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Three-dimensional crimped biodegradable poly(lactic acid) fibers prepared via melt spinning and controlled structural reorganization

机译:通过熔融纺丝和控制结构重组制备的三维卷曲可生物降解的聚(乳酸)纤维

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Biodegradable three-dimensional crimped fibers were prepared by the side-by-side composite spinning of poly(lactic acid) (PLA) and low-melting point PLA (LM-PLA). The structural variation of the PLA/LM-PLA composite fibers during dry and wet heat treatment was explored systematically. It is shown that crystallization and disorientation were two key factors for the formation of the three-dimensional crimped structure of PLA/LM-PLA side-by-side composite fibers (SSCF). The wet heat-treated fiber has better crimp performance and fluffiness, and the crimp number, crimp ratio and crimp elasticity ratio of the treated PLA/LM-PLA SSCF with good comprehensive properties are 21 per 25 mm, 31.9% and 81.6%, which are similar to those of industrialized PET/PTT three-dimensional crimped fibers. The results of this study shed light on the development of novel three-dimensional crimped fibers with biodegradability.
机译:通过聚(乳酸)(PLA)和低熔点PLA(LM-PLA)的并排复合纺丝制备可生物降解的三维卷曲纤维。系统地探讨了干燥和湿热处理过程中PLA / LM-PLA复合纤维的结构变化。结果表明,结晶和迷失化是形成PLA / LM-PLA并排复合纤维(SSCF)的三维卷曲结构的两个关键因素。湿热处理纤维具有更好的压接性能和蓬松性,并且接受处理的PLA / LM-PLA SSCF的压接数,压接比和卷曲弹性比为每25毫米,31.9%和81.6%的21%,这与工业化PET / PTT三维卷曲纤维类似。本研究的结果揭示了具有生物降解性的新型三维卷曲纤维的开发。

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