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首页> 外文期刊>Polymer Degradation and Stability >Investigation of progress of reactions and evolution of radial heterogeneity in the initial stage of thermal stabilization of PAN precursor fibres
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Investigation of progress of reactions and evolution of radial heterogeneity in the initial stage of thermal stabilization of PAN precursor fibres

机译:PAN前体纤维热稳定初期反应进展和径向异质性的研究

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摘要

The relationship between process parameters and structural transformations in the fibres at each stage of the carbon fibre manufacturing process play a crucial role in developing high performance carbon fibres. Here we report a systematic method which uses the combination of Taguchi approach and scientific evaluation techniques to establish these relationships for the initial stage of thermal stabilization. Density, cyclization index and fraction of reacted nitriles of a precursor containing acrylonitrile, meth-acrylate and itaconic acid (AN/MA/IA) were used to assess the progress of stabilization in the fibres with respect to various combinations of process parameters. The extent of progress of stabilization improved with increase in temperature (from 225 to 235 ℃) and time (from 12 to 24 min) whereas an opposite trend was observed with increase in the tension on the fibres from (1600-2550 cN). According to optical microscopy, radial heterogeneity was observed in the fibres treated at 235 ℃ Interestingly, we were able to identify the existence of heterogeneous modulus distribution from skin to core of the precursor fibres which was further transferred to treated fibres. The overall radial modulus of treated fibres was higher than the precursor fibres. In contrast to the literature, the fracture morphology of the fibre samples indicated that initiation of crack is caused by surface defects rather than radial heterogeneity.
机译:在碳纤维制造过程的每个阶段,过程参数与纤维中的结构转变之间的关系在开发高性能碳纤维中起着至关重要的作用。在这里,我们报告了一种系统的方法,该方法结合了Taguchi方法和科学评估技术来为热稳定的初始阶段建立这些关系。含有丙烯腈,甲基丙烯酸酯和衣康酸(AN / MA / IA)的前驱体的密度,环化指数和反应腈的比例(AN / MA / IA)用于评估各种工艺参数组合中纤维的稳定化进程。随着温度(从225到235℃)和时间(从12到24分钟)的增加,稳定的进展程度有所提高,而从(1600-2550 cN)的纤维上的张力增加则观察到相反的趋势。根据光学显微镜观察,在235℃处理的纤维中观察到径向异质性。有趣的是,我们能够鉴定出从表皮到前体纤维的芯部之间存在异质模量分布,并进一步转移到处理过的纤维中。处理过的纤维的总径向模量高于前体纤维。与文献相反,纤维样品的断裂形态表明裂纹的产生是由表面缺陷而不是径向不均匀性引起的。

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