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The Effect of the Synthetic Procedure of Acrylonitrile–Acrylic Acid Copolymers on Rheological Properties of Solutions and Features of Fiber Spinning

机译:丙烯腈 - 丙烯酸共聚物合成方法对纤维纺纱溶液流变性质的影响

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摘要

The influence of introducing acrylic acid (AA) into the reaction mixture with acrylonitrile at the synthesis of copolymers by free-radical polymerization (FRP) and radical polymerization with reversible addition–fragmentation chain transfer (RAFT) on the rheological properties of their solutions in dimethyl sulfoxide, as well as on the capability to spin fibers by the mechanotropic method, is analyzed. The influence of AA dosing conditions on the rheological properties of the solutions in the concentration range above the crossover point was not revealed. In the case of RAFT synthesis, the rheological properties differ distinctively in the high concentration region that is expressed by unusual viscoelastic characteristics. Dilute solution viscometry revealed the influence of the comonomer loading order on the interaction intensity of the copolymer macromolecules with a solvent, which is more pronounced for samples synthesized by FRP and can be associated with the copolymers’ molecular structure. Fiber spinning from solutions of polyacrylonitrile and its copolymers (PAN) synthesized by the RAFT method was not able to achieve a high degree of orientation drawing, while for polymers with a wider molecular weight distribution synthesized by FRP, it was possible to realize large stretches, which led to high-quality fibers with strength values up to 640 MPa and elongation at a break of 20%.
机译:通过自由基聚合(FRP)和可逆添加 - 碎片链转移(RAFT)在二甲基中的溶液流变性质的基础聚合和自由基聚合,将丙烯酸(AA)与丙烯腈在共聚物合成中的反应混合物中的影响分析了亚砜,以及通过机电方法对旋纤维的能力进行分析。 AA给药条件对交叉点高于交叉点的浓度范围内溶液流变性能的影响。在RAFT合成的情况下,通过异常粘弹性特性表达的高浓度区域中的流变性质不同。稀释溶液粘度率揭示了共聚单体加载顺序对具有溶剂的共聚物大分子相互作用强度的影响,该溶剂对通过FRP合成的样品更加明显,并且可以与共聚物分子结构相关。由聚丙烯腈的溶液和由筏法合成的共聚物(锅)纺丝不能达到高度取向拉伸,而对于通过FRP合成的较宽分子量分布的聚合物,可以实现大伸展,这导致高品质的纤维,强度值高达640 MPa,伸长率为20%。

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