A kind of antistatic treatment process of resin-based polyester fiber
A treatment process, polyester-based technology, applied in the direction of fiber chemical characteristics, conductive/anti-static filament manufacturing, conjugated synthetic polymer artificial filament, etc., can solve the problem of poor physical properties of fibers, poor durability, and low cost Improve temperature resistance, increase strength and friction resistance, and reduce surface resistance
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Embodiment 1
[0019] An antistatic treatment process for resin-based polyester fibers, comprising the following steps:
[0020] (1) Preparation of antistatic agent: Mix 50kg of aliphatic amine polyoxyethylene ether, 13kg of polyethylene glycol glycidyl ether, and 5kg of sodium dodecylbenzenesulfonate evenly, and slowly add 3kg of silane coupling agent γ-methacryloxypropylmethyldimethoxysilane and 0.5kg of polyurethane wetting and dispersing agent Efka4010, after feeding, stir at room temperature for 25min to obtain antistatic agent;
[0021] (2) Mixing and granulation: mix the polyethylene terephthalate slices, the antistatic agent prepared in step (1), and the antioxidant 1010 according to the mass ratio of 86:5:0.3. After standing for 8 hours, dry, Send to the screw extruder to extrude and granulate;
[0022] (3) Preparation of antistatic resin-based polyester fibers: the granulated particles are melt-spun, wound and extended to obtain antistatic resin-based polyester fibers. Among them...
Embodiment 2
[0024] An antistatic treatment process for resin-based polyester fibers, comprising the following steps:
[0025] (1) Preparation of antistatic agent: mix 56kg of aliphatic amine polyoxyethylene ether, 12kg of polyethylene glycol glycidyl ether, and 7kg of sodium dodecylbenzenesulfonate, and slowly add 4kg of silane coupling agent anilinemethyltrimethoxysilane and 0.5kg of polyurethane wetting and dispersing agent Efka6745, after feeding, stir at room temperature for 30min to obtain antistatic agent;
[0026] (2) Mixing and granulation: mix the polyethylene terephthalate slices, the antistatic agent prepared in step (1), and the antioxidant 1010 according to the mass ratio of 90:8:0.3. After standing for 7 hours, dry, Send to the screw extruder to extrude and granulate;
[0027] (3) Preparation of antistatic resin-based polyester fibers: the granulated particles are melt-spun, wound and extended to obtain antistatic resin-based polyester fibers. Among them, the winding speed...
Embodiment 3
[0029] An antistatic treatment process for resin-based polyester fibers, comprising the following steps:
[0030] (1) Preparation of antistatic agent: Mix 60kg of fatty amine polyoxyethylene ether, 18kg of polyethylene glycol glycidyl ether, and 5kg of sodium dodecylbenzenesulfonate evenly, and slowly add 2kg of silane coupling Vinyltriacetoxysilane and 0.8kg of polyurethane wetting and dispersing agent Efka4050, after feeding, stirred at room temperature for 30min to obtain antistatic agent;
[0031] (2) Mixing and granulation: mix the polyethylene terephthalate slices, the antistatic agent prepared in step (1), and the antioxidant 1010 according to the mass ratio of 88:8:0.5. After standing for 8 hours, dry, Send to the screw extruder to extrude and granulate;
[0032] (3) Preparation of antistatic resin-based polyester fibers: the granulated particles are melt-spun, wound and extended to obtain antistatic resin-based polyester fibers. Among them, the winding speed is 2100...
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