Negative ion flame-retardant anti-bacterial fiber and preparation method thereof
An antibacterial fiber and negative ion technology is applied in the field of textile fibers to achieve good antibacterial and negative ions generation, simple and easy manufacturing method, and excellent flame retardant effect.
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Embodiment 1
[0027] Embodiment 1 prepares flame-retardant, antibacterial, negative ion polyester filament:
[0028] This embodiment adopts composite flame retardant, antibacterial powder and negative ion generating agent and their mass percentages are respectively: magnesium hydroxide 6%, aluminum hydroxide 6%, silicon dioxide 8%, antimony oxide 18%, ammonium polyphosphate 42%, Zinc Oxide 10% and Tourmaline 10%.
[0029] This embodiment prepares negative ion flame-retardant and antibacterial fibers in the following manner:
[0030] The first step, after mixing the above-mentioned composite flame retardant, zinc oxide and tourmaline evenly, mix the mixed powder with polyethylene terephthalate to make a masterbatch, wherein the mixed powder accounts for the mass of the functional masterbatch 20% of;
[0031] In the second step, the masterbatch and polyester chips are blended at a mass ratio of 15:85, melted at 270°C, and then spun at a spinning speed of 3000m / min;
[0032] In the third st...
Embodiment 2
[0034] Embodiment 2 prepares flame-retardant, antibacterial, negative ion polyester staple fiber:
[0035] This embodiment adopts composite flame retardant, antibacterial powder and negative ion generating agent and their mass percentages are respectively: magnesium hydroxide 5%, aluminum hydroxide 5%, silicon dioxide 5%, antimony oxide 15%, ammonium polyphosphate 40%, Titanium Dioxide 15% and Tourmaline 15%.
[0036] This embodiment prepares negative ion flame-retardant and antibacterial fibers in the following manner:
[0037] In the first step, after mixing the above-mentioned composite flame retardant, titanium dioxide and tourmaline evenly, the mixed powder is mixed with polyethylene terephthalate to make a masterbatch, wherein the mixed powder accounts for 1% of the mass of the functional masterbatch 25%;
[0038] The second step is to blend the masterbatch and polyester chips at a mass ratio of 10:90, melt at 245°C, and spin at a spinning speed of 1000m / min to produce...
Embodiment 3
[0041] Embodiment 3 prepares flame-retardant, antibacterial, negative ion cationic modified polyester staple fiber:
[0042] This embodiment adopts composite flame retardant, antibacterial powder and negative ion generating agent and their mass percentages are respectively: magnesium hydroxide 3.5%, aluminum hydroxide 3.5%, silicon dioxide 6%, antimony oxide 13%, ammonium polyphosphate 38%, Titanium Dioxide 18%, Tourmaline 18%.
[0043] This embodiment prepares negative ion flame-retardant and antibacterial fibers in the following manner:
[0044] The first step is to mix the above-mentioned composite flame retardant, titanium dioxide and tourmaline evenly, and mix the mixed powder with cationic polyethylene terephthalate to make a masterbatch, wherein the mixed powder accounts for the functional masterbatch 20% of the mass.
[0045] In the second step, take 15 parts of the masterbatch and 85 parts of ordinary cationic modified chips, blend them, melt-spin them, and cut them...
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