Function rehabilitation reconstruction device for brain damage repair
A brain injury and functional technology, applied in the direction of heavy objects, passive exercise equipment, massage auxiliary supplies, etc., can solve the problems of inconvenient adjustment of intensity, inability to exercise the waist of patients, and developmental delay
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Embodiment 1
[0059] refer to figure 1 , figure 2 with image 3 , a device for functional rehabilitation and reconstruction of brain injury repair, including a base 1 and a column 10 fixed on the base 1, and also includes the following components:
[0060] The first swing bar 11 hinged on the top of the column 10;
[0061] Install and fix the second swing rod 12 at the end of the first swing rod 11 through the first connection assembly 2;
[0062] Install and fix the armchair 13 on the second swing bar 12 through the second connection assembly 3;
[0063] The power assembly 4 installed above the base 1, wherein the power assembly 4 pulls the second swing rod 12 to swing;
[0064] Two leg support plates 14 symmetrically installed on the column 10;
[0065] The foot support plate 15 installed on the bottom of the leg support plate 14 through the adjustment assembly 5;
[0066] The foot fixing assembly 6 arranged on the foot supporting plate 15;
[0067] Two arm push-pull assemblies 7 ...
Embodiment 2
[0083] The difference with Embodiment 1 is: the surface of the armchair 13 is also coated with a layer of anti-fouling coating, because the armchair 13 is used for patients to sit and lie, it is easy to accumulate dust and become dirty, in order to facilitate its surface Clean up, so the surface of armchair 13 is sprayed with one deck antifouling coating, wherein antifouling coating is prepared by the following method:
[0084] Take the following components by weight for later use: 60 parts of polytetrafluoroethylene, 50 parts of polycarbonate, 20 parts of polyvinyl chloride, 20 parts of silicon dioxide particles, 20 parts of calcium carbonate particles, 10 parts of graphene oxide particles, 10 parts of polyurethane calcium stearate, 10 parts of trihydroxyethylamine, 20 parts of methacrylate, 20 parts of ethyl acetate;
[0085] S1. Preparation of the first antifouling coating pre-preparation solution: mix polytetrafluoroethylene, polycarbonate, and polyvinyl chloride evenly an...
Embodiment 3
[0091] The difference from Example 2 is the preparation of the antifouling coating on the surface of the armchair 13, wherein the antifouling coating is prepared by the following method:
[0092] Take the following components by weight for later use: 64 parts of polytetrafluoroethylene, 54 parts of polycarbonate, 23 parts of polyvinyl chloride, 20 parts of silicon dioxide particles, 20 parts of calcium carbonate particles, 10 parts of graphene oxide particles, 10 parts of polyurethane calcium stearate, 10 parts of trihydroxyethylamine, 20 parts of methacrylate, 20 parts of ethyl acetate;
[0093] S1. Preparation of the first antifouling coating pre-preparation solution: mix polytetrafluoroethylene, polycarbonate, and polyvinyl chloride evenly and add it to the reactor, heat the reactor to 223°C and stir evenly to obtain the first antifouling coating Stain coating pre-preparation solution;
[0094] S2. Prepare the second antifouling coating pre-preparation solution: mix silico...
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