首页> 外文期刊>Fibers and Polymers >Chemical and Physical Modification of Poly(p-phenylene benzobisoxazole) Polymers for Improving Properties of the PBO Fibers. I. Ultraviolet-ageing Resistance of PBO Fibers with Naphthalene Moiety in Polymer Chain
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Chemical and Physical Modification of Poly(p-phenylene benzobisoxazole) Polymers for Improving Properties of the PBO Fibers. I. Ultraviolet-ageing Resistance of PBO Fibers with Naphthalene Moiety in Polymer Chain

机译:聚对苯撑苯并双恶唑聚合物的化学和物理改性,以改善PBO纤维的性能。 I.聚合物链中带有萘基的PBO纤维的抗紫外线老化性能

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In purpose of improving the poor ultraviolet-ageing resistance of poly(p-phenylene benzobisoxazole) (PBO) fiber, a series of modified PBO were synthesized in poly(phosphoric acid) (PPA) by introducing 2,6-naphthalene groups into PBO molecules. 2,6-naphthalenedicarboxylic acid (NDCA) was selected as a comonomer. It was found that there was little effect of NDCA on the molecular weight of PBO. PBO and PBO-NDCA fibers were prepared through dry-jet wet spinning. The PBO-NDCA fibers exhibited much improved UV-ageing resistance by showing less reduction in tensile strength after same amount of UV exposure, and the UV-ageing resistance increased with increasing of NDCA content. It was notable that the fiber diameter was significantly decreased in proportion to UV exposure time, which implies a kind of etching was occurred on the surface of the fibers by UV irradiation. It was also found that the degree of UV etching in fibers decreased with increasing of NDCA content. Surface morphology of the fibers before and after UV irradiation was observed using FE-SEM and AFM.
机译:为了改善聚对苯撑苯并二恶唑(PBO)纤维的耐紫外线老化性,通过在PBO分子中引入2,6-萘基,在聚磷酸(PPA)中合成了一系列改性PBO。 。选择2,6-萘二甲酸(NDCA)作为共聚单体。发现NDCA对PBO的分子量影响很小。通过干喷湿纺制备PBO和PBO-NDCA纤维。 PBO-NDCA纤维通过在相同量的紫外线照射后抗张强度降低较少,从而显示出大大改善的抗紫外线老化性,并且抗紫外线老化性随NDCA含量的增加而增加。值得注意的是,纤维直径与紫外线暴露时间成比例地显着减小,这意味着通过紫外线照射在纤维表面上发生了一种蚀刻。还发现,随着NDCA含量的增加,纤维中的紫外线蚀刻程度降低。使用FE-SEM和AFM观察了UV辐照前后纤维的表面形态。

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