Far infrared negative ion high energy polymer for human rehabilitation treatment
A far-infrared negative ion, rehabilitation treatment technology, applied in the field of science, can solve the problems of inability to wear for a long time, low content of ingredients, difficult long-term combination, etc., and achieve the effect of increasing blood microcirculation speed, fast onset, and dredging meridians.
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Embodiment 1
[0012] This embodiment provides a far-infrared anion high-energy polymer for human rehabilitation, characterized in that: the far-infrared anion high-energy polymer for human rehabilitation contains the following components: far-infrared ceramic powder 15% of the total mass, tourmaline accounts for 10% of the total mass, and the balance is a mixed matrix of polyvinyl chloride paste resin and dioctyl phthalate, wherein the polyvinyl chloride paste resin and dioctyl phthalate The mass ratio is 1:2.5;
[0013] The above-mentioned substances are mixed and left for 20 hours, heated to 150 degrees Celsius while stirring, poured into a mold, cooled to form a film with a thickness of 1-3 mm, and perforations with a diameter of 1 mm are punched on the film. It is the above-mentioned far-infrared anion high-energy polymer used for human body rehabilitation.
[0014] The far-infrared negative ion high-energy polymer film used for human rehabilitation treatment is formed and then sewn in...
Embodiment 2
[0016] This embodiment provides a far-infrared anion high-energy polymer for human rehabilitation, characterized in that: the far-infrared anion high-energy polymer for human rehabilitation contains the following components: far-infrared ceramic powder 18% of the total mass, tourmaline accounts for 12% of the total mass, and the balance is a matrix mixed with polyvinyl chloride paste resin and dioctyl phthalate, wherein the polyvinyl chloride paste resin and dioctyl phthalate The mass ratio is 1:3;
[0017] The above-mentioned substances are mixed and left for 22 hours, heated to 160 degrees Celsius while stirring, poured into the mold, cooled to form a film with a thickness of 1-3 mm, and punched on the film with neatly arranged perforations with a diameter of 2 mm. It is the above-mentioned far-infrared anion high-energy polymer used for human body rehabilitation.
[0018] The far-infrared negative ion high-energy polymer film used for human rehabilitation treatment is form...
Embodiment 3
[0020] This embodiment provides a far-infrared anion high-energy polymer for human rehabilitation, characterized in that: the far-infrared anion high-energy polymer for human rehabilitation contains the following components: far-infrared ceramic powder 20% of the total mass, tourmaline accounts for 15% of the total mass, and the balance is a matrix mixed with polyvinyl chloride paste resin and dioctyl phthalate, wherein the polyvinyl chloride paste resin and dioctyl phthalate The mass ratio is 1:3.5;
[0021] The above-mentioned substances are mixed and placed for 24 hours, heated to 170 degrees Celsius while stirring, poured into a mold, and cooled to form a soft film with a thickness of 1-3 mm, which is the far-infrared anion high-energy polymer used for human rehabilitation.
[0022] The far-infrared negative ion high-energy polymer film used for human rehabilitation treatment is formed and then sewn into various clothes, or sewn into pillows, seat cushions, and mattresses ...
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Abstract
Description
Claims
Application Information
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