CN219884153U - Suction mechanism for radionuclide drug packaging machine - Google Patents

Suction mechanism for radionuclide drug packaging machine Download PDF

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Publication number
CN219884153U
CN219884153U CN202321190455.5U CN202321190455U CN219884153U CN 219884153 U CN219884153 U CN 219884153U CN 202321190455 U CN202321190455 U CN 202321190455U CN 219884153 U CN219884153 U CN 219884153U
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China
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medicine
bearing frame
sealing block
suction mechanism
fixedly connected
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CN202321190455.5U
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Chinese (zh)
Inventor
姜志平
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Jinan Guoyi Biological Technology Co ltd
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Jinan Guoyi Biological Technology Co ltd
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Abstract

The utility model discloses an absorbing mechanism for a radionuclide drug packaging machine, which comprises: the packing box, the bottom fixedly connected with bearing frame of packing box, the bottom of packing box is followed left to right even intercommunication and is had five to absorb the subassembly, be connected with lifting unit between the both sides of bearing frame inner wall, lifting unit's top just is located all places the packing bottle under every absorption subassembly, it includes the sealing block to absorb the subassembly, the sealing block inlays the bottom of locating the packing box inner wall, the packing box divide the bottom and be located the sealing block under and seted up the through-hole that gets it filled. According to the utility model, the movable rod drives the sealing block to reset, so that sealing is realized, split charging and medicine taking are convenient, the outflow of liquid medicine is avoided, the staff is protected, the sealing performance of medicine split charging equipment is improved, the volatilization of the medicine property of the liquid medicine in the split charging box is effectively reduced, and the medicine split charging quality is improved.

Description

Suction mechanism for radionuclide drug packaging machine
Technical Field
The utility model relates to the technical field of radionuclide drug split charging, in particular to a suction mechanism for a radionuclide drug split charging machine.
Background
The radioactive drug refers to a radionuclide preparation or a labeled compound thereof for clinical diagnosis or treatment, and the radioactive drug is different from other drugs in that the radioactive drug contains a radionuclide capable of emitting rays, so that all drugs containing the radionuclide in molecules or preparations are called radioactive drugs, the radioactive drugs must meet the requirements of pharmacopoeia, such as sterility, no heat source, low chemical toxicity and the like except common drugs, and certain requirements on the type of nuclear rays emitted by the radioactive drugs, energy and radioactive half-life are required according to diagnosis and treatment requirements.
The existing radionuclide medicine split charging process needs to be carried out sequential split charging after extracting medicines through external equipment, so that the split charging process is improved, meanwhile, the tightness is poor, the medicine property volatilization of medicine liquid is improved, the medicine split charging quality is reduced, meanwhile, long-term use equipment is easy to break down, and the split charging efficiency is reduced.
Therefore, there is a need to provide an extraction mechanism for radionuclide drug dispensers that solves the above-mentioned problems.
Disclosure of Invention
The utility model aims to provide an absorbing mechanism for a radionuclide drug packaging machine, which aims to solve the problem of poor drug packaging tightness in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: an extraction mechanism for a radionuclide drug dispensing machine, comprising: divide the vanning, the bottom fixedly connected with bearing frame of vanning, the bottom of vanning is followed left to right even intercommunication and is had five to absorb the subassembly, be connected with lifting unit between the both sides of bearing frame inner wall, lifting unit's top just is located all places the partial shipment bottle under every absorption subassembly, it includes the sealing block to absorb the subassembly, the sealing block inlays the bottom of locating the vanning inner wall, the bottom of vanning just is located the sealing block and has offered the through-hole of getting it filled, the inside sliding connection of through-hole of getting it filled has the removal lid, the inside of through-hole of getting it filled just is located the fixedly connected with spacing ring of removal lid directly over, the top fixedly connected with movable rod of removal lid, the top of movable rod runs through spacing ring and extends to the bottom of sealing block.
Preferably, a reset spring is sleeved between the rod surface of the movable rod and the opposite side of the limiting ring and the movable cover.
Preferably, the outside cover of sealing block is equipped with sealed rubber sleeve, the bottom intercommunication of removing the lid has the discharging pipe, the bottom fixedly connected with fly leaf of discharging pipe, the bottom of fly leaf runs through have the drawing of medicine pipe with the discharging pipe intercommunication.
Preferably, the movable cover comprises a cover body, medicine outlets communicated with the discharging pipe are formed in two sides of the top of the cover body, and a sealing rubber ring is sleeved on the surface of the movable cover.
Preferably, the lifting assembly comprises two electric lifting rods, the two electric lifting rods are respectively and fixedly connected to two sides of the bottom of the inner wall of the bearing frame, a lifting plate is fixedly connected between the output ends of the electric lifting rods and positioned between two sides of the inner wall of the bearing frame, and five medicine bottle placing seats are uniformly and fixedly connected to the top of the lifting plate from left to right.
Preferably, the lifting plate is in sliding connection with the bearing frame.
Preferably, a console is connected to the left side of the bearing frame.
Preferably, the top of the left side of the sub-packaging box is communicated with a medicine inlet pipe.
Compared with the prior art, the utility model has the beneficial effects that:
(1) This suction means for radionuclide medicine racking machine upwards promotes the fly leaf through the partial shipment bottle, drive and remove and cover and shift up, utilize the movable rod upwards to promote the sealing piece and remove, open the through-hole of getting it filled and get it filled the partial shipment, after the partial shipment finishes, take off the partial shipment bottle, the reset spring that removes and cover can drive the removal lid and reset, thereby can drive the sealing piece through the movable rod and reset, realize sealedly, the partial shipment is got the medicine conveniently, can not lead to the liquid medicine to flow out, when protecting the staff, improved the sealing performance of medicine partial shipment equipment, the effectual drug property that has reduced the liquid medicine in the partial shipment case volatilizes, the quality of medicine partial shipment has been improved.
(2) This radionuclide medicine racking machine is with absorbing mechanism carries out the medicine partial shipment through gravity, need not to draw the medicine through external equipment and carries out the partial shipment, has reduced the phenomenon that equipment breaks down, the life of extension racking machine.
(3) This radionuclide medicine is suction means for racking machine can promote the lifter plate through electric lifter and reciprocate, carries out medicine split charging operation to five split charging bottles simultaneously, the effectual medicine split charging efficiency that has improved.
Drawings
FIG. 1 is a schematic main sectional view of the structure of the present utility model;
FIG. 2 is a schematic front view of the structure of the present utility model;
FIG. 3 is a schematic view of the suction assembly of FIG. 1;
FIG. 4 is a schematic top view of the structure of the movable cover shown in FIG. 3;
fig. 5 is a schematic side view of the structure of the present utility model.
In the figure: 1. separating and packing boxes; 2. a bearing frame; 3. a suction assembly; 4. a lifting assembly; 5. bottling; 6. a console; 7. a medicine inlet pipe; 31. a medicine taking through hole; 32. a moving cover; 33. a limiting ring; 34. a movable rod; 35. a return spring; 36. a sealing block; 37. sealing the rubber sleeve; 38. a discharge pipe; 39. a movable plate; 310. a medicine taking tube; 321. a cover body; 322. a medicine outlet; 323. sealing the rubber ring; 41. an electric lifting rod; 42. a lifting plate; 43. a medicine bottle placing seat.
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: an extraction mechanism for a radionuclide drug dispensing machine, comprising: the packing box 1, the bottom fixedly connected with bearing frame 2 of packing box 1, the bottom of packing box 1 evenly communicates from a left side to the right side has five to absorb subassembly 3, be connected with lifting unit 4 between the both sides of bearing frame 2 inner wall, lifting unit 4's top just is located the bottom of every absorption subassembly 3 and has all been placed partial shipment bottle 5 under, absorb subassembly 3 and include sealing block 36, sealing block 36 inlays the bottom of packing box 1 inner wall, the bottom of packing box 1 just is located and has offered medicine taking through-hole 31 under sealing block 36, medicine taking through-hole 31's inside sliding connection has movable cover 32, medicine taking through-hole 31's inside just is located and is fixed with spacing ring 33 directly over movable cover 32, movable cover 32's top fixedly connected with movable rod 34, spacing ring 33 is run through on the top of movable rod 34 and extend to sealing block 36's bottom, sealing block 36 is the shape of falling round platform for when sealing block 36 upwards moves, medicine taking through-hole 31 and packing box 1 inside intercommunication, sealing block 36 moves down is, medicine taking through-hole 31 does not communicate with packing box 1.
The reset spring 35 is sleeved between the rod surface of the movable rod 34 and the opposite side of the limiting ring 33 and the movable cover 32, and when the reset spring 35 is not subjected to extrusion force, the self elastic force can push the movable cover 32 to reset.
The outside cover of sealing piece 36 is equipped with sealed rubber cover 37, and the bottom intercommunication of moving lid 32 has discharging pipe 38, and the bottom fixedly connected with fly leaf 39 of discharging pipe 38, the bottom of fly leaf 39 run through have with the delivery pipe 310 of discharging pipe 38 intercommunication, realize sealing piece 36 and the sealed embedding of partial shipment case 1 through sealed rubber cover 37, guarantee sealed rubber cover 37 when inlaying with partial shipment case 1, the liquid medicine can not flow through the junction.
The movable cover 32 comprises a cover body 321, the two sides of the top of the cover body 321 are provided with medicine outlet openings 322 communicated with the discharging pipe 38, the surface of the movable cover 32 is sleeved with a sealing rubber ring 323, the sealing rubber ring 323 ensures that the sealing performance between the cover body 321 and the medicine taking through hole 31 is not affected when the cover body 321 moves up and down in the medicine taking through hole 31, and the medicine liquid is ensured to be reserved only through the medicine outlet openings 322.
The lifting assembly 4 comprises two electric lifting rods 41, the two electric lifting rods 41 are respectively and fixedly connected to two sides of the bottom of the inner wall of the bearing frame 2, lifting plates 42 are fixedly connected between output ends of the two electric lifting rods 41 and positioned between two sides of the inner wall of the bearing frame 2, five medicine bottle placing seats 43 are uniformly and fixedly connected to the tops of the lifting plates 42 from left to right, placing grooves matched with the split charging bottles 5 are formed in the tops of the medicine bottle placing seats 43 and used for placing the split charging bottles 5, and the electric lifting rods 41 are connected with an external power supply and are provided with a switch for controlling the power supply.
The lifting plate 42 is in sliding connection with the bearing frame 2, so that the up-and-down movement stability of the lifting plate 42 is improved.
The left side of the bearing frame 2 is connected with a control console 6, and the control console 6 is used for controlling an electromagnetic valve and two electric lifting rods 41 on the medicine feeding pipe 7.
The top of the left side of the sub-packaging box 1 is communicated with a medicine feeding pipe 7, the medicine feeding pipe 7 is connected with an external medicine liquid conveying device and used for conveying produced medicine liquid into the sub-packaging box 1 for sub-packaging operation, an electromagnetic valve is arranged on the medicine feeding pipe 7, and the electromagnetic valve is connected with an external power supply and provided with a switch for controlling the power supply.
Working principle: when the suction mechanism for the radionuclide drug racking machine is used, as shown in fig. 1-5, firstly, a valve on a drug inlet pipe 7 is opened to convey finished drugs into the inside of a split case 1, an output end of an electric lifting rod 41 is started to shrink to drive a lifting plate 42 to slide downwards in a bearing frame 2 to drive five drug bottle placing seats 43 to move downwards, five empty split charging bottles 5 are placed in each drug bottle placing seat 43, an output end of the electric lifting rod 41 is started to extend upwards to push five drug bottle placing seats 43 filled with the empty split charging bottles 5 to move upwards along with the lifting plate 42, a bottle mouth of each split charging bottle 5 is respectively aligned with the bottom of a movable plate 39 in each suction assembly 3, the bottom of the movable plate 39 is contacted with the bottle mouth of the split charging bottle 5 to push the movable plate 39 upwards, the movable plate 39 pushes the movable cover 32 upwards through a discharging pipe 38, the movable cover 32 pushes the movable rod 34 upwards and simultaneously extrudes the reset spring 35, the movable rod 34 pushes the sealing block 36 upwards, so that the sealing block 36 does not block the top end of the medicine taking through hole 31 through the sealing rubber sleeve 37, the inside of the sub-container 1 is communicated with the medicine taking through hole 31, the medicine liquid flows into the medicine taking through hole 31, the medicine liquid is conveyed into the inside of the medicine feeding and discharging pipe 38 through the two medicine outlet 322 on the cover 321, the medicine liquid is conveyed into the sub-bottle 5 through the medicine taking pipe 310, after the medicine liquid is loaded in the sub-bottle 5, the output end of the electric lifting rod 41 is started to shrink, the five medicine bottle placing seats 43 are driven to move downwards through the lifting plate 42, the medicine liquid filled in the sub-bottle 5 can be taken out, meanwhile, the movable plate 39 is not extruded by the sub-bottle 5, the reset spring 35 is not stressed, the self elastic force pushes the movable cover 32 to move downwards to reset, so that the movable rod 34 is driven to move downwards to reset, the movable rod 34 drives the sealing block 36 to move downwards for resetting, the sealing rubber sleeve 37 is used for sealing and embedding the medicine taking through hole 31 with the sub-packaging box 1, so that the medicine liquid in the sub-packaging box 1 cannot flow out, the sealing rubber ring 323 sleeved on the cover 321 can prevent the medicine liquid from flowing out from a place except the medicine outlet 322 when the cover 321 slides up and down in the medicine taking through hole 31, and the sealing performance is improved, namely, the characteristic of the suction mechanism for the radionuclide medicine sub-packaging machine is that the medicine liquid is not easy to clean.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. An extraction mechanism for a radionuclide drug dispensing machine, comprising: the utility model provides a sub-packaging case (1), its characterized in that, the bottom fixedly connected with bearing frame (2) of sub-packaging case (1), the bottom of sub-packaging case (1) is from a left side to right side evenly intercommunication has five to absorb subassembly (3), be connected with lifting unit (4) between the both sides of bearing frame (2) inner wall, sub-packaging bottle (5) have all been placed under the top of lifting unit (4) and being located every absorption subassembly (3), absorb subassembly (3) including sealing block (36), sealing block (36) inlay the bottom of locating sub-packaging case (1) inner wall, sub-packaging case (1) bottom just is located sealing block (36) and has been seted up medicine taking through-hole (31) under, the inside sliding connection of medicine taking through-hole (31) has movable cover (32), the inside of medicine taking through-hole (31) just is located and is fixedly connected with spacing ring (33) directly over movable cover (32), the top fixedly connected with movable rod (34) of movable rod (34), top (34) just runs through sealing block (36) and extends to spacing bottom (33).
2. The suction mechanism for a radionuclide drug dispensing machine according to claim 1, characterized in that: a reset spring (35) is sleeved between the rod surface of the movable rod (34) and the opposite side of the limiting ring (33) and the movable cover (32).
3. The suction mechanism for a radionuclide drug dispensing machine according to claim 1, characterized in that: the outside cover of sealing piece (36) is equipped with sealed rubber sleeve (37), the bottom intercommunication of removal lid (32) has discharging pipe (38), the bottom fixedly connected with fly leaf (39) of discharging pipe (38), the bottom of fly leaf (39) is run through have with the delivery pipe (310) of discharging pipe (38) intercommunication.
4. A suction mechanism for a radionuclide drug dispensing machine according to claim 3, characterized in that: the movable cover (32) comprises a cover body (321), medicine outlets (322) communicated with the discharging pipe (38) are formed in two sides of the top of the cover body (321), and sealing rubber rings (323) are sleeved on the surface of the movable cover (32).
5. The suction mechanism for a radionuclide drug dispensing machine according to claim 1, characterized in that: lifting assembly (4) are including two electric lift pole (41), two electric lift pole (41) are fixed connection respectively in the both sides of bearing frame (2) inner wall bottom, two between the output of electric lift pole (41) and be located between the both sides of bearing frame (2) inner wall fixedly connected with lifter plate (42), five medicine bottles of top follow left to right evenly fixedly connected with of lifter plate (42) place seat (43).
6. The suction mechanism for a radionuclide drug dispensing machine according to claim 5, wherein: the lifting plate (42) is in sliding connection with the bearing frame (2).
7. The suction mechanism for a radionuclide drug dispensing machine according to claim 1, characterized in that: the left side of the bearing frame (2) is connected with a console (6).
8. The suction mechanism for a radionuclide drug dispensing machine according to claim 1, characterized in that: the top of the left side of the split charging box (1) is communicated with a medicine feeding pipe (7).
CN202321190455.5U 2023-05-17 2023-05-17 Suction mechanism for radionuclide drug packaging machine Active CN219884153U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321190455.5U CN219884153U (en) 2023-05-17 2023-05-17 Suction mechanism for radionuclide drug packaging machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321190455.5U CN219884153U (en) 2023-05-17 2023-05-17 Suction mechanism for radionuclide drug packaging machine

Publications (1)

Publication Number Publication Date
CN219884153U true CN219884153U (en) 2023-10-24

Family

ID=88399893

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321190455.5U Active CN219884153U (en) 2023-05-17 2023-05-17 Suction mechanism for radionuclide drug packaging machine

Country Status (1)

Country Link
CN (1) CN219884153U (en)

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