1, and the inner wall that base 1 is located the mounting groove is provided with adsorption equipment 5.
The specific arrangement and function of the restraint device 4 and the adsorption device 5 will be described in detail below.
In this embodiment: the restraint device 4 comprises a chuck 41, wherein the chuck 41 is fixedly connected with the surface of the bracket 2, a chute is formed in the surface of the chuck 41, a limiting pin 42 is slidably connected to the inner wall of the chute, a clamping groove is formed in the surface of the limiting pin 42, and a damping shifting block 43 is fixedly connected to the inner wall of the clamping groove by the limiting pin 42.
Specifically, the guiding groove 44 has been seted up on the surface of chuck 41, and the inner wall sliding connection that chuck 41 is located guiding groove 44 has extrusion frame 45, and the fixed surface of extrusion frame 45 is connected with bolt 46, and the fixed surface of extrusion frame 45 is connected with reset spring 47, sets up chuck 41, can carry out preliminary restriction to the position of transfer line through chuck 41 to reduce the probability that the transfer line is collided.
Specifically, the surface of the chuck 41 is provided with slots, the limiting pins 42 are inserted into the inner walls of the slots, the number of the limiting pins 42 is four, and the four limiting pins 42 are arranged in a circumferential array with respect to the chuck 41.
In this embodiment: the stopper pin 42 is provided, and the infusion tube can be restricted in the chuck 41 by the stopper pin 42 in a restricted state.
Specifically, the extrusion frame 45 is arranged through the guide groove 44, a round hole is formed in the surface of the limiting pin 42, the plug pin 46 is inserted into the inner wall of the round hole, the reset spring 47 is fixedly connected with the inner wall of the guide groove 44, the reset spring 47 is arranged, and the position of the extrusion frame 45 can be restrained through the reset spring 47, so that the limiting effect of the extrusion frame 45 is achieved.
In this embodiment: the adsorption device 5 comprises an assembly plate 51, the assembly plate 51 is fixedly connected with the inner wall of the mounting groove, the surface of the assembly plate is fixedly connected with a sucker 52, and the surface of the assembly plate is fixedly connected with an air duct 53.
In this embodiment: the mounting plate 51 is provided, and the position of the suction cup 52 can be fixed by the mounting plate 51, thereby realizing the suction effect of the suction cup 52.
Specifically, the inner wall threaded connection of air duct 53 has alignment jig 54, and air duct 55 has been seted up to the inner wall of air duct 53, and the inner wall fixedly connected with spacing ring 56 of air duct 53, the fixed surface of alignment jig 54 is connected with sealing plug 57, sets up alignment jig 54, can adjust the position of sealing plug 57 through alignment jig 54 to the state of air duct 53 is controlled.
Specifically, the surface of the assembly plate 51 is provided with a connecting hole, the air duct 53 is communicated with the inner wall of the connecting hole, the air duct 53 penetrates through the base 1, the limiting ring 56 is abutted against the surface of the sealing plug 57, and the sealing plug 57 is slidably connected with the inner wall of the air duct 53.
In this embodiment: an air duct 53 is provided, and the suction cup 52 can be sealed by the air duct 53 in a closed state.
Working principle: when a patient is transfused, the hydraulic belt is hung on the hanging frame 3, the infusion tube is inserted into the liquid medicine bag immediately, and after the infusion tube is inserted into the liquid medicine bag, the needle head of the infusion tube can be inserted into the vein of the patient, so that the patient is transfused; after the infusion tube is inserted into the liquid medicine bag, the infusion tube is placed into the chuck 41, the pressing frame 45 is pressed immediately, the pressing frame 45 is stressed to press the reset spring 47, the reset spring 47 is pressed and deformed, the pressing frame 45 loses the restraint of the reset spring 47 and moves, meanwhile, the bolt 46 is driven by the pressing frame 45 to slide into the guide groove 44, the damping shifting block 43 is pushed immediately, the damping shifting block 43 is stressed to push the limiting pin 42, the limiting pin 42 is inserted into the slot under the pushing of the damping shifting block 43, after the limiting pin 42 is inserted into the slot, the pressing frame 45 is loosened, the reset spring 47 applies the pressure rebound of the pressing frame 45, the pressing frame 45 is pushed and reset by the reset spring 47, meanwhile, the bolt 46 is pushed and inserted into the round hole by the pressing frame 45, and limits the position of the limiting pin 42, after the position of the limiting pin 42 is limited, the infusion tube can be limited in the chuck 41, the limiting operation of the infusion tube is completed immediately, the position of the infusion tube can be limited by the device through the limiting device 4, the probability that the infusion tube is collided by personnel is reduced, the infusion tube is suspended in the slot, the infusion tube restraint of the infusion tube is improved, and the stability of the infusion tube is improved. In addition, when the infusion support needs to be moved by the adsorption device 5, the adjusting support 54 is rotated, the adjusting support 54 is gradually screwed out of the air duct 53 in the rotating process, meanwhile, the sealing plug 57 is driven to move by the adjusting support 54, the sealing plug 57 is contacted with the limiting ring 56 in the moving process, after the sealing plug 57 is contacted with the limiting ring 56, the adjusting support 54 is loosened, meanwhile, the air hole of the air duct 53 is free of blocking of the sealing plug 57 and is communicated with the air duct 55, after the air hole of the air duct 53 is communicated with the air duct 53, the air pressure in the sucking disc 52 is restored to be communicated with the outside and the self adsorption effect is lost, the infusion support can be immediately moved, the stability of the infusion support is improved by arranging the adsorption device 5, the possibility of deflection of the infusion support is further reduced, and the supporting effect of the infusion support is further improved.
Claims (7)
1. The utility model provides an anti-interference infusion support, includes base (1), support (2) and restraint device (4), its characterized in that: support (2) and the fixed surface of base (1) are connected, the fixed surface of support (2) is connected with stores pylon (3), restraint device (4) set up the surface at support (2), restraint device (4) are including chuck (41), the fixed surface of chuck (41) and support (2) is connected, the spout has been seted up on the surface of chuck (41), inner wall sliding connection that chuck (41) are located the spout has locating pin (42), the draw-in groove has been seted up on the surface of locating pin (42), locating pin (42) are located the inner wall fixedly connected with damping shifting block (43) of draw-in groove.
2. The anti-interference infusion support according to claim 1, wherein: the surface of chuck (41) has seted up guiding groove (44), the inner wall sliding connection that chuck (41) are located guiding groove (44) has extrusion frame (45), the fixed surface of extrusion frame (45) is connected with bolt (46), the fixed surface of extrusion frame (45) is connected with reset spring (47).
3. The anti-interference infusion support according to claim 1, wherein: the surface of the chuck (41) is provided with slots, the limiting pins (42) are inserted into the inner walls of the slots, the number of the limiting pins (42) is four, and the four limiting pins (42) are arranged in a circumferential array relative to the chuck (41).
4. An anti-interference infusion support according to claim 2, wherein: the extrusion frame (45) penetrates through the guide groove (44), a round hole is formed in the surface of the limiting pin (42), the bolt (46) is inserted into the inner wall of the round hole, and the reset spring (47) is fixedly connected with the inner wall of the guide groove (44).
5. The anti-interference infusion support according to claim 1, wherein: the mounting groove has been seted up on the surface of base (1), the inner wall that base (1) is located the mounting groove is provided with adsorption equipment (5), adsorption equipment (5) are including assembly plate (51), the inner wall fixed connection of assembly plate (51) and mounting groove, the fixed surface of assembly plate is connected with sucking disc (52), the fixed surface of assembly plate is connected with air duct (53).
6. The anti-interference infusion support according to claim 5, wherein: the inner wall threaded connection of air duct (53) has alignment jig (54), air duct (55) have been seted up to the inner wall of air duct (53), the inner wall fixedly connected with spacing ring (56) of air duct (53), the fixed surface of alignment jig (54) is connected with sealing plug (57).
7. The anti-interference infusion support according to claim 6, wherein: the surface of assembly board (51) has seted up the connecting hole, air duct (53) are linked together with the inner wall of connecting hole, air duct (53) run through base (1) setting, the surface butt of spacing ring (56) and sealing plug (57), sealing plug (57) and the inner wall sliding connection of air duct (53).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320214023.7U CN219127708U (en) | 2023-02-10 | 2023-02-10 | Anti-interference infusion support |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320214023.7U CN219127708U (en) | 2023-02-10 | 2023-02-10 | Anti-interference infusion support |
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CN219127708U true CN219127708U (en) | 2023-06-06 |
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CN202320214023.7U Active CN219127708U (en) | 2023-02-10 | 2023-02-10 | Anti-interference infusion support |
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- 2023-02-10 CN CN202320214023.7U patent/CN219127708U/en active Active
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