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彈性耐隆製程及物性之研究

Manufacturing and Properties of Elastic Nylon

摘要


本研究利用聚醚二胺寡聚物與二酸單體進行共聚耐隆之合成,並添加少量三官能基單體,改善分子鏈間之回彈性,其中聚醚二胺寡聚物分子量約為1000g*mol^(-1),二酸單體為己二酸,三官能基單體為二乙基三胺(DETA)。實驗結果顯示,透過聚醚二胺寡聚物提供高分子良好的延展性及彈性,並透過三官能基單體增加分子鏈運動較自由之非晶區,達到分子間的彈性提升,共聚高分子耐隆斷裂點伸長率(%)達350%。在後段紡絲製程上,使用Side-by-Side並列纖維構造,使用共聚合之彈性耐隆與常規耐隆並列,可使織物伸長回復率達90%。

關鍵字

耐隆 彈性 並列纖維

並列摘要


In this study, the nylon copolymer was prepared by copolymerization reaction using polyetherdiamine and diacid, in addition add small amount of tri-functional compound to improve the resilience between molecular chains in which the molecular weight of polyetherdiamine is about 1000g*mol^(-1), the diacid is adipic acid , and the tri-functional compound is diethylenetriamine (DETA). The result showed that the polyetherdiamine providing good ductility, malleability and elasticity in nylon copolymer. Through the tri-functional compound can let copolymer increase amorphous region for molecular chains movement to enhance the intermolecular flexibility. The nylon copolymer elongation at break is up to 350%. In the melting spinning process, using Side-by-Side fiber structure by nylon copolymer and nylon, can make the recovery of elongation up to 90%.

並列關鍵字

Nylon Elastic Side-By-Side

延伸閱讀