紫外光辐照改性制备具有增强热稳定性和亲水性的聚乙烯纤维OA
Preparation of Polyethylene Fibers with Enhanced Thermal Stability and Hydrophilicity by UV Irradiation
传统聚乙烯纤维因热稳定性差和固有的疏水性,在混纺加工时温度受限的同时可染性也较差,从而限制其大规模工业化应用.本研究采用一步法紫外光辐照技术,通过交联改性与接枝改性的方法对普通中分子量聚乙烯纤维进行改性,旨在增强其热稳定性并改善其亲水性.采用经济高效的紫外光引发交联体系,该体系由光引发剂二苯甲酮(benzophenone,BP)与辅助交联剂三烯丙基异氰脲酸酯(triallyl isocyanurate,TAIC)组成.同时,选用丙烯酸(acrylic acid,AA)作为接枝单体.将改性剂与聚乙烯基体在液相环境中充分混匀,随后将混合物熔融纺丝以制成纤维.对所得纤维进行紫外光辐照,从而引发交联与接枝反应.探讨了混合体系中各组分质量分数和辐照工艺对聚乙烯纤维改性效果的影响,并对经过优化后的改性聚乙烯纤维进行表征与测试.在 BP 和 TAIC 的质量分数均为 2.0%、紫外光辐照强度为2 000 mW/cm2、等效辐照时间为60 s的条件下,改性聚乙烯纤维热稳定性最佳,在130 至150℃温度范围内,仍能维持良好的形态稳定性和力学性能.此外,当AA的接枝质量分数为2.0%时,其对纤维其他性能影响最小的同时亲水性改性效果最佳,水接触角由未改性时的 105.0°(表现出疏水性)显著降低至 48.4°(表现出亲水性).这些改进证实了该改性策略在协同提升聚乙烯纤维热稳定性和亲水性方面的有效性.
Conventional polyethylene(PE)fibers face limitations in large-scale industrial applications due to their poor thermal stability and inherent hydrophobicity,which restrict processing temperatures and dyeability,especially in blended fabric production.In this research,a one-step ultraviolet(UV)irradiation technology was employed to modify medium molecular weight PE fibers through simultaneous crosslinking and grafting modifications,aiming to enhance their thermal stability and hydrophilicity.The modification employed a cost-effective,UV-initiated crosslinking system consisting of benzophenone(BP)as the photoinitiator and triallyl isocyanurate(TAIC)as the co-crosslinker.Acrylic acid(AA)was selected as the grafting monomer.These modifiers were thoroughly mixed with the PE matrix in a liquid-phase environment,and the mixture was melt-spun into fibers.The resulting fibers were then subjected to UV irradiation,which triggered the crosslinking and grafting reactions.The effects of the mass fraction of each component and irradiation parameters on modification efficacy were systematically investigated,followed by a comprehensive characterization of the modified PE fibers.The modified PE fibers achieved optimal thermal stability under the following conditions:2.0%mass fractions for both BP and TAIC,a UV irradiation intensity of 2 000 mW/cm2,and an equivalent irradiation time of 60 s.This synergistic modification approach enables the fibers to maintain superior morphological integrity and mechanical performance when exposed to elevated temperatures ranging from 130 to 150℃.Meanwhile,an AA grafting mass fraction of 2.0%maximizes hydrophilicity with minimal impact on other properties,as evidenced by a dramatic reduction in the water contact angle(WCA)from 105.0°(hydrophobic)to 48.4°(hydrophilic).These improvements confirm the effectiveness of the modification strategy in synergistically enhancing both thermal stability and hydrophilicity of PE fibers.
吴成炜;胡春艳;曾国坪;刘保江
东华大学 化学与化工学院,上海 201620东华大学 化学与化工学院,上海 201620安踏(中国)有限公司,福建 厦门 361008东华大学 化学与化工学院,上海 201620
化学化工
聚乙烯纤维紫外光辐照交联改性接枝改性热稳定性亲水性
polyethylene(PE)fiberultraviolet(UV)irradiationcrosslinking modificationgraft modificationthermal stabilityhydrophilicity
《东华大学学报(英文版)》 2026 (1)
10-20,11
评论