The effects of several operative parameters on the grafting of selected grafting agents on a polyamide six (PA6) fiber surface

Naeemeh Sadat Saleh, S. Ostad Movahed, F. Attarbashi
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Abstract

The previous research showed the anti-biofouling improvement of the polyamide six (PA6) fiber when grafted by 2-hydroxyethyl methacrylate (HEMA) individually, and in combination with acrylic acid (AA) known as dual monomers system. The effects of several operative parameters, including vessel reaction temperature and time, ultra violet (UV) pre-irradiation time, and also HEMA-AA mole ratios (for dual system) on the surface grafting of a PA6 fiber by HEMA and also, dual HEMA-AA system were studied. The studied grafting parameters were grafting degree (D), grafting efficiency (E), formed homo and or co-polymer (Y), reaction extent (K), and reaction ratio (R). A pre-UV irradiation technique (PUVA) used for irradiation of the fibers. The results showed efficient polymerization and grafting reactions for the selected operative parameters. The increasing reaction temperature reduced the grafting of the HEMA and AA on the fiber surface. Instead, it accelerated the homo and or co-polymerization of the HEMA and AA monomers. The reaction time had the lowest effect on the homo and co-polymer formation of the used monomers in the studied dual HEMA-AA system. The increasing pre-UV irradiation time was beneficial for the grafting of the studied monomers on the PA6 fiber. The reason referred to increasing the number and concentration of the active sites on the fiber surface.
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几种操作参数对选定接枝剂在聚酰胺六(PA6)纤维表面接枝的影响
先前的研究表明,聚酰胺六(PA6)纤维单独与甲基丙烯酸2-羟基乙酯(HEMA)接枝,并与丙烯酸(AA)作为双单体体系相结合,可以改善其抗生物污垢性能。研究了几种操作参数,包括容器反应温度和时间、紫外线(UV)预照射时间以及HEMA-a摩尔比(双体系)对HEMA和双HEMA-a体系表面接枝PA6纤维的影响。所研究的接枝参数为接枝度(D)、接枝效率(E)、形成的均聚物和/或共聚物(Y)、反应程度(K)和反应比(R)。一种用于纤维辐照的预紫外线辐照技术(PUVA)。结果表明,在选定的操作参数下,聚合和接枝反应是有效的。反应温度的升高降低了HEMA和AA在纤维表面的接枝。相反,它加速了HEMA和AA单体的均聚和/或共聚。在所研究的双HEMA-A体系中,反应时间对所用单体的均聚物和共聚物形成的影响最小。增加预紫外线照射时间有利于所研究的单体在PA6纤维上的接枝。原因是增加了纤维表面活性位点的数量和浓度。
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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审稿时长
12 months
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