Corset with negative ion far infrared function
An anion far-infrared, body-shaping clothing technology, applied in the field of body-shaping clothing, can solve the problems of small amount of negative ions, affecting the use of users, and users can not fully experience the comfort, so as to improve product performance, benefit efficacy, and benefit the body Healthy effect
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Embodiment 1
[0022] A body-shaping garment with anion far-infrared function, the functional layer of the body-shaping garment is made of germanium fiber as a base and a composite filler as an additive, and the mass ratio of the germanium fiber to the composite filler is 1:0.3; the composite The filler is composed of hydrogen-rich spheres, tourmaline stone particles, carbon nanotube particles and agarwood particles, the mass ratio of which is 12:35:5:0.4; the size of the hydrogen-rich spheres is 100-200nm; the tourmaline The size of the stone particles is 120-140 nm; the size of the carbon nanotube particles is 50-80 nm; the size of the agarwood particles is 600-800 mesh.
Embodiment 2
[0024] A body-shaping garment with anion far-infrared function, the functional layer of the body-shaping garment is made of germanium fiber as a base and a composite filler as an additive, and the mass ratio of the germanium fiber to the composite filler is 1:0.7; the composite The filler is composed of hydrogen-rich spheres, tourmaline stone particles, carbon nanotube particles and agarwood particles, the mass ratio of which is 18:23:7:0.6; the size of the hydrogen-rich spheres is 100-200nm; the tourmaline The size of the stone particles is 120-140 nm; the size of the carbon nanotube particles is 50-80 nm; the size of the agarwood particles is 600-800 mesh.
Embodiment 3
[0026] A body-shaping garment with anion far-infrared function, the functional layer of the body-shaping garment is made of germanium fiber as a base and a composite filler as an additive, and the mass ratio of the germanium fiber to the composite filler is 1:0.6; the composite The filler is composed of hydrogen-rich spheres, tourmaline stone particles, carbon nanotube particles and agarwood particles, the mass ratio of which is 15:32:6:0.5; the size of the hydrogen-rich spheres is 100-200nm; the tourmaline The size of the stone particles is 120-140 nm; the size of the carbon nanotube particles is 50-80 nm; the size of the agarwood particles is 600-800 mesh.
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