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首页> 外文期刊>Advances in Polymer Technology >From Polyacrylonitrile, its Solutions, and Filaments to Carbon Fibers II. Spinning PAN-Precursors and their Thermal Treatment
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From Polyacrylonitrile, its Solutions, and Filaments to Carbon Fibers II. Spinning PAN-Precursors and their Thermal Treatment

机译:从聚丙烯腈,其溶液和长丝到碳纤维II。 旋转平移前体及其热处理

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Based on the results of Part 1 of this work, we have chosen acrylonitrile copolymers for preparing dopes in dimethyl sulfoxide (DMSO). Modeling the spinning process in static conditions was carried out by following the evolution of the interaction between a drop of solution and precipitant. In addition, the diffusion zone was controlled by the laser-interference method. Fibers were spun on a laboratory stand. It was found that the optimal ratio of DMSO to water in a coagulation bath was 85/15. The analysis of the structure of different fibers (including fibers with carbon nanotubes) demonstrated the superposition of crystalline phase and orientation-disordered mesophase. The evolution of this structure could provide the answer to the question of which structure of white fibers is best for obtaining high-quality black fibers. Measurement of the structure and mechanical properties of fibers allowed us to optimize the technology of thermal treatment of fibers including the intensity of heat output in the stages of thermal-oxidative stabilization and carbonization as well as the strain characteristics and applied tension. Model carbon fibers have a satisfactory complex of mechanical properties. We aimed to choose a set of experimental approaches as a proper way to produce high-strength carbon fibers.
机译:基于这项工作的第1部分的结果,我们选择了用于制备二甲基亚砜(DMSO)中的掺杂剂的丙烯腈共聚物。通过在溶液和沉淀物之间的相互作用的演变之后进行建模静态条件下进行旋转过程。另外,扩散区由激光干扰法控制。纤维在实验室支架上旋转。发现DMSO与凝固浴中水的最佳比例为85/15。对不同纤维的结构的分析(包括碳纳米管的纤维)证明了结晶相和取向无序中间相的叠加。这种结构的演变可以提供对白色纤维结构最适合获得高品质黑纤维的问题的答案。纤维结构和机械性能的测量允许我们优化纤维的热处理技术,包括热氧化稳定和碳化阶段的热输出强度以及应变特性和施加张力。模型碳纤维具有令人满意的机械性能络合物。我们的目标是选择一系列实验方法作为生产高强度碳纤维的适当方法。

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