Polyphenyl thioether/ultra-fine calcium carbonate particulate composite fiber and preparation method thereof
A technology of ultra-fine calcium carbonate and polyphenylene sulfide, applied in the direction of fiber chemical characteristics, single-component synthetic polymer rayon, melt spinning, etc., to achieve the effect of avoiding agglomeration, avoiding melt granulation process, and avoiding energy consumption
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Embodiment 1
[0041] Put 1 part of ultrafine calcium carbonate particles and 0.02 parts of titanate coupling agent into a high-speed mixer at a speed of 1000r / min, stir and mix for 20 minutes, then add 99 parts of polyphenylene sulfide chips or powder, Keep stirring while raising the temperature, stop heating when the temperature reaches 205°C, continue stirring and cooling, and discharge to room temperature. The prepared mixture was vacuum-dried at 125°C for 12 hours, then the mixture was put into a screw extruder, and melt-spun at 320°C at a spinning speed of 700m / min. Water bath stretching, dry heat stretching at 110°C and heat setting at 180°C, the total draw ratio is 3 times, so as to obtain polyphenylene sulfide / ultrafine calcium carbonate particle composite fibers. The properties of the obtained composite fibers are shown in Table 1.
Embodiment 2
[0043] Put 3 parts of ultrafine calcium carbonate particles and 0.06 parts of titanate coupling agent into a high-speed mixer at a speed of 3000r / min, stir and mix for 25 minutes, then add 96.5 parts of polyphenylene sulfide chips or powder, Keep stirring while raising the temperature, stop heating when the temperature reaches 210°C, continue stirring and cooling, and discharge to room temperature. The prepared mixture was vacuum-dried at 125°C for 12 hours, then the mixture was put into a screw extruder, and melt-spun at 320°C at a spinning speed of 700m / min. Water-bath stretching, dry stretching at 120°C and heat setting at 180°C, the total draw ratio is 3 times, so as to obtain polyphenylene sulfide / ultrafine calcium carbonate particle composite fibers. The properties of the obtained composite fibers are shown in Table 1.
Embodiment 3
[0045]Put 5 parts of ultrafine calcium carbonate particles and 0.1 part of titanate coupling agent into a high-speed mixer at a speed of 3000r / min, stir and mix for 25 minutes, then add 95 parts of polyphenylene sulfide chips or powder, Keep stirring while raising the temperature, stop heating when the temperature reaches 270°C, continue stirring and cooling, and discharge to room temperature. The prepared mixture was vacuum-dried at 125°C for 12 hours, then the mixture was put into a screw extruder, and melt-spun at 320°C at a spinning speed of 700m / min. Water-bath stretching, dry stretching at 140°C and heat setting at 200°C, with a total draw ratio of 3 times, to obtain polyphenylene sulfide / ultrafine calcium carbonate particle composite fibers.
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