Preparation method of graphene-based multifunctional physiotherapy magnet
A graphene, multifunctional technology, applied in the field of preparation of multifunctional physiotherapy magnets, can solve the problems of inconvenient cleaning, non-reusable, poor adsorption effect and thermal compress treatment effect, etc., so as to speed up cell metabolism and promote blood circulation. The effect of circulation, restoring elasticity
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Embodiment 1
[0028] The invention provides a kind of preparation method of graphene-based multifunctional physiotherapy magnet, specifically comprises the following steps:
[0029] (1) Ultrasonic washing is used to remove impurities from tourmaline, germanium stone, meteorite and silica raw ore coarse materials. The power of ultrasonic washing is 30-120kW, the temperature is 10-30°C, and the time is 10-90min; then After ball milling for 1-5 hours in turn, it is prepared into 1-3mm particles; then it is ground for 1-5 hours by a grinder, and it is prepared into 0.1-1mm particles; finally, it is prepared by water mill for 1-5 hours to obtain 1-10μm raw ore Slurry, at this time, the raw ore slurry contains 70% tourmaline slurry, 10% germanium stone slurry, 10% meteorite slurry and 10% silicon dioxide slurry;
[0030] (2) Putting far-infrared functional additives, dispersants and the raw ore slurry obtained in step (1) into the high-speed shearing machine, and fully mixing through high-speed s...
Embodiment 2
[0033] Different from Example 1, in step (1), the raw ore slurry contains 60% tourmaline slurry, 15% germanium slurry, 15% meteorite slurry and 10% silicon dioxide slurry material. 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
[0035] Different from Example 1, in step (1), the raw ore slurry contains 50% tourmaline slurry, 20% germanium slurry, 20% meteorite slurry and 10% silicon dioxide slurry material. 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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