Natural self-heating healthcare physiotherapeutic insole and manufacturing method thereof
A technology of self-heating and insoles, applied in insoles, light therapy, physical therapy, etc., can solve the problems of short health care effect, uncomfortable wearing, aggravating foot fatigue, etc., so as to prevent local burns, promote blood circulation, and reduce use volume effect
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Embodiment 1
[0036] as attached figure 1 and 2 As shown, the present invention provides a natural self-heating health-care physiotherapy insole, including an insole body 1, and the insole body 1 includes a surface antibacterial layer, a functional layer and a bottom wear-resistant layer, and the functional layer is located between the surface antibacterial layer and the antibacterial layer. Between the wear-resistant layers on the bottom surface, the insole body 1 includes the forefoot 2, the rear heel 3 and the middle arch of the foot. The arch of the foot is provided with a protrusion 4 that can complement the arch of the foot. 2. A plurality of self-heating far-infrared functional circular sheets 5 are sewn on the functional layer where the rear heel 3 and the arch of the foot are located, corresponding to the acupoints on the soles of the feet, which are staggered from the self-heating far-infrared functional circular sheets 5 There are a plurality of air holes 6 penetrating through t...
Embodiment 2
[0043] Different from Example 1, in the step (1) of the preparation method of the present invention, the raw ore slurry contains 60% tourmaline slurry, 15% germanium slurry, 15% meteorite slurry and 10% silica slurry. In step (2), the far-infrared functional auxiliary agent is selected from a mixture of graphene, carbon nanotubes and fullerenes, and the dispersant is selected from polyvinylpyrrolidone. At this time, the contents of each component in the self-heating far-infrared functional slurry are respectively Yes: graphene accounts for 5%, carbon nanotube accounts for 5%, fullerene accounts for 5%, polyvinylpyrrolidone accounts for 5%, and raw ore slurry accounts for 80%.
Embodiment 3
[0045] Different from Examples 1 and 2, in the step (1) of the preparation method of the present invention, the raw ore slurry contains 50% tourmaline slurry, 20% germanium slurry, 20% meteorite slurry material and 10% silica slurry. In step (2), the far-infrared functional auxiliary agent is selected from a mixture of graphene, carbon nanotubes and fullerenes, and the dispersant is selected from one of polyvinylpyrrolidone or sodium carboxymethyl cellulose. The contents of each component in the infrared functional slurry are: graphene accounts for 0.5%, carbon nanotube accounts for 0.5%, fullerene accounts for 0.5%, polyvinylpyrrolidone or sodium carboxymethylcellulose accounts for 3.5%, raw ore slurry Materials accounted for 95%.
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