A non-invasive gynecological nursing medication device
A gynecological and integrated technology, which is applied in the direction of drug devices, other medical devices, coatings, etc., can solve the problems of insufficient pressure of the drug solution, infection, and inconvenience of spraying the drug solution, and achieve rapid drug administration and convenient disassembly , not easily infected
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Embodiment 1
[0050] refer to figure 1 , figure 2 and image 3 , a non-invasive gynecological care medication device, including a columnar mixed liquid cylinder 1, wherein the mixed liquid cylinder 1 includes an assembled upper cylinder part 11 and a lower cylinder part 12; Liquid injection assembly 2, which can be used to conveniently add liquid medicine to the liquid mixing cylinder 1; wherein the device also includes a pressurizing assembly 3 for pressurizing the mixing liquid cylinder 1, using the pressurizing assembly 3 Pressure can be applied to the liquid medicine in the mixed liquid cylinder 1, so that the liquid medicine spreads in the patient's vagina; the device also includes a soft plastic tube 13, and first needles are respectively fixed at both ends of the soft plastic tube 13 131 and the second needle 132, wherein the first needle 131 and the second needle 132 are respectively provided with liquid medicine flow holes 1311, the first needle 131 is disassembled and installed...
Embodiment 2
[0061] The difference from Example 1 is that the inner wall of the mixing tube 1 is also coated with a layer of antifouling coating. Since the liquid medicine is mixed inside the mixing tube 1, some liquid medicine will remain on the inner wall of the mixing tube 1. In order to prevent the inner wall of the mixing tube 1 from becoming dirty, and to facilitate the cleaning of the inner wall of the mixing tube 1, a layer of antifouling coating is sprayed on the inner wall of the mixing tube 1, wherein the antifouling coating is prepared by the following method:
[0062] Take the following components by weight for subsequent use: 50 parts of polyethylene, 50 parts of polytetrafluoroethylene, 30 parts of polystyrene, 20 parts of ethyl acetate, 30 parts of styrene, 30 parts of ethanol, 15 parts of citric acid, benzene 15 parts of sodium formate, 15 parts of ethylene glycol ether, 10 parts of triethanolamine;
[0063] S1. Prepare anti-fouling coating pre-preparation solution; mix an...
Embodiment 3
[0069] The difference from Example 2 is the preparation of the antifouling coating on the inner wall of the mixed liquid cylinder 1, wherein the antifouling coating is prepared by the following method:
[0070] Get the following components by weight for subsequent use: 55 parts of polyethylene, 55 parts of polytetrafluoroethylene, 35 parts of polystyrene, 22 parts of ethyl acetate, 32 parts of styrene, 32 parts of ethanol, 16 parts of citric acid, benzene 15 parts of sodium formate, 15 parts of ethylene glycol ether, 10 parts of triethanolamine;
[0071] S1. Prepare antifouling coating pre-preparation solution; mix and stir polyethylene, polytetrafluoroethylene and polystyrene evenly, add to the reaction kettle and heat to 312°C, and then keep warm for 6 minutes;
[0072] S2. Preparation of anti-fouling coating solution: after cooling the pre-prepared anti-fouling coating solution obtained in S1 to 196°C, add ethyl acetate, styrene, ethanol, citric acid, sodium benzoate, ethyl...
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