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Comprehensive stabilization mechanism of electron-beam irradiated polyacrylonitrile fibers to shorten the conventional thermal treatment

机译:电子束辐照聚丙烯腈纤维的综合稳定机制以缩短常规热处理

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摘要

An electron beam was irradiated on polyacrylonitrile (PAN) fibers prior to thermal stabilization. The electron-beam irradiation effectively shortened the thermal stabilization process by one fourth compared with the conventional thermal stabilization process. A comprehensive mechanistic study was conducted regarding this shortening of the thermal stabilization by electron-beam irradiation. Various species of chain radicals were produced in PAN fibers by electron-beam irradiation and existed for a relatively long duration, as observed by electron spin resonance spectroscopy. Subsequently, these radicals were gradually oxidized to peroxy radicals in the presence of oxygen under storage or heating. We found that these peroxy radicals (CO) enabled such an effective shortcut of thermal stabilization by acting as intermolecular cross-linking and partial aromatization points in the low temperature range (100–130 °C) and as earlier initiation seeds of successive cyclization reactions in the next temperature range (>130–140 °C) of thermal stabilization. Finally, even at a low irradiation dose (200 kGy), followed by a short heat treatment (230 °C for 30 min), the PAN fibers were sufficiently stabilized to produce carbon fibers with tensile strength and modulus of 2.3 and 216 GPa, respectively, after carbonization.
机译:在热稳定之前,将电子束照射在聚丙烯腈(PAN)纤维上。与传统的热稳定过程相比,电子束辐照有效地将热稳定过程缩短了四分之一。针对这种通过电子束辐照引起的热稳定性的缩短进行了全面的机理研究。电子自旋共振光谱法观察到,通过电子束辐照在PAN纤维中产生了各种链自由基,并且存在时间相对较长。随后,在氧气存在下,在储存或加热下,这些自由基逐渐被氧化成过氧自由基。我们发现,这些过氧自由基(CO)通过充当低温范围(100–130 C)中的分子间交联和部分芳构化点,并作为较早的连续环化反应的起始种子,从而实现了热稳定的有效捷径。下一个热稳定温度范围(> 130–140°C)。最后,即使在低辐照剂量(200 kGy)下,再经过短时间的热处理(230 C持续30 min),PAN纤维也足够稳定,分别生产出抗张强度和模量分别为2.3和216 GPa的碳纤维。碳化后。

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