Osteoporosis rehabilitation exercise device
An exercise device and osteoporosis technology, applied in the field of rehabilitation exercise, can solve problems such as difficult to meet rehabilitation training, difficult to adjust rehabilitation training intensity, poor adjustment performance, etc.
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Embodiment 1
[0053]The present invention provides such as figure 1 , figure 2 A kind of osteoporosis rehabilitation exercise device shown, comprises:
[0054] The base, the base includes a rectangular bottom plate 1, and the left and right sides of the top of the rectangular bottom plate 1 are integrally formed with rectangular vertical plates 11;
[0055] The height adjustment mechanism 2, the height adjustment mechanism 2 comprises an upper round pipe 23, a middle round pipe 22 and a lower round pipe 21 from top to bottom, and the upper and lower ends of the middle round pipe 22 are movably connected to the upper round pipe 23 and the lower round pipe respectively. Inside the pipe 21, the middle round pipe 22 is connected with the upper round pipe 23 and the lower round pipe 21 by screws 24;
[0056] The top plate 3, the bottom of the top plate 3 is connected to the top of the upper circular pipe 23, two round holes 31 are equidistantly provided on the base of the top plate 3, and a l...
Embodiment 2
[0079] The difference from Example 1 is that the outer wall of the handle 501 is provided with an antibacterial layer, and the antibacterial layer is prepared by the following method:
[0080] Take the following raw materials and weigh them by weight: 6 parts of methyl methacrylate, 3 parts of polyaminopropyl biguanide, 9 parts of acrylic epoxy resin, 2 parts of natural aloe extract, 3 parts of acrylonitrile, dioctyl phthalate 2 parts of ester, 4 parts of hydroxypropyl methylcellulose, 5 parts of polyvinyl alcohol, 6 parts of ethylene glycol, 7 parts of nano-silver oxide, 5 parts of perylene glycol, 7 parts of benzophenone, isothiazolone derivatives 3 parts, 4 parts of microcrystalline cellulose, 5 parts of butyl acrylate, 7 parts of potassium oxide, 6 parts of strontium oxide, 7 parts of magnesium oxide, 7 parts of silicone modified acrylic acid, 5 parts of pentaerythritol, 3 parts of nano-titanium dioxide, silicone 10 parts of defoamer, 10 parts of bentonite binder, 90 parts...
Embodiment 3
[0090] The difference from Example 2 is the preparation of the antibacterial layer, and its specific preparation method is as follows:
[0091] Take the following raw materials and weigh them by weight: 10 parts of methyl methacrylate, 7 parts of polyaminopropyl biguanide, 17 parts of acrylic epoxy resin, 4 parts of natural aloe extract, 9 parts of acrylonitrile, dioctyl phthalate 8 parts of ester, 11 parts of hydroxypropyl methylcellulose, 11 parts of polyvinyl alcohol, 12 parts of ethylene glycol, 13 parts of nano-silver oxide, 12 parts of perylene glycol, 17 parts of benzophenone, isothiazolone derivatives 12 parts, 9 parts of microcrystalline cellulose, 12 parts of butyl acrylate, 13 parts of potassium oxide, 13 parts of strontium oxide, 12 parts of magnesium oxide, 15 parts of silicone modified acrylic acid, 11 parts of pentaerythritol, 13 parts of nano-titanium dioxide, silicone 20 parts of defoamer, 25 parts of bentonite binder, 110 parts of deionized water;
[0092] S...
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