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首页> 外文期刊>Advances in Polymer Technology >From Polyacrylonitrile, Its Solutions, and Filaments to Carbon Fibers: I. Phase State and Rheology of Basic Polymers and Their Solutions
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From Polyacrylonitrile, Its Solutions, and Filaments to Carbon Fibers: I. Phase State and Rheology of Basic Polymers and Their Solutions

机译:从聚丙烯腈,其溶液和长丝到碳纤维:I.碱性聚合物的相状态和流变学及其溶液

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The phase state and rheological properties of dimethyl sulfoxide (DMSO) solutions of a series of acrylonitrile-based copolymers (PAN), which were obtained by suspension polymerization and synthesized in supercritical CO2, have been studied. For PAN-DMSO (plus water) solutions, a bimodal amorphous phase equilibrium takes place at similar to 78 degrees C. Comparison of the rheological behavior of homo- and copolymer solutions has shown that the presence of carboxylate ion(s) in the macromolecular chain leads to supramolecular structure formation. Small additions of non-solvent (water) enhance the viscoelasticity of the solution, whereas a large amount of water results in gel formation; beyond a certain threshold of water concentration, macroscopic phase separation takes place. Addition of carbon nanotubes into the solution does not change their phase state or rheological behavior. Application of mechanical forces to concentrated solutions may cause specific phase separation without the addition of a non-solvent.
机译:研究了一系列丙烯腈基共聚物(PAN)的二甲基亚甲醚(DMSO)溶液的相状态和流变性质,其通过悬浮聚合得到并合成在超临界CO2中。对于Pan-DMSO(加水)溶液,双峰非晶相平衡发生在类似于78摄氏度的情况下进行。同源和共聚物溶液的流变行为的比较表明,在大分子链中存在羧酸盐离子的存在导致超分子结构形成。少量添加非溶剂(水)增强溶液的粘弹性,而大量的水导致凝胶形成;除了一定的水浓度阈值之外,发生宏观相分离。向溶液中加入碳纳米管不会改变它们的相状态或流变行为。机械力在浓缩溶液中的施加可能导致特异性相分离而不加入非溶剂。

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