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Structure variation of tensile-deformed amorphous poly(l-lactic acid): Effects of deformation rate and strain

机译:拉伸变形无定形聚乳酸的结构变化:变形速率和应变的影响

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摘要

The present work explored the structure-property correlations for the biopolymer poly(l-lactic acid) (PLA) by studying deformation-mediated molecular orientation and crystallization. The structural and morphological variations of amorphous PLA under different strain rates were investigated. The result showed that strain rate significantly influences its strain-hardening behavior. The crystallinity and orientation as well as cavitation of deformed PLA increase with the increase of strain rates. The structure evolution has been divided into three potential stages: (i) at small strains (<100%), the crystallinity of PLA increases by orientation-induced crystallization; (ii) at intermediate strains (100%-160%), the crystallinity of deformed PLA slightly decreases due to the breakage of existing crystals under stress accompanying with newly formed voids and cavities; (iii) at high strains (>160%), the increasing number of oriented chains in the amorphous regions promotes the crystallization of PLA. Our study suggests that strain rate and stretching strain play important roles on modulating the crystallization and orientation of amorphous PLA.
机译:本工作通过研究变形介导的分子取向和结晶,探索了生物聚合物聚(l-乳酸)(PLA)的结构-性质相关性。研究了不同应变速率下非晶PLA的结构和形态变化。结果表明,应变速率显着影响其应变硬化行为。随应变速率的增加,变形的PLA的结晶度和取向以及空化现象增加。结构演变已分为三个潜在阶段:(i)在小应变(<100%)下,PLA的结晶度通过取向诱导的结晶而增加; (ii)在中等应变(100%-160%)时,变形的PLA的结晶度由于在压力下伴随着新形成的空隙和空洞的现有晶体的破裂而略微降低; (iii)在高应变(> 160%)时,非晶区取向链数量的增加促进了PLA的结晶。我们的研究表明,应变速率和拉伸应变在调节非晶态PLA的结晶和取向方面起着重要作用。

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