Multifunctional medical trolley
A medical vehicle, multi-functional technology, applied in medical science, hospital equipment, coating, etc., can solve the problems of not being able to ensure air drying well, achieve good dry storage of medicines, ensure a dry environment, and not easy to accumulate dust Effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0047] The following is attached Figure 1-8 The present invention will be described in further detail.
[0048] Such as Figure 1 to Figure 8 As shown, a multifunctional medical vehicle includes a trolley body 1, a box body 2 is fixed on the trolley body 1, a medicine box 22 is inserted into the empty slot 21 of the box body 2, and medicines are placed in the medicine box 22 , And a first drying box 23 is inserted above the medicine box 22 inside the empty slot 21. The lower surface of the first drying box 23 is attached to the upper surface of the medicine box 22, and the first drying box 23 can be placed from The upper part of the medicine box 22 dries the inside of the medicine box 22, and a second drying box 24 is inserted on the medicine box 22, and the second drying box 24 is inserted in the upper and lower positions of the medicine box 22; The bottom of the first drying box 23 is provided with densely distributed first through holes 231, and a fixing plate 221 for placin...
Embodiment 2
[0060] The difference from Example 1 is the preparation of the anti-fouling coating. The specific preparation method is as follows:
[0061] Take the following raw materials by weight: 34 parts of epoxy resin particles, 16 parts of amino resin, 2 parts of butyl acrylate, 5 parts of zinc chloride powder, 1 part of rosin, 2 parts of talcum powder, 2 parts of titanium dioxide powder, 4 parts of ethyl acetate, 3 parts of styrene, 23 parts of deionized water;
[0062] S1. Preparation of water solvent: add rosin, talc powder and zinc chloride powder to deionized water in sequence, stir evenly with a glass rod until completely dissolved, and then set aside;
[0063] S2. Preparation of organic solvent: mix ethyl acetate, butyl acrylate and styrene uniformly in a fume hood and then set aside;
[0064] S3. Extruding powder: Heat the epoxy resin particles and amino resin to 61°C, and extrude the powder in the powder coating extruder;
[0065] S4. Ball milling: mix the water solvent obtained in S1...
Embodiment 3
[0069] The difference from Example 1 is the preparation of the anti-fouling coating. The specific preparation method is as follows:
[0070] Take the following raw materials by weight: 36 parts of epoxy resin particles, 18 parts of amino resin, 2 parts of butyl acrylate, 4 parts of zinc chloride powder, 2 parts of rosin, 2 parts of talcum powder, 2 parts of titanium dioxide powder, 4 parts of ethyl acetate, 3 parts of styrene, 23 parts of deionized water;
[0071] S1. Preparation of water solvent: add rosin, talcum powder and zinc chloride powder to deionized water in sequence, stir evenly with a glass rod until completely dissolved, and then set aside;
[0072] S2. Preparation of organic solvent: mix ethyl acetate, butyl acrylate and styrene uniformly in a fume hood and then set aside;
[0073] S3. Extruding powder: Heat the epoxy resin particles and amino resin to 61°C, and extrude the powder in the powder coating extruder;
[0074] S4. Ball milling: mix the water solvent obtained in...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


