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Effect of coagulation bath temperature and polymer composition on the fabrication and characteristics of PAN precursor fiber in the solvent-free coagulation process

机译:无溶剂凝固过程中凝固浴温度和聚合物组成对PAN前体纤维制备及性能的影响

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摘要

The objective of this research is to investigate the appropriate range of coagulation bath temperature and polymer solution composition for spinning process in the solvent-free coagulation process and the effect of these parameters on carbon fibers precursor. The fabrication of the precursor fibers in the solvent-free coagulation process was carried out at a low residence time. The precursor fibers with excellent axial orientation and less number of micro-pores possess superior mechanical properties and enhance the performance of resulting carbon fibers. In the first stage of this study, the PAN polymer solution was prepared with incorporation of acrylamide as an additive. The PAN/AM fibers were produced using a simple dry-wet spinning process. The PAN/AM fibers were then subjected to the oxidation process at 250 °C in an oxygen-containing-atmosphere before underwent the carbonization process at 1000 °C. Through these studies, that a semi-dilute solution (18 wt.%) was found to be the most suitable polymer composition for the PAN/AM fibers fabrication at room temperature. It eased the fabrication process and produced the PAN/AM fibers with better mechanical properties. The PAN/AM fibers produced at coagulation bath temperature of 13 °C exhibited the excellent mechanical properties. At the coagulation bath temperature of 13 °C, the inward diffusion of non-solvent was still slow and consequently reduced the number of micro-pores and fit for the drawing process. The ratio of carbon fiber to precursor modulus (Ec/Ep) was calculated to be about 16.5, which was relatively acceptable value as published elsewhere. It can be concluded that the PAN precursor fibers were successfully produce in the solvent-free coagulation process which possessed competitive mechanical properties.
机译:这项研究的目的是研究无溶剂凝固过程中纺丝过程中凝固浴温度和聚合物溶液组成的合适范围,以及这些参数对碳纤维前体的影响。在无溶剂的凝结过程中,前体纤维的制备在很短的停留时间内进行。具有优异的轴向取向和较少的微孔数量的前体纤维具有优异的机械性能并增强了所得碳纤维的性能。在这项研究的第一阶段,通过加入丙烯酰胺作为添加剂来制备PAN聚合物溶液。 PAN / AM纤维使用简单的干湿纺丝工艺生产。然后将PAN / AM纤维在含氧气氛中于250°C进行氧化处理,然后在1000°C进行碳化处理。通过这些研究,发现半稀溶液(18重量%)是在室温下制造PAN / AM纤维的最合适的聚合物组合物。它简化了制造过程,并生产出具有更好机械性能的PAN / AM纤维。在凝固浴温度为13°C时生产的PAN / AM纤维表现出优异的机械性能。在凝固浴温度为13°C时,非溶剂的向内扩散仍然很慢,因此减少了微孔的数量,适合拉丝工艺。碳纤维与前体模量的比率(Ec / Ep)经计算约为16.5,这是其他地方所公开的相对可接受的值。可以得出结论,PAN前体纤维是在具有竞争机械性能的无溶剂混凝过程中成功生产的。

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