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pH-responsive fibers based on acrylonitrile acrylic acid block copolymers: Effect of spinning conditions and postspinning operations on response and mechanical properties

机译:基于丙烯腈丙烯酸嵌段共聚物的pH响应纤维:纺丝条件和后纺工序对响应和机械性能的影响

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pH sensitive poly(acrylonitrile-co-acryhc acid) having similar to 50 mol % acrylic acid with block type structure (AA50B) was synthesized by controlled dosing method of free radical polymerization. The polymer was converted into fibers by wet solution spinning technique in DMF-water system. The resulting block type copolymer could generate a domain type morphology with segregated domains of acrylonitrile and acrylic acid on heat-setting. The drawing ratio and heat-setting temperature had a significant effect on the formation of these domains and their stability. The domain formation was more pronounced when the fibers could be drawn to higher draw ratios during coagulation or heat-set at higher temperature. The stability of the fibers, which is influenced by domain formation, was lowest (at few cycles of transitions) when the fibers were heat-set at 100 degrees C, while it is improved significantly to more than 50 cycles as the heat-setting temperature was increased to 150 degrees C. The coagulation conditions, drawing and the heat-setting also greatly influenced the mechanical properties, transition behavior, and retractive stresses of the responsive fibers. The tenacity improved by 6.6 times in swollen state and 1.4 times in deswollen state,, while the retractive stresses during deswelling were significantly increased to about 4.7 times. However, the increased heat-setting temperature was also found to have a negative,, effect on the equilibrium swelling values as well as the response rate. The effect of heat-setting on chemical structure of the copolymer was also investigated. (c) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 109: 37923803,2008.
机译:通过自由基聚合的定量控制方法,合成了具有类似于嵌段型结构(AA50B)的50mol%丙烯酸的pH敏感型聚(丙烯腈-共-丙烯酸)。在DMF-水系统中通过湿溶液纺丝技术将聚合物转化为纤维。所得的嵌段型共聚物在热定形时可以产生具有丙烯腈和丙烯酸的分离的畴的畴类型形态。拉伸比和热定型温度对这些畴的形成及其稳定性具有显着影响。当纤维在凝结或在较高温度下热定形时可被拉伸至更高的拉伸比时,畴的形成更为明显。当纤维在100摄氏度热定型时,受畴形成影响的纤维稳定性最低(在几个过渡周期内),而随着热定型温度的提高,其稳定性显着提高到50个以上循环将其增加到150℃。凝结条件,拉伸和热定形也极大地影响了响应纤维的机械性能,过渡行为和回缩应力。在溶胀状态下的韧性提高了6.6倍,在溶胀状态下的韧性提高了1.4倍,而在溶胀期间的回缩应力显着增加到约4.7倍。然而,还发现升高的热定型温度对平衡溶胀值以及响应速率具有负面影响。还研究了热定型对共聚物化学结构的影响。 (c)2008 Wiley Periodicals,Inc. J Appl Polym Sci 109:37923803,2008。

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