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Electron-beam-induced post-grafting polymerization of acrylic acid onto the surface of Kevlar fibers

机译:电子束诱导的丙烯酸在凯夫拉纤维表面上的接枝聚合

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The surface of Kevlar fibers was successfully modified by electron beam (EB)-induced post-grafting of acrylic acid (AA). The generation of radicals in the fibers was confirmed by electron spin resonance (ESR) measurements, and the concentration of radicals was shown to increase as the absorbed dose increased, but decrease with increasing temperature. The influence of the synthesis conditions on the degree of grafting was also investigated. The surface microstructure and chemical composition of the modified Kevlar fibers were characterized by scanning electron microscopy (SEM) and X-ray photoelectron spectroscopy (XPS). The SEM images revealed that the surface of the grafted fibers was rougher than those of the pristine and irradiated fibers. XPS analysis confirmed an increase in C(O)OH groups on the surface of the Kevlar fibers, suggesting successful grafting of AA. These results indicate that EB-induced post-grafting polymerization is effective for modifying the surface properties of Kevlar fibers.
机译:通过电子束(EB)成功地改变了Kevlar纤维的表面 - 诱导丙烯酸(AA)的后接枝。通过电子自旋共振(ESR)测量证实了纤维中的基团的产生,并且随着吸收剂量的增加而显示自由基的浓度,但随着温度的增加而降低。还研究了合成条件对接枝程度的影响。通过扫描电子显微镜(SEM)和X射线光电子谱(XPS),表征改性的kevlar纤维的表面微观结构和化学组成。 SEM图像显示接枝纤维的表面比原始和照射纤维更粗糙。 XPS分析证实了Kevlar纤维表面上的C(O)OH基团的增加,表明AA的成功接枝。这些结果表明,EB诱导的接枝后聚合是改变Kevlar纤维的表面性质的有效性。

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