Manufacturing method of negative ion health-care sanitary napkins nonwoven material
A manufacturing method and infrared technology, which are applied in sanitary napkins, rayon manufacturing, textiles and papermaking, etc., can solve problems such as reducing performance and weakening beneficial effects, and achieve the effects of improving work efficiency, improving sleep weight, and increasing oxygen content
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Embodiment 1
[0026] Mix 0.3kg of high-temperature drying and activated infrared ceramic powder with 99.7kg of plastic matrix PE, heat the mixture to melt, add dispersant polymer wax, use a high-speed mixer, and make 100kg of plastic masterbatch through the corresponding mold after fully stirring; Above-mentioned masterbatch of plastics and other manufacture textile short fiber or the composition (polyester fiber, polyvinylon fiber) of long filament are mixed by the ratio of 20%: 80% and pass through the melt spinning method after spinning speed is 2000m / min, the hole diameter of the spinneret is 0.3mm, the number of holes in the spinneret is 150 holes for long filaments or 1200 holes for short fibers, the temperature of the screw is 230°C, and the pressure is 120Mpa for spinning, and it is processed into textile staple fibers or Filament; then the short textile fibers or filaments are oriented or randomly arranged to form a fiber net structure, and then reinforced by mechanical, thermal bo...
Embodiment 2
[0028] Example 1 was repeated in the same steps as described, but the contents of infrared ceramic powder and plastic matrix PE were 3 kg and 97 kg, respectively. The number of negative ions produced by the fabric produced by this process reaches 5600 / cm 3 Around 85% emissivity of infrared rays.
Embodiment 3
[0030] Example 1 was repeated in the same steps as described, but the contents of the infrared ceramic powder and the plastic matrix PE were respectively 5 kg and 95 kg. The number of negative ions produced by the fabric produced by this process reaches 6000 / cm 3 Around 87% emissivity of infrared rays.
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