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Anti-pollution medicine mixing port

An anti-pollution and drug-mixing technology, which is applied in the field of medical device manufacturing, can solve problems such as the folding handle section is easy to fall into the infusion soft bag, leakage, easy damage to the infusion soft bag, etc.

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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But this medicine mixing interface also has many deficiencies, and its weak point mainly contains the following points: 1, the frangible handle of described mixing medicine interface is positioned at infusion soft bag, when using, after breaking the frangible handle, the frangible handle The section is very easy to fall into the soft infusion bag. At the same time, when the frangible handle is broken, plastic particles will be produced to pollute the drug solution in the infusion soft bag. The breaking force is relatively large, and it is very easy to puncture the soft infusion bag during the breaking operation, making the soft infusion bag unusable; 2. The sealing of the mixed drug card body that fixes the vial is to paste the support plate on the protective film, and then through bonding The adhesive is bonded to the open end of the mixed drug card body, so that the protective film is easy to fall off during storage and transportation, causing contamination of the syringe body in the mixed drug card body, and at the same time, the adhesive itself will also cause mixing. Pollution of drug card body
And because the syringe body of this technology is made of polypropylene material, it is difficult to achieve the effect of smoothly piercing the vial cap in the actual use process, and the syringe body and the mixing nozzle are assembled structures, which are difficult to obtain during transportation or use. easy to loosen or drop, causing leakage and contamination
In addition, the connection base of the mixing drug interface is designed as a boat-shaped structure with a smooth surface and sharp water chestnuts at both ends of the base. Such a structure uses a high welding temperature during the welding process with the infusion soft bag, which is likely to cause The "over-welding" of the soft bag seriously affects the sealing performance and causes liquid leakage, and the sharp edges and corners are very easy to damage the infusion soft bag itself during the storage and transportation of the drug, and it is also easy to cause leakage and waste of raw materials
[0004] In order to overcome the problem that the above-mentioned easy-to-break handle is easily dropped into the infusion bag after being broken, or is easy to puncture the infusion bag when it is broken, in the prior art, according to the structural characteristics of the mixing mouth and the hard double interface connected by the sealing rubber tube, there are also The easy-break handle is set at the end of the syringe body in the sealing rubber tube. The main disadvantage of this structure is that during use, the easy-break handle is located at the lower part of the infusion soft bag, so that the liquid will enter the mixing channel, even if it is not broken. The easy-to-break handle opens the mixing channel, and the easy-to-break handle will always be immersed in the liquid, increasing the risk of secondary pollution

Method used

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Embodiment Construction

[0020] Such as figure 1 , figure 2 , image 3 , Figure 5 as well as Image 6 What is shown is an anti-pollution drug mixing interface provided by the present invention that is easy to use and can effectively prevent secondary pollution during manufacturing, storage and transportation. The drug mixing interface includes a drug mixing nozzle 3 containing a closed end cap 8 and a hard double interface 2 containing a frangible handle 4; Composed of a syringe body 6, the drug mixing card body 5 has an open end 51 and a sealed end 52, the syringe body 6 is located at the sealed end 52 of the drug mixing card body 5, the hard double interface 2 and the drug mixing nozzle 3 are installed on the The drug mixing channel 22 and the sealing rubber tube 7 on the syringe body 6 are connected as a whole; the closed end cap 8 is detachably installed on the open end 51 of the drug mixing card body 5, and the open end 51 is sealed; the frangible handle 4 The end of the mixing channel 22 ...

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Abstract

The invention discloses a medicine mixing port, in particular to an anti-pollution medicine mixing port belonging to the technical filed of medical mechanism manufacture. The anti-pollution medicine mixing port is convenient to use and can effectively prevent the generation of secondary pollution when being produced, manufactured, stored and conveyed. The medicine mixing port comprises a medicine mixing port with a sealing end cover, and a hard dual port with an easily-folded handle, wherein a medicine mixing channel comprising a medicine mixing blocking body and a needle cylinder body is arranged on the hard dual port; the medicine mixing blocking body is provided with an opening end and a sealing end; the needle cylinder is placed at the sealing end of the medicine mixing blocking body; the hard dual port and the medicine mixing port are integrally connected through rubber sealing pipes arranged on the medicine mixing channel and the needle cylinder body; a sealing end cover is detachably arranged on the opening end of the medicine mixing blocking body, and the opening end is sealed; the easily-folded handle is arranged at the tail end of the medicine mixing channel in the rubber sealing pipe; and the tail end is sealed.

Description

technical field [0001] The invention relates to a drug mixing interface, in particular to an anti-pollution drug mixing interface, which belongs to the technical field of medical device manufacturing. Background technique [0002] When using the powder injection, freeze-dried powder injection or water injection contained in the vial, it is necessary to draw out the liquid medicine or water for injection in the infusion soft bag and inject it into the vial through the syringe, and repeat the above work until there is enough liquid medicine in the vial Then the vial is shaken repeatedly until the medicament in the bottle is evenly mixed, and then the medicinal liquid in the vial is extracted and injected into the soft infusion bag with a syringe, and so on, until the medicinal liquid in the bottle is exhausted. The above-mentioned drug mixing operation process is time-consuming, laborious, and consumes consumable materials such as syringes, and it is very easy to cause seconda...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61J1/20A61J1/10
Inventor 李科