Multifunctional positioning injection device for internal secretion diseases
A technology for endocrine diseases and injection devices, which is applied in the field of multi-functional positioning injection devices for endocrine diseases, can solve the problems of increasing the working pressure of medical staff, medical accidents, and rough control, so as to avoid medical accidents, ensure safety and stability, and improve comfort degree of effect
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Embodiment 1
[0042] The following is attached Figure 1-4 The present invention is described in further detail.
[0043] A positioning injection device for multifunctional endocrine diseases, such as figure 1 , figure 2 and image 3 As shown, it includes a main frame 1, and the two ends of the bottom surface of the main frame 1 are provided with fixing seats 2, and the main frame 1 is slidingly connected with the fixing seats 2, and the main frame 1 slides along the fixing seats 2 , the main frame 1 is provided with a positioning device 3, the positioning device 3 is slidingly connected with the main frame 1, the positioning device 3 slides along the main frame 1, and the positioning device 3 is fixed with A coarse adjustment groove 31 penetrating up and down, the coarse adjustment groove 31 is provided with a conflicting seat 4, the conflicting seat 4 is threadedly connected with the positioning device 3, and a fine adjustment groove penetrating up and down is fixed inside the conflic...
Embodiment 2
[0060] The difference from Example 1 is that the buffer block 513 is coated with an anti-slip layer, and the preparation method of the anti-slip layer is:
[0061] Take the following raw materials for each component by weight: 9.8 parts of titanium dioxide, 2.6 parts of sodium bentonite, 2.3 parts of graphite powder, 3.2 parts of polyvinyl acetate emulsion, 4.7 parts of anaerobic adhesive, 11 parts of alkyl quaternary ammonium, hydroxy acrylic resin 33.7 parts, carbon black 7.1 parts, silicon carbide 3.2 parts, zinc phosphate 1.5 parts, hydrogenated rosin glyceride 5.9 parts.
[0062] S1. Prefabricated organic solvent: mix polyvinyl acetate emulsion, alkyl quaternary ammonium, hydroxyacrylic resin, and hydrogenated rosin glyceride, heat to 45°C, stir well, and keep warm for 15 minutes;
[0063] S2. Preparation of anti-slip coating: Add titanium dioxide, silicon carbide, zinc phosphate, anaerobic adhesive, carbon black, graphite powder, and sodium bentonite to the organic solve...
Embodiment 3
[0069] The difference from Example 2 is that the specific gravity of the formula has been modified, and the modified formula is:
[0070] Take the following raw materials for each component by weight: 11.4 parts of titanium dioxide, 2.8 parts of sodium bentonite, 2.7 parts of graphite powder, 3.8 parts of polyvinyl acetate emulsion, 5.1 parts of anaerobic adhesive, 14 parts of alkyl quaternary ammonium, hydroxyacrylic resin 34.9 parts, carbon black 7.3 parts, silicon carbide 3.4 parts, zinc phosphate 1.9 parts, hydrogenated rosin glyceride 6.3 parts.
[0071] S1. Prefabricated organic solvent: mix polyvinyl acetate emulsion, alkyl quaternary ammonium, hydroxyacrylic resin, and hydrogenated rosin glyceride, heat to 45°C, stir well, and keep warm for 15 minutes;
[0072] S2. Preparation of anti-slip coating: Add titanium dioxide, silicon carbide, zinc phosphate, anaerobic adhesive, carbon black, graphite powder, and sodium bentonite to the organic solvent in S1 in sequence, stir...
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