CN216319225U - Infusion set that paediatrics ward remote control goes up and down - Google Patents

Infusion set that paediatrics ward remote control goes up and down Download PDF

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Publication number
CN216319225U
CN216319225U CN202122372328.4U CN202122372328U CN216319225U CN 216319225 U CN216319225 U CN 216319225U CN 202122372328 U CN202122372328 U CN 202122372328U CN 216319225 U CN216319225 U CN 216319225U
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motor
rod
hanger
cavity
track rod
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CN202122372328.4U
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Chinese (zh)
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孙海利
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Shaoxing Central Hospital Medical Community General Hospital Shaoxing Central Hospital
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Shaoxing Central Hospital Medical Community General Hospital Shaoxing Central Hospital
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Abstract

The utility model discloses a transfusion device for remotely lifting a pediatric ward, which comprises a track rod, a remote controller, a first motor, a second motor and a hanger, wherein the track rod is provided with a moving mechanism; the second motor drives the lower rod to adjust the height of the lifting hook, so that the height of the lifting hook can meet the infusion pressure required by the infusion bottle, and the lifting frame is adjusted more time-saving and labor-saving.

Description

Infusion set that paediatrics ward remote control goes up and down
Technical Field
The utility model relates to medical equipment, in particular to a transfusion device for remotely controlling lifting of a pediatric ward.
Background
Be equipped with the track pole on present hospital's the ceiling, the infusion gallows sets up in track pole below, and the bottom at the gallows is fixed to the lifting hook, and the lifting hook is used for hanging the infusion bottle, and medical personnel and family members can be along the manual flat push gallows of track pole to according to the demand change position of gallows of infant, adapt to its infusion position (like positions such as shank, arm, head).
The defects of the technology are as follows:
firstly, the bottom end of the hanger is positioned above the sickbed, and the head of a child is easy to collide with the bottom of the hanger when the child stands above the sickbed, so that the child is scratched.
The infusion pressure of the liquid in the infusion bottle is related to the height of the infusion bottle hanger, the higher the height of the infusion bottle hanger is, the larger the infusion pressure of the liquid in the infusion bottle is, the infusion pressures required by infusion bottles of different medicines are different, but the height of the existing lifting hook is fixed and cannot be adjusted.
Thirdly, the hanger is positioned at a high place, and medical care personnel and family members manually push the hanger to be time-consuming and labor-consuming.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a transfusion device for remotely controlling lifting of a pediatric ward, which is more time-saving and labor-saving by medical workers and family members through a remote controller to control a hanging bracket, can electrically adjust the horizontal position of the hanging bracket according to the requirements of a sick child, is more stable in moving of the hanging bracket compared with manual operation, is not easy to shake a transfusion bottle hung on a lifting hook, and can electrically adjust the height of the lifting hook according to the transfusion bottles with different transfusion pressures, so that the height of the lifting hook can meet the transfusion pressure required by the transfusion bottle.
In order to realize the purpose of the utility model, the utility model adopts the following technical scheme:
the utility model provides an infusion set that paediatrics ward remote control goes up and down, including the track pole, a remote controller, first motor, second motor and gallows, the track pole is fixed on the ceiling, the gallows is located the below of track pole, and the perpendicular track pole of gallows, the track pole is equipped with moving mechanism, the gallows includes upper boom and lower beam, be equipped with the pole chamber in the upper boom, the upper boom is located the one end that the gallows is close to the track pole, the lower beam is located the one end that the gallows is far away from the track pole, and the flexible setting of lower beam is in the pole chamber, the one end that the lower beam is far away from the track pole is equipped with the lifting hook, first motor drive moving mechanism, make gallows horizontal migration, second motor drive lower beam, make the lower beam stretch out and draw back in the upper boom, the remote controller is equipped with infrared ray sensor, infrared ray sensor is connected to the equal electricity of first motor and second motor, medical personnel and family members pass through first motor of remote controller control and second motor.
Compared with the prior art, the transfusion device adopting the technical scheme and remotely controlling the pediatric ward to ascend and descend has the following beneficial effects:
according to the infusion device capable of being lifted remotely in the pediatric ward, the first motor drives the moving mechanism to adjust the horizontal position of the hanging frame, the electric operation is more stable than the manual operation, the infusion bottle is prevented from shaking to be separated from the lifting hook, and the needle head is prevented from being pulled out by hooking the infusion tube.
And secondly, the lower rod is driven by the second motor, and the height of the lifting hook is adjusted, so that the height of the lifting hook can meet the infusion pressure required by the infusion bottle.
And thirdly, medical care personnel and family members use the remote controller to control the hanging bracket, so that time and labor are saved.
Fourthly, when the hanger frame is not used, the hanger frame can be lifted to the upper side through the remote controller, and the head of the infant is prevented from colliding.
Preferably, a cavity is arranged in the track rod, a slot is arranged below the track rod, the slot is communicated with the cavity, a machine body is arranged at one end, close to the track rod, of the hanger, a fixture block is arranged in the cavity, a sliding block is arranged in the slot, the fixture block and the machine body are respectively fixed at two ends of the sliding block, a wall below the track rod is clamped between the fixture block and the machine body, the sliding block is clamped between two side walls of the slot, a machine cavity is arranged in the machine body, a first motor is fixed in the machine cavity, the first motor is provided with a first rotating shaft, the first rotating shaft vertically and upwards penetrates through the machine body, the sliding block and the fixture block in sequence, the moving mechanism comprises a gear and a rack, the gear is arranged at one end, away from the first motor, the rack is fixed on the inner wall of the cavity, the rack is meshed with one side of the gear, the length direction of the rack is the same as that of the slot, when the first motor drives the first rotating shaft to rotate, the first rotating shaft rotates in the same direction, and the gear moves to one end of the rack, the gear drives the hanger to move in the same direction, and the machine body, the sliding block and the clamping block are arranged to enable the hanger to be more stable in the translation process.
Preferably, the machine chamber communicates with the pole chamber each other, the second motor is fixed at the machine intracavity, the horizontal direction of second motor is equipped with the second pivot, the second pivot is equipped with the stay cord, the one end of second motor is kept away from in the second pivot to the one end of stay cord, the other end of stay cord is fixed in the one end that the pole is close to the organism down, when the rotatory and extension of second motor drive second pivot, the second pivot drives the stay cord rolling on the outer peripheral face of second pivot, the stay cord drives in the pole retraction upper boom down, the stay cord rolling is in the second pivot, the occupation space of stay cord in the machine intracavity has been reduced.
Preferably, the second pivot is equipped with the constant head tank, and constant head tank spiral setting has a limiting displacement to the stay cord at the outer peripheral face of second pivot, and when the stay cord rolling was in the second pivot, the stay cord can slide in the constant head tank, avoided the stay cord winding to lead to the stay cord rolling to be obstructed together.
Preferably, the number of the lifting hooks is four, and the four lifting hooks are circumferentially arranged on the outer peripheral surface of the lower rod at equal intervals, so that four infusion bottles can be simultaneously hung on the hanging frame.
Preferably, the remote controller is equipped with the lag, and the lag parcel is made by the silica gel material on the surface of remote controller, and the lag has elasticity, prevents the surperficial wearing and tearing of remote controller.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the infusion device for remotely lifting a pediatric ward according to the utility model.
Fig. 2 is a schematic structural diagram of the transfusion device remotely lifted and lowered in the pediatric ward with BB in fig. 6 as a cross section in the embodiment.
Fig. 3 is a schematic view of the use of the infusion device remotely lifted and lowered in a pediatric ward in the embodiment.
Fig. 4 is a schematic structural diagram of the machine body with BB in fig. 6 as a cross section in the embodiment.
Fig. 5 is a schematic use view of the body with BB in fig. 6 as a cross section in the embodiment.
Fig. 6 is a side view of an infusion set remotely lifted from a pediatric ward in an embodiment.
Fig. 7 is a schematic structural diagram of the pediatric ward remote control lifting infusion device with the section AA in fig. 1 as an embodiment.
Fig. 8 is a bottom view of the infusion set remotely lifted in a pediatric ward of an embodiment.
Reference numerals: 1. a track rod; 10. a cavity; 11. grooving; 2. a hanger; 20. a rod cavity; 21. a rod is arranged; 22. a lower rod; 23. a hook; 3. a body; 30. a machine cavity; 31. a first motor; 32. a second motor; 4. a remote controller; 40. an infrared sensor; 41. a first rotating shaft; 42. a second rotating shaft; 43. a protective sleeve; 5. a moving mechanism; 51. a slider; 52. a clamping block; 53. a gear; 54. a rack; 61. pulling a rope; 62. and (6) positioning a groove.
Detailed Description
The utility model is further described below with reference to the accompanying drawings.
As shown in fig. 1 to 8, the transfusion device for remotely controlling the lifting of a pediatric ward comprises a track rod 1, a remote controller 4, a first motor 31, a second motor 32 and a hanger 2, wherein the track rod 1 is fixed on a ceiling, the hanger 2 is located below the track rod 1, the hanger 2 is perpendicular to the track rod 1, the track rod 1 is provided with a moving mechanism 5, the hanger 2 comprises an upper rod 21 and a lower rod 22, a rod cavity 20 is arranged in the upper rod 21, the upper rod 21 is located at one end of the hanger 2 close to the track rod 1, the lower rod 22 is located at one end of the hanger 2 far away from the track rod 1, the lower rod 22 is telescopically arranged in the rod cavity 20, one end of the lower rod 22 far away from the track rod 1 is provided with a hook 23, the remote controller 4 is provided with an infrared sensor 40, the first motor 31 and the second motor 32 are both electrically connected with the infrared sensor 40, medical personnel and family members control the first motor 31 and the second motor 32 through the remote controller 4, the first motor 31 drives the moving mechanism 5, the horizontal position of the hanging bracket 2 is adjusted, compared with manual operation, the hanging bracket 2 moves more stably, so that the transfusion bottle is prevented from shaking to be separated from the lifting hook 23, and the needle head is prevented from being pulled out by hooking the transfusion tube; the lower rod 22 is driven by the second motor 32, and the height of the lifting hook 23 is adjusted, so that the height of the lifting hook 23 can meet the infusion pressure required by an infusion bottle, and the lifting frame 2 is adjusted more time-saving and labor-saving.
The track rod 1 is internally provided with a cavity 10, a slot 11 is arranged below the track rod 1, the slot 11 is communicated with the cavity 10, one end of the hanger 2, which is close to the track rod 1, is provided with a machine body 3, a clamping block 52 is arranged in the cavity 10, a sliding block 51 is arranged in the slot 11, the clamping block 52 and the machine body 3 are respectively fixed at two ends of the sliding block 51, the wall below the track rod 1 is clamped between the clamping block 52 and the machine body 3, the sliding block 51 is clamped between two side walls of the slot 11, a machine cavity 30 is arranged in the machine body 3, a first motor 31 is fixed in the machine cavity 30, the first motor 31 is provided with a first rotating shaft 41, the first rotating shaft 41 vertically and upwards penetrates through the machine body 3, the sliding block 51 and the clamping block 52 in sequence, the moving mechanism 5 comprises a gear 53 and a rack 54, the gear 53 is arranged at one end of the first rotating shaft 41, which is far away from the first motor 31, the rack 54 is fixed at the inner wall of the cavity 10, and one side of the rack 54 is meshed with one side of the gear 53, the rack 54 is the same as the slot 11 in the length direction, when the first motor 31 drives the first rotating shaft 41 to rotate, the first rotating shaft 41 drives the gear 53 to rotate in the same direction, the gear 53 moves towards one end of the rack 54, the gear 53 drives the hanger 2 to move in the same direction, and the hanger 2 is more stable in the translation process due to the arrangement of the machine body 3, the slider 51 and the fixture block 52.
Machine chamber 30 and pole chamber 20 communicate each other, second motor 32 is fixed in machine chamber 30, the horizontal direction of second motor 32 is equipped with second pivot 42, second pivot 42 is equipped with stay cord 61, the one end of stay cord 61 is fixed in the one end that second pivot 42 kept away from second motor 32, the other end of stay cord 61 is fixed in the one end that lower beam 22 is close to organism 3, when second motor 32 drive second pivot 42 is rotatory and when extending, second pivot 42 drives the stay cord 61 rolling on the outer peripheral face of second pivot 42, stay cord 61 drives down in pole 22 retraction upper boom 21, stay cord 61 rolling is on second pivot 42, the occupation space of stay cord 61 in machine chamber 30 has been reduced.
Second pivot 42 is equipped with constant head tank 62, and constant head tank 62 spiral setting has limiting displacement to stay cord 61 at the outer peripheral face of second pivot 42, and when the rolling of stay cord 61 was on second pivot 42, stay cord 61 can slide in constant head tank 62, and it is obstructed to avoid the winding of stay cord 61 to lead to the rolling of stay cord 61 together.
The number of the hooks 23 is four, and the four hooks 23 are circumferentially arranged on the outer peripheral surface of the lower rod 22 at equal intervals, so that four infusion bottles can be hung on the hanging bracket 2 at the same time.
Remote controller 4 is equipped with lag 43, and lag 43 parcel is on remote controller 4's surface, and lag 43 is made by the silica gel material, and lag 43 has elasticity, prevents remote controller 4's surface wearing and tearing.
The foregoing is a preferred embodiment of the present invention, and it will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit of the utility model, and these should be considered to be within the scope of the utility model.

Claims (6)

1. The utility model provides an infusion set that paediatrics ward remote control goes up and down which characterized in that: comprises a track rod (1), a remote controller (4), a first motor (31), a second motor (32) and a hanger (2), wherein the track rod (1) is fixed on a ceiling, the hanger (2) is positioned below the track rod (1), the hanger (2) is vertical to the track rod (1), the track rod (1) is provided with a moving mechanism (5) for the horizontal movement of the hanger (2),
-the hanger (2) comprises an upper rod (21) and a lower rod (22), a rod cavity (20) is arranged in the upper rod (21), the upper rod (21) is positioned at one end of the hanger (2) close to the track rod (1), the lower rod (22) is positioned at one end of the hanger (2) far away from the track rod (1), the lower rod (22) is telescopically arranged in the rod cavity (20), and one end of the lower rod (22) far away from the track rod (1) is provided with a hook (23) for hanging a transfusion bottle,
-the first motor (31) drives the moving mechanism (5), the second motor (32) drives the lower lever (22), the remote control (4) is provided with an infrared sensor (40), and the first motor (31) and the second motor (32) are both electrically connected with the infrared sensor (40).
2. The pediatric ward remote controlled lifting infusion device as defined in claim 1, wherein: a cavity (10) is arranged in the track rod (1), a slot (11) is arranged below the track rod (1), the slot (11) is communicated with the cavity (10), a machine body (3) is arranged at one end, close to the track rod (1), of the hanger (2), a clamping block (52) is arranged in the cavity (10), a sliding block (51) is arranged in the slot (11), the clamping block (52) and the machine body (3) are respectively fixed at two ends of the sliding block (51), the wall below the track rod (1) is clamped between the clamping block (52) and the machine body (3), the sliding block (51) is clamped between two side walls of the slot (11),
-a machine cavity (30) is arranged in the machine body (3), the first motor (31) is fixed in the machine cavity (30), the first motor (31) is provided with a first rotating shaft (41), the first rotating shaft (41) vertically and upwards sequentially penetrates through the machine body (3), the sliding block (51) and the clamping block (52), the moving mechanism (5) comprises a gear (53) and a rack (54), the gear (53) is arranged at one end, far away from the first motor (31), of the first rotating shaft (41), the rack (54) is fixed on the inner wall of the cavity (10), one sides of the rack (54) and the gear (53) are meshed with each other, the length directions of the rack (54) and the groove (11) are the same, when the first motor (31) drives the first rotating shaft (41) to rotate, the first rotating shaft (41) drives the gear (53) to rotate in the same direction, and the gear (53) moves towards one end of the rack (54), the gear (53) drives the hanger (2) to move in the same direction.
3. The pediatric ward remote controlled lifting infusion device as defined in claim 2, wherein: machine chamber (30) and pole chamber (20) communicate with each other, second motor (32) are fixed in machine chamber (30), the horizontal direction of second motor (32) is equipped with second pivot (42), second pivot (42) are equipped with stay cord (61), the one end of stay cord (61) is fixed in second pivot (42) and is kept away from the one end of second motor (32), and the other end of stay cord (61) is fixed in the one end that lower beam (22) are close to organism (3), and when second motor (32) drive second pivot (42) rotatory and when extending, second pivot (42) drive stay cord (61) twine on the outer peripheral face of second pivot (42), and stay cord (61) drive lower beam (22) retract in upper beam (21).
4. The pediatric ward remote controlled lifting infusion device as defined in claim 3, wherein: the second rotating shaft (42) is provided with a positioning groove (62), the positioning groove (62) is spirally arranged on the outer peripheral surface of the second rotating shaft (42), and when the pull rope (61) is wound on the second rotating shaft (42), the pull rope (61) is arranged in the positioning groove (62).
5. The pediatric ward remote controlled lifting infusion device as defined in claim 1, wherein: the number of the lifting hooks (23) is four, and the four lifting hooks (23) are circumferentially arranged on the outer peripheral surface of the lower rod (22) at equal intervals.
6. The pediatric ward remote controlled lifting infusion device as defined in claim 1, wherein: remote controller (4) are equipped with lag (43), lag (43) parcel is on the surface of remote controller (4), and lag (43) are made by the silica gel material, and lag (43) have elasticity.
CN202122372328.4U 2021-09-28 2021-09-28 Infusion set that paediatrics ward remote control goes up and down Active CN216319225U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122372328.4U CN216319225U (en) 2021-09-28 2021-09-28 Infusion set that paediatrics ward remote control goes up and down

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122372328.4U CN216319225U (en) 2021-09-28 2021-09-28 Infusion set that paediatrics ward remote control goes up and down

Publications (1)

Publication Number Publication Date
CN216319225U true CN216319225U (en) 2022-04-19

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ID=81173815

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122372328.4U Active CN216319225U (en) 2021-09-28 2021-09-28 Infusion set that paediatrics ward remote control goes up and down

Country Status (1)

Country Link
CN (1) CN216319225U (en)

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