Far infrared protective clothing
A technology of far-infrared coating and far-infrared health care, which is applied in the direction of contraceptives, heating appliances for treatment, cooling appliances for treatment, etc., and can solve the problems of far-infrared materials, such as limited health care effects and scope, and application limitations. , to achieve the effect of enhancing the body's immunity, promoting blood circulation and good therapeutic effect
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Embodiment 1
[0010] Example 1: Far infrared knee pads
[0011] Grind 20g of phthalic anhydride, 10g of veech, 5g of white tiger, 15g of liquid stone, 20g of white stone resin, 20g of alumina, and six kinds of minerals, pass through a 300-mesh sieve, mix them thoroughly, and calcinate at 1200°C for 2 hours, pass through 400 Mesh sieve for standby; then pulverize 6g of zeolite and 4g of Yunie, pass through a 300 mesh sieve respectively, and mix evenly with 0.5g of chitooligosaccharides and the above-mentioned mineral powder that has passed through a 400 mesh sieve after calcination to obtain far-infrared coating material.
[0012] Process: The above-mentioned far-infrared coating material is arranged on the outer layer of the far-infrared knee pads, and coated into a number of circles with a diameter of 2 cm, evenly distributed.
Embodiment 2
[0013] Example 2: Far Infrared Elbow Pads
[0014] Grind 10g of phthalic anhydride, 15g of veech, 5g of white tiger, 15g of liquid stone, 14g of white stone, 10g of alumina, 15g of straight stone, 2g of ochre, and eight kinds of mineral medicines. Calcined for 2 hours, passed through a 400-mesh sieve or ultrafinely crushed; then crushed 10 g of zeolite and 4 g of borax, passed through a 300-mesh sieve respectively, and mixed with 0.5 g of chitooligosaccharides and the above-mentioned calcined 400-mesh sieve The mineral powder is evenly mixed to form the far-infrared coating material.
[0015] Process: The above-mentioned far-infrared coating material is arranged on the outer layer of the far-infrared elbow pads, and coated into a number of circles with a diameter of 2.5 cm, evenly distributed.
Embodiment 3
[0016] Example 3: Far Infrared Wristband
[0017] Grind 20g of straight stone, 10g of phthalic anhydride, 20g of white stone, 20g of liquid stone, 10g of veech, 2g of white tiger, 1g of nameless, 15g of alumina, and eight kinds of mineral medicines. Calcined at ℃ for 2 hours, passing through a 400 mesh sieve for later use; then pulverizing 2g of yuene, passing through a 300 mesh sieve, and uniformly mixing with 0.5g of chitooligosaccharides and the above-mentioned mineral medicine powder passed through a 400 mesh sieve after calcination to form a far-infrared coating. layer material.
[0018] Process: The above-mentioned far-infrared coating material is arranged on the outer layer of the far-infrared wristband, and coated into a number of circles with a diameter of 2 cm, evenly distributed.
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