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Surface treatment of PMIA fibers with sub-atmospheric pressure dielectric barrier glow discharge plasma

机译:具有亚大气压介质屏障辉光放电等离子体的PMIA纤维的表面处理

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Meta-aramid fibers were treated by sub-atmospheric pressure dielectric barrier glow discharge plasma. The effect of plasma treatment time on the fiber surface physical and chemical properties was studied by using surface characterization techniques. Scanning electron microscopy (SEM) was performed to determine the surface morphology changes. FT-IR spectroscopy measurements were performed to investigate the change of chemical structure. Dynamic contact angle analysis (DCAA) was used to examine the changes of the fiber surface wettability. SEM analysis showed that there was obvious crack along the fibers' axial direction present on the fiber surface, which resulted in the better wetting behavior of the plasma-treated PMIA fiber. FT-IR analysis showed that plasma had little effect on the chemical structure of PMIA fibers. DCAA analysis showed that the wettability of the samples could be improved with the treatment time increasing. In addition, a slight decrease in breaking strength was observed at the treatment time ranging from 60 to 180 s in comparison with the untreated sample.
机译:通过亚大气压介质屏障辉光放电等离子体处理荟萃芳族纤维。通过使用表面表征技术研究了等离子体处理时间对纤维表面物理和化学性质的影响。进行扫描电子显微镜(SEM)以确定表面形态变化。进行FT-IR光谱测量以研究化学结构的变化。动态接触角分析(DCAA)用于检查纤维表面润湿性的变化。 SEM分析表明,纤维表面上存在的纤维轴向存在明显的裂缝,导致等离子体处理的PMIA纤维的更好的润湿行为。 FT-IR分析表明,血浆对PMIA纤维的化学结构几乎没有影响。 DCAA分析表明,可以随着治疗时间的增加而改善样品的润湿性。此外,与未处理的样品相比,在60至180s的处理时间下观察到断裂强度的轻微降低。

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