Thermoplastic health elastic material and processing method thereof
A technology of elastic materials and processing methods, applied in chemical instruments and methods, adhesive types, adhesive additives, etc., can solve the problems of puncture resistance and other properties that do not meet the requirements of shoemaking standards, main heel toe breakage, and high density. , to achieve the effect of enriching specific surface area, prolonging service life and promoting metabolism
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Embodiment 1
[0024] thermoplastic healthy elastic material,
[0025] Described elastic material is made of five-layer structure, and the first layer is to strengthen shaping layer, and the second layer is negative ion adhesive layer, and the third layer is far-infrared emitting layer, and the fourth layer is negative ion adhesive layer, and the fifth layer is Reinforces the styling layer,
[0026] The reinforced shaping layer is a warp-knitted mesh layer of polyester velvet;
[0027] Described negative ion bonding layer is processed by the raw material of following weight part:
[0028] 20 parts of TPU, 10 parts of diatom mud, 12 parts of carbon fiber powder, 5 parts of PETG, 3 parts of EVA, 5 parts of PET, 30 parts of latex, 3 parts of negative ion powder, 3 parts of far-infrared ceramic powder, 5 parts of magnetic ordered mesoporous carbon share;
[0029] The far-infrared emitting layer is formed by mixing 40 parts by weight of latex, 30 parts by weight of PETPU and 5 parts by weight ...
Embodiment 2
[0035] thermoplastic healthy elastic material,
[0036] Described elastic material is made of five-layer structure, and the first layer is to strengthen shaping layer, and the second layer is negative ion adhesive layer, and the third layer is far-infrared emitting layer, and the fourth layer is negative ion adhesive layer, and the fifth layer is Reinforces the styling layer,
[0037] The reinforced shaping layer is a warp-knitted mesh layer of polyester velvet;
[0038] Described negative ion bonding layer is processed by the raw material of following weight part:
[0039] 40 parts of TPU, 15 parts of diatom mud, 20 parts of carbon fiber powder, 8 parts of PETG, 5 parts of EVA, 10 parts of PET, 50 parts of latex, 7 parts of negative ion powder, 5 parts of far-infrared ceramic powder, 8 parts of magnetic ordered mesoporous carbon ;
[0040] The far-infrared emitting layer is formed by mixing 60 parts by weight of latex, 50 parts by weight of PETPU and 20 parts by weight of ...
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