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Single and hybrid electromagnetic absorbing coatings on polyacrylonitrile precursor to motivate the microwave pre-oxidation

机译:聚丙烯腈前体上的单层和混合型电磁吸收涂层可促进微波预氧化

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摘要

Nano silicon carbide was used separately and as an auxiliary absorber for the modification of the PAN precursor fibers to upgrade their microwave absorbability in order to undergo the subsequent pre-oxidization by using microwave. Surface coatings were successfully applied to the PAN precursor and the coated fibers were pre-oxidized over the microwave furnace for 60 min. To study the effect of the coatings on the pre-oxidized fibers, a series of characterizations were carried out. FTIR analysis results showed clear changes in the basic chemical structure of pre-oxidized fibers, which approved the occurrence of the cyclization and crosslinking reactions. Furthermore, the cyclization was confirmed by the thermal analysis results. According to the listed oxygen values, it can be suggested that the pre-oxidized fibers can resist the high temperatures in the following stage (carbonization). In addition, the crystalline analysis revealed a reduction in crystallinity, while the mechanical analysis demonstrated a reduction in tensile strength and elongation at break of pre-oxidized fibers. (C) 2018 Elsevier Ltd. All rights reserved.
机译:纳米碳化硅被单独使用,并且作为用于改性PAN前体纤维以提高其微波吸收能力的辅助吸收剂,以便随后通过使用微波进行预氧化。将表面涂层成功地施加到PAN前体上,并将涂层的纤维在微波炉上预氧化60分钟。为了研究涂层对预氧化纤维的影响,进行了一系列表征。 FTIR分析结果表明,预氧化纤维的基本化学结构发生了明显变化,这证明了环化和交联反应的发生。此外,通过热分析结果证实了环化。根据列出的氧值,可以认为预氧化纤维可以在随后的阶段(碳化)中抵抗高温。另外,晶体分析表明结晶度降低,而机械分析表明预氧化纤维的拉伸强度和断裂伸长率降低。 (C)2018 Elsevier Ltd.保留所有权利。

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