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Stereocomplexation in the Solution Spun PLLA / PDLA Blend Fibers

机译:溶液纺PLLA / PDLA共混纤维中的立体复杂化

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摘要

Solution-spun PLLA/PDLA blend fibers were obtained by the laboratory size spinning machine. The fibers obtained were drawn to various ratios at temperatures ranging from 80 to 140? and subsequently annealed at 200? under tension. Solution-spun fibers were highly crystallized during the coagulation process in the solution spinning and only the a-form homo-crystal of PLLA and PDLA were detected. Drawing of the fiber at temperatures between 80? and 160? did not promote the stereocomplexation between PLLA and PDLA. The drawn fiber seems to have two homo-crystal phases, one easily transformed to the streocomplex upon annealing at an elevated temperature and the other stayed either homo-crystal or melted during annealing and froze into the amorphous phase. The fibers drawn to higher ratios at higher temperatures, which showed a large melting peak of the homo-crystal at higher temperature region, kept homo-crystal phase even upon annealing at 200?. On the other hand, the fibers drawn to lower ratios at lower temperatures, which show the single melting peak of homo-crystal at a lower temperature region, changed the structure from oriented homo-crystal to the oriented stereocomplex upon annealing. Due to the small content of oriented stereocomplex crystal and larger content of unoriented amorphous phase, the fibers annealed at an elevated temperature have fairly poor mechanical property.
机译:通过实验室规模纺丝机获得溶液纺丝的PLLA / PDLA共混纤维。所得的纤维在80至140℃的温度范围内以不同的比例拉伸。然后在200退火在紧张之下。溶液纺丝的纤维在溶液纺丝过程中的凝结过程中高度结晶,仅检测到PLLA和PDLA的a型均质晶体。纤维在80?之间的拉伸?和160?没有促进PLLA和PDLA之间的立体复杂化。拉伸的纤维似乎具有两个均相相,一个在高温下退火后容易转变成骨架复合物,而另一个则保持均相或在退火过程中熔化并冻结成非晶相。在较高的温度下以较高的比例拉伸的纤维在较高的温度范围内显示出均晶的大熔融峰,即使在200℃退火时也保持均晶相。另一方面,在较低温度下以较低比率拉伸的纤维,其在较低温度区域显示均相晶体的单个熔融峰,在退火后将其结构从取向均相转变为取向立体络合物。由于取向的立体复合晶体的含量少而未取向的无定形相的含量大,因此在高温下退火的纤维的机械性能相当差。

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  • 来源
    《繊維学会誌》 |2010年第7期|p.174-180|共7页
  • 作者单位

    Graduate School of Science and Technology, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan;

    rnCenter for Fiber & Textile Science, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan;

    rnCenter for Fiber & Textile Science, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan;

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