Nylon copolymer mixture, method for producing same, and nylon fiber comprising same
A manufacturing method and a technology for copolymers, which are applied in the field of nylon copolymer mixtures with low terminal amine group content, can solve the problems of not easy to light dyeing and the like, and achieve the effects of good moisture absorption and release, and significant cooling effect.
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Embodiment 1
[0065] Embodiment 1: Preparation of nylon copolymer mixture E1
[0066] After mixing 90.4wt% ring-opened caprolactam monomer, 1.3wt% adipic acid, 8wt% polyether diamine oligomer and 0.3wt% adipic acid, the The copolymerization reaction is carried out at a pressure of 0.2-3 bar to form a nylon copolymer mixture E1 composed of multiple nylon copolymers. In Example 1, the molecular weight of the polyetherdiamine oligomer is 900 g / mol. The content of terminal amine groups in the nylon copolymer mixture E1 provided in Example 1 is 25 meq / kg.
Embodiment 2
[0067] Embodiment two: preparation nylon copolymer mixture E2
[0068] After mixing 90.2wt% ring-opened caprolactam monomer, 1.3wt% adipic acid, 8wt% polyether diamine oligomer and 0.5wt% adipic acid, the The copolymerization reaction is carried out at a pressure of 0.2-3 bar to form a nylon copolymer mixture E2 composed of multiple nylon copolymers. In Example 2, the molecular weight of the polyether diamine oligomer is 900 g / mol. The content of terminal amine groups in the nylon copolymer mixture E2 provided in Example 2 is 19 meq / kg.
Embodiment 3
[0069] Embodiment three: preparation nylon copolymer mixture E3
[0070] After mixing 91.12wt% ring-opened caprolactam monomer, 0.58wt% adipic acid, 8wt% polyether diamine oligomer and 0.3wt% adipic acid, the The copolymerization reaction is carried out at a pressure of 0.2-3 bar to form a nylon copolymer mixture E3 composed of multiple nylon copolymers. In Example 3, the molecular weight of the polyetherdiamine oligomer is 2,000 g / mol. The content of terminal amine groups in the nylon copolymer mixture E3 provided in Example 3 is 31 meq / kg.
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